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C6A816x/AM389xEvaluation Module
2011 DSP Development Systems
ReferenceTechnical
C6A816x/AM389x Evaluation Module Technical Reference
513830-0001 Rev. A January 2011
SPECTRUM DIGITAL, INC.12502 Exchange Drive, Suite 440 Stafford, TX. 77477
Tel: 281.494.4505 Fax: 281.494.5310sales@spectrumdigital.com www.spectrumdigital.com
IMPORTANT NOTICE
Spectrum Digital, Inc. reserves the right to make changes to its products or to discontinue anyproduct or service without notice. Customers are advised to obtain the latest version of relevantinformation to verify that the data being relied on is current before placing orders.
Spectrum Digital, Inc. warrants performance of its products and related software to currentspecifications in accordance with Spectrum Digital’s standard warranty. Testing and other qualitycontrol techniques are utilized to the extent deemed necessary to support this warranty.
Please be aware that the products described herein are not intended for use in life-support appliances, devices, or systems. Spectrum Digital does not warrant nor is Spectrum Digital liable for the product described herein to be used in other than a development environment.
Spectrum Digital, Inc. assumes no liability for applications assistance, customer product design, software performance, or infringement of patents or services described herein. Nor does SpectrumDigital warrant or represent any license, either express or implied, is granted under any patent right,copyright, or other intellectual property right of Spectrum Digital, Inc. covering or relating to anycombination, machine, or process in which such Digital Signal Processing development products orservices might be or are used.
WARNING
This equipment is intended for use in a laboratory test environment only. It generates, uses, and canradiate radio frequency energy and has not been tested for compliance with the limits of computingdevices pursuant to subpart J of part 15 of FCC rules, which are designed to provide reasonableprotection against radio frequency interference. Operation of this equipment in other environmentsmay cause interference with radio communications, in which case the user at his own expense will berequired to take whatever measures necessary to correct this interference.
Copyright © 2011 Spectrum Digital, Inc.
Contents
1 Introduction to the C6A816x/AM389x Evaluation Module . . . . . . . . . . . . . . . . . . . . . . 1-1 Provides you with a description of the C6A816x/AM389x Evaluation Module, key features, and block diagram. 1.1 Key Features . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1-2 1.2 Functional Overview of the C6A816x/AM389x EVM . . . . . . . . . . . . . . . . . . . . . . . . 1-4 1.3 Basic Operation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1-5 1.4 Memory Map . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1-5 1.5 Configuration Switch Settings . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1-6 1.6 Power Supply . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1-82 Board Components . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-1 Describes the operation of the major board components on the C6A816x/AM389x Evaluation Module. 2.1 EMIF-A Interfaces . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-2 2.1.1 EMIF-B SDRAM Memory Interface . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-2 2.1.2 Memory Card Interface . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-2 2.1.3 UART Interface . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-2 2.1.4 USB Interface . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-2 2.1.5 HDMI Interface . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-2 2.1.6 Video DAC . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-2 2.1.7 PCIe . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-3 2.2 AIC3106 Interface . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-3 2.3 Ethernet Interface . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-4
2.4 I2C Interface . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-4 2.5 SPI Flash . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-5 2.6 Power Monitoring . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-5 2.7 Daughter Card Interface . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-5
3 Physical Specifications . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-1 Describes the physical layout of the C6A816x/AM389x Evaluation Module and its connectors. 3.1 Board Layout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-3 3.2 Connectors . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-5 3.2.1 J1, 12V Power In . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-7 3.2.2 J2, HD15 Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-6 3.2.3 J3, F Type Video Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-7 3.2.4 J4, Composite Video Out . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-7 3.2.5 J5, Component Video , RCA Jack - Green . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-7 3.2.6 J6, Component Video , RCA Jack - Blue . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-8 3.2.7 J7, Component Video , RCA Jack - Red . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-8 3.2.8 J8, Disk Drive Power Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-8 3.2.9 J9, SCART21 Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-9 3.2.10 J10, Ethernet Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-10 3.2.11 J11, SATA Header . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-10 3.2.12 J12, SATA Header . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-11 3.2.13 J13-1/J13-2, USB-A Connectors . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-12 3.2.14 J14, MSP430 Programming Header . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-13 3.2.15 J15, CTI JTAG Interface . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-14 3.2.16 J16, VLYNQ/Transport Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-15 3.2.17 J17, Video/Transport Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-16 3.2.18 J18, GPMC Expansion Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-18 3.2.19 J19, MCASP/XXX Expansion Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-20 3.2.20 J20, Serial Expansion Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-22 3.2.21 P1, S-Video Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-23 3.2.22 P2, Headphone Out . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-24 3.2.23 P3, Line Out . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-24 3.2.24 P4, Line In . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-25 3.2.25 P5, Mic In . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-25 3.2.26 P6, HDMI Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-26 3.2.27 P7, DB9 Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-27 3.2.28 P8, PCIe Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-28 3.2.29 P9, SD/MMC Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-29 3.2.30 P10, DB9 Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-30 3.2.31 P11, Fan Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-31 3.3 LEDs . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-32 3.4 Switches . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-32 3.4.1 SW1, On/Off Power Switch . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-32 3.4.2 SW2, User Readable Switches . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-33 3.4.3 SW3, Boot Mode/Configuration Switch . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-34 3.4.4 SW4, On Board Memory Enable Switch . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-37 3.4.5 SW5, PCI/WDOG Reset Enable Switch . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-37 3.4.6 SW6, Reset Switch . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-38 3.5 Infra-red Receiver . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-38 3.6 Test Points . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-39A Schematics . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-1 Contains the schematics for the C6A816x/AM389x Evaluation ModuleB Mechanical Information . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . B-1 Contains the mechanical information about the C6A816x/AM389x Evaluation Module
About This Manual
This document describes the board level operations of the C6A816x/AM389xEvaluation Module (EVM). The EVM is based on the Texas Instruments C6A816x/AM389x Processor.
The C6A816x/AM389x Evaluation Module is a table top card that allows engineers andsoftware developers to evaluate certain characteristics of the C6A816x/AM389xprocessor to determine if the processor meets the designers application requirements.Evaluators can create software to execute on board or expand the system in a varietyof ways.
Notational Conventions
This document uses the following conventions.
The C6A816x/AM389x Evaluation Module will sometimes be referred to as theC6A816x/AM389x EVM or EVM.
Program listings, program examples, and interactive displays are shown in a specialitalic typeface. Here is a sample program listing.
equations!rd = !strobe&rw;
Information About Cautions
This book may contain cautions.This is an example of a caution statement.A caution statement describes a situation that could potentially damage your software,or hardware, or other equipment. The information in a caution is provided for yourprotection. Please read each caution carefully.
Related Documents, Application Notes and User Guides
Information regarding the C6A816x/AM389x can be found at the following TexasInstruments website:
http://www.ti.com
Table 1: Manual History
Revision History
A Alpha
Table 2: Board History
PWBRevision
History
A Alpha Release
1-1
Chapter 1
Introduction to the C6A816x/AM389x EVM
Chapter One provides a description of the C6A816x/AM389x EVM alongwith the key features and a block diagram of the circuit board.
Topic Page
1.1 Key Features 1-21.2 Functional Overview of the C6A816x/AM389x EVM 1-41.3 Basic Operation 1-51.4 Memory Map 1-61.5 Boot Switch Settings 1-71.6 Power Supply 1-8
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1-2 C6A816x/AM389x EVM Technical Reference
1.1 Key Features
The C6A816x/AM389x EVM is a standalone development platform that enables usersto evaluate and develop applications for the C6A816x/AM389x processor. Schematicsand application notes are available to ease hardware development and reduce time tomarket. The block diagram for this EVM is shown below.
Figure 1-1, Block Diagram C6A816x/AM389x EVM
Figure 1-2, Block Diagram C6A816x/AM389x EVM Expansion Connectors
US
B0/
1E
NE
TR
J45
SC
AR
T
IRRS-232
HD
PW
RP
WR
Mon
RS
-232
SD / MMC
Mic
In
Line
In
Line
Out
HP
Out
12V
DC
PW
R S
W
Cr YCb C
S-V
ideo
HDMIVGA
EN
ET
PH
Y
RF
Out
JTAG
DDR2 / DDR3 DIMM Module
AIC3106
I2C Bus
SW3
SW4
SW2
Reset
MSP430
I2CROM
THS7360
THS7375
UserLEDs/DIPSwitches
SATA
GMII
McASP
Video
GPMC
UART2UART1
EM
IF0
EM
IF1
PCIe
816X / 389X
PC
Ie
SATA0
SATA1
NAND
SPIROM
I2CGPIO
SPI
SD/MMC
McASP
GMII
GPMC
Video
UART0/1/2
Vid
eo
J18
UART0/1/2
SC0/1
UA
RT
&M
isc
I/O
816X / 398X
Video In/OutVideo
McA
SP
/Eth
erne
t
GP
MC
J20
J19
J16 J17
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1-3
The EVM comes with a full complement of on board devices that suit a wide variety ofapplication environments. Key features include:
• A Texas Instruments C6A816x/AM389x device with a C674x DSP floating point processor and an ARM Cortex A8 processor operating up to 1 GHz.
• 1 Gigabyte DDR2 RAM on dual EMIF DIMM card
• 32 Megabit SPI Flash
• 2 gigabyte NAND Flash
• Composite video out
• Component video out
• Dual Host USB Interfaces
• Video/GPMC/MCASP/Serial Expansion Interfaces
• On-chip HDMI Interface
• 10/100/1000 Ethernet Interface
• SD media card interface
• TLV320AIC3106 Stereo Codec (Line In/Out, Mic in, Headphone out)
• 2 SATA drive interfaces
• PCIe connector with 2 lanes
• RS-232 Interface
• Infra-red receiver
• On chip real time clock
• Configurable boot load options
• 4 user LEDs/4 position user DIP switch
• Single voltage power supply (+12V)
• 20 Pin CTI JTAG Interface
• On board power monitoring
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1.2 Functional Overview of the C6A816x/AM389x EVM
The C6A816x/AM389x on the EVM interfaces to on-board peripherals through multipleon-chip interfaces. The DDR2 memory is connected to a dedicated dual 32 bit DIMM.HDMI and video interfaces support up to 1080p resolution, along with gigabit ethernetand RS-232 interfaces which provide direct support for operating systems running onthe EVM.
An on-board AIC3106 codec allows the DSP to transmit and receive analog audio
signals. The I2C bus is used for the codec control interface, while the McASP controlsthe audio stream. Signal interfacing is done through 3.5mm audio jacks that correspondto microphone input, headphone output, line input, and line output.
The EVM includes 4 user LEDs, a 4 position user DIP switch, and on chip real timeclock. On board connectors allows ease of interfacing to the daughter cards.
An included +12V external power supply is used to power the board. On-boardswitching voltage regulators provide the CPU core voltage, +3.3V, +1.8V for peripheralinterfacing. The board is held in reset by the on board power controller until thesesupplies are within operating specifications.
Code Composer Studio communicates with the EVM through an 20 pin compact TIJTAG header.
Figure 1-3, C6A816x/AM389x EVM
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1-5
1.3 Basic Operation
The EVM is designed to work with TI’s Code Composer Studio IDETM, orUbuntu/Code Sorcery tool environments. Code Composer communicates with theboard through an on board JTAG emulator. This EVM is shipped with an EVM specificCode Composer Studio environment.
1.4 Memory Map
The C6A816x/AM389x processor has a byte addressable address space. Programcode and data can be placed anywhere in the unified address space. Addresses aremultiple sizes depending on hardware implementation. Refer to the appropriate devicedata sheets for more details.
The part incorporates a triple EMIF interface. Two dedicated 32-bit wide DDR2interface directly to the on board dual DIMM. GPMC (General Purpose MemoryController) has multiple separate addressable regions called chip enable spaces. TheEVM uses this interface as a peripheral interface to daughter card connectors andNAND Flash interfaces. The memory maps for both of the processors in theC6A816x/AM389x device can be found in TI document SPRS680. The address rangesfor the off chip DDR2 and NAND memory are shown in the table below.
Table 1: DDR2 and NAND Memory Ranges
Interface Memory Type Address Range Size
DDR0 DDR2 0x8000 0000 0x2000 0000
DDR1 DDR2 0xC000 0000 0x2000 0000
GPMC NANDGPMC_CS0,
see NAND controller information
2 Gigabyte
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1-6 C6A816x/AM389x EVM Technical Reference
1.5 Boot Switch Settings
The EVM uses 9 positions of a 10 position DIP switch (SW3) to configure theoperational state of the processor when it is released from reset and determine thesource for processor booting. Five (5) positions indicate the boot mode and four (4)positions determine the memory configuration. By default as shipped the switches areconfigured to SD Card boot. The tables below shows the boot mode sources and theirrespective switch positions.
Table 2: Memory Boot Load Order
BTMODE[4] (Position5)= 1MEMORY BOOTING PREFERRED
BTMODE[3:0]Switch
Position[4:1]First Second Third Fourth
XIP UART EMAC SD 0 0 0 0
XIPWAIT UART EMAC SD 0 0 0 1
NAND NANDI2C SPI UART 0 0 1 0
NAND NANDI2C SD UART 0 0 1 1
NAND NANDI2C SPI EMAC 0 1 0 0
NANDI2C SD EMAC UART 0 1 0 1
SPI SD UART EMAC 0 1 1 0
SD SPI UART EMAC 0 1 1 1
SPI SD PCIE_32 Reserved 1 0 0 0
SPI SD PCIE_32 Reserved 1 0 0 1
Reserved Reserved Reserved Reserved 1 0 1 0
Reserved Reserved Reserved Reserved 1 0 1 1
Reserved Reserved Reserved Reserved 1 1 0 0
Reserved Reserved Reserved Reserved 1 1 0 1
Reserved Reserved Reserved Reserved 1 1 1 0
GP Fast External
BootEMAC UART PCIE_32 1 1 1 1
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The photo below shows the switch settings for SD card boot.
Table 3: Peripheral Boot Load Order
BTMODE[4] (Position5)= 0PERIPHERAL BOOTING PREFERRED
BTMODE[3:0]Switch
Position[4:1]First Second Third Fourth
Reserved Reserved Reserved Reserved 0 0 0 0
UART XIPWAIT SD SPI 0 0 0 1
UART SPI NAND NANDI2C 0 0 1 0
UART SPI XIP SD 0 0 1 1
EMAC SPI NAND NANDI2C 0 1 0 0
Reserved Reserved Reserved Reserved 0 1 0 1
Reserved Reserved Reserved Reserved 0 1 1 0
EMAC SD SPI XIP 0 1 1 1
PCIE_32 Reserved Reserved Reserved 1 0 0 0
PCIE_64 Reserved Reserved Reserved 1 0 0 1
Reserved Reserved Reserved Reserved 1 0 1 0
Reserved Reserved Reserved Reserved 1 0 1 1
Reserved Reserved Reserved Reserved 1 1 0 0
Reserved Reserved Reserved Reserved 1 1 0 1
Reserved Reserved Reserved Reserved 1 1 1 0
GP Fast External
BootUART EMAC PCIE_64 1 1 1 1
Figure 1-4, Boot Load Switch Settings
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1-8 C6A816x/AM389x EVM Technical Reference
An additional switch (SW4) enables the chip select for on board NAND and SPI Flash. This switch allows for daughter cards to override on board configurations.This switch must disable the on board NAND and SPI when SD card boot is selected.The photo below shows the default switch settings for SW4.
1.6 Power Supply
The EVM operates from a single +12V external power supply connected to the mainpower input (J1), a 2.5 MM. barrel-type plug. On the EVM, the +12V input is convertedinto core voltage (1 volt constant and 1 volt variable [AVS]), +1.5V, +1.8V, +3.3V and+5V using Texas Instruments controllers and regulators. The +3.3V supply is used forthe CPU's I/O buffers.
Figure 1-5, SW4, NAND/SPI Select Switch Settings
2-1
Chapter 2
Board Components
This chapter describes the operation of the major board components onthe C6A816x/AM389x EVM.
Topic Page
2.1 EMIF-A Interfaces 2-22.1.1 EMIF-B SDRAM Memory Interface 2-22.1.2 Memory Card Interface 2-22.1.3 UART Interface 2-22.1.4 USB Interface 2-22.1.5 HDMI Interface 2-22.1.6 Video DAC 2-22.1.7 PCIe 2-32.2 AIC3106 Interface 2-32.3 Ethernet Interface 2-42.4 I2C0, I2C1 Interfaces 2-42.5 SPI Flash 2-52.6 Power Monitoring 2-52.7 Daughter Card Interface 2-5
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2-2 C6A816x/AM389x EVM Technical Reference
2.1 GPMC Interface
A separate 16 bit EMIF with multiple chip enables divide up the internal address spaceand allow for asynchronous memory accesses on the EVM. The EVM uses thisinterface for memory interfaces to the daughter card and on board NAND Flash.
2.1.1 DDR Memory Interfaces
The C6A816x/AM389x device incorporates two dedicated 32 bit wide DDR memoryinterfaces. The EVM incorporates a dual DIMM connector that supports 1 Gigabyte ofmemory for program, data, and video storage. The internal memory controller uses aPLL to control the memory timing. Memory refresh is handled automatically by theC6A816x/AM389x internal controller.
2.1.2 Memory Card Interface
The EVM supports SD/MMC media card interfaces. This interface is directly supportedvia an on chip peripheral.
2.1.3 UART Interface
The internal UART2 on the C6A816x/AM389x device is driven to connector P10. TheUART’s interface is routed to the RS-232 line drivers prior to being brought out to aDB-9 connector.
2.1.4 USB Interface
The C6A816x/AM389x incorporates two on chip USB controllers. The two interfacesare brought out to dual host A type connector, J13.
2.1.5 HDMI Interface
The C6A816x/AM389x has an on chip HDMI peripheral which supports up to 1080p @ 60 Hz. resolution. This interface is a direct interface to an HDMI connector,P6.
2.1.6 Video DAC
The EVM supports composite, S-video, Scart, and component output via internal videoDACs. The interfaces are buffered via THS7360 and THS7375 video DACs toconnectors J2, J9, J4, J5, J6, and J7.
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2.1.7 PCIe
The EVM provides a PCIe connector and supports 2 lanes of transmit and receiveinterfaces.
2.2 AIC3106 Interface
The EVM incorporates a Texas Instruments TLV320AIC3106 stereo codec for input andoutput of audio signals. The codec samples analog signals on the microphone or lineinputs and converts them into digital data so it can be processed by the DSP. When theDSP is finished with the data it uses the codec to convert the samples back into analogsignals on the line output so the user can hear the output.
The codec communicates using two serial channels, one to control the codec’s internal
configuration registers and one to send and receive digital audio samples. The I2C busis used as the AIC3106’s control channel. The control channel is generally only usedwhen configuring the codec, it is typically idle when audio data is being transmitted,
McASP1 is used as the bi-directional data channel. All audio data flows through thedata channel. Many data formats are supported based on the three variables ofsample width, clock signal source and serial data format. The EVM examples generallyuse a 16-bit sample width with the codec in master mode so it generates the framesync and bit clocks at the correct sample rate without effort on the DSP side.
The codec is clocked via a 24.576 Mhz oscillator. The internal sample rate generatorsubdivides the default system clock to generate common audio frequencies. Thesample rate is set by a codec register. The figure below shows the codec interface onthe C6A816x/AM389x EVM.
Figure 2-1, C6A816x/AM389x EVM CODEC INTERFACE
DOUTDIN
BCLKWCLK
MIC IN
LINE IN
LINE OUT
HP OUT
McASP
AIC3106 Codec
Digital Analog
MIC IN
LINE IN
LINE OUT
HP OUT
SCLSDA
I2CControlSCL
SDAI2C Format Control Registers
ADC
DAC
AXR[0]AXR[5]ACLKRACLKXAFSRAFSX
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2.3 Ethernet Interface
The C6A816x/AM389x incorporates two ethernet MAC’s that support 10/100/1000 Mbitinterfaces. Ethernet 0 is interfaced to an external Phy and brought out to an RJ-45standard ethernet connector, J10. The ethernet address is stored on chip within theCPU.
The RJ-45 jack has 2 LEDs integrated into the connector. The LEDs are green andyellow and provide link and transmit status from the ethernet controller.
2.4 I2C0, I2C1 Interfaces
The I2C0 and I2C1 bus on the C6A816x/AM389x is ideal for interfacing to the control
registers of many devices. On the C6A816x/AM389x EVM the I2C0 bus is used to
configure the Codec, I2C ROM, and bit addressable latch. The format of the bus isshown in the figure below.
The addresses of the on board peripherals are shown in the tables below.
Table 1: I2C0 Address Map
Device Address R/W Function
TLV320AIC3106 0x18 R/W CODEC
PCF8575 0x20 R/W Bit I/O
MSP430 0x25 R/W Power Monitor
I2C EEPROM 0x50 R/W I2C EEPROM
Table 2: I2C1 Address Map
Device Address R/W Function
PCF8575 0x20 R/W Bit I/O
Figure 2-3, I2C Bus Format
Start Slave Address W ACK Sub Address ACK-S Data ACK-S Stop
Write Sequence
Start Slave Address R Data STOP
Read Sequence
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2.5 SPI Flash
The EVM has a 32 megabit SPI Flash that can be used for booting and/or storage. Notethat the switch S2 enables the SPI chip select and must be set properly when using thedevice.
2.6 Power Monitoring
The EVM uses an MSP430 CPU connected to multiple INA2201DCN I2C powermonitors to monitor the voltage and currents on the EVM. The MSP430 outputs thisinformation in real time via its dedicated RS-232 port, P7.
2.7 Daughter Card Interfaces
The EVM provides expansion connectors that can be used to accept plug-in daughtercards. The daughter card allows users to build on their EVM platform to extend itscapabilities and provide customer and application specific I/O. The expansionconnectors are interfaces which include McASP, and serial I/O expansion. The EMIF-Asignals are brought out as LCD, peripheral, or EMIF signals.
The daughter card connectors used on the EVM are shown in the table below.
Table 3: Daughter Card Connectors
Reference Designator
Part Numbers Used On EVM
Manufacturer
J16 QSH-030-01-L-D-A-K Samtec
J17 QSH-060-01-L-D-A-K Samtec
J18 QSH-060-01-L-D-A-K Samtec
J19 QSH-060-01-L-D-A-K Samtec
J20 QSH-030-01-L-D-A-K Samtec
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2-6 C6A816x/AM389x EVM Technical Reference
One of the compatible mating daughter card connectors used to interface to the EVMare shown in the table below (other heights are available).
Table 4: Mating Daughter Card Connectors
Reference Designator
Matingconnector
Manufacturer
XJ16 QTH-030-02-L-D-A-K Samtec
XJ17 QTH-060-02-L-D-A-K Samtec
XJ18 QTH-060-02-L-D-A-K Samtec
XJ19 QTH-060-02-L-D-A-K Samtec
XJ20 QTH-030-02-L-D-A-K Samtec
3-1
Chapter 3
Physical Description
This chapter describes the physical layout of the C6A816x/AM389x EVMand its interfaces.
Topic Page
3.1 Board Layout 3-33.2 Connectors 3-53.2.1 J1, 12V Power In 3-63.2.2 J2, HD15 Connector 3-63.2.3 J3, F Type Video Connector 3-73.2.4 J4, Composite Video Out 3-73.2.5 J5, Component Video, RCA Jack - Green 3-73.2.6 J6, Component Video, RCA Jack - Blue 3-83.2.7 J7, Component Video, RCA Jack - Red 3-83.2.8 J8, Disk Drive Power Connector 3-83.2.9 J9, SCART21 Connector 3-93.2.10 J10, Ethernet Connector 3-103.2.11 J11, SATA Header 3-103.2.12 J12, SATA Header 3-113.2.13 J13-1/13-2, USB-A Connectors 3-123.2.14 J14, MSP430 Programming Header 3-133.2.15 J15, CTI JTAG Interface 3-143.2.16 J16, VLYNQ/Transport Connector 3-153.2.17 J17, Video/Transport Connector 3-163.2.18 J18, GPMC Expansion Connector 3-183.2.19 J19, MCASP/XXX Expansion 3-203.2.20 J20, Serial Expansion Connector 3-22
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Topic Page3.2.21 P1, S-Video Connector 3-233.2.22 P2, Headphone Out 3-243.2.23 P3, Line Out 3-243.2.24 P4, Line In 3-253.2.25 P5, Mic In 3-253.2.26 P6, HDMI Connector 3-263.2.27 P7, DB9 Connector 3-273.2.28 P8, PCIe Interface 3-283.2.29 P9, SD/MMC Connector 3-293.2.30 P10, DB9 Connector 3-303.2.31 P11, Fan Connector 3-313.3 LEDs 3-323.4 Switches 3-323.4.1 SW1, On/Off Power Switch 3-323.4.2 SW2, User Readable Switches 3-333.4.3 SW3, Boot Mode/Configuration Switch 3-343.4.4 SW4, On Board Memory Enable Switch 3-373.4.5 SW5, PCI/WDOG Reset Enable Switch 3-373.4.5 SW6, Reset Switch 3-383.5 Infra-red Receiver 3-383.6 Test Points 3-39
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3.1 Board Layout
The C6A816x/AM389x EVM is a 12.5 x 8.4 inch (317 x 213 mm.) six (6) layer printedcircuit board which is powered by an external +5 volt only power supply. Figure 3-1shows the layout of the top side of the C6A816x/AM389x EVM.
Figure 3-1, C6A816x/AM389x EVM, Interfaces Top Side
P6
J4
P7
P1
DS1
SW2
J9
P8
J15
J14P11
SW3
DS2-5
P9
P10
J8
J11
J12
J13J10
P4
P3
P2
P5
J7
J6
J5
J2
J3
J1
SW1
SW6
SW5
SW4
IR
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Figure 3-2 shows the layout of the bottom side of the C6A816x/AM389x EVM.
Figure 3-2, C6A816x/AM389x EVM, Interfaces Bottom Side
J20
J17
J16
J18
J19
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3.2 Connectors
The EVM has numerous connectors and option jumpers to control and provideconnections to various peripherals. These connectors and jumpers are described in thefollowing sections.
Table 1: Connectors
Connector SizeBoardSide
SchematicPage
Function
J1 2 Top 51 12V Power In
J2 15 Top 37 HD15 Connector
J3 2 Top 37 F Type Video Connector
J4 2 Top 37 Composite Video
J5 2 Top 37 RCA Jack - Green
J6 2 Top 37 RCA Jack - Blue
J7 2 Top 37 RCA Jack - Red
J8 9 Top 51 Drive Input Power Connector
J9 21 Top 38 SCART21 Connector
J10 14 Top 35 Ethernet Output Connector
J11 9 Top 12 SATA Header
J12 9 Top 12 SATA Header
J13-1 6 Top 25 USB-A Connector
J13-2 6 Top 25 USB-A Connector
J14 2 x 7 Top 45 MSP430 Programming Header
J15 20 Top 14 CTI JTAG Interface
J16 2 x 32 Bottom 40 VLYNQ/Transport Connector
J17 2 x 64 Bottom 39 Video/Transport Connector
J18 2 x 64 Bottom 41 GPMC Expansion Connector
J19 2 x 64 Bottom 43 MCASP/XXX Expansion
J20 2 x 32 Bottom 42 Serial I/O Expansion Connector
P1 7 Top 37 S-video Connector
P2 4 Top 36 Headphone Out
P3 4 Top 36 Line Out
P4 4 Top 36 Line In
P5 4 Top 36 Mic In
P6 23 Top 11 HDMI
P7 11 Top 45 DB9 Connector
P8 2 x 32 Top 23 PCIe Interface
P9 28 Top 30 SD/MMC Connector
P10 11 Top 28 DB9 Connector
P11 3 Top 51 Fan Connector
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3-6 C6A816x/AM389x EVM Technical Reference
3.2.1 J1, 12V Power In
Connector J1 is the input power connector. This connector brings in +12 volts to theEVM. This is a 2.5mm. jack. The inside of the jack is tied to through a fuse toEVM_12V. The other side is tied to ground and LED DS1. The figure below shows thisconnector as viewed from the card edge.
3.2.2 J2, HD15 Connector
Connector J2 is a 15 pin header that allows a high definition video device to be pluggedinto the EVM. The signals on this connector are shown in the table below.
Table 2: J2, HD15 Connector
Pins Signal
1 U4, Pin 12, SF3_OUT
2 U4, Pin 14, SF1_OUT
3 U4, Pin 13, SF2_OUT
4 NC
5 Ground
6 Ground
7 Ground
8 Ground
9 NC
10 Ground
11 NC
12 NC
13 NC
14 NC
15 NC
PC Board
J1+12V
Ground
Front ViewFigure 3-3, J1, +12 Volt Input Connector
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3.2.3 J3, F Type Video Connector
Connector J3 provides an RF output (RFOUT) from the processor, U31, Pin AU21.
3.2.4 J4, Composite Video Out
J4 is an RCA jack used as a video output from the THS7360 driver. Do NOT plug intothis connector with the power on. The figure below shows this connector as viewedfrom the card edge.
3.2.5 J5, Component Video, RCA Jack - Green
J5 is an RCA jack used to provide the Green component video output from theTHS7360 driver, U4, pin 14, SF1_OUT. The pinout on this connector is shown in the figure below.
WARNING: Do NOT plug into this connector with the power on.
Table 3: J4, Composite Video Out, RCA Jack
Pin # Signal Name
1 THS7360, Pin 20, SD1_OUT
2 GND
Pin 2, Shield (ground)
Pin 1, Signal output
Figure 3-4, J4, Composite Video Out
Pin 2, Shield (ground)
Pin 1, Signal output (green)
Figure 3-5, J5, Component Video Out - Green
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3-8 C6A816x/AM389x EVM Technical Reference
3.2.6 J6, Component Video, RCA Jack - Blue
J6 is an RCA jack used to provide the Blue component video output from theTHS7360 driver, U4, pin 13, SF2_OUT. The pinout on this connector is shown in thefigure below.
WARNING: Do NOT plug into this connector with the power on.
3.2.7 J7, Component Video, RCA Jack - Red
J7 is an RCA jack used to provide the Red component video output from theTHS7360 driver, U4, pin 12, SF3_OUT. The pinout on this connector is shown in thefigure below.
WARNING: Do NOT plug into this connector with the power on.
3.2.8 J8, Disk Drive Power Connector
Connector J8 provides power for a hard disk drive. This is the standard connector usedon a personal computer. The signals on this connector are shown in the table below.
Table 4: J8, Disk Driver Power Connector
Pin # Signal Name
1 EVM_12V, +12 volts
2,3 Ground
4 EVM_5V0, +5 volts
6,7,8,9 No connect
Pin 2, Shield (ground)
Pin 1, Signal output (blue)
Figure 3-6, J6, Component Video Out - Blue
Pin 2, Shield (ground)
Pin 1, Signal output (red)
Figure 3-7, J7, Component Video Out - Red
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3.2.9 J9, SCART21 Connector
Connector J9 is a SCART21 video output connector. The signals on this connectorare shown in the table below.
Table 5: J9, SCART21 Connector
Pin # Signal Name Pin # Signal Name
1 SCART_AUDIO_OUT_R
2 No connect
3 SCART_AUDIO_OUT_L
4 Ground
5 Ground
6 No connect
7 U8, Pin 13, CH2_OUT
8 No connect
9 Ground
10 No connect
11 U8, Pin 14, CH1_OUT
12 No connect
13 Ground
14 Ground
15 U8, Pin 12, CH3_OUT
16 U8, Pin 11, CH4_OUT
17 Ground
18 No connect
19 SCART_COMPOSITE
20 No connect
21 Ground
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3.2.10 J10, Ethernet Connector
Connector J10 is an Ethernet connector that uses differential signals. The signalson this connector are shown below.
3.2.11 J11, SATA Header
J11 is a 9 pin SATA disk interface header. There are 2 pair of differential signals tointerface to the processor, U31. This signals on this connector are shown below.
Table 6: J10, Ethernet Connector
Pins Signal
1 Ground
2 PHY_VDD_25V
3 TRD[3]P
4 TRD[3]N
5 TRD[2]P
6 TRD[2]N
7 TRD[1]P
8 TRD[1]N
9 TRD[0]P
10 TRD[0]N
11 Earth Ground
12 Earth Ground
D1 ENET_LED_LINK
D2 Ground
D3 ENET_LED_RX
D4 EVM_3V3
Table 7: J11, SATA Header
Pins Signal
1 Ground
2 CON.SATA_TXP1, U31, Pin V33
3 CON.SATA_TXN1, U31, Pin U33
4 Ground
5 CON.SATA_RXN1, U31, Pin V35
6 CON.SATA_RXP1, U31, Pin W35
7 Ground
8 No connect
9 No connect
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3.2.12 J12, SATA Header
J12 is a 9 pin SATA disk interface header. There are 2 pair of differential signals tointerface to the processor, U31. This signals on this connector are shown below.
Table 8: J12, SATA Header
Pins Signal
1 Ground
2 CON.SATA_TXP0, U31, Pin T32
3 CON.SATA_TXN0, U31, Pin T31
4 Ground
5 CON.SATA_RXN0, U31, Pin V37
6 CON.SATA_RXP0, U31, Pin V36
7 Ground
8 No connect
9 No connect
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3.2.13 J13-1/13-2, USB-A Connectors
Connector J13-1, J13-2 are stacked USB connectors. The J13-1 connector is the lowerconnector in the stacked pair. The signals on each of these connectors are shown inthe tables below.
Table 9: J13-1, USB-A Connector
Pin Name Signal
MHX1/MH1 SHIELD USB0
VBUS/A1 USB0_VBUS_CONN
D-/A2 USB0_DM
D+/A3 USB0_DP
GND/A4 Ground
MH2 SHIELD USB0
Table 10: J13-2, USB-A Connector
Pin Name Signal
MHX1/MH3 SHIELD USB1
VBUS/B1 USB1_VBUS_CONN
D-/B2 USB1_DM
D+/B3 USB1_DP
GND/B4 Ground
MHX2/MH4 SHIELD USB1
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3.2.14 J14, MSP430 Programming Header
J14 is a 2 x 7 double row header used to program the MSP430 microcontroller, U38.This header is only to be used at the factory. The layout of this header is shown in thefigure below.
The signals on the pins of this connector are shown bin the table below.
Table 11: J14, MSP430 Programming Header
Pin # Signal Pin # Signal
1 430_TDO/TDI 2 No connect
3 No connect 4 EVM_3V3
5 No connect 6 No connect
7 MSP430_TCK 8 No connect
9 Ground 10 No connect
11 No connect 12 No connect
13 No connect 14 No connect
Header Dimensions
Pin-to-Pin spacing, 0.100 in. (X,Y)Pin width, 0.025-in. square post
Pin length, 0.235-in. nominal
Figure 3-8, J14, MSP430 Programming Header
1 2J1
4
MS
P43
0 JT
AG
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3-14 C6A816x/AM389x EVM Technical Reference
3.2.15 J15, CTI JTAG Interface
Connector J15 is a compact 20 pin TI JTAG header. The signals on the pins of thisconnector are shown in the table below.
Table 12: J15, CTI JTAG Interface
Pin # Signal Pin # Signal
1 TMS 2 TRSTn
3 TDI 4 Ground
5 EVM_3V3 6 No connect (key)
7 TDO 8 Ground
9 RTCK 10 Ground
11 TCK 12 Ground
13 EMU0 14 EMU1
15 EMU_RSTn 16 Ground
17 EMU2 18 EMU3
19 EMU4 20 Ground
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3.2.16 J16, VLYNQ/Transport Connector
Connector J16 is the VLYNQ/Transport interface located on the bottom side of theboard. The signals on this connector are shown in the table below.
Table 13: J16, VLYNQ/Transport Connector
Pin Signal Pin Signal
2 TSI3_PACVAL 1 TSI6_PACERR
4 Ground 3 Ground
6 TSI4_DCLK 5 TSI2_PACERR
8 TSI3_DATA 7 TSI0_PACVAL
10 Ground 9 Ground
12 TSI2_DCLK 11 TSI2_PACVAL
14 TSI2_DATA 13 TSI0_PACERR
16 Ground 15 Ground
18 TSI6_BYTSTRT 17 TSI0_DCLK
20 TSI6_PACVAL 19 TSO0_DCLK
22 Ground 21 Ground
24 TSI4_PACERR 23 TSI0_BYTSTRT
26 TSI4_BYTSTRT 25 TSO0_DATA
28 Ground 27 Ground
30 TSI3_PACERR 29 TSO0_BYTSTRT
32 VLYNQ_RXD1 31 TSO0_PACERR
34 Ground 33 Ground
36 VLYNQ_TXD1 35 VLYNQ_SCRUN
38 TSO1_PACERR 37 TSO0_PACVAL
40 Ground 39 Ground
42 VLYNQ_TXD3 41 VLYNQ_TXD2
44 VLYNQ_RXD2 43 VLYNQ_CLOCK
46 Ground 45 Ground
48 TSI4_PACVAL 47 TSI1_PACERR
50 VLYNQ_RXD3 49 TSI3_DCLK
52 Ground 51 Ground
54 VLYNQ_TXD0 53 VLYNQ_RXD0
56 No connect 55 No connect
58 Ground 57 Ground
60 No connect 59 No connect
62 Ground 61 Ground
64 Ground 63 Ground
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3.2.17 J17, Video/Transport Connector
Connector J17 is the Video/Transport interface located on the bottom side of theboard. This connector is in two sections. The signals on each section of this connectorare shown in the tables below.
Table 14: J17, Video/Transport Connector, Section 1
Pin Signal Pin Signal
2 VIN0_D0 1 No connect
4 Ground 3 Ground
6 VIN0_D2 5 No connect
8 VIN0_D9 7 VIN0_CLK1
10 Ground 9 Ground
12 VOUT_G_Y_YC2 11 VIN0_D1
14 VOUT_G_Y_YC6 13 VIN0_D4
16 Ground 15 Ground
18 VOUT_R_CR4 17 VIN0_D11
20 VIN0_D6 19 VIN0_D5
22 Ground 21 Ground
24 VIN0_D8 23 VIN0_D12
26 VIN0_D3 25 VIN0_D10
28 Ground 27 Ground
30 VIN0_D7 29 VIN0_D14
32 VOUT0_G_Y_YC4 31 VIN0_D13
34 Ground 33 Ground
36 VOUT0_B_CB_C8 35 VIN0_D15
38 VOUT0_G_Y_YC5 37 VOUT0_CLK
40 Ground 39 Ground
42 VOUT0_B_CB_C6 41 VOUT0_G_Y_YC8
44 VOUT0_B_CB_C5 43 VOUT0_G_Y_YC7
46 Ground 45 Ground
48 EVM_12V 47 EVM_3V3
50 EVM_12V 49 EVM_3V3
52 Ground 51 Ground
54 EVM_12V 53 EVM_5V0
56 EVM_12V 55 EVM_5V0
58 Ground 57 Ground
60 VOUT0_B_CB_C3 59 VOUT0_B_CB_C9
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Table 15: J17, Video/Transport Connector, Section 2
Pin Signal Pin Signal
62 VOUT0_B_CB_C7 61 VOUT0_R_CR2
64 Ground 63 Ground
66 VOUT0_G_Y_YC3 65 VOUT0_R_CR6
68 VOUT0_G_Y_YC9 67 VOUT0_R_CR5
70 Ground 69 Ground
72 VIN0_CLK0 71 VOUT0_R_CR9
74 VOUT0_B_CB_C4 73 TSI5_BYTSTRT
76 Ground 75 Ground
78 VOUT0_B_CB_C2 77 TSI5_PACERR
80 VOUT0_R_CR3 79 TSI7_PACERR
82 Ground 81 Ground
84 TSI5_DATA 83 TSO1_DATA
86 TSI5_PACVAL 85 TSI7_PACVAL
88 Ground 87 Ground
90 TSI1_PACVAL 89 TSO1_PACVAL
92 TSI7_DATA 91 TSO1_DCLK
94 Ground 93 Ground
96 TSI5_DCLK 95 TSI6_DATA
98 VOUT0_R_CR7 97 TSI3_BYTSTRT
100 Ground 99 Ground
102 VOUT0_R_CR8 101 TSI2_BYTSTRT
104 TSI7_BYTSTRT 103 TSI4_DATA
106 Ground 105 Ground
108 TSI1_BYTSTRT 107 TSI0_DATA
110 TSI7_DCLK 109 TSI6_DCLK
112 Ground 111 Ground
114 TSI1_DCLK 113 MSP430_SCL
116 TSI1_DATA 115 MSP430_SDA
118 Ground 117 Ground
120 TSO1_BYTSTRT 119 No connect
122 Ground 121 Ground
124 Ground 123 Ground
126 Ground 125 Ground
128 Ground 127 Ground
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3.2.18 J18, GPMC Expansion Connector
Connector J18 is the GPMC expansion connector located on the bottom side of theboard. This connector is in two sections. The signals on each section of this connectorare shown in the tables below.
Table 16: J18, GPMC Expansion Connector, Section 1
Pin Signal Pin Signal
2 MSP430_SCL 1 No connect
4 Ground 3 Ground
6 MSP430_SDA 5 GPMC_CS3
8 No connect 7 GPMC_CS0
10 Ground 9 Ground
12 No connect 11 GPMC_CS2
14 No connect 13 GPMC_CS1
16 Ground 15 Ground
18 GPMC_CS4 17 GPMC_WEN
20 GPMC_A8 19 GPMC_CS5
22 Ground 21 Ground
24 GPMC_A7 23 GPMC_OEN_REN
26 GPMC_A3 25 GPMC_BE1N
28 Ground 27 Ground
30 GPMC_A2 29 GPMC_A5
32 GPMC_A1 31 GPMC_A4
34 Ground 33 Ground
36 GPMC_A0 35 GPMC_A9
38 GPMC_DIR 37 GPMC_A10
40 Ground 39 Ground
42 GPMC_WAIT 41 GPMC_A11
44 GPMC_WPN 43 GPMC_D0
46 Ground 45 Ground
48 EVM_12V 47 EVM_3V3
50 EVM_12V 49 EVM_3V3
52 Ground 51 Ground
54 EVM_12V 53 EVM_5V0
56 EVM_12V 55 EVM_5V0
58 Ground 57 Ground
60 GPMC_A6 59 GPMC_D2
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Table 17: J18, GPMC Expansion Connector, Section 2
Pin Signal Pin Signal
62 GPMC_BE0N_CLE 61 GPMC_D5
64 Ground 63 Ground
66 GPMC_D4 65 GPMC_D7
68 GPMC_D3 67 GPMC_D9
70 Ground 69 Ground
72 GPMC_D1 71 GPMC_D12
74 GPMC_A27 73 GPMC_D11
76 Ground 75 Ground
78 GPMC_ADVN_ALE 77 GPMC_D10
80 GPMC_D6 79 GPMC_CLK
82 Ground 81 Ground
84 GPMC_D8 83 GPMC_D15
86 GPMC_D13 85 POWER_GOOD2
88 Ground 87 Ground
90 No connect 89 No connect
92 No connect 91 No connect
94 Ground 93 Ground
96 No connect 95 No connect
98 No connect 97 No connect
100 Ground 99 Ground
102 GPMC_D14 101 SPI_CS0
104 No connect 103 SPI_CLK
106 Ground 105 Ground
108 SPI_MOSI 107 SPI_CS3
110 SOI_MISO 109 SPI_CS1
112 Ground 111 Ground
114 UART0_RXD 113 UART1_RXD
116 UART0_RTSN 115 UART1_TXD
118 Ground 117 Ground
120 UART0_TXD 119 UART2_RXD
122 Ground 121 Ground
124 Ground 123 Ground
126 Ground 125 Ground
128 Ground 127 Ground
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3.2.19 J19, MCASP/XXX Expansion
Connector J19 is the MCASP/XXX expansion connector located on the bottom side ofthe board. This connector is in two sections. The signals on each section of thisconnector are shown in the tables below.
Table 18: J19, MCASP/XXX Expansion Connector, Section 1
Pin Signal Pin Signal
2 IIC1_SDA 1 PM_I2C_SCL
4 Ground 3 Ground
6 IIC0_SCL 5 PM_I2C_SDA
8 IIC0_SDA 7 EXP_MCA2_AXR0
10 Ground 9 Ground
12 IIC0_SCL 11 EXP_MCA2_AMUTE
14 No connect 13 EXP_MCA2_AXR1
16 Ground 15 Ground
18 MCA0_AMUTE 17 EXP_MCA2_ACLKHX
20 MCA0_AXR3 19 EXP_MCA2_ACLKX
22 Ground 21 Ground
24 MCA0_AXR2 23 EXP_MCA2_AFSR
26 MCA1_AMUTE 25 EXP_MCA2_AFSX
28 Ground 27 Ground
30 MCA0_ACLKHX 29 EXP_MCA2_AHCLKR
32 MCA0_AFSR 31 EXP_MCA2_ACLKR
34 Ground 33 Ground
36 MCA0_ACLKX 35 MCA1_AXR1
38 MCA0_AFSX 37 MCA1_AXR0
40 Ground 39 Ground
42 MCA1_AFSX 41 MTSO_DATA1
44 MCA0_AXR1 43 MTSI_DATA5
46 Ground 45 Ground
48 EVM_12V 47 EVM_3V3
50 EVM_12V 49 EVM_3V3
52 Ground 51 Ground
54 EVM_12V 53 EVM_5V0
56 EVM_12V 55 EVM_5V0
58 Ground 57 Ground
60 MTSI_DATA7 59 MCA1_ACLKHX
Spectrum Digital, Inc
3-21
Table 19: J19, MCASP/XXX Expansion Connector, Section 2
Pin Signal Pin Signal
62 MCA0_AXR5 61 MDIO_MDIO
64 Ground 63 Ground
66 MCA0_AXR4 65 MDIO_MDCLK
68 MCA0_AXR0 67 MCA1_ACLKX
70 Ground 69 Ground
72 MCA1_ACLKR 71 MTSI_DCLK
74 MCA1_AHCLKR 73 MTSI_DATA0
76 Ground 75 Ground
78 MCA1_AFSR 77 MTSI_DATA2
80 MTSO_DATA0 79 MTSI_DATA1
82 Ground 81 Ground
84 MTSO_DATA6 83 MTSI_DATA4
86 MTCL_SDI 85 MTSI_DATA3
88 Ground 87 Ground
90 MTSO_DATA7 89 MTSI_DATA6
92 MCARD_MDET 91 MTSI_BYTSTRT
94 Ground 93 Ground
96 MTCL_SCTL 95 MTSO_DCLK
98 MCARD_CD2 97 MTSO_DATA2
100 Ground 99 Ground
102 MCARD_CD1 101 MTSO_DATA3
104 MCA0_ACLKR 103 MTSO_DATA5
106 Ground 105 Ground
108 MCA0_AHCLKR 107 MTSO_DATA4
110 MCARD_VS1 109 MCTL_SCLK
112 Ground 111 Ground
114 MTCL_SDO 113 MTSO_BYTSTRT
116 MCARD_VCCEN 115 MCARD_VPPEN
118 Ground 117 Ground
120 MCARD_VS2 119 MCARD_RESET
122 Ground 121 Ground
124 Ground 123 Ground
126 Ground 125 Ground
128 Ground 127 Ground
Spectrum Digital, Inc
3-22 C6A816x/AM389x EVM Technical Reference
3.2.20 J20, Serial Expansion Connector
Connector J20 is the serial expansion connector located on the bottom side of theboard. The signals on this connector are shown in the table below.
Table 20: J20, Serial Expansion Connector
Pin Signal Pin Signal
2 UART0_CTSN 1 UART1_RTSN
4 Ground 3 Ground
6 UART0_DTRN 5 UART2_TXD
8 UART0_DCDN 7 SC0_RST
10 Ground 9 Ground
12 UART0_DSRN 11 SC1_RST
14 UART0_RIN 13 SC1_DET
16 Ground 15 Ground
18 SPI_SCS2 17 TIM6_OUT
20 UART1_CTSN 19 SC1_VPPEN
22 Ground 21 Ground
24 SC0_VPPEN 23 TIM7_OUT
26 SC0_VCCEN 25 SC1_VCCEN
28 Ground 27 Ground
30 SC1_CLK 29 CLK_OUT
32 SC0_C4 31 GP0_IO5
34 Ground 33 Ground
36 UART2_RTSN 35 TIM4_OUT
38 UART2_CTSN 37 No connect
40 Ground 39 Ground
42 SC0_DET 41 No connect
44 RSTOUTn 43 No connect
46 Ground 45 Ground
48 SC0_CLK 47 No connect
50 SC1_C4 49 GP0_IO7
52 Ground 51 Ground
54 SC0_DATA 53 GP0_IO4
56 SC1_DATA 55 EXP_WARM_RESET
58 Ground 57 Ground
60 GP0_IO6 59 TIM5_OUT
62 Ground 61 Ground
64 Ground 63 Ground
Spectrum Digital, Inc
3-23
3.2.21 P1, S-Video Connector
Connector P1 is a four pin mini din S-video connector which interfaces to the THS7360.This connector brings out a video signal (LUMA). Do NOT plug into this connector withthe power on. The figure below shows this connector as viewed from the card edge.
Table 21: P1, S-Video Connector
Pin # Signal Name
1,2,5,6 Ground
3 S-VIDEO_LUMA, U4, Pin 19, SD2_OUT
4 U4, Pin 18, SD3_OUT
7 No connect
Pin 4
Pin 2
Pin 3
Pin 1
Figure 3-9, P1, Front View, Mini Din Connector
Spectrum Digital, Inc
3-24 C6A816x/AM389x EVM Technical Reference
3.2.22 P2, Headphone Out
The P2 connector is a 3.5 mm. stereo headphone output from the TVL320AIC3106 onthe EVM. The signals on the mating plug are shown in the figure below The signalspresent on this connector are defined in the following table.
3.2.23 P3, Line Out
The audio line out connector P3, is a stereo output. The output connector is a 3.5 mmstereo jack. The signals on the mating plug are shown in the figure below.
Table 22: P2, Headphone Out Interface
Pin # AIC3106 Signal
1(sleeve) GND_AC
2(ring U2, Pin 18, HPLOUT
3(tip) U2, Pin 23,HPROUT
4 NC
Table 23: P3, Audio Line Out Stereo Jack
Pin # AIC3106 Signal
1 (sleeve) GND_AC
2 (ring) U2, Pin 29, LEFT_LO+
3 (tip) U2, Pin 31, RIGHT_LO+
4 (sleeve) NC
Left Line Out (tip)
Ground (sleeve)
Figure 3-10, P2, Headphone Out Stereo Jack
Right Line Out (ring)
Left Line Out (tip)
Ground (sleeve)
Figure 3-11, P3, Audio Line Out Stereo Jack
Right Line Out (ring)
Spectrum Digital, Inc
3-25
3.2.24 P4, Line In
Connector P4 is an stereo audio line input. The input connector is a 3.5 mm stereo jack.The signals on the mating plug are shown in the figure below.
3.2.25 P5, Mic In
Connector P5 is an stereo microphone line input. The input connector is a 3.5 mmstereo jack. The signals on the mating plug are shown in the figure below.
Table 24: P4, Line In Interface
Pin # AIC3106 Signal
1 (sleeve) GND_AC
2 (ring) U2, Pin 3, LINE1L+
3 (tip) U2, Pin 5, LINE1R+
4 (sleeve) GND_AC
Table 25: P5, Microphone In Interface
Pin # AIC3106 Signal
1 (sleeve) GND_AC
2 (ring) U2, Pin 11,14, MIC3L/MIC3R
3 (tip) U2, Pin 11/14, MIC3L/MIC3R
4 (sleeve) GND_AC
Right Line In (tip)
Ground (sleeve)
Figure 3-12, P4, Audio Line In Stereo Jack
Left Line In (ring)
Right Line In (tip)
Ground (sleeve)
Figure 3-13, P5, Microphone In Stereo Jack
Left Line In (ring)
Spectrum Digital, Inc
3-26 C6A816x/AM389x EVM Technical Reference
3.2.26 P6, HDMI Connector
Connector P6 provides an HDMI interface for the processor card. The signals on thisconnector are shown below.
Table 26: P6, HDMI Connector
Pins Signal
1 HDMI_TMDSOP2
2 Ground
3 HDMI_TMDSDN2
4 HDMI_TMDSDP1
5 Ground
6 HDMI_TMDSDN1
7 HDMI_TMDSDP0
8 Ground
9 HDMI_TMDSDN0
10 HDMI_TMDSCLKP
11 Ground
12 HDMI_TMDSCLKN
13 U1, Pin 23,CE_REMOTE_OUT
14 No connect
15 U1, Pin 22, DDC_CLK_OUT
16 U1, Pin 21, DDC_DAT_OUT
17 Ground
18 U1, Pin 38, 5V_OUT
19 U1, Pin 20, HOTPLUG_DET_OUT
MTG1 Ground
MTG2 Ground
MTG3 Ground
MTG4 Ground
Spectrum Digital, Inc
3-27
3.2.27 P7, DB9 Connector
The P7 connector is a 9 pin male D-connector which provides a UART interface to theEVM. This connector interfaces to the MAX 3221 RS-232 line driver (U39) and islocated on the top side of the board. A view of the connector from the card edge isshown in the figure below. The signals present on this connector are defined in thefollowing table.
The pin numbers and their corresponding signals are shown in the table below. Thiscorresponds to a standard dual row to DB-9 connector interface used on personalcomputers.
Table 27: P7, RS-232 Pinout
Pin # Signal Name
1 NC
2 R_IN, Rx Data
3 T_OUT, Tx Data
4 NC
5 GND
6 NC
7 Pin 8
8 Pin 7
9 NC
Figure 3-14, P7, DB9 Male Connector
6789
12345
Spectrum Digital, Inc
3-28 C6A816x/AM389x EVM Technical Reference
3.2.28 P8, PCIe Interface
Connector P8 provides a PCIe interface on the processors board. The signals on thisconnector are shown in the table below.
Table 28: P8, PCIe Interface
Pin Signal Pin Signal
B1 EVM_12V A1 Pin B31
B2 EVM_12V A2 EVM_12V
B3 EVM_12V A3 EVM_12V
B4 Ground A4 Ground
B5 No connect A5 Ground
B6 No connect A6 PCI_3V3
B7 Ground A7 No connect
B8 PCI_3V3 A8 PCI_3V3
B9 Ground A9 PCI_3V3
B10 No connect A10 PCI_3V3
B11 No connect A11 U43, Pin 4, U41, Pin 2,EVM_3V3
KEY
B12 No connect A12 Ground
B13 Ground A14 REFCLKp
B14 CON.PCIE_TXP0 A14 REFCLKn
B15 CON.PCIE_TXN0 A15 Ground
B16 Ground A16 CON.PCIE_RXP0
B17 No connect A17 CON.PCIE_RXN0
B18 Ground A18 Ground
B19 CON.PCIE_TXP1 A19 No connect
B20 CON.PCIE_TXN1 A20 Ground
B21 Ground A21 CON.PCIE_RXP1
B22 Ground A22 CON.PCIE_RXN1
B23 No connect A23 Ground
B24 No connect A24 Ground
B25 Ground A25 No connect
B26 Ground A26 No connect
B27 No connect A27 Ground
B28 No connect A28 Ground
B29 Ground A29 No connect
B30 No connect A30 No connect
B31 Pin A1 A31 Ground
B32 Ground A31 No connect
Spectrum Digital, Inc
3-29
3.2.29 P9, SD/MMC Connector
The P92 MMC/SD connector is located on the top side of the board and is used toprovide an interface to the following: MMC+, SD, and MMC. The pinout for the P9connector is shown in the table below.
Table 29: P9, MMC/SD Connector
Pin # Signal
1 MMC_DAT3
2 MMC_CMD
3 Ground
4 U66, Pin 2,3
5 MMC_CLK
6 Ground
7 MMC_DAT0
8 MMC_DAT1
9 MMC_DAT2
10 No connect
11 No connect
12 No connect
13 No connect
14 MMC_SD_WP
15 MMC_SD_CD
16 No connect
17 No connect
18 Ground
19 No connect
20 No connect
21 Ground
22 No connect
23 No connect
24 No connect
25 No connect
26 No connect
27 Ground
28 Ground
Spectrum Digital, Inc
3-30 C6A816x/AM389x EVM Technical Reference
3.2.30 P10, DB9 Connector
The P10 connector is a 9 pin male D-connector which provides a UART interface to theEVM. This connector interfaces to the MAX 3221 RS-232 line driver (U57) and islocated on the top side of the board. A view of the connector from the card edge isshown in the figure below. The signals present on this connector are defined in thefollowing table.
The pin numbers and their corresponding signals are shown in the table below. Thiscorresponds to a standard dual row to DB-9 connector interface used on personalcomputers.
Table 30: P10, RS-232 Pinout
Pin # Signal Name
1 NC
2 R_IN, Rx Data
3 T_OUT, Tx Data
4 NC
5 GND
6 NC
7 Pin 8
8 Pin 7
9 NC
Figure 3-15, P10, DB9 Male Connector
6789
12345
Spectrum Digital, Inc
3-31
3.2.31 P11, Fan Connector
Connector P11 provides power for a 12 volt DC fan. The layout of the connector isshown in the figure below.
The signals on the pins of this connector are shown bin the table below.
Table 31: P11, Fan Connector
Pin # Signal
1 Ground
2 EVM_12V
3 No connect
Header Dimensions
Pin-to-Pin spacing, 0.100 in. (X,Y)Pin width, 0.025-in. square post
Pin length, 0.235-in. nominal
Figure 3-16, P11, Fan Connector
1
P11FAN POWER
Spectrum Digital, Inc
3-32 C6A816x/AM389x EVM Technical Reference
3.3 LEDs
The EVM has six (6) LEDs which are located on the top side of the board. Information regarding the LEDs are shown in the table below.
3.4 Switches
The EVM has six (6) switches. The function of these switches are shown in the tablebelow.
3.4.1 SW1, On/Off Power Switch
Switch SW1 is an on/off toggle switch that allows +12 volts from the J1 connector to beapplied to the board.
Table 32: LEDs
LED # Use Color
DS1 Power LED Green
DS2 USER_LED1 Green
DS3 USER_LED2 Green
DS4 USER_LED3 Green
DS5 USER_LED4 Green
Table 33: Switches
SwitchSchematic
PageFunction Type
SW1 51 On/Off Power Switch Toggle
SW2 27 User Readable Switches 4 Position DIP
SW3 6 Boot Load Select 10 Position DIP
SW4 6 On Board Memory Enable 2 Position DIP
SW5 23 PCI/WDOG Reset Enable 2 Position DIP
SW6 51 Reset Switch Push Button/Momentary
Spectrum Digital, Inc
3-33
3.4.2 SW2, User Readable Switches
Switch SW2 is a 4 position DIP switch that is read via the I2C bus. A board image of theswitch is shown in the figure below.
The table below shows what signal each position appears on.
Table 34: SW3, User Readable 4 Position DIP Switch
Position Signal
1 - 8 USER_SW1
2 - 7 USER_SW2
3 - 6 USER_SW3
4 - 5 USER_SW4
Figure 3-17, SW2, User Readable 4 Position DIP Switch
SW2
4321
USER
Spectrum Digital, Inc
3-34 C6A816x/AM389x EVM Technical Reference
3.4.3 SW3, Boot Mode/Configuration Switch
Switch SW3 is a 10 position DIP switch. Five (5) of the positions are used for selectingthe boot load option. Four (4) positions are used for system configuration. Theremaining switch position is a spare unused position. An image of the switch is shownin the figure below in the as shipped configuration.
The boot mode options are described in the table below.
Table 35: SW3, Boot Mode Select DIP Switch
Position Label Pins Signal
1 BTM0 1-20 BTMODE0
2 BTM1 2-19 BTMODE1
3 BTM2 3-18 BTMODE2
4 BTM3 4-17 BTMODE3
5 BTM4 5-16 BTMODE4
Figure 3-18, SW3, Boot Mode/Configuration Switch
SW3
Raised
1
Actuator
BOOT/CFG
SPARE
CS0WAIT
CS0BW
CS0MUX1
CS0MUX0
BTM4
BTM3
BTM2
BTM1
BTM0
Spectrum Digital, Inc
3-35
The tables below shows the boot mode sources and their respective switch positions.
Table 36: Memory Boot Load Order
BTMODE[4] (Position5)= 1MEMORY BOOTING PREFERRED
BTMODE[3:0]Switch
Position[4:1]First Second Third Fourth
XIP UART EMAC SD 0 0 0 0
XIPWAIT UART EMAC SD 0 0 0 1
NAND NANDI2C SPI UART 0 0 1 0
NAND NANDI2C SD UART 0 0 1 1
NAND NANDI2C SPI EMAC 0 1 0 0
NANDI2C SD EMAC UART 0 1 0 1
SPI SD UART EMAC 0 1 1 0
SD SPI UART EMAC 0 1 1 1
SPI SD PCIE_32 Reserved 1 0 0 0
SPI SD PCIE_32 Reserved 1 0 0 1
Reserved Reserved Reserved Reserved 1 0 1 0
Reserved Reserved Reserved Reserved 1 0 1 1
Reserved Reserved Reserved Reserved 1 1 0 0
Reserved Reserved Reserved Reserved 1 1 0 1
Reserved Reserved Reserved Reserved 1 1 1 0
GP Fast External
BootEMAC UART PCIE_32
1 1 1 1
Spectrum Digital, Inc
3-36 C6A816x/AM389x EVM Technical Reference
The configuration options are described in the table below.
Table 37: Peripheral Boot Load Order
BTMODE[4] (Position5)= 0PERIPHERAL BOOTING PREFERRED
BTMODE[3:0]Switch
Position[4:1]First Second Third Fourth
Reserved Reserved Reserved Reserved 0 0 0 0
UART XIPWAIT SD SPI 0 0 0 1
UART SPI NAND NANDI2C 0 0 1 0
UART SPI XIP SD 0 0 1 1
EMAC SPI NAND NANDI2C 0 1 0 0
Reserved Reserved Reserved Reserved 0 1 0 1
Reserved Reserved Reserved Reserved 0 1 1 0
EMAC SD SPI XIP 0 1 1 1
PCIE_32 Reserved Reserved Reserved 1 0 0 0
PCIE_64 Reserved Reserved Reserved 1 0 0 1
Reserved Reserved Reserved Reserved 1 0 1 0
Reserved Reserved Reserved Reserved 1 0 1 1
Reserved Reserved Reserved Reserved 1 1 0 0
Reserved Reserved Reserved Reserved 1 1 0 1
Reserved Reserved Reserved Reserved 1 1 1 0
GP Fast External
BootUART EMAC PCIE_64
1 1 1 1
Table 38: SW3, Configuration Switches
Position Label Pins Signal State Function
6 CS0MUX0 5-16 CS0MUX0Open
Closed
7 CS0MUX1 6-15 CS0MUX1Open
Closed
8 CS0BW 7-14 CS0BWOpen
Closed
9 CS0WAIT 8-13 CS0WAITOpen
Closed
Spectrum Digital, Inc
3-37
3.4.4 SW4, On Board Memory Enable Switch
Switch SW4 is a 2 position DIP switch which allows the user to select which on boardmemory device to boot from. Only one device should be enabled at any given time. Aboard image of the switch is shown in the figure below in the as shipped configuration.
The table below shows what signal each position appears on.
3.4.5 SW5, PCI/WDOG Reset Enable Switch
Switch SW5 is a 2 position DIP switch which allows the user to select which on boardmemory device to boot from. Only one device should be enabled at any given time. Aboard image of the switch is shown in the figure below.
The table below shows what signal each position appears on.
Table 39: SW4, On Board Memory Enable Switch
Position Signal
1 - 4 NAND_BOOTn
2 - 3 SPI_BOOTn
Table 40: SW5, On Board Memory Enable Switch
Position Signal
1 - 4 OPT_SW1, PCI reset mode IN or OUT
2 - 3 OPT_SW2, WDOG reset enabled
Figure 3-19, SW4, On Board Memory Enable Switch
SW4
NAND/SPI-ON
SPI
NAND
RaisedActuator
Figure 3-20, SW5, On Board Memory Enable Switch
SW5OPTON
PCIe RST
WDOG EN
Pin 1
Spectrum Digital, Inc
3-38 C6A816x/AM389x EVM Technical Reference
3.4.6 SW6, Reset Switch
Switch SW2 is a push button reset switch that will RESET the board.
3.5 Infra-red Receiver
The EVM has an infra-red receiver, U61. This is used to receive signals from atelevision remote control handset. The logic for this is shown on page 29 of theschematics.
Spectrum Digital, Inc
3-39
3.6 Test Points
The EVM has 25 test points which appear on the top of the board. The following figureidentifies the position of each test point. The next table lists each test point and thesignal appearing on that test point.
Figure 3-21, C6A816x/AM389x EVM, Test Points
TP16
TP5 TP13
TP15
TP21
TP26
TP22
TP18
TP6
TP25
TP10
TP23TP19
TP20
TP14TP12TP11TP2 TP9
TP8
TP7
TP4
TP3
TP1
TP17
Spectrum Digital, Inc
3-40 C6A816x/AM389x EVM Technical Reference
Table 41: C6A816x/AM389x EVM Test Points
Test Point #
SchematicPage
Signal
TP1 51 Ground
TP2 51 EVM_12V
TP3 36 U2, Pin 27, MONO_LO+
TP4 36 U2, Pin 28, MONO_LO-
TP5 51 Ground
TP6 51 Ground
TP7 50 U5, Pin 1, RESET, EVM_3V3
TP8 50 U10, Pin 7, SW, 1V8_DIGITAL
TP9 50 U10, Pin 5, PGn, EVM_5V0
TP10 50 U10, Pin 14, VDLO1, 1V8_ANALOG
TP11 50 U10, Pin 17, VLDO2, 0V9_A
TP12 49 EVM_1V0_AVS
TP13 47 Ground
TP14 49 EVM_1V0_AVS
TP15 13 U30, Pin 23, OSCOUT
TP16 51 Ground
TP17 51 Ground
TP18 49 Ground
TP19 47 U33, Pin 14, PWRGRD
TP20 47 U33, Pin 9, SS/TR
TP21 24 Ground
TP22 24 U56, Pin 9, SS/TR
TP23 51 Ground
TP25 51 Ground
TP26 51 Ground
A-1
Appendix A
Schematics
This appendix contains the schematics for the C6A816x/AM389x EVM.
Spectrum Digital, Inc
A-2 C6A816x/AM389x EVM Technical Reference
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
Siz
e:
Da
te:
DW
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OR
evi
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Sh
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of
Titl
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Pa
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nts
:
C
SP
EC
TR
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DIG
ITA
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CO
RP
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5138
32-0
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y, N
ove
mbe
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3, 2
01
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52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
TIT
LE
PA
GE
REV
ENGR
2
REVISION STATUS OF SHEETS
111
SH
DATE
14
12
13
DATE
ENGR-MGR
MFG
7
DWN
DATE
8
DATE
10
SH
DATE
CHK
RLSE
APPLICATION
REV
35
NEXT ASSY
DATE
6
DATE
9
QA
USED ON
4
15
AA
AA
A
AA
AA
R.R.P.
T.W.K.
R.R.P.
R.R.P.
C.M.D.
R.R.P.
R.R.P.
02/15/2010
16
REV
SH
A
C
A
AA
AA
02/15/2010
02/15/2010
02/15/2010
02/15/2010
02/15/2010
02/15/2010
SH
SH
SH
REV
REV
AA
AA
AAA
AA
AA
AA
AA
AA
A
A
AA
A AAA
A A
A AA
AAA
AA
REV
21
31
41
51
17
18
19
20
27
28
29
30
22
23
24
25
26
47
48
49
50
42
43
44
45
46
37
38
39
40
32
33
34
35
36
26) I2C EEPROM
27) I2C EXPANDER
28) RS232 INTERFACE
29) IR RECIEVER
30) SD/MMC CONNECTOR
31) SPI EEPROM
32) NAND FLASH
33) ETHERNET PHY
34) ETHERNET POWER
35) ETHERNET CONNECTOR
36) AUDIO CODEC TLV320AIC3106
37) ANALOG VIDEO OUT
38) SCART ANALOG VIDEO OUT
39) VIDEO PORT/TRANSPORT EXPANSION CONNECTOR
40) VLYNQ/TRANSPORT EXPANSION CONNECTOR
41) GPMC EXPANSION CONNECTOR
42) SERIAL I/O EXPANSION CONNECTOR
43) MCASP EXPANSION CONNECTOR
44) POWER MONITORS
45) POWER MONITOR CPU
46) POWER 5V0,3V3,1V0_CONN
47) POWER 1V5/1V8 MEMORY
48) POWER 1V5 ALT
49) POWER 1V0 AVS CORE
50) POWER 0V9/1V8_ANALOG/1V8_DIGITAL
51) POWER IN
52) POWER SEQUENCING
53) REVISIONS
POWER DOMAINS
EVM_12V0 12 VOLT INPUT FROM EXTERNAL POWER SUPPLY
EVM_5V0 5.0 VOLT OUTPUT FROM TPS65232
EVM_3V3 3.3 VOLT OUTPUT FROM TPS65232
EVM_1V8_A 1.8 VOLT ANALOG LDO OUTPUT FROM TPS65001
EVM_1V8_D 1.8 VOLT DIGITAL OUTPUT FROM TPS65001
EVM_1V5 1.5 /1.8 VOLT OUTPUT FROM TPS54620
ALT_EVM_1V5 1.5 /1.8 VOLT OUTPUT FOR NON-MEMORY INTERFACE
EVM_1V0_AVS 1.0 VOLT CORE FROM TPS40041
EVM_1V0_CONN 1.0 VOLT NON-CORE FROM TPS65232
EVM_0V9 0.9 VOLT OUTPUT FROM TPS65001
SEE LAST PAGE OF SCHEMATIC FOR REVISION
DESCRIPTION
REV
APPROVED
DATE
08/01/2010
RRP
B
HEX BASE ( RJ )
DEVICE
I2C1 ADDRESS MAP
SHEET
PCF8575
RJ - Right Justified
BASE BINARY
SCHEMATIC
CONTENTS
01) TITLE PAGE
02) NETRA MCASP'S
03) NETRA SERIAL I/O
04) NETRA ETHERNET INTERFACE
05) NETRA USB INTERFACE
06) NETRA GPMC
07) NETRA DDR0 EMIF
08) NETRA DDR1 EMIF
09) NETRA ANALOG VIDEO
10) NETRA VIDEO PORT/TRANSPORT LAYER
11) NETRA HDMI INTERFACE
12) NETRA SATA/PCIe
13) SERDES CLOCKS
14) NETRA JTAG
15) NETRA CLOCKS
16) NETRA POWER 1
17) NETRA POWER 2
18) NETRA POWER 3
19) NETRA GROUND PINS
20) DECOUPLING CAPS
21) DDR3/DDR2 EMIFA BANK DIMM
22) DDR3/DDR2 EMIFB BANK DIMM
23) PCIe INTERFACE CONNECTOR
24) PCIe 3V3 POWER
25) USB HOST INTERFACE CONNECTORS
HEX BASE ( RJ )
DEVICE
I2C0 ADDRESS MAP
SHEET
PCF8575
BASE BINARY
TLV320AIC3106
I2C EEPROM
RJ - Right Justified
27
27
31
36
52
53
BB
Spectrum Digital, Inc
A-3
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
MC
A0_
AX
R4
MC
A0_
AX
R3
MC
A0_
AX
R2
MC
A0_
AX
R1
CP
U.M
CA
0_A
HC
LK
XC
PU
.MC
A0
_A
HC
LK
RC
PU
.MC
A0
_A
CL
KR
MC
A0
_A
FS
R
MC
A0_
AM
UT
E
MC
A0_
AX
R5
MC
A0
_A
CL
KR
MC
A0_
AH
CLK
XM
CA
0_
AH
CL
KR
MC
A0_
AF
SX
CP
U.M
CA
1_A
HC
LK
XC
PU
.MC
A1
_A
HC
LK
RC
PU
.MC
A1
_A
CL
KR
CP
U.M
CA
1_A
CL
KX
MC
A1
_A
FS
R
MC
A1_
AM
UT
E
MC
A1
_A
CLK
R
MC
A1
_AH
CLK
XM
CA
1_
AH
CL
KR
MC
A1_
AX
R0
MC
A1_
AC
LKX
MC
A1_
AF
SX
CP
U.M
CA
2_A
CL
KH
XC
PU
.MC
A2
_A
HC
LK
RC
PU
.MC
A2
_A
CL
KR
EX
P_
MC
A2
_AF
SR
EX
P_M
CA
2_A
HC
LK
R
MC
A1_
AX
R1
MC
A2_
AF
SX
MC
AR
D_C
D1
MC
AR
D_C
D2
MC
AR
D_
MD
ET
MC
AR
D_R
ES
ET
MC
AR
D_
VC
CE
N
MC
AR
D_
VP
PE
N
MC
AR
D_V
S1
MC
AR
D_V
S2
MC
TL_
SC
TL
MC
TL_
SD
I
MC
TL
_SD
O
MC
TL
_SC
LK
MT
SI_
DC
LK
MT
SI_
DA
TA
1
MT
SI_
BY
TS
TR
T
MT
SI_
DA
TA
2
MT
SI_
DA
TA
4
MT
SI_
DA
TA
6
MT
SI_
DA
TA
0
MT
SI_
DA
TA
5
MT
SI_
DA
TA
7
MT
SI_
DA
TA
3
MT
SO
_DC
LK
MT
SO
_D
AT
A1
MT
SO
_B
YT
ST
RT
MT
SO
_D
AT
A2
MT
SO
_D
AT
A4
MT
SO
_D
AT
A6
MT
SO
_D
AT
A0
MT
SO
_D
AT
A5
MT
SO
_D
AT
A7
MT
SO
_D
AT
A3
EX
P_M
CA
2_A
CLK
R
MC
A2_
AX
R0
EX
P_M
CA
2_A
MU
TE
MC
A2_
AC
LKX
CP
U.M
CA
2_A
CL
KXM
CA
0_A
XR
0
CP
U.M
CA
0_A
CL
KX
MC
A0_
AC
LK
X
MC
A2
_AC
LK
HX
EX
P_M
CA
2_A
CL
KX
EX
P_M
CA
2_A
XR
0
EX
P_M
CA
2_A
FS
X
EX
P_M
CA
2_A
XR
1E
XP
_MC
A2_
AC
LK
HX
MC
A2_
AX
R1
MC
A2
_AF
SX
MC
A2
_AC
LKX
MC
A2
_AC
LKH
XM
CA
2_A
XR
1M
CA
2_A
XR
0
EV
M_3
V3
EV
M_
3V3
EV
M_3
V3
MC
A0_
AX
R1
43
MC
A0_
AX
R2
43
MC
A0_
AX
R3
43
MC
A0_
AX
R4
43
MC
A0_
AX
R5
43
MC
A0_
AH
CL
KX
43M
CA
0_
AH
CL
KR
43M
CA
0_A
CLK
R43
MC
A0_
AC
LK
X43
MC
A0
_AF
SR
43M
CA
0_A
FS
X4
3M
CA
0_A
MU
TE
43
MC
A1_
AX
R0
43
MC
A1_
AH
CL
KX
43M
CA
1_
AH
CL
KR
43M
CA
1_A
CLK
R43
MC
A1_
AC
LK
X43
MC
A1
_AF
SR
43M
CA
1_A
FS
X4
3M
CA
1_A
MU
TE
43
MC
A1_
AX
R1
43
MC
AR
D_
CD
143
MC
AR
D_
CD
243
MC
AR
D_
MD
ET
43
MC
AR
D_
RE
SE
T43
MC
TL_
SC
LK43
MC
AR
D_
VS
243
MC
AR
D_
VS
143M
CA
RD
_V
PP
EN
43
MC
AR
D_
VC
CE
N43
MC
TL_
SC
TL
43
MC
TL
_SD
I43
MC
TL_
SD
O43 M
TS
I_B
YT
ST
RT
43
MT
SI_
DC
LK43
MT
SI_
DA
TA
043
MT
SI_
DA
TA
143
MT
SI_
DA
TA
243
MT
SI_
DA
TA
343
MT
SI_
DA
TA
443
MT
SI_
DA
TA
543
MT
SI_
DA
TA
643
MT
SI_
DA
TA
743
MT
SO
_D
AT
A0
43M
TS
O_
DA
TA
143
MT
SO
_D
AT
A2
43M
TS
O_
DA
TA
343
MT
SO
_D
AT
A4
43M
TS
O_
DA
TA
543
MT
SO
_D
AT
A6
43M
TS
O_
DA
TA
743
MT
SO
_BY
TS
TR
T43
MT
SO
_D
CLK
43
AIC
_E
XP
AN
SIO
N27
MC
A0_
AX
R0
43
EX
P_
MC
A2_
AH
CLK
R43
EX
P_
MC
A2_
AC
LK
R43
EX
P_M
CA
2_A
FS
R43
EX
P_M
CA
2_A
MU
TE
43
EX
P_M
CA
2_A
CLK
X43
EX
P_M
CA
2_A
FS
X43
EX
P_M
CA
2_A
XR
043
EX
P_M
CA
2_A
XR
143
EX
P_M
CA
2_A
CLK
HX
43
B_
AIC
_W
CL
K36
B_
AIC
_D
IN36
B_A
IC_M
CLK
36B
_A
IC_B
CL
K36
B_
AIC
_D
OU
T3
6
EV
M_3
V3
3,5
,6,1
1,1
3,1
4,1
5,1
8,2
1,2
2,2
3,2
4,2
6,2
7,28
,29
,30
,31
,32
,33
,34
,35
,36
,37
,38
,39,
41
,43,
44,4
5,4
6,4
8,4
9,5
0,5
1S
ize
:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L I
NC
OR
PO
RA
TE
D
5138
32-0
001
We
dn
esd
ay,
No
vem
ber
03
, 20
10
252
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
NE
TR
A M
cAS
P/M
CA
RD
MCLK: MCA2_AHCLKX (drive this clock into McASP)
BCLK: MCA2_ACLKX (McASP will drive this into the AIC)
WCLK: MCA2A_FSX (McASP will drive this into the AIC)
DIN: MCA2_AXR[0]
DOUT: MCA2_AXR1[1]
Drive the MCLK into McASP1 Tx.
McASP generates the Tx bit and frame clocks.
Configure McASP such that the Rx section
operates off of the Tx section clocks.
R14
42
21
2
R39
72
21
2
C49
7.1
uF
C5
15
c402
-25
.1u
F
R15
02
21
2
U6
2S
N74
LV
C1
G0
0D
CK
RG
4
1 23
4
5
R39
62
21
2
R4
0522
12
R15
52
21
2
R41
42
21
2
R1
4122
12
R15
22
21
2
R4
0122
12
U6
3
SN
74
CB
TL
V33
84P
W
1OE
1
2OE
13
1A1
3
1A2
4
1A3
7
1A4
8
1A5
11
1B1
2
1B2
5
1B3
6
1B4
9
1B5
10
2A1
14
2A2
17
2A3
18
2A4
21
2A5
22
Vcc
24
GN
D12
2B1
15
2B2
16
2B3
19
2B4
20
2B5
23
NE
TR
A_
3
U3
1-9
MC
A[0
]_A
HC
LKX
AH
31
MC
A[0
]_A
CLK
RA
K28
MC
A[0
]_A
CLK
XA
H30
MC
A[0
]_A
FS
RA
G29
MC
A0_
AF
SX
AJ3
1
MC
A[0
]_A
HC
LKR
AJ2
7
MC
A[0
]_A
MU
TE
AJ3
5
MC
A[0
]_A
XR
[0]
AK
37
MC
A[0
]_A
XR
[1]
AJ3
2
MC
A[0
]_A
XR
[2]/M
CB
_FS
XA
J33
MC
A[0
]_A
XR
[3]/M
CB
_FS
RA
J34
MC
A[0
]_A
XR
[4]/M
CB
_DX
AJ3
6
MC
A[0
]_A
XR
[5]/M
CB
_DR
AJ3
7
MC
A[1
]_A
HC
LKX
AM
37
MC
A[1
]_A
CLK
RA
K36
MC
A[1
]_A
CLK
XA
L36
MC
A[1
]_A
FS
RA
K35
MC
A[1
]_A
FS
XA
K34
MC
A[1
]_A
HC
LKR
AL3
7
MC
A[1
]_A
MU
TE
AK
33
MC
A[1
]_A
XR
[0]
AL3
3
MC
A[1
]_A
XR
[1]
AK
32
MC
A[2
]_A
HC
LKX
/MC
B_C
LKR
AN
36
MC
A[2
]_A
CLK
R/M
CB
_CLK
R/M
CB
_DR
AL3
4
MC
A[2
]_A
CLK
X/M
CB
_CLK
XA
M36
MC
A[2
]_A
FS
R/M
CB
_CLK
X/M
CB
_FS
RA
M35
MC
A[2
]_A
FS
X/M
CB
_CLK
S/M
CB
_FS
XA
N35
MC
A[2
]_A
HC
LKR
/MC
B_C
LKS
AM
34
MC
A[2
]_A
MU
TE
AP
36
MC
A[2
]_A
XR
[0]
AR
36
MC
A[2
]_A
XR
[1]/M
CB
_DX
AR
37
RS
V34
AL2
8
RS
V35
AL2
9
RS
V33
AM
29
RS
V40
AT
28
RS
V38
AR
29
RS
V39
AT
29
RS
V36
AN
29
RS
V37
AP
29
EM
AC
[1]_
TX
CLK
AT
30
EM
AC
[1]_
CO
LA
R30
EM
AC
[1]_
CR
SA
N31
MC
TL_
SD
OA
N30
EM
AC
[1]_
RX
DV
AT
33
EM
AC
[1]_
RX
D[0
]A
T36
EM
AC
[1]_
RX
D[1
]A
T35
EM
AC
[1]_
RX
D[2
]A
U36
EM
AC
[1]_
RX
D[3
]A
T34
EM
AC
[1]_
RX
D[4
]A
U35
EM
AC
[1]_
RX
D[5
]A
R33
EM
AC
[1]_
RX
D[6
]A
U34
EM
AC
[1]_
RX
D[7
]A
P32
EM
AC
[1]_
RX
CLK
AT
37
EM
AC
[1]_
TX
EN
AU
30
EM
AC
[1]_
TX
D[0
]A
P31
EM
AC
[1]_
TX
D[1
]A
R32
EM
AC
[1]_
TX
D[2
]A
T32
EM
AC
[1]_
TX
D[3
]A
U32
EM
AC
[1]_
TX
D[4
]A
U31
EM
AC
[1]_
TX
D[5
]A
T31
EM
AC
[1]_
TX
D[6
]A
P30
EM
AC
[1]_
TX
D[7
]A
M30
EM
AC
[1]_
GM
TC
LKA
U33
R1
3822
12
R41
12
21
2
Spectrum Digital, Inc
A-4 C6A816x/AM389x EVM Technical Reference
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
SP
I_C
S0
SP
I_C
S1
SP
I_C
S2
SP
I_C
S3
TIM
4_O
UT
TIM
5_O
UT
CL
KO
UT
CP
U.C
LK
OU
T
SP
I_M
ISO
SP
I_M
OS
I
SP
I_S
CL
KC
PU
.SP
I_S
CL
K
SC
0_
VC
CE
N
SC
0_
C4
SC
0_
CL
KS
C0
_DA
TA
SC
0_D
ET
SC
0_R
ST
SC
0_
VP
PE
N
SC
1_D
ET
SC
1_
CL
K
SC
1_R
ST
SC
1_
VC
CE
N
SC
1_
VP
PE
N
SC
1_D
AT
A
SC
1_
C4
TIM
6_O
UT
TIM
7_O
UT
MM
C_
CM
DC
PU
.MM
C_C
MD
MM
C_
SD
_W
P
UA
RT
0_
DS
RN
MM
C_
SD
_C
D
UA
RT
0_C
TS
N
UA
RT
0_R
TS
N
UA
RT
0_R
IN
UA
RT
0_R
XD
UA
RT
0_T
XD
UA
RT
2_C
TS
N
UA
RT
2_R
TS
N
MM
C_D
AT
0
MM
C_D
AT
2M
MC
_DA
T3
MM
C_D
AT
1
UA
RT
0_
DC
DN
UA
RT
1_C
TS
N
UA
RT
1_R
TS
N
UA
RT
1_R
XD
UA
RT
1_T
XD
UA
RT
2_R
XD
UA
RT
2_T
XD
MM
C_
CLK
CP
U.M
MC
_C
LK
MM
C_P
OW
UA
RT
0_
DT
RN
EV
M_3
V3
EV
M_3
V3
EV
M_
3V3
SP
I_C
S0
31
,41
SP
I_C
S2
42S
PI_
CS
341
TIM
4_O
UT
42
TIM
5_O
UT
42
CL
KO
UT
42
SP
I_M
ISO
31
,41
SP
I_M
OS
I3
1,4
1
SP
I_S
CL
K3
1,41
SC
0_
VC
CE
N42
SC
0_
C4
42
SC
0_
CLK
42S
C0
_DA
TA
42
SC
0_D
ET
42
SC
0_R
ST
42
SC
0_
VP
PE
N4
2
SC
1_D
ET
42
SC
1_
CLK
42
SC
1_R
ST
42SC
1_
VC
CE
N42
SC
1_
VP
PE
N4
2
SC
1_D
AT
A42
SC
1_
C4
42
TIM
6_O
UT
42
TIM
7_O
UT
42
SP
I_C
S1
41
EV
M_
3V3
2,5
,6,1
1,1
3,1
4,1
5,1
8,2
1,2
2,2
3,2
4,2
6,2
7,2
8,2
9,3
0,3
1,3
2,3
3,34
,35
,36
,37
,38
,39
,41
,43
,44
,45
,46
,48
,49
,50
,51
MM
C_D
AT
230
MM
C_D
AT
330
UA
RT
2_C
TS
N42
UA
RT
2_R
TS
N42
UA
RT
2_R
XD
28,
41
UA
RT
2_T
XD
28
,42
MM
C_D
AT
130
MM
C_D
AT
030
UA
RT
1_C
TS
N42
UA
RT
1_R
TS
N42
UA
RT
1_R
XD
29,
41
UA
RT
1_T
XD
41
UA
RT
0_R
TS
N41
UA
RT
0_
RIN
42
UA
RT
0_R
XD
41
UA
RT
0_T
XD
41
UA
RT
0_
DT
RN
42
UA
RT
0_
DS
RN
42
UA
RT
0_C
TS
N42
UA
RT
0_
DC
DN
42
MM
C_
CLK
30
MM
C_
CM
D30
MM
C_P
OW
30
MM
C_
SD
_WP
30M
MC
_S
D_
CD
30
IIC
0_
SC
L2
6,2
7,3
6,4
3,4
5II
C0
_S
DA
26
,27
,36
,43,
45
IIC
1_
SC
L2
7,4
3II
C1
_S
DA
27
,43
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
03
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
NE
TR
A S
ER
IAL
I/O
R1
6822
12
R14
2.2
K
R1
71
221
2
R2
792
.2K
R1
8522
12
NE
TR
A_3
U31
-4
CLK
OU
TF
1
SD
_CLK
/GP
MC
_A[1
3]/G
P1[
1]U
2
SD
_CM
D/G
PM
C_A
[21]
/GP
1[2]
U3
SD
_DA
T[0
]/GP
MC
_A[2
0]/G
P1[
3]U
1
SD
_DA
T[1
]_S
DIR
Q/G
PM
C_A
[19]
/GP
1[4]
T1
SD
_DA
T[2
]_S
DR
W/G
PM
C_A
[18]
/GP
1[5]
T2
SD
_DA
T[3
]/GP
MC
_A[1
7]/G
P1[
6]T
13
SD
_PO
W/G
PM
C_A
[14]
/GP
1[0]
U4
SD
_SD
WP
/GP
MC
_A[1
5]/G
P1[
8]R
13S
D_S
DC
D/G
PM
C_A
[16]
/GP
1[7]
R5
GP
1[13
]J5
GP
MC
_A[2
6]/G
P1[
11]
J6
GP
MC
_A[2
5]/G
P1[
12]
J7
GP
MC
_A[2
7]/G
P1[
9K
8
GP
MC
_A[2
2]/G
P1[
10]
K2
GP
MC
_A[2
3]/G
P1[
14]
J4
GP
MC
_A[2
4]/G
P1[
15]
J3
GP
0[25
]H
4
GP
MC
_A[1
4]/G
P0[
23]
H5
GP
MC
_A[1
3]/G
P0[
24]
H6
GP
MC
_A[1
6]/G
P0[
21]
J2
GP
MC
_A[1
5]/G
P0[
22]
J1
GP
MC
_A[2
1]/G
P0[
26]
H3
GP
MC
_A[1
2]/G
P0[
27]
H2
SP
I_D
[0]
N11
SP
I_D
[1]
P13
SP
I_S
CLK
R2
SP
I_S
CS
[0]n
R1
SP
I_S
CS
[1]n
/GP
MC
_A[2
3]P
2
SP
I_S
CS
[2]n
/GP
MC
_A[2
2]P
3
SP
I_S
CS
[3]n
/GP
MC
_[A
21]/G
P1[
22]
P1
TIM
4_O
UT
/GP
0[28
]H
33
TIM
5_O
UT
/GP
0[29
]H
34
TIM
6_O
UT
/GP
MC
_A[2
4]/G
P0[
30]
H1
TIM
7_O
UT
/GP
MC
_A[1
2]/G
P0[
31]
G1
UA
RT
0_C
TS
n/G
P1[
28]
N7
UA
RT
0_D
CD
n/G
PM
C_A
[18]
/GP
MC
_A[2
3]/G
P1[
18]
N5
UA
RT
0_D
SR
n/G
PM
C_A
[19]
/GP
MC
_A[2
4]/G
P1[
17]
N4
UA
RT
0_D
TR
n/G
PM
C_A
[20]
/GP
MC
_A[1
2]/G
P1[
16]
N6
UA
RT
0_R
IN/G
PM
C_A
[17]
/GP
MC
_A[2
2]/G
P1[
19]
N3
UA
RT
0_R
TS
n/G
P1[
27]
N9
UA
RT
0_R
XD
N10
UA
RT
0_T
XD
N8
UA
RT
1_C
TS
n/G
PM
C_A
[13]
/GP
MC
_A[1
7]/G
P1[
26]
L3
UA
RT
1_R
TS
n/G
PM
C_A
[14]
/GP
MC
_A[1
8]/G
P1[
25]
M2
UA
RT
1_R
XD
/GP
MC
_A[2
6]/G
PM
C_A
[20]
N1
UA
RT
1_T
XD
/GP
MC
_A[2
5]/G
PM
C_A
[19]
N2
UA
RT
2_C
TS
n/G
PM
C_A
[16]
/GP
MC
_A[2
5]/G
P1[
24]
K7
UA
RT
2_R
TS
n/G
PM
C_A
[15]
/GP
MC
_A[2
6]/G
P1[
23]
L9
UA
RT
2_R
XD
M1
UA
RT
2_T
XD
L2
I2C
[0]_
SC
LN
32
I2C
[0]_
SD
AN
33
I2C
[1]_
SC
LN
34
I2C
[1]_
SD
AN
35
R4
2722
12
R20
2.2
KR
289
2.2
K
Spectrum Digital, Inc
A-5
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
GM
II0_
RX
D2
GM
II0_
RX
D3
GM
II0_
RX
D4
GM
II0_
RX
D5
GM
II0_
RX
D6
GM
II0_
RX
D7
CP
U_G
MII
0_T
XE
N
CP
U_
GM
II0_
TC
LK
CP
U_
GM
II0_
GM
TC
LK
GM
II0
_R
CL
K GM
II0_
CR
SG
MII
0_C
OL
GM
II0_
RX
DV
GM
II0_
RX
ER
MD
IO_
MD
CLK
CP
U_G
MII
0_T
XD
0C
PU
_GM
II0_
TX
D1
CP
U_G
MII
0_T
XD
2C
PU
_GM
II0_
TX
D3
CP
U_G
MII
0_T
XD
4C
PU
_GM
II0_
TX
D5
CP
U_G
MII
0_T
XD
6C
PU
_GM
II0_
TX
D7
GM
II0_T
XD
0
GM
II0_T
XE
N
GM
II0_T
XD
1G
MII0
_TX
D2
GM
II0_
TC
LK
GM
II0_T
XD
3G
MII0
_TX
D4
GM
II0_
GM
TC
LK
GM
II0_T
XD
5
GM
II0_
RX
D0
GM
II0_T
XD
6G
MII0
_TX
D7
GM
II0_
RX
D1
MD
IO_
MD
IO
GM
II0_T
XD
03
3G
MII0
_TX
D1
33
GM
II0_T
XD
23
3G
MII0
_TX
D3
33
GM
II0_T
XD
43
3G
MII0
_TX
D5
33
GM
II0_T
XD
63
3G
MII0
_TX
D7
33
GM
II0_
GM
TC
LK33
GM
II0_
RX
D0
33G
MII
0_R
XD
133
GM
II0_
RX
D2
33G
MII
0_R
XD
333
GM
II0_
RX
D4
33G
MII
0_R
XD
533
GM
II0_
RX
D6
33G
MII
0_R
XD
733
GM
II0
_R
CL
K33
GM
II0_
RX
DV
33G
MII
0_R
XE
R33
GM
II0
_C
RS
33
GM
II0
_CO
L33
MD
IO_
MD
CLK
33,
43
GM
II0_
TC
LK
33
GM
II0_T
XE
N33
MD
IO_
MD
IO3
3,4
3
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L I
NC
OR
PO
RA
TE
D
5138
32-0
001
We
dn
esd
ay,
No
vem
ber
03
, 20
10
452
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
NE
TR
A E
TH
ER
NE
T
R4
21
22
12
R4
17
22
12
NE
TR
A_3
U3
1-1
0
EM
AC
[0]_
CO
LA
B25
EM
AC
[0]_
CR
SA
A25
EM
AC
[0]_
GM
TC
LKA
C37
EM
AC
[0]_
RX
CLK
AE
37
EM
AC
[0]_
RX
D[0
]A
D37
EM
AC
[0]_
RX
D[1
]A
D36
EM
AC
[0]_
RX
D[2
]A
C36
EM
AC
[0]_
RX
D[3
]A
D35
EM
AC
[0]_
RX
D[4
]A
C35
EM
AC
[0]_
RX
D[5
]A
D25
EM
AC
[0]_
RX
D[6
]A
C25
EM
AC
[0]_
RX
D[7
]A
E36
EM
AC
[0]_
RX
DV
AE
35
EM
AC
[0]_
RX
ER
AE
34
EM
AC
[0]_
TX
CLK
AF
37
EM
AC
[0]_
TX
D[0
]A
E33
EM
AC
[0]_
TX
D[1
]A
E32
EM
AC
[0]_
TX
D[2
]A
E31
EM
AC
[0]_
TX
D[3
]A
E30
EM
AC
[0]_
TX
D[4
]A
G28
EM
AC
[0]_
TX
D[5
]A
F36
EM
AC
[0]_
TX
D[6
]A
G36
EM
AC
[0]_
TX
D[7
]A
G35
EM
AC
[0]_
TX
EN
AG
37
MD
IO_M
CLK
AH
37
MD
IO_M
DIO
AH
36
R1
65
22
12
R1
58
22
12
R4
16
22
12
R1
60
22
12
R1
61
22
12
R1
592
21
2
R4
19
22
12
R4
23
22
12
R4
20
22
12
Spectrum Digital, Inc
A-6 C6A816x/AM389x EVM Technical Reference
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
CP
U_
VD
DA
18
US
B
US
B0
_V
BU
S
US
B0
_DM
US
B0
_D
P
US
BB
0_
DR
V_
VB
US
US
B1
_V
BU
S
US
BB
1_
DR
V_
VB
US
US
B1
_DM
US
B1
_D
P
CP
U_
VD
DA
33
US
B
EV
M_3
V3
EV
M_0
V9
EV
M_3
V3
EV
M_0
V9
EV
M_
1V8
_D
EV
M_
1V8
_D
US
B0
_V
BU
S2
5
US
BB
0_
DR
V_
VB
US
25
US
B0_
DM
25U
SB
0_
DP
25
US
B1
_V
BU
S2
5
US
BB
1_
DR
V_
VB
US
25
US
B1_
DM
25U
SB
1_
DP
25
EV
M_3
V3
2,3
,6,1
1,1
3,1
4,1
5,1
8,2
1,2
2,2
3,2
4,2
6,27
,28
,29
,30
,31
,32
,33
,34
,35
,36
,37
,38
,39
,41
,43
,44,
45
,46,
48,
49,
50
,51
EV
M_0
V9
44,5
0
EV
M_1
V8_
D1
5,1
6,4
4,4
7,5
0
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
05
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
NE
TR
A U
SB
DIFFERENTIAL PAIR
90 OHM DIFFERENTIAL
IMPEDANCE
SHORT AND STRAIGHT AS
POSSIBLE,
MINIMUM NUMBER OF VIAS
DIFFERENTIAL PAIR
90 OHM DIFFERENTIAL
IMPEDANCE
SHORT AND STRAIGHT AS
POSSIBLE,
MINIMUM NUMBER OF VIAS
3.3 VOLT
1.8 VOLT
0.9 VOLT
C6
400
.1u
F
NE
TR
A_3
U3
1-1
2
VD
D_U
SB
0_V
BU
SN
36
VD
D_U
SB
1_V
BU
ST
36
RS
V5
T28
US
B0_
DN
P36
US
B0_
DP
P37
US
B0_
DR
VV
BU
SP
35
US
B0_
R1
N37
RS
V6
T27
US
B1_
DN
R36
US
B1_
DP
R37
US
B1_
DR
VV
BU
SR
35
US
B1_
R1
T37
VD
D_U
SB
0_3P
3T
29
VD
D_U
SB
0_3P
3R
29
VD
D_U
SB
1_3P
3T
30
VD
D_U
SB
1_3P
3R
30
VD
D_U
SB
0_1P
8R
25
VD
D_U
SB
1_1P
8T
25
VD
D_U
SB
_0P
9N
27
E6
NF
M2
1P
C4
74
R1
C3
D
13
2
E5
NF
M2
1P
C4
74
R1
C3
D1
3
2
C6
390
.00
1uF
C6
41
1u
FC
642 1
uF
C6
340
.1u
F
R16
910
K 1
%
C6
090
.01
uF
R17
210
K 1
%
C6
11
0.1
uF
C6
10
0.0
01
uF
C6
12
1u
F
Spectrum Digital, Inc
A-7
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
CS
0W
AIT
CS
0WA
IT
BT
MO
DE
0B
TM
OD
E0
BT
MO
DE
1B
TM
OD
E1
BT
MO
DE
2B
TM
OD
E2
CS
0B
WC
S0
BW
BT
MO
DE
3B
TM
OD
E3
BT
MO
DE
4B
TM
OD
E4
CS
0MU
X0
CS
0MU
X0
CS
0MU
X1
CS
0MU
X1
NA
ND
_B
OO
Tn
SP
I_B
OO
Tn
EV
M_3
V3
EV
M_
3V3
EV
M_3
V3
GP
MC
_C
LK41
GP
MC
_BE
0N
_C
LE
32
,41
GP
MC
_BE
1N4
1
GP
MC
_AD
VN
_A
LE3
2,4
1
GP
MC
_ C
S0
32,4
1
GP
MC
_D
IR41
GP
MC
_WE
N3
2,4
1
GP
MC
_A
041
GP
MC
_A
141
GP
MC
_A
241
GP
MC
_A
341
GP
MC
_A
441
GP
MC
_A
541
GP
MC
_A
641
GP
MC
_A
741
GP
MC
_A
841
GP
MC
_A
941
GP
MC
_A
1041
GP
MC
_A
1141
GP
MC
_A
2741
GP
MC
_ C
S1
41
GP
MC
_ C
S2
41
GP
MC
_ C
S3
41
GP
MC
_ C
S4
41
GP
MC
_ C
S5
41
GP
MC
_OE
N_
RE
N32
,41
GP
MC
_WP
N3
2,4
1
NA
ND
_B
OO
Tn
32
SP
I_B
OO
Tn
31
EV
M_
3V3
2,3
,5,1
1,1
3,1
4,1
5,1
8,2
1,2
2,2
3,2
4,2
6,2
7,2
8,2
9,3
0,3
1,32
,33
,34
,35
,36
,37
,38
,39
,41
,43
,44,
45,4
6,4
8,4
9,50
,51
GP
MC
_WA
IT3
2,4
1 VL
YN
Q_
SC
RU
N40
VL
YN
Q_C
LO
CK
40
VLY
NQ
_R
XD
040
VLY
NQ
_R
XD
140
VLY
NQ
_R
XD
240
VLY
NQ
_R
XD
340
VL
YN
Q_
TX
D0
40V
LY
NQ
_T
XD
140
VL
YN
Q_
TX
D2
40V
LY
NQ
_T
XD
340
GP
MC
_D
03
2,4
1G
PM
C_
D1
32
,41
GP
MC
_D
23
2,4
1G
PM
C_
D3
32
,41
GP
MC
_D
43
2,4
1G
PM
C_
D5
32
,41
GP
MC
_D
63
2,4
1G
PM
C_
D7
32
,41
GP
MC
_D
83
2,4
1G
PM
C_
D9
32
,41
GP
MC
_D
10
32,
41G
PM
C_
D1
13
2,41
GP
MC
_D
12
32,
41G
PM
C_
D1
33
2,41
GP
MC
_D
14
32,
41G
PM
C_
D1
53
2,41
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
06
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
NE
TR
A
GP
MC
/VL
YN
Q I
NT
ER
FA
CE
Place Switch by NAND and SPI ROM
ENABLE ON BOARD MEMORIES
GPMC_A2 INTERNAL PULL DOWN
GPMC_A7 INTERNAL PULL DOWN
GPMC_A9 INTERNAL PULL DOWN
GPMC_A8 INTERNAL PULL UP
GPMC_A3 INTERNAL PULL DOWN
GPMC_A4 INTERNAL PULL UP
GPMC_A6 INTERNAL PULL UP
GPMC_A5 INTERNAL PULL DOWN
GPMC_A1 INTERNAL PULL UP
1 2 3 4 5 6 7 8 9 10
SW
3
DIP
_S
WIT
CH
-10
1 2 3 4 5 6 7 8 9 10
20 19 18 17 16 15 14 13 12 11
R8
310
K
R305 10K
R3
311K
R3
521K
R3
161K
R332 10K
R3
271K
R350 10K
R323 10K
R3
361K
R3
401K
R337 3K
SW
4
SW
DIP
-2
1 24 3
R353 3K
R341 10K
NE
TR
A_
3
U3
1-5
GP
MC
_A[0
]/GP
0[8]
AE
6
GP
MC
_A[1
]/GP
0[9]
/BT
MO
DE
[0]
AE
5
GP
MC
_A[1
0]/G
P0[
18]
AD
1
GP
MC
_A[1
1]/G
P0[
19]
AC
2
GP
MC
_A[2
]/GP
0[10
]/BT
MO
DE
[1]
AE
4
GP
MC
_A[2
7]/G
P0[
20]
AC
5
GP
MC
_A[3
]/GP
0[11
]/BT
MO
DE
[2]
AE
3
GP
MC
_A[4
]/GP
0[12
]/BT
MO
DE
[3]
AE
1
GP
MC
_A[5
]/GP
0[13
]/BT
MO
DE
[4]
AE
2
GP
MC
_A[6
]/GP
0[14
]/CS
0MU
X[0
]A
D8
GP
MC
_A[7
]/GP
0[15
]/CS
0MU
X[1
]A
D3
GP
MC
_A[8
]/GP
0[16
]/CS
0BW
AD
4
GP
MC
_A[9
]/GP
0[17
]/CS
0WA
ITA
D2
GP
MC
_AD
V_A
LEA
E10
GP
MC
_BE
0_C
LEA
E11
GP
MC
_BE
1nA
F1
GP
MC
_CLK
/GP
1[29
]V
1
GP
MC
_CS
[0]n
AH
7
GP
MC
_CS
[1]n
AH
1
GP
MC
_CS
[2]n
AH
2
GP
MC
_CS
[3]n
AG
9
GP
MC
_CS
[4]n
/GP
1[21
]A
G3
GP
MC
_CS
[5]n
/GP
MC
_A[1
2]A
G1
GP
MC
_D[0
]A
C1
GP
MC
_D[1
]A
A4
GP
MC
_D[1
0]W
3
GP
MC
_D[1
1]W
1
GP
MC
_D[1
2]W
2
GP
MC
_D[1
3]V
10
GP
MC
_D[1
4]V
3
GP
MC
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V46
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3
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V44
AH
8
R3
041K
R3
221K
R3
491K
R8
21
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R328 3K
R317 3K
R3
081K
R309 10K
Spectrum Digital, Inc
A-8 C6A816x/AM389x EVM Technical Reference
5 5
4 4
3 3
2 2
1 1
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Spectrum Digital, Inc
A-9
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Siz
e:
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G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
08
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
NE
TR
A D
DR
1 I
NT
ER
FA
CE
DIFFERENTIAL PAIRS
NE
TR
A_3
U31
-14
DD
R[1
]_A
[0]
A25
DD
R[1
]_A
[1]
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24
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NC
/VO
UT
[1]_
AV
IDA
T9
VO
UT
[0]_
B_C
B_C
[0]/V
OU
T[1
]_C
[9]/V
IN[1
]B_H
SY
NC
_DE
AR
9
VO
UT
[0]_
R_C
R[0
]/VO
UT
[1]_
C[8
]/VO
UT
[1]_
CLK
AJ1
1
VO
UT
[0]_
G_Y
_YC
[1]/V
OU
T[1
]_F
LD/V
IN[1
]B_F
LDA
U8
VO
UT
[0]_
G_Y
_YC
[0]/V
OU
T[1
]_V
SY
NC
/VIN
[1]B
_VS
YN
CA
P9
VIN
[0]A
_VS
YN
CA
M4
VIN
[0]A
_HS
YN
CA
U5
VO
UT
[1]_
AV
ID/V
IN[1
]B_C
LKA
T4
VIN
[0]A
_DE
AT
3
VIN
[0]A
_FLD
AL4
VO
UT
[0]_
FLD
AL9
VO
UT
[0]_
VS
YN
CA
N9
VO
UT
[0]_
HS
YN
CA
M9
VO
UT
[0]_
R_C
R[1
]A
T8
VO
UT
[0]_
AV
IDA
R8
RS
V30
AL2
RS
V29
AM
2
RS
V28
AP
1
RS
V32
AL1
RS
V31
AK
1
VO
UT
[1]_
Y_Y
C[3
]/VIN
[1]A
_D[1
]A
P7
VO
UT
[1]_
Y_Y
C[2
]/VIN
[1]A
_D[0
]A
U7
VO
UT
[1]_
CLK
/VIN
[1]A
_CLK
AT
7
VO
UT
[1]_
Y_Y
C[5
]/VIN
[1]A
_D[3
]A
J7
VO
UT
[1]_
Y_Y
C[4
]/VIN
[1]A
_D[2
]A
U6
VIN
[0]A
_CLK
AR
14
VIN
[0]B
_CLK
AR
19
VIN
[0]A
_D[0
]A
J19
VIN
[0]A
_D[1
]A
U18
VIN
[0]A
_D[1
0]A
T16
VIN
[0]A
_D[1
1]A
U17
VIN
[0]A
_D[1
2]A
U16
VIN
[0]A
_D[1
3]A
T15
VIN
[0]A
_D[1
4]A
U15
VIN
[0]A
_D[1
5]A
U14
VIN
[0]A
_D[2
]A
H18
VIN
[0]A
_D[3
]A
R18
VIN
[0]A
_D[4
]A
T18
VIN
[0]A
_D[5
]A
T17
VIN
[0]A
_D[6
]A
P18
VIN
[0]A
_D[7
]A
R17
VIN
[0]A
_D[8
]A
P17
VIN
[0]A
_D[9
]A
E16
VO
UT
[0]_
B_C
B_C
[2]
AP
13
VO
UT
[0]_
B_C
B_C
[3]
AL1
3
VO
UT
[0]_
B_C
B_C
[4]
AN
13
VO
UT
[0]_
B_C
B_C
[5]
AK
13
VO
UT
[0]_
B_C
B_C
[6]
AJ1
3
VO
UT
[0]_
B_C
B_C
[7]
AM
13
VO
UT
[0]_
B_C
B_C
[8]
AH
13
VO
UT
[0]_
B_C
B_C
[9]
AT
12
VO
UT
[0]_
CLK
AT
14
VO
UT
[0]_
G_Y
_YC
[2]
AE
15
VO
UT
[0]_
G_Y
_YC
[3]
AP
14
VO
UT
[0]_
G_Y
_YC
[4]
AL1
4
VO
UT
[0]_
G_Y
_YC
[5]
AM
14
VO
UT
[0]_
G_Y
_YC
[6]
AE
14
VO
UT
[0]_
G_Y
_YC
[7]
AT
13
VO
UT
[0]_
G_Y
_YC
[8]
AU
13
VO
UT
[0]_
G_Y
_YC
[9]
AR
13
VO
UT
[0]_
R_C
R[2
]/VO
UT
[0]_
HS
YN
C/V
OU
T[1
]_Y
_YC
[2]
AT
11
VO
UT
[0]_
R_C
R[3
]/VO
UT
[0]_
VS
YN
C/V
OU
T[1
]_Y
_YC
[3]
AR
11
VO
UT
[0]_
R_C
R[4
]/VO
UT
[0]_
FLD
/VO
UT
[1]_
Y_Y
C[4
]A
G13
VO
UT
[0]_
R_C
R[5
]/VO
UT
[0]_
AV
ID/V
OU
T[1
]_Y
_YC
[5]
AT
10
VO
UT
[0]_
R_C
R[6
]/VO
UT
[0]_
G_Y
_YC
[0]/V
OU
T[1
]_Y
_YC
[6]
AU
10
VO
UT
[0]_
R_C
R[7
]/VO
UT
[0]_
G_Y
_YC
[1]/V
OU
T[1
]_Y
_YC
[7]
AL1
0
VO
UT
[0]_
R_C
R[8
]/VO
UT
[0]_
B_C
B_C
[0]/V
OU
T[1
]_Y
_YC
[8]
AK
10
VO
UT
[0]_
R_C
R[9
]/VO
UT
[0]_
B_C
B_C
[1]/V
OU
T[1
]_Y
_YC
[9]
AU
9
R1
0822
12
R4
2522
12
R4
0322
12
R3
8022
12
R3
7522
12
R1
1222
12
R1
0922
12
R1
4922
12
R3
9022
12
R3
8722
12
R1
5322
12
R4
1822
12
R3
6622
12
R3
6522
12
R3
8522
12
R1
2522
12
R3
7822
12
R1
4222
12
R3
6222
12
R3
8622
12
R1
2022
12
R1
0222
12
R3
6722
12
R3
8122
12
R4
1022
12
R9
822
12
R3
7922
12
R1
1022
12
R3
9222
12
R3
8322
12
R3
7222
12
R1
5122
12
R3
7422
12
R9
722
12
R4
0422
12
R1
5722
12
R1
1422
12
R3
6322
12
R1
2422
12
R3
9122
12
R3
7122
12
R3
6422
12
R3
8422
12
R4
1322
12
R1
1522
12
R3
7022
12
R9
622
12
R3
8222
12
R3
6922
12
R4
2422
12
R1
5622
12
R1
0722
12
R1
3722
12
R3
8822
12
R1
3222
12
R1
4322
12
R3
7622
12
R1
4022
12
R1
0122
12
R1
0022
12
R3
7322
12
R1
1722
12
R1
1322
12
R1
1822
12
R1
1622
12
R3
6822
12
R3
9322
12
R9
922
12
R3
9922
12
R4
1522
12
R1
3122
12
R4
0022
12
R3
8922
12
R4
0722
12
R4
0822
12
Spectrum Digital, Inc
A-12 C6A816x/AM389x EVM Technical Reference
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
HD
MI_
TM
DS
DP
2
HD
MI_
TM
DS
DP
0
VD
DA
_H
DM
I
HD
MI_
TM
DS
CL
KN
HD
MI_
TM
DS
CLK
NH
DM
I_T
MD
SC
LK
P
HD
MI_
TM
DS
DN
1H
DM
I_T
MD
SD
N1
HD
MI_
TM
DS
CL
KP
HD
MI_
TM
DS
DP
0H
DM
I_T
MD
SD
N0
HD
MI_
TM
DS
DN
0
HD
MI_
TM
DS
DP
2H
DM
I_T
MD
SD
N2
HD
MI_
TM
DS
DP
1H
DM
I_T
MD
SD
N2
HD
MI_
TM
DS
DP
1
EV
M_5
V0
VD
DA
_H
DM
IE
VM
_1V
0_C
ON
EV
M_5
V0
EV
M_
3V3
EV
M_3
V3
EV
M_3
V3
EV
M_5
V0
EV
M_
1V
0_C
ON
EV
M_5
V0
EV
M_3
V3
EV
M_
1V0
_CO
N9
,15
,16
,17
,20
,44
,46
,50
EV
M_5
V0
23
,25
,39
,41
,43
,44
,46
,49,
50,5
1
EV
M_3
V3
2,3
,5,6
,13
,14
,15
,18
,21
,22
,23
,24
,26,
27
,28,
29
,30
,31
,32
,33
,34
,35
,36
,37
,38
,39
,41
,43
,44
,45,
46,
48,
49
,50,
51
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
C
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
011
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
HD
MI
DIFFERENTIAL PAIR
100 OHM DIFFERENTIAL
IMPEDANCE
SHORT AND STRAIGHT AS
POSSIBLE,
MINIMUM NUMBER OF VIAS
1 VOLT
DIFFERENTIAL SIGNALS ROUTE THROUGH ESD DEVICE
PLACE THESE CAPACITORS AS CLOSE TO VDDA PINS AS POSSIBLE
Place Filters as close to U31
as possible
C56
51
0uF
C4
460
.1u
F
R3
47K
R4
100
KR
147
KC
551
0.1
uF
U1
TP
D12
S52
1
5V_S
UP
PLY
1
LV_S
UP
PLY
2
GN
D.1
3
TM
DS
I_D
2+4
TM
DS
_GN
D.1
5
TM
DS
I_D
2-6
TM
DS
I_D
1+7
TM
DS
_GN
D.2
8
TM
DS
I_D
1-9
TM
DS
I_D
0+10
TM
DS
_GN
D.3
11
TM
DS
I_D
0-12
TM
DS
I_C
K+
13
TM
DS
_GN
D.4
14
TM
DS
I_C
K-
15
CE
_RE
MO
TE
_IN
16
DD
C_C
LK_I
N17
DD
C_D
AT
_IN
18
HO
TP
LUG
_DE
T_I
N19
5V_O
UT
38
ES
D_B
YP
37
GN
D.2
36
TM
DS
O_D
2+35
TM
DS
_GN
D.5
34
TM
DS
O_D
2-33
TM
DS
O_D
1+32
TM
DS
_GN
D.6
31
TM
DS
O_D
1-30
TM
DS
O_D
0+29
TM
DS
_GN
D.7
28
TM
DS
O_D
0-27
TM
DS
O_C
K+
26
TM
DS
_GN
D.8
25
TM
DS
O_C
K-
24
CE
_RE
MO
TE
_OU
T23
DD
C_C
LK_O
UT
22
DD
C_D
AT
_OU
T21
HO
TP
LUG
_DE
T_O
UT
20
R4
80N
O-P
OP
(301
)
R4
83N
O-P
OP
(301
)L2
51
0n
H
1206
12
C4
470
.1u
F
C4
54
0.1
uF
L24
10
nH
1206
12
L23
10n
H
1206
12
C5
42
1u
F
L22
10
nH
120
6
12
R2
47K
C55
50
.01
uF
C53
31
0uF
R2
4910
K
P6
HD
MI-
RA
-19
-TY
PE
A
D2
SH
IELD
2D
2+1
D2-
3
D1
SH
IELD
5D
1+4
D1-
6
D0
SH
IELD
8D
0+7
D0-
9
CK
SH
IELD
11C
K+
10
CK
-12
NC
.14
14C
E R
EM
OT
E13
DD
C C
LK15
DD
C D
AT
A16
+5V
18
HP
DE
T19
MT
G1
MT
G1
MT
G2
MT
G2
MT
G3
MT
G3
MT
G4
MT
G4
GN
D17
R26
010
K
C5
56
0.0
1uF
R48
1N
O-P
OP
(301
)
R3
95
5.9
K 1
%R
250
2K
NE
TR
A_
3
U3
1-8
HD
MI_
CE
CA
P25
HD
MI_
EX
TS
WIN
GA
N25
HD
MI_
HP
DE
TA
E24
RS
V22
AN
19
RS
V21
AN
18
HD
MI_
SC
LA
L25
HD
MI_
SD
AA
K25
HD
MI_
TM
DS
CLK
NA
U24
HD
MI_
TM
DS
CLK
PA
T24
HD
MI_
TM
DS
DN
0A
U25
HD
MI_
TM
DS
DN
1A
U26
HD
MI_
TM
DS
DN
2A
U27
HD
MI_
TM
DS
DP
0A
T25
HD
MI_
TM
DS
DP
1A
T26
HD
MI_
TM
DS
DP
2A
T27
VD
DA
_HD
MI
AP
23
VD
DA
_HD
MI
AN
23
VD
DA
_HD
MI
AP
24
VD
DA
_HD
MI
AN
24
VD
DA
_HD
MI
AR
27
R2
5227
K
C45
30
.1u
F
R2
512K
L17
0.8
2U
h
R4
82
NO
-PO
P(3
01)
Spectrum Digital, Inc
A-13
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
CO
N.S
AT
A_
RX
N1
CO
N.S
AT
A_
RX
P1
CO
N.S
AT
A_T
XP
1
SA
TA
_RX
P0
SA
TA
_RX
N0
CO
N.S
AT
A_
RX
P0
SA
TA
_TX
N0
CO
N.S
AT
A_
RX
N0
SA
TA
_TX
P0
CO
N.S
AT
A_T
XP
0
CO
N.S
AT
A_T
XN
0
SA
TA
_TX
P1
SA
TA
_TX
N1
SA
TA
_R
XN
1
PC
IE_
RX
N0
PC
IE_
RX
N1
PC
IE_
RX
P1
PC
IE_T
XN
0P
CIE
_TX
P0
PC
IE_T
XN
1P
CIE
_TX
P1
CO
N.P
CIE
_R
XN
0C
ON
.PC
IE_
RX
P0
SA
TA
_RX
P1
CO
N.S
AT
A_T
XN
1C
ON
.PC
IE_
RX
N1
CO
N.P
CIE
_R
XP
1
CO
N.P
CIE
_T
XN
0
CO
N.P
CIE
_T
XP
0
CO
N.P
CIE
_TX
N1
CO
N.P
CIE
_TX
P1
SE
RD
ES
_IN
_R
EF
N
CP
U_
SE
RD
ES
_IN
_R
EF
PS
ER
DE
S_
IN_
RE
FP
CP
U_
SE
RD
ES
_IN
_R
EF
N
PC
IE_
RX
P0
CO
N.P
CIE
_R
XN
023
CO
N.P
CIE
_R
XP
023
CO
N.P
CIE
_RX
N1
23C
ON
.PC
IE_
RX
P1
23
CO
N.P
CIE
_TX
N0
23
CO
N.P
CIE
_T
XP
023
CO
N.P
CIE
_TX
N1
23
CO
N.P
CIE
_TX
P1
23
SE
RD
ES
_IN
_R
EF
P13
SE
RD
ES
_IN
_R
EF
N13
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
012
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
SA
TA
IN
TE
RF
AC
E
Pin # Function
1 Ground
2 A+ (Transmit)
3 A- (Transmit)
4 Ground
5 B- (Receive)
6 B+ (Receive)
7 Ground
- coding notch
A 7-pin Serial ATA data cable
DIFFERENTIAL PAIR
100 OHM DIFFERENTIAL
IMPEDANCE
SHORT AND STRAIGHT AS
POSSIBLE,
MINIMUM NUMBER OF VIAS
DIFFERENTIAL PAIR
100 OHM DIFFERENTIAL
IMPEDANCE
SHORT AND STRAIGHT AS
POSSIBLE,
MINIMUM NUMBER OF VIAS
Pin # Function
1 Ground
2 A+ (Transmit)
3 A- (Transmit)
4 Ground
5 B- (Receive)
6 B+ (Receive)
7 Ground
- coding notch
A 7-pin Serial ATA data cable
DIFFERENTIAL PAIR
XXXX OHM DIFFERENTIAL
IMPEDANCE
SHORT AND STRAIGHT AS
POSSIBLE,
MINIMUM NUMBER OF VIAS
C7
7.1
uF
R2
10
0 o
hm
s
NE
TR
A_3
U3
1-1
1
PC
IE_R
XN
0V
29
PC
IE_R
XN
1V
30
PC
IE_R
XP
0Y
29
PC
IE_R
XP
1V
31
PC
IE_T
XN
0A
B30
PC
IE_T
XN
1A
B28
PC
IE_T
XP
0A
B31
PC
IE_T
XP
1Y
27
SA
TA
_RX
N0
V37
SA
TA
_RX
N1
V35
SA
TA
_RX
P0
V36
SA
TA
_RX
P1
W35
SA
TA
_TX
N0
T31
SA
TA
_TX
N1
U33
SA
TA
_TX
P0
T32
SA
TA
_TX
P1
V33
SE
RD
ES
_CLK
NA
B33
SE
RD
ES
_CLK
PA
B34
C2
11
.1u
F
R2
11
0 o
hm
s
J11
SA
TA
HE
AD
ER
7
11
22
33
44
55
66
77
MH
18
MH
99
R2
12
0 o
hm
s
C1
07
.1u
F
J12
SA
TA
HE
AD
ER
7
11
22
33
44
55
66
77
MH
18
MH
99
C1
59
.1u
F
C1
96
.1u
F
C1
16
.1u
FC1
06.1
uF
C8
9.1
uF
C1
13.1
uF
R1
54
NO
-PO
P
C8
8.1
uF
C7
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Spectrum Digital, Inc
A-14 C6A816x/AM389x EVM Technical Reference
5 5
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KSDIFFERENTIAL PAIR
100 OHM DIFFERENTIAL
IMPEDANCE
SHORT AND STRAIGHT AS
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MINIMUM NUMBER OF VIAS
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LVDS OUTPUT
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VCO = PRE-SCALE X DIVIDER X FIN
VCO = 3 X 24 X 25MHZ
VCO = 1800 MHZ
OUTCLOCK = VCO FREQ /( PRESCALE*OD) = 100mHZ
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Spectrum Digital, Inc
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Da
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5138
32-0
001
Wed
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Spectrum Digital, Inc
A-16 C6A816x/AM389x EVM Technical Reference
5 5
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3 3
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DD
CC
BB
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Siz
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Da
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sio
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Sh
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:
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TR
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DIG
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RP
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ED
5138
32-0
001
Wed
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B
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Spectrum Digital, Inc
A-17
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Siz
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Da
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OR
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sio
n:
Sh
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of
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Pa
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Co
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nts
:
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DIG
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5138
32-0
001
Wed
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Spectrum Digital, Inc
A-18 C6A816x/AM389x EVM Technical Reference
5 5
4 4
3 3
2 2
1 1
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CC
BB
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Siz
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Da
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OR
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sio
n:
Sh
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of
Titl
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Pa
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Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
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RP
OR
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ED
5138
32-0
001
Wed
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sda
y, N
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mbe
r 0
3, 2
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017
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with
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A-19
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CC
BB
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Spectrum Digital, Inc
A-20 C6A816x/AM389x EVM Technical Reference
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
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Pa
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TR
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DIG
ITA
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5138
32-0
001
Wed
ne
sda
y, N
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with
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OR
Y
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IF B
- D
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DU
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M I
NT
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DIFFERENTIAL PAIRS
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mol
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879
66
A61
61
A62
62
A63
63
A64
64
A65
65
A66
66
A67
67
A68
68
A69
69
A70
70
A71
71
A72
72
A73
73
A74
74
A75
75
A76
76
A77
77
A78
78
A79
79
A80
80
A81
81
A82
82
A83
83
A84
84
A85
85
A86
86
A87
87
A88
88
A89
89
A90
90
A91
91
A92
92
A93
93
A94
94
A95
95
A96
96
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97
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98
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A24
024
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Spectrum Digital, Inc
A-24 C6A816x/AM389x EVM Technical Reference
5 5
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Siz
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Da
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DW
G N
OR
evi
sio
n:
Sh
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of
Titl
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Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
023
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
PC
Ie I
NT
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Reset
Threhold 0.84 Volts
Reset
Threhold 0.84 Volts
Connector must be less than 2.25 inches
to board edge from key to board edge
OPT_SW1 PCI RESET MODE IN OR OUT
OPT_SW2 WDOG RESET ENABLED
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OR
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sio
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Sh
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of
Titl
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Pa
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Co
nte
nts
:
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TR
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DIG
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RP
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5138
32-0
001
Wed
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sda
y, N
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mbe
r 0
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Spectrum Digital, Inc
A-26 C6A816x/AM389x EVM Technical Reference
5 5
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3 3
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sio
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Sh
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of
Titl
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Pa
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Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
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025
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
US
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NT
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CO
NN
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RS
DIFFERENTIAL PAIR
90 OHM DIFFERENTIAL
IMPEDANCE
SHORT AND STRAIGHT AS
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MINIMUM NUMBER OF VIAS
HOST CONNECTOR
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IMPEDANCE
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MINIMUM NUMBER OF VIAS
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A-28 C6A816x/AM389x EVM Technical Reference
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A-30 C6A816x/AM389x EVM Technical Reference
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33
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35
,36
,37
,38
,39
,41
,43
,44
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46,4
8,4
9,5
0,51
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
032
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
NA
ND
FL
AS
H
EVM IS SUPPORTED WITH MICRON MT29F2G16AADWP:D
R35
910
K
C5
28
.1u
F
R3
58
10K
U2
4
Mic
ron
NA
ND
ON
FI
NC
-11
NC
-22
NC
-33
NC
-44
NC
-55
NC
-66
R/B
7
RE
8
CE
9
NC
-710
NC
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VC
C12
GN
D1
13
NC
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NC
-10
15
CLE
16
ALE
17
WE
18
WP
19
NC
-11
20
NC
-12
21
NC
-13
22
NC
-14
23
GN
D2
25I/O
826
I/O9
27I/O
1028
I/O0
29I/O
130
I/O2
31I/O
332
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CC
234
22-N
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337
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1240
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41I/O
542
I/O6
43I/O
744
I/O13
45I/O
1446
I/O15
47G
ND
448
MH2 MH2
MH1 MH1
NC
-15
24
C5170.01
C52
20
.01
U25
74C
BT
LV
1G
125C
RG
4
3
4
5
2
1
C5270.01
Spectrum Digital, Inc
A-34 C6A816x/AM389x EVM Technical Reference
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
PH
Y.M
RC
LK
PH
Y.M
RX
D5
PH
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RX
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PH
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CO
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PH
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PH
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RX
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PH
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RX
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PH
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PH
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DC
LK
PH
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CR
S
PH
Y.M
TC
LK
PH
Y.G
MT
CL
K
GM
II0_T
XD
3
GM
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MT
CLK
GM
II0_T
XD
2
GM
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7
GM
II0_T
XD
1G
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D0
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6
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N
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D4
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MII0
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GM
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CL
K
GM
II0
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RS
GM
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OL
GM
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RX
DV
GM
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ER
GM
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GM
II0_T
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5
GM
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GM
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4
EV
M_
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M_3
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M_
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EV
M_3
V3
TR
D[0
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TR
D[0
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TR
D[1
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TR
D[1
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TR
D[2
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TR
D[2
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TR
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TR
D[3
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EN
ET
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EN
ET
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RX
35
MD
IO_
MD
IO4
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GM
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74
GM
II0_T
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64
GM
II0_T
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54
GM
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34
GM
II0_T
XD
44
GM
II0_T
XD
24
GM
II0_T
XD
04
GM
II0_T
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14
GM
II0_
RX
D0
4G
MII0
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14
GM
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34
GM
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RX
D4
4G
MII0
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54
GM
II0_
RX
D6
4G
MII0
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74
MD
IO_
MD
CL
K4,
43
GM
II0
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RS
4G
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0_C
OL
4GM
II0_R
XD
V4
GM
II0_R
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R4
GM
II0
_R
CL
K4
GM
II0_T
CLK
4 EN
ET
_IN
Tn
14
GM
II0_
TX
EN
4GM
II0_G
MT
CLK
4
RS
TO
UT
n1
3,1
4,36
,42
EV
M_3
V3
2,3
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,11
,13
,14
,15
,18
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,22
,23
,24
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27
,28
,29
,30
,31
,32
,34
,35
,36
,37
,38
,39
,41
,43,
44
,45
,46
,48
,49
,50
,51
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L I
NC
OR
PO
RA
TE
D
5138
32-0
001
We
dn
esd
ay,
No
vem
ber
03
, 20
10
3352
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
ET
HE
RN
ET
IN
TE
RF
AC
E
R3
14
0
R47
810
K
OUTPUTS
INPUTS
U1
9A
ET
1011
C
RX
D[6
]60
RX
D[5
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LED
_LN
K/P
AU
SE
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XD
[4]
62
RX
D[3
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RX
D[2
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RX
D[1
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RX
D[0
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CO
L/P
MA
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[1]
73C
RS
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MM
A74
SY
S_C
LK57
RE
SE
Tn
24
MD
C55
MD
IO54
MD
INT
n53
PR
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51
RS
ET
32
TR
D[0
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TR
D[0
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TR
D[1
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TR
D[1
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TR
D[2
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TR
D[2
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TR
D[3
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TR
D[3
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PH
YA
[3]
41
PH
YA
[2]
42
MA
C_I
F_S
EL[
2]18
MA
C_I
F_S
EL[
1]17
MA
C_I
F_S
EL[
0]16
TD
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LED
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0/S
PE
ED
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049
TR
ST
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TM
S/S
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n13
TC
K5
TD
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n14
TX
CLK
75
TX
D[0
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TX
D[1
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TX
D[2
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TX
D[3
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TX
D[4
]84
TX
D[5
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TX
D[6
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TX
D[7
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TX
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D[8
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L/T
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[4]
79
TX
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D[9
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GT
X_C
LK/P
MA
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C77
RX
CLK
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A_R
X_C
LK[0
]/RX
C72
RX
_ER
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[9]
70
CLK
_IN
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AL1
22
XT
AL2
23
RX
_DV
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D[8
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L/R
XD
[4]
69
RX
D[7
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PH
YA
D[1
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D_1
0043
PH
YA
D[0
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D_T
XR
X44
PH
YA
[4]
40
C4
76
18
pF
R3
4210
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Y1 25
MH
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R3
010
R4
791
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R3
29
22
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13
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030
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33
22
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19
22
R3
54
22
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10
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R3
38
22
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8
6.3
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1%
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24
22
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77
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R3
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%
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25
22
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RN
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1 2 3 4 5 6 7 8910111213141516
R3
020
C4
77
18
pF
R3
15N
O-P
OP
R3
55
22
Spectrum Digital, Inc
A-35
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
PH
Y_
VD
D_
2V
5
PH
Y_
1V
0P
HY
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VD
D_
1V
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PH
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5
EV
M_
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EV
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PH
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AV
DD
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EV
M_3
V3
PH
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VD
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PH
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VD
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0
PH
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EV
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PH
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D_
2V
5
EV
M_3
V3
PH
Y_
VD
D_
2V
535
EV
M_3
V3
2,3
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,22,
23
,24,
26
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28,2
9,3
0,3
1,3
2,3
3,3
5,3
6,3
7,3
8,3
9,4
1,4
3,4
4,4
5,4
6,4
8,4
9,5
0,5
1
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
034
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
ET
HE
RN
ET
- P
OW
ER
U2
6B
CP
69T
1
B1
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TAB 4
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PT
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101
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46
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47
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31
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6
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58
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536
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33
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120
DV
DD
IO.4
64
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DD
IO.6
76
DV
DD
IO.2
52
DV
DD
IO.5
71
AV
DD
H.1
21
VD
D.3
48
VD
D.4
56
VD
D.5
63
NC
.77
NC
.88
NC
.99
NC
.10
10
NC
.11
11
POWER_PAD 85
AV
DD
L.3
30
C4
98
0.1
uF
C5
25
33
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C5
04
0.1
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C5
07
0.1
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C3
23
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C5
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0.1
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C5
130
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508
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233
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C5
12
33
uF
Spectrum Digital, Inc
A-36 C6A816x/AM389x EVM Technical Reference
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
TR
D[0
]N
TR
D[1
]P
TR
D[1
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TR
D[2
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TR
D[2
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TR
D[3
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TR
D[3
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D[0
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PH
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5
PH
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M_3
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EN
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33
EN
ET
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TR
D[0
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TR
D[0
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TR
D[1
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TR
D[1
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TR
D[2
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TR
D[2
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TR
D[3
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TR
D[3
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PH
Y_
VD
D_
2V
534
EV
M_3
V3
2,3
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,14
,15
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,22
,23
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26
,27,
28
,29
,30
,31
,32
,33
,34
,36
,37
,38
,39
,41
,43
,44
,45,
46,
48,
49
,50,
51
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
035
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
ET
HE
RN
ET
- O
UT
PU
T C
ON
NE
CT
OR
DIFFERENTIAL PAIR
100 OHM DIFFERENTIAL
IMPEDANCE
SHORT AND STRAIGHT AS
POSSIBLE,
MINIMUM NUMBER OF VIAS
C5
05
0.0
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F
R35
149
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356
49.9
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C5
100
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75
75
1 2 3 6
75
7574 5 8
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814
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T0+
9
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10
T1+
7
T1-
8
SHLD2 12
T2+
5
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6
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3
T3-
4
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LED
1-A
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LED
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D2
LED
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LED
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Spectrum Digital, Inc
A-37
AIC
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IC_
DIN
B_
AIC
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CL
KA
IC_
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GN
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D_A
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M_3
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SC
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DIO
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EV
M_3
V3
2,3
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,13
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,15,
18
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22
,23
,24
,26
,27
,28
,29
,30
,31
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,33
,34
,35
,37
,38
,39
,41,
43
,44,
45,4
6,4
8,4
9,50
,51
Siz
e:
Da
te:
DW
G N
OR
ev
isio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-
000
1
We
dn
esd
ay,
No
vem
be
r 0
3,
20
10
365
2
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
AIC
31
06
AU
DIO
IN
TE
RF
AC
E
ISOLATE GROUNDS
AND CONNECT AT
SINGLE LOCATION
IN THE GROUND PLANE
L2B
LM
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NO
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A-38 C6A816x/AM389x EVM Technical Reference
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A-40 C6A816x/AM389x EVM Technical Reference
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110
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112
112
113
113
114
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115
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A-41
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N
TS
I0_
BY
TS
TR
T
TS
O0_
DC
LK
TS
O0_
BY
TS
TR
T
TS
I0_
PA
CE
RR
TS
I0_
PA
CV
AL
VLY
NQ
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LO
CK
TS
I1_
PA
CE
RR
TS
I3_
DC
LK
VL
YN
Q_
RX
D0
TS
I6_
PA
CE
RR
TS
I2_
PA
CE
RR
TS
I4_
DC
LKT
SI3
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AT
A
TS
I3_
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CV
AL
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Q_T
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06
VL
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Q_T
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16
VL
YN
Q_
TX
D2
6V
LY
NQ
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D3
6
VL
YN
Q_
SC
RU
N6
VL
YN
Q_C
LO
CK
6
VL
YN
Q_
RX
D0
6
VLY
NQ
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XD
16
VLY
NQ
_R
XD
26
VLY
NQ
_R
XD
36
TS
I0_
BY
TS
TR
T10
TS
I0_
PA
CE
RR
10
TS
I0_
PA
CV
AL
10
TS
I1_
PA
CE
RR
10
TS
I2_
PA
CE
RR
10
TS
I2_
PA
CV
AL
10T
SI2
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LK10
TS
I2_D
AT
A10 TS
I4_B
YT
ST
RT
10T
SI4
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AC
ER
R10
TS
I4_D
CLK
10 TS
I3_
PA
CE
RR
10
TS
I3_
PA
CV
AL
10
TS
I3_
DC
LK10
TS
I3_D
AT
A10 TS
I6_B
YT
ST
RT
10
TS
I6_
PA
CE
RR
10
TS
I6_
PA
CV
AL
10T
SI0
_D
CLK
10
TS
O0
_BY
TS
TR
T10
TS
O0
_PA
CE
RR
10
TS
O0
_DC
LK10
TS
O0_
DA
TA
10
TS
O0
_PA
CV
AL
10T
SO
1_P
AC
ER
R1
0
TS
I4_
PA
CV
AL
10
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
040
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
VL
YN
Q/T
RA
NS
PO
RT
ST
RE
AM
S
J16
QS
H-0
30-
01-
x-D
-A
11
33
55
77
99
1111
1313
1515
1717
1919
2121
2323
2525
2727
2929
3131
3333
22
44
66
88
1010
1212
1414
1616
1818
2020
2222
2424
2626
2828
3030
3232
3434
3535
3737
3636
3838
3939
4141
4343
4545
4747
4949
5151
5353
5555
5757
5959
4040
4242
4444
4646
4848
5050
5252
5454
5656
5858
6060
G1
61G
262
G3
63G
464
Spectrum Digital, Inc
A-42 C6A816x/AM389x EVM Technical Reference
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
GP
MC
_A
DV
N_
AL
E
GP
MC
_D
8G
PM
C_
D13
UA
RT
0_T
XD
UA
RT
0_R
XD
UA
RT
0_R
TS
N
GP
MC
_D
6
GP
MC
_B
E0
N_C
LE
GP
MC
_D
4
GP
MC
_C
S4
GP
MC
_A
7
GP
MC
_A
2G
PM
C_
A1
GP
MC
_A
0G
PM
C_
DIR
GP
MC
_A
3
GP
MC
_W
AIT
GP
MC
_WP
N
GP
MC
_A
8
GP
MC
_A
6
GP
MC
_D
3
GP
MC
_D
1G
PM
C_
A27
GP
MC
_A4
GP
MC
_A5
GP
MC
_A9
GP
MC
_BE
1N
GP
MC
_D0
GP
MC
_WE
N
GP
MC
_CS
0
GP
MC
_CS
5
GP
MC
_A1
1
GP
MC
_A1
0
GP
MC
_O
EN
_R
EN
GP
MC
_CS
2G
PM
C_
CS
1
GP
MC
_CS
3
GP
MC
_D
14
MS
P43
0_S
CL
MS
P43
0_S
DA
GP
MC
_D
12
GP
MC
_D
11
GP
MC
_D9
GP
MC
_D7
GP
MC
_D2
GP
MC
_D
10
GP
MC
_D5
GP
MC
_CL
K
GP
MC
_D
15
UA
RT
2_R
XD
SP
I_S
CLK
SP
I_C
S0
UA
RT
1_R
XD
SP
I_C
S1
UA
RT
1_T
XD
SP
I_C
S3
EV
M_1
2VE
VM
_3V
3
EV
M_5
V0
EV
M_5
V0
EV
M_3
V3
EV
M_1
2V
GP
MC
_A0
6
GP
MC
_A1
6G
PM
C_A
26
GP
MC
_A3
6
GP
MC
_A6
6
GP
MC
_A7
6
GP
MC
_A8
6
GP
MC
_A27
6
GP
MC
_ C
S4
6
GP
MC
_BE
0N
_C
LE
6,3
2
GP
MC
_AD
VN
_AL
E6,
32
GP
MC
_D
IR6
GP
MC
_W
PN
6,3
2
GP
MC
_D1
6,3
2
GP
MC
_D3
6,3
2G
PM
C_D
46
,32
GP
MC
_D6
6,3
2
GP
MC
_D8
6,3
2G
PM
C_
D13
6,3
2
GP
MC
_W
AIT
6,3
2
GP
MC
_D
146
,32
GP
MC
_A4
6
GP
MC
_W
EN
6,3
2
GP
MC
_A11
6
GP
MC
_ C
S0
6,3
2
GP
MC
_D
06
,32
GP
MC
_A10
6
GP
MC
_O
EN
_R
EN
6,3
2
GP
MC
_ C
S3
6
GP
MC
_BE
1N6
GP
MC
_ C
S5
6
GP
MC
_ C
S2
6
GP
MC
_A5
6
GP
MC
_A9
6
GP
MC
_ C
S1
6
UA
RT
0_R
TS
N3
UA
RT
0_
RX
D3
UA
RT
0_T
XD
3
SP
I_M
ISO
3,3
1S
PI_
MO
SI
3,3
1
PM
_I2
C_S
CL
39
,43
,44,
45
PM
_I2
C_
SD
A3
9,4
3,4
4,4
5
GP
MC
_C
LK
6
GP
MC
_D
76
,32
GP
MC
_D
96
,32
GP
MC
_D1
06
,32
GP
MC
_D1
16
,32
GP
MC
_D1
26
,32
GP
MC
_D1
56
,32
GP
MC
_D
56
,32
GP
MC
_D
26
,32
UA
RT
2_R
XD
3,2
8
UA
RT
1_R
XD
3,2
9U
AR
T1_
TX
D3
SP
I_S
CLK
3,3
1S
PI_
CS
03
,31
SP
I_C
S1
3S
PI_
CS
33
PO
WE
R_G
OO
D2
EV
M_
5V0
11,2
3,2
5,3
9,4
3,4
4,4
6,4
9,5
0,5
1
EV
M_3
V3
2,3
,5,6
,11
,13
,14
,15
,18
,21
,22
,23
,24
,26,
27
,28,
29
,30
,31
,32
,33
,34
,35
,36
,37
,38
,39
,43
,44
,45
,46
,48
,49
,50
,51
EV
M_1
2V2
3,2
4,3
9,4
3,4
6,4
7,5
1S
ize:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
041
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
GP
MC
EX
PA
NS
ION
CO
NN
EC
TO
R
J18
QS
H-0
60-
01-x
-D-A1
1
33
55
77
99
1111
1313
1515
1717
1919
2121
2323
2525
2727
2929
3131
3333
22
44
66
88
1010
1212
1414
1616
1818
2020
2222
2424
2626
2828
3030
3232
3434
3535
3737
3636
3838
3939
4141
4343
4545
4747
4949
5151
5353
5555
5757
5959
6161
6363
6565
6767
6969
7171
7373
7575
4040
4242
4444
4646
4848
5050
5252
5454
5656
5858
6060
6262
6464
6666
6868
7070
7272
7474
7676
7777
7979
8181
8383
8585
8787
8989
9191
9393
9595
9797
9999
7878
8080
8282
8484
8686
8888
9090
9292
9494
9696
9898
100
100
101
101
102
102
103
103
104
104
105
105
106
106
107
107
108
108
109
109
110
110
111
111
112
112
113
113
114
114
115
115
116
116
117
117
118
118
119
119
120
120
G1
121
G2
122
G3
123
G4
124
G5
125
G6
126
G7
127
G8
128
Spectrum Digital, Inc
A-43
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
UA
RT
1_R
TS
N
UA
RT
2_T
XD
SC
1_D
ET
GP
0_I
O6
SC
1_D
AT
A
GP
0_I
O7
GP
0_I
O4
EX
P_W
AR
M_
RE
SE
T
TIM
5_O
UT
SC
0_V
PP
EN
SC
0_
VC
CE
N
SC
1_
C4
SC
0_D
ET
UA
RT
2_R
TS
N
SC
0_
C4
SC
1_C
LK
SC
0_
CL
K
SC
0_D
AT
A
UA
RT
2_C
TS
N
UA
RT
0_
DC
DN
UA
RT
0_D
SR
NU
AR
T0
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IN
SP
I_S
CS
2U
AR
T1_
CT
SN
SC
0_R
ST
UA
RT
0_D
TR
N
SC
1_R
ST
UA
RT
0_C
TS
N
TIM
4_O
UT
SC
1_
VC
CE
N
SC
1_V
PP
EN
GP
0_I
O5
CL
KO
UT
TIM
7_O
UT
TIM
6_O
UT
SC
0_D
ET
3
SC
0_
CL
K3
SC
0_R
ST
3
SC
0_
VC
CE
N3
SC
0_
VP
PE
N3
SC
0_D
AT
A3
SC
1_
CL
K3
SC
1_R
ST
3
SC
1_
VC
CE
N3
SC
1_
VP
PE
N3
SC
1_D
AT
A3
SC
1_
C4
3
TIM
6_O
UT
3
TIM
7_O
UT
3
SP
I_C
S2
3
TIM
4_O
UT
3
TIM
5_O
UT
3
CL
KO
UT
3S
C0
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43 UA
RT
2_C
TS
N3
UA
RT
2_R
TS
N3
UA
RT
2_T
XD
3,2
8
UA
RT
1_C
TS
N3
UA
RT
1_R
TS
N3
UA
RT
0_
RIN
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RT
0_
DT
RN
3
UA
RT
0_
DS
RN
3
UA
RT
0_C
TS
N3
UA
RT
0_
DC
DN
3
GP
0_I
O4
14
GP
0_I
O5
14
GP
0_I
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14
SC
1_D
ET
3
GP
0_IO
614
RS
TO
UT
n1
3,1
4,3
3,36
EX
P_W
AR
M_
RE
SE
T14
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
042
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
SE
RIA
L I
/O E
XP
AN
SIO
N C
ON
NE
CT
OR
J20
QS
H-0
30-
01-
x-D
-A
11
33
55
77
99
1111
1313
1515
1717
1919
2121
2323
2525
2727
2929
3131
3333
22
44
66
88
1010
1212
1414
1616
1818
2020
2222
2424
2626
2828
3030
3232
3434
3535
3737
3636
3838
3939
4141
4343
4545
4747
4949
5151
5353
5555
5757
5959
4040
4242
4444
4646
4848
5050
5252
5454
5656
5858
6060
G1
61G
262
G3
63G
464
Spectrum Digital, Inc
A-44 C6A816x/AM389x EVM Technical Reference
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
IIC
0_
SC
L
IIC
0_
SD
AII
C1
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CL
IIC
1_
SD
A
MC
AR
D_
VP
PE
N
MC
AR
D_
RE
SE
T
MT
SI_
DA
TA
3M
TS
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AT
A4
MT
SI_
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MT
SO
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MT
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TA
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TS
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MT
SO
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AT
A4
MT
SI_
BY
TS
TR
T
MT
SO
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AT
A3
MT
SO
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AT
A5
MC
TL
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CLK
MT
SI_
DA
TA
6
MT
SO
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LK
MT
SI_
DA
TA
0
MT
SO
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YT
ST
RT
MC
A0_
AX
R5
MC
AR
D_
CD
1M
CA
0_A
CLK
R
MC
AR
D_M
DE
T
MT
SO
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TA
0
MC
A0
_A
HC
LK
R
MC
TL
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O
MC
A1_
AC
LKR
MT
SO
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TA
7
MC
AR
D_
VC
CE
N
MC
A0_
AX
R4
MC
A1_
AF
SR
MC
A1
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HC
LK
R
MC
AR
D_
VS
1
MT
SO
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TA
6M
CT
L_S
DI
MC
A0_
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R0
MC
AR
D_
VS
2
MC
A0_
AM
UT
EM
CA
0_A
XR
3
MC
A0_
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MC
A1_
AM
UT
E
MC
A0_
AC
LKH
XM
CA
0_A
FS
R
MC
A0_
AC
LKX
MC
A0_
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MC
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MC
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MT
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TA
7
MC
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PM
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SC
L
PM
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A
MD
IO_
MD
IO
EX
P_M
CA
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0
EX
P_M
CA
2_A
MU
TE
EX
P_M
CA
2_A
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1
EX
P_M
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CL
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XP
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EX
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AC
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A1_
AX
R1
MC
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AX
R0
MT
SO
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5
MC
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X
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MD
CL
K
MC
AR
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CD
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CT
L_S
CT
L
EV
M_1
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VM
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3
EV
M_5
V0
EV
M_5
V0
EV
M_3
V3
EV
M_1
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MC
A0_
AX
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2
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A0_
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R2
2
MC
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R3
2
MC
A0_
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R4
2
MC
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R5
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2
MC
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2
MC
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UT
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TL_
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TS
TR
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TS
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12
MC
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MT
SI_
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TA
22
MT
SI_
DA
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32
MT
SI_
DA
TA
42
MT
SI_
DA
TA
62
MT
SI_
DA
TA
72 M
CA
RD
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DE
T2
MT
SO
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TA
02
MT
SO
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TA
22
MT
SO
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TA
32
MT
SO
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TA
42
MT
SO
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TA
52
MT
SO
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TA
62
MT
SO
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TA
72
MC
AR
D_R
ES
ET
2
MT
SO
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TS
TR
T2
MT
SO
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LK2
MC
TL
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LK2
MC
AR
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VS
22
MC
AR
D_
VS
12
MC
AR
D_
VP
PE
N2
MC
AR
D_
VC
CE
N2
MC
A0
_A
HC
LK
R2
IIC
0_
SC
L3
,26
,27
,36
,45
IIC
0_
SD
A3
,26
,27
,36,
45
IIC
1_
SC
L3
,27
IIC
1_
SD
A3
,27
MC
A0
_A
HC
LKX
2
PM
_I2
C_
SD
A3
9,4
1,4
4,4
5
PM
_I2
C_S
CL
39
,41
,44,
45
MD
IO_
MD
IO4
,33
MD
IO_
MD
CLK
4,3
3
EX
P_M
CA
2_A
XR
02
EX
P_M
CA
2_A
MU
TE
2E
XP
_MC
A2_
AX
R1
2
EX
P_M
CA
2_A
CLK
HX
2E
XP
_MC
A2_
AC
LKX
2
EX
P_
MC
A2_
AF
SR
2E
XP
_MC
A2_
AF
SX
2
EX
P_
MC
A2_
AH
CLK
R2
EX
P_
MC
A2_
AC
LKR
2
MC
A1_
AX
R1
2M
CA
1_A
XR
02
MT
SO
_DA
TA
12
MT
SI_
DA
TA
52
MC
A1_
AH
CL
KX
2
MC
TL_
SC
TL
2M
CA
RD
_CD
22
EV
M_
5V0
11,
23
,25,
39
,41,
44,4
6,4
9,5
0,5
1
EV
M_
3V3
2,3
,5,6
,11
,13
,14
,15
,18
,21
,22
,23
,24
,26
,27
,28,
29
,30,
31
,32,
33,3
4,3
5,3
6,3
7,3
8,3
9,4
1,4
4,4
5,4
6,4
8,49
,50
,51
EV
M_1
2V
23
,24
,39
,41,
46
,47,
51
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
043
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
MC
AS
P/X
XX
EX
PA
NS
ION
J1
9
QS
H-0
60-
01-
x-D
-A11
33
55
77
99
1111
1313
1515
1717
1919
2121
2323
2525
2727
2929
3131
3333
22
44
66
88
1010
1212
1414
1616
1818
2020
2222
2424
2626
2828
3030
3232
3434
3535
3737
3636
3838
3939
4141
4343
4545
4747
4949
5151
5353
5555
5757
5959
6161
6363
6565
6767
6969
7171
7373
7575
4040
4242
4444
4646
4848
5050
5252
5454
5656
5858
6060
6262
6464
6666
6868
7070
7272
7474
7676
7777
7979
8181
8383
8585
8787
8989
9191
9393
9595
9797
9999
7878
8080
8282
8484
8686
8888
9090
9292
9494
9696
9898
100
100
101
101
102
102
103
103
104
104
105
105
106
106
107
107
108
108
109
109
110
110
111
111
112
112
113
113
114
114
115
115
116
116
117
117
118
118
119
119
120
120
G1
121
G2
122
G3
123
G4
124
G5
125
G6
126
G7
127
G8
128
Spectrum Digital, Inc
A-45
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
PM
_I2
C_S
CL
PM
_I2
C_S
DA
PM
_I2
C_S
DA
PM
_I2
C_S
CL
PM
_I2
C_S
CL
PM
_I2
C_S
DA
PM
_I2
C_S
CL
PM
_I2
C_S
DA
PM
_I2
C_
SC
LP
M_
I2C
_S
DA
PM
_I2
C_
SC
LP
M_
I2C
_S
DA
PM
_I2
C_
SC
LP
M_
I2C
_S
DA
PM
_I2
C_S
DA
PM
_I2
C_S
CL
PM
_I2
C_
SD
AP
M_
I2C
_S
CL
EV
M_3
V3
EV
M_3
V3
EV
M_3
V3
EV
M_3
V3
EV
M_3
V3
EV
M_3
V3
EV
M_3
V3
EV
M_3
V3
EV
M_
3V3
EV
M_3
V3
EV
M_3
V3
EV
M_3
V3
EV
M_3
V3
EV
M_3
V3
EV
M_1
V5
EV
M_1
V0_
AV
S
EV
M_
0V9
EV
M_
1V8_
A
EV
M_1
V8_
D
EV
M_5
V0
EV
M_3
V3
EV
M_
ALT
_1V
5
EV
M_3
V3
EV
M_5
V0
EV
M_1
V5
EV
M_
1V0_
AV
S
EV
M_1
V0_
CO
N
EV
M_
1V0
_CO
N
EV
M_A
LT_1
V5
EV
M_0
V9
EV
M_1
V8
_A
EV
M_
1V8_
D
I_M
ON
_3
V3_
HIG
H46
I_M
ON
_5
V0_
HIG
H46
I_M
ON
_1
V0
_C
ON
N_
HIG
H4
6
I_M
ON
_1
V5
_H
IGH
47 I_M
ON
_1
V0
_AV
S_H
IGH
49
I_M
ON
_0
V9_
HIG
H50
PM
_I2
C_S
CL
39
,41
,43,
45P
M_
I2C
_S
DA
39
,41
,43
,45
EV
M_3
V3
2,3
,5,6
,11
,13
,14
,15,
18
,21,
22
,23,
24,2
6,2
7,2
8,2
9,3
0,3
1,3
2,3
3,3
4,3
5,3
6,3
7,3
8,3
9,4
1,4
3,45
,46,
48,
49,
50,5
1
EV
M_1
V5
7,8
,17
,20
,21
,22
,47
,48
,50
,51
EV
M_1
V0_
AV
S1
8,2
0,49
EV
M_0
V9
5,5
0
EV
M_1
V8
_A9
,50
EV
M_
1V8_
D5
,15
,16
,47
,50
EV
M_5
V0
11
,23
,25
,39,
41
,43,
46
,49,
50,
51
I_M
ON
_1V
5_A
LT
_HIG
H48
EV
M_A
LT_1
V5
16
,48
EV
M_
1V0_
CO
N9
,11
,15
,16,
17
,20,
46,5
0
I_M
ON
_1V
8D
IGIT
AL
_H
IGH
44
I_M
ON
_1
V8
AN
ALO
G_
HIG
H44
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
C
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
044
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
PO
WE
R M
ON
ITO
R
ADDRESS 1000000
ADDRESS 1000001
ADDRESS 1000010
ADDRESS 1000100
ADDRESS 1000101
ADDRESS 1000110
ADDRESS 1000111
ADDRESS 1001000
ADDRESS 1000011
C4
670
.1u
F
C7
040
.1u
F
U2
3
INA
22
0ID
CN
VIN
+10
VIN
-9
GN
D7
VB
US
8
SC
L5
SD
A4
A0
2
A1
1
NC
.33
VS
6
U1
1
INA
22
0ID
CN
VIN
+10
VIN
-9
GN
D7
VB
US
8
SC
L5
SD
A4
A0
2
A1
1
NC
.33
VS
6
U4
2
INA
22
0ID
CN
VIN
+10
VIN
-9
GN
D7
VB
US
8
SC
L5
SD
A4
A0
2
A1
1
NC
.33
VS
6
U1
7
INA
22
0ID
CN
VIN
+10
VIN
-9
GN
D7
VB
US
8
SC
L5
SD
A4
A0
2
A1
1
NC
.33
VS
6
C7
950
.1u
F
U7
INA
22
0ID
CN
VIN
+10
VIN
-9
GN
D7
VB
US
8
SC
L5
SD
A4
A0
2
A1
1
NC
.33
VS
6C
466
0.1
uF
C5
140
.1u
F
C4
950
.1u
F
C5
160
.1u
F
C4
710
.1u
F
U1
8
INA
22
0ID
CN
VIN
+10
VIN
-9
GN
D7
VB
US
8
SC
L5
SD
A4
A0
2
A1
1
NC
.33
VS
6
C4
800
.1u
F
U2
2
INA
22
0ID
CN
VIN
+10
VIN
-9
GN
D7
VB
US
8
SC
L5
SD
A4
A0
2
A1
1
NC
.33
VS
6
U1
4
INA
22
0ID
CN
VIN
+10
VIN
-9
GN
D7
VB
US
8
SC
L5
SD
A4
A0
2
A1
1
NC
.33
VS
6
U5
9
INA
22
0ID
CN
VIN
+10
VIN
-9
GN
D7
VB
US
8
SC
L5
SD
A4
A0
2
A1
1
NC
.33
VS
6
Spectrum Digital, Inc
A-46 C6A816x/AM389x EVM Technical Reference
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
MS
P43
0_R
XD
MS
P43
0_T
XD
MS
P4
30_T
CK
43
0_T
DO
/TD
I
MS
P43
0_T
DO
/TD
I
EV
M_
3V3
EV
M_3
V3
EV
M_
3V3
EV
M_3
V3
EV
M_3
V3
EV
M_3
V3
EV
M_
3V3
EV
M_3
V3
EV
M_3
V3
EV
M_3
V3
EV
M_3
V3
MS
P4
30_I
NT
14
IIC
0_
SC
L3
,26,
27
,36,
43
IIC
0_
SD
A3,
26,2
7,3
6,4
3
PM
_I2
C_
SC
L3
9,4
1,4
3,4
4PM
_I2
C_S
DA
39,4
1,4
3,4
4
EV
M_3
V3
2,3
,5,6
,11,
13
,14,
15
,18
,21
,22
,23
,24
,26
,27
,28
,29
,30
,31
,32
,33
,34
,35
,36,
37
,38,
39
,41,
43,4
4,4
6,48
,49,
50,5
1
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
045
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
PO
WE
R M
ON
ITO
R C
PU
C2
12
1u
F
R1
8310
K
C16
1
10
pF
U3
9
MA
X3
221C
PW
RG
4
T_I
N11
R_O
UT
9
VC
C15
GN
D14
V+
3
V-
7
C1+
2
C1-
4
C2+
5
C2-
6
FO
RC
EO
N12
FO
RC
EO
FF
16
R_I
N8
T_O
UT
13
EN
1IN
VA
LID
10
C2
131
uF
R1
86 330
P7D
B9M 5 9 4 8 3 7 2 6 1
10 11
C16
2
10
pF
C6
931
uF
J14
HE
AD
ER
7X
2
TD
O/T
DI
1V
CC
_TO
OL
2
TD
I/VP
P3
VC
C_M
SP
4
TM
S5
XO
UT
6
TC
K7
TE
ST
/VP
P8
GN
D9
AC
LK10
RS
T/N
MI
11A
CLK
EN
12
NC
113
TC
LKE
N14
C6
921
uF
C6
07
0.0
01
uF
R4
26 47K R
436 2K
U3
8
MS
P4
30F
213
2IP
WR
DV
CC
.12
XIN
/P2.
6/C
A6
6
XO
UT
/P2.
7/C
A7
5
DV
SS
.14
P1.
0/T
AC
LK/A
DC
10C
LK/C
AO
UT
21
RS
T/N
MI/S
BW
TD
IO7
P1.
1/T
A0.
0/T
A1.
022
P2.
0/A
CLK
/A0/
CA
28
P1.
3/T
A0.
224
P1.
4/S
MC
LK/T
CK
25
P1.
5/T
A0.
0/T
MS
26
P2.
1/T
AIN
CLK
/SM
CLK
/A1/
CA
39
P1.
7/T
A0.
2/T
DO
/TD
I28
TE
ST
/SB
WT
CK
1
P2.
5/R
OS
C/C
A5
3
P1.
6/T
A0.
1/T
DI/T
CLK
27
P1.
2/T
A0.
123
P2.
2/T
A0.
0/A
2/C
A4/
CA
OU
T10
P3.
0/U
CB
0ST
E/U
CA
0CLK
/A5
11
P3.
1/U
CB
0SIM
O/U
CB
0SD
A12
P3.
2/U
CB
0SO
MI/U
CB
0SC
L13
P3.
3/U
CB
0CLK
/UC
A0S
TE
14P
3.4/
UC
A0T
XD
/UC
A0S
IMO
15
P3.
5/U
CA
0RX
D/U
CA
0SO
MI
16
P3.
6/T
A1.
0/A
617
P3.
7/T
A1.
1/A
718
P2.
3/T
A0.
1/A
3/V
RE
F-/
VE
FE
F-/
CA
019
P2.
4/T
A0.
2/A
4/V
RE
F+
/VE
RE
F+/
CA
120
R4
3210
K
C6
570
.1uF
R4
35
10K
+C
17
11
0uF
C6
661
uF
R4
3110
0K
C6
53
1u
F
R18
410
K
R4
34 2K
Y3
32.
768K
Hz
14
23
Spectrum Digital, Inc
A-47
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
EV
M_1
2V
EV
M_3
V3
EV
M_
1V0
_CO
N
EV
M_5
V0
EV
M_5
V0
EV
M_
5V0
EV
M_
12V
EV
M_5
V0
EV
M_
1V0_
CO
N
EV
M_5
V0
EV
M_3
V3
EV
M_1
2V
EV
M_1
V0
_AV
S
EV
M_1
2V
EV
M_3
V3
EV
M_5
V0
EV
M_
1V0_
CO
N9
,11
,15
,16
,17
,20
,44,
50
I_M
ON
_1
V0
_C
ON
N_
HIG
H44
I_M
ON
_5
V0
_H
IGH
44
I_M
ON
_3
V3
_H
IGH
44
EV
M_1
V0_
CO
N9
,11,
15,1
6,1
7,2
0,4
4,50
EV
M_5
V0
11
,23
,25
,39
,41,
43
,44,
49,5
0,5
1
EV
M_
3V3
2,3
,5,6
,11
,13
,14
,15
,18
,21
,22
,23
,24
,26
,27
,28
,29
,30
,31,
32
,33,
34
,35,
36,3
7,3
8,3
9,4
1,4
3,4
4,45
,48,
49,5
0,51
EV
M_1
2V2
3,2
4,3
9,4
1,4
3,47
,51
EV
M_1
V0_
AV
S1
8,2
0,4
4,4
9
EV
M_1
2V
23
,24
,39
,41,
43
,47,
51
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
046
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
PO
WE
R S
UP
PL
Y I
II
CURRENT MONITOR
CURRENT MONITOR
CURRENT MONITOR
Rbottom = VFBxRtop/(VOUT-VFB)
Rbottom = 0.8xRtop/(4.2)
Rbottom = VFBxRtop/(VOUT-VFB)
Rbottom = 0.8xRtop/(2.5)
Rbottom = VFBxRtop/(VOUT-VFB)
Rbottom = 0.8xRtop/(.2)
U1
6
TP
S65
232
BG
1
VIN
BQ
2
V6V
3
VIN
4
FB
25
CM
P2
6
EN
_BC
K2
7
PG
ND
2.1
8
PG
ND
2.2
9
PH
2.1
10
PH
2.2
11
VIN
B2.
112
VIN
B2.
213
BS
T2
14
DG
ND
15
LDR
V16
HD
RV
17
PH
118
BS
T1
19
EN
_BC
K1
20
CM
P1
21
FB
122
SS
23
TR
IP24
PWR PAD 49
V3P
325
AG
ND
.126
AG
ND
.227
AG
ND
.328
AG
ND
.429
AG
ND
.530
FB
331
CM
P3
32
EN
_BC
K3
33
PG
ND
3.1
34
PG
ND
3.2
35
PH
3.1
36
PH
3.2
37
VIN
B3.
138
VIN
B3.
239
BS
T3
40
AG
ND
.641
AG
ND
.742
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ND
.843
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ND
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ND
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45
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ND
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46
AG
ND
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47
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ND
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48
C4
911
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73
330
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00
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910
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72
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F
Spectrum Digital, Inc
A-48 C6A816x/AM389x EVM Technical Reference
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
EV
M_1
2V
EV
M_
1V5
EV
M_1
2V
EV
M_1
V5
EV
M_1
V8_
D
EV
M_1
V8_
D
EV
M_1
V5
7,8
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ON
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V5
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H44
EV
M_1
2V2
3,2
4,3
9,4
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6,5
1
EV
M_
1V5
7,8
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,22
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,48
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51
EV
M_1
V8_
D5
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44,
50
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
047
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
PO
WE
R S
UP
PL
Y 1
V5
/1V
8 M
EM
OR
Y
CURRENT MONITOR
NETRA
MEMORY POWER SUPPLY 1.5/1.8V
PLL AND VTT USE ALT_1V5 POWER SUPPLY SO DDR2 AND DDR3 CAN BE SUPPORTED
Rtop = (Vout-Vref/Vref) * RBottom
10K = (1.5-0.8/0.8) * RBottom
10K = 1.25 * RBottom
FOR 1.5 VOLTS
10K = 0.875 * RBottom
FOR 1.8 VOLTS
11.5K = RBottom
8.06K = RBottom
C1
264
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F
JP
1
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AD
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3
12
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119
10
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12
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6
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SE
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10
PH
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9
CO
MP
8
C1
27
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F
R2
061
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30
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F
Spectrum Digital, Inc
A-49
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
EV
M_A
LT
_1V
5
EV
M_3
V3
EV
M_3
V3
EV
M_A
LT_1
V5
EV
M_1
V5
EV
M_1
V5
EV
M_3
V3
2,3
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,11
,13
,14
,15
,18
,21
,22
,23
,24
,26,
27
,28,
29
,30,
31,3
2,3
3,3
4,3
5,3
6,3
7,3
8,3
9,4
1,4
3,4
4,4
5,4
6,4
9,5
0,5
1
EV
M_A
LT
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51
6,44
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ON
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LT
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H44
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M_
AL
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16
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EV
M_1
V5
7,8
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,47
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Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
048
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
PO
WE
R S
UP
PLY
1V
5 A
LT
VOUT = 0.8 * ( 1+(RTOP/RBOTTOM) )
1.5 = 0.8 * ( 1+(RTOP/RBOTTOM ))
1.875 = ( 1+(RTOP/RBOTTOM ))
0.875 RBOTTOM = RTOP
CURRENT MONITOR
R2
0810
K
C7
97
2.2
uF
R4
864
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K 1
%
U6
7TP
S74
701
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84
0.0
2
R2
071
K
Spectrum Digital, Inc
A-50 C6A816x/AM389x EVM Technical Reference
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
EV
M_5
V0
EV
M_1
V0_
AV
S
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M_
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0_I
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14
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11
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41
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50,
51
EV
M_3
V3
2,3
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,13
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,15
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,27
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,29
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,35,
36
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,38
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,43
,44
,45
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48,5
0,5
1E
VM
_1V
0_A
VS
18,2
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4
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L I
NC
OR
PO
RA
TE
D
5138
32-0
001
We
dn
esd
ay,
No
vem
ber
03
, 20
10
4952
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
PO
WE
R S
UP
PL
Y 1
V0
_A
VS
CURRENT MONITOR
SUPPORT OUTPUT VOLTAGES OF 0.75 TO 1.2 VOLTS
0.75 V R = 38.3K
1.00 V R = 14.7K
1.2 V R = 10.0K
DESIGNED FOR 1 VOLT
R1
5N
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OP
TP
14T
ES
T P
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1
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1
R1
3N
O-P
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R1
33
38
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K
Spectrum Digital, Inc
A-51
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
EV
M_5
V0
EV
M_0
V9
0V9_
A
1V
8_D
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AL
EV
M_5
V0
0V9_
A
1V
8_A
NA
LOG
EV
M_3
V3
EV
M_1
V0_
CO
N
EV
M_5
V0
EV
M_3
V3
EV
M_
3V3
EV
M_1
V5
EV
M_
1V0_
CO
N
EV
M_5
V0
EV
M_3
V3
EV
M_1
V5
EV
M_
1V8
_D
EV
M_1
V8_
A
1V
8_
DIG
ITA
L
1V
8_
AN
ALO
G
EV
M_
1V8_
D
EV
M_1
V8_
A
I_M
ON
_0
V9
_H
IGH
44
EV
M_0
V9
5,4
4
EV
M_
1V0_
CO
N9
,11
,15
,16
,17
,20
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46
EV
M_
5V0
11,2
3,2
5,3
9,4
1,4
3,4
4,4
6,4
9,5
1
EV
M_
3V3
2,3
,5,6
,11
,13
,14
,15
,18
,21
,22
,23
,24
,26
,27
,28
,29
,30
,31,
32
,33,
34
,35,
36,3
7,3
8,3
9,4
1,4
3,4
4,45
,46,
48,4
9,51
EV
M_1
V5
7,8
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21
,22,
44
,47
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M_1
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D5
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16
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47
EV
M_1
V8
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44
I_M
ON
_1
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DIG
ITA
L_H
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44
I_M
ON
_1
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AL
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4
EV
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7
EV
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Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
050
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
PO
WE
R S
UP
PL
Y 0
V9
/1V
8_
A/1
V8
B
CURRENT MONITOR
CURRENT MONITOR
CURRENT MONITOR
Reset
Threhold 0.84 Volts
VDCDC = VFB_DCDC x (( Rtop + Rbottom)/Rbottom )
VLDO1 = VFB_LDO x (( Rtop + Rbottom)/Rbottom )
VLDO2 = VFB_LDO x (( Rtop + Rbottom)/Rbottom )
VDCDC = 0.6 x (( Rtop + Rbottom)/Rbottom )
VLDO1 = 0.5 x (( Rtop + Rbottom)/Rbottom )
VLDO2 = 0.5 x (( Rtop + Rbottom)/Rbottom )
TP
9N
O-P
OP
1
R5
38
0.6
K 1
%C
23
0.1
uF
R2
041
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R5
510
K
+C
20
33
uF
U1
0
TP
S65
001
VIN
DC
DC
8
EN
_DC
DC
10
MO
DE
9
VIN
LDO
115
EN
_LD
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3
VIN
LDO
218
EN
_LD
O2
4
PG
ND
6A
GN
D12
PG
n5
SW
7
FB
_DC
DC
11
VLD
O1
14
VLD
O2
17
FB
_LD
O1
13
FB
_LD
O2
16
PWR_PAD 21
RS
Tn
20
MR
n1
TR
ST
2
RS
TS
NS
19
C7
12.1
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33
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54
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1 R5
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1
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01
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21
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10
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7
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41
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TP
71
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TP
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D2
MR
3
CT
4
SE
NS
E1
5V
DD
6
C1
8
0.1
uF
R4
70
.02
Spectrum Digital, Inc
A-52 C6A816x/AM389x EVM Technical Reference
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
EV
M_1
2V
EV
M_3
V3
EV
M_3
V3
EV
M_1
V5
EV
M_3
V3
EV
M_5
V0
EV
M_1
2V
EV
M_5
V0
EV
M_3
V3
EV
M_1
2V
EV
M_1
V5
EV
M_1
2V
CP
U_
PO
Rz
14
EV
M_5
V0
11,2
3,2
5,3
9,4
1,4
3,4
4,4
6,4
9,5
0
EV
M_3
V3
2,3
,5,6
,11
,13
,14
,15,
18
,21,
22
,23
,24
,26
,27
,28
,29
,30
,31
,32
,33
,34
,35
,36
,37
,38
,39,
41
,43,
44,4
5,4
6,4
8,49
,50
EV
M_1
2V2
3,2
4,3
9,4
1,4
3,4
6,47
EV
M_1
V5
7,8
,17
,20,
21
,22,
44
,47
,48
,50
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
A
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
051
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
PO
WE
R I
NP
UT
2.5
MM
JA
CK
SILKSCREEN:
12V IN
ResetThrehold 0.84 Volts
BOARD
MOUNTING HOLES - ONE IN EACH CORNER
Mounting holes 0.250 pad 0.125 drill
BOARD MOUNTING HOLES - FOR EXPANSION CONNECTORS
PCB EDGE
TACH
FAN CONNECTOR
MH
11
J8
DR
IVE
CO
NN
+12
1
GN
D2
2
GN
D1
3
+5
4
MP
18
MP
29
MH
16
MH
27
SW
6
PU
SH
BU
TT
ON
SW
A A1
B1
B
TP
16T
ES
T P
OIN
T1
R5
2k
MH
6
1
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410
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MH
81
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SM
CJ1
4A
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F
R16
610
K
TP
17
TE
ST
PO
INT
1
MH
71
MH
3
1
TP
2T
P-3
0
SW
1S
WIT
CH
3
1
6
4
52 78
DS
1L
ED
GR
N
U3
2
TP
S3
808
G0
9DB
VR
G4
RE
SE
T1
GN
D2
MR
3
CT
4
SE
NS
E1
5V
DD
6
TP
5T
ES
T P
OIN
T1
MH
21
TP
23T
ES
T P
OIN
T1
P11
HE
AD
ER
3
1 2 3
TP
1T
ES
T P
OIN
T1
F1
F_
4.0
A
12
R1
6710
K
TP6
TE
ST
PO
INT
1
C6
35
0.1
uF
C6
33
0.1
uF
R1
781
0K
1%
R1
79
4.9
9K
MH
4
1
TP
25T
ES
T P
OIN
T1
J1
RA
SM
712
SLE
EV
ES
HU
NT
CE
NT
ER
TP
26T
ES
T P
OIN
T1
MH
91
MH
5
1
Spectrum Digital, Inc
A-53
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
B
SP
EC
TR
UM
DIG
ITA
L I
NC
OR
PO
RA
TE
D
5138
32-0
001
We
dn
esd
ay,
No
vem
ber
03
, 20
10
5252
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
PO
WE
R S
EQ
UE
NC
E
1.0
2.0
3.0
3.5
EVM_3V3
EVM_1V0_CON
EVM_1V0_AVS
10
20
30
40
50
60
70
80
90
EVM_1V8_D
EVM_1V8_A
EVM_1V5 ( ACTUALLY 1V8 FOR DDR2 )
ALT_EVM_1V5
EVM_0V9
EVM_1V5
MILLISECONDS
VOLTS
Spectrum Digital, Inc
A-54 C6A816x/AM389x EVM Technical Reference
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
Siz
e:
Da
te:
DW
G N
OR
evi
sio
n:
Sh
eet
of
Titl
e:
Pa
ge
Co
nte
nts
:
B
SP
EC
TR
UM
DIG
ITA
L IN
CO
RP
OR
AT
ED
5138
32-0
001
Wed
ne
sda
y, N
ove
mbe
r 0
3, 2
01
052
52
B
NE
TR
A E
VM
with
DIM
M M
EM
OR
Y
RE
VIS
ION
S
INITIAL RELEASE
REVISION A - MAY 31, 2010
ADDED
ETHERNET MDIO ADDRESS FIX
REVISION B - AUG 1, 2010
ADDED
EXTERNAL REFERENCE FOR VDAC
UPDATED POWER SEQUENCING
B-1
Appendix B
Mechanical Information
This appendix contains the mechanical information about theC6A816x/AM389x EVM produced by Spectrum Digital.
Spectrum Digital, Inc
B-2 C6A816x/AM389x EVM Technical Reference
TH
IS D
RA
WIN
G IS
NO
T T
O S
CA
LE
Printed in U.S.A., January 2011513830-0001 Rev A
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