Table of Contents
MxL7204 EVB Manual Table of Contents
2/13/18 ii
Introduction .................................................................................................................................1Ordering Information ..................................................................................................................2Evaluation Board Overview .......................................................................................................2
System Set-Up .................................................................................................................................. 2
Powering Up the Evaluation Board ................................................................................................. 3
Monitoring or Testing VOUT .............................................................................................................. 3
Header EXTVCC ................................................................................................................................ 4
Jumper J_MODE ............................................................................................................................... 4
Jumper J_TRACK1 ........................................................................................................................... 5
Jumper J_TRACK2 ........................................................................................................................... 5
Jumpers J_RUN1 and J_RUN2 ........................................................................................................ 6
PGOOD .............................................................................................................................................. 6
Pin Configuration .......................................................................................................................7MxL7204EVB Schematic ............................................................................................................8MxL7204EVB PCB Layers ..........................................................................................................9MxL7204EVB Bill of Materials .................................................................................................13
List of Tables
MxL7204 EVB Manual List of Tables
iii2/13/18
Table 1: Evaluation Board Ordering Part Number ........................................................................2
Table 2: Factory Settings ..............................................................................................................2
Table 3: Jumper J_MODE ...........................................................................................................4
Table 4: Jumper J_TRACK1 ........................................................................................................6
Table 5: Jumper J_TRACK2 ........................................................................................................6
Table 6: EVB Bill of Materials ..................................................................................................... 11
List of Figures
MxL7204 EVB Manual List of Figures
iv2/13/18
Figure 1: Top View of MxL7204EVB .............................................................................................1
Figure 2: Block Diagram MxL7204EVB ........................................................................................2
Figure 3: Powering Up the Evaluation Board ...............................................................................3
Figure 4: Header EXTVCC ...........................................................................................................4
Figure 5: Jumper J_MODE ...........................................................................................................4
Figure 6: J_TRACK Jumpers........................................................................................................5
Figure 7: RUN Connectors ...........................................................................................................6
Figure 8: Pin Configuration ...........................................................................................................7
Figure 9: EVB Schematic .............................................................................................................8
Figure 10: EVB PCB, Top View ....................................................................................................9
Figure 11: EVB PCB Layer 2, Ground Plane ..............................................................................10
Figure 12: EVB PCB Layer 3, Signal Plane................................................................................ 11
Figure 13: EVB PCB, Bottom View .............................................................................................12
MxL7204 EVB Manual
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Introduction
IntroductionThe MxL7204 evaluation board provides a platform to evaluate the features and performance of the MxL7204. The MxL7204 is a dual 4A Power Module optimized for powering Telecom, Networking and Industrial equipment.
The factory default configuration for the MxL7204 Evaluation Board is
■ VOUT1 = 3.3V ■ VOUT2 = 1.8V ■ 780kHz switching frequency
Please refer to the MxL7204 datasheet for additional information about the MxL7204, including efficiency curves for this configuration with VIN = 12V.
Figure 1: Top View of MxL7204EVB
MxL7204 EVB Manual
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Ordering InformationTable 1: Evaluation Board Ordering Part NumberPower Module Evaluation BoardMxL7204-AYA-T MxL7204EVB
NOTE:
1. Refer to www.exar.com/MxL7204 for most up-to-date Ordering Information.
Evaluation Board OverviewThe block diagram shown in Figure 2 illustrates the connection points for VIN, VOUT1, VOUT2, TRACK, MODE and RUN pins.
Ordering Information / Overview
System Set-UpJumpers are factory installed per Table 2 to configure the EVB for operation. Jumper and testing options are described in the next sections. Refer to the product data sheet for additional information.
Table 2: Factory Settings
Jumper Factory Setting DescriptionJ_MODE Jumper 1-3 Mode_PLLIN = GND, forced Continuous Conduction Mode (CCM)
J_TRACK1 Jumper 2-3 TRACK/SS1 = GND, Soft-Start mode
J_TRACK2 Jumper 5-6 TRACK/SS2 = GND, Soft-Start mode
Figure 2: Block Diagram MxL7204EVB
TRACK1
MXL7204
TRACK2
RUN
MODE
VIN
VOUT1 VOUT2
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Powering Up the Evaluation Board■ Connect the VIN+/VIN- with short, thick leads to a 5.5V to 20V (12V typical) power supply. Use
test pins VIN and GND to monitor VIN and GND respectively. See Note A.■ Turn on the power supply. The MxL7204 EVB will power up and regulate the channel 1 output at
3.3V and channel 2 output at 1.8V.
Figure 3: VIN and VOUT Connections
Powering Up
Note A
Note B
Note A
Note C Note CNote B
Monitoring or Testing VOUT■ For the channel 1 output, connect VOUT1+/VOUT1- with short, thick leads to an electronic load
or DUT. Use test pins VOUT1 and GND9 to monitor VOUT1+ and VOUT1- respectively. SeeNote B.
■ For the channel 2 output, connect VOUT2+/VOUT2- with short, thick leads to an electronic loador DUT. Use test pins VOUT2 and GND8 to monitor VOUT2+ and VOUT2- respectively. SeeNote C.
MxL7204 EVB Manual
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If there is no jumper or if the jumper is set to the PS position with the jumper connected between EXT_CLK and PS (1-2), and with MODE_PLLIN floating (no jumper) or connected to INTVCC (1-2), both channels are forced into pulse-skipping mode of operation.
An external clock supply may be applied to MODE_PLLIN pin. To do this, first remove the J_MODE jumper and connect the external clock to EXT_CLK. This will force both channels into continuous mode of operation.
Jumper J_MODEBy default, the jumper is set in CCM position (2-3) with the jumper connected between EXT_CLK and CCM. In this configuration, connect MODE_PLLIN pin to SGND which forces both channels into forced continuous mode of operation. The MxL7204 EVB will operate in “forced CCM”.
Table 3: Jumper J_MODE Pin Number Name on Board1 PS
2 EXT_CLK
3 CCM
Figure 5: Jumper J_MODE
Header EXTVCCAn external power input may be applied to EXTVCC. It is enabled into the MxL7204 through an internal switch in the IC to drive INTVCC whenever EXTVCC is greater than 4.7V. Do not exceed 6V on the EXTVCC input. Connect the EXTVCC pin to VIN when VIN is less than 5.5V. Note from the datasheet that VIN must be applied before EXTVCC and EXTVCC must be removed before VIN.
Figure 4: Header EXTVCC
Jumpers and Options
MxL7204 EVB Manual
2/13/18 5
Jumper J_TRACK1By default, the jumper is set in the SOFT-START position with TRACK1 pin connect to GND (2-3). Refer to pin description the product datasheet for other options. Changing the jumper to (1-2) connects the TRACK1 pin for output voltage tracking.
Jumper J_TRACK2By default, the jumper is set in the SOFT-START position with TRACK2 pin connect to GND (5-6). Refer to the pin description of the product datasheet for other options. Note that the jumper can be changed to 3-4 for TRACK (using R15 and R18 on bottom side) or 1-2 (using R10 and R13 on bottom side) to change the resistor values for TRACK. These resistors can be populated as desired. See the schematic as an example where R15 = R18 = 60.4kΩ.
Figure 6: J_TRACK Jumpers
Jumpers and Options
MxL7204 EVB Manual
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Jumpers and Options
Figure 7: RUN Connectors
Table 4: Jumper J_TRACK1 Pin Number Name on Board1 TRACK
2
3 SOFT-START
Table 5: Jumper J_TRACK2 Pin Number Name on Board5-6 SOFT-START
3-4 EXT
1-2 VOUT1
Jumpers J_RUN1 and J_RUN2If desired, putting a jumper on headers J_RUN1 or J_RUN2 will inhibit their respective outputs, VOUT1 or VOUT2. Without a jumper on the respective J_RUN header, the output will not be inhibited.
PGOODThe Power Good output can be monitored. Also there is another point, PGOOD_PULLUP, where a different pullup voltage can be applied to alter the PGOOD high level voltage.
MxL7204 EVB Manual
2/13/18 7
Pin Configuration
TOP VIEW
21119 0187654321
L
K
J
H
G
F
E
D
C
B
M
A
VIN
SGND
VOUT1VOUT2
GND
RUN2
EXTVCC
SW2
PGOOD
INTVCC
FREQ/PLLFLTR
SW1
COMP1COMP2VFB2 VFB1 TK/SS1TK/SS2
MODE/PLLIN
RUN1
Pin Configuration
Top View, 15mm x 15mm x 2.82mm LGA
Figure 8: Pin Configuration
MxL7204 EVB Manual
2/13/18 8
EVB Schematic
MxL7204EVB Schematic
Figure 9: EVB Schematic
1 1
2 2
3 3
4 4
5 5
6 6
DD
CC
BB
AA
Title
Num
berRevision
Size
CDate:
2/15/2018Sheet of
File:C:\U
sers\..\DD_M
XL7204_EV
B_FIN
AL_02_15_2018.SC
HDOC
Draw
n By:
1EX
TVCC
1PG
OOD
1GND2
1VOUT2
1TR
ACK1
123
J_MODE
3pin Jump
1
PLLIN
1
GND4
1
GND5
1
RUN1
1
GND6
1
RUN2
1
GND7
1
GND8
1
GND9
1
GND10
1
GND11
1
FSET
1 2
J_RUN2
1 2
J_RUN1
VFB
230.1k
0603R19
33pF0603C6
COUT100
VOUT2
10V1210
COUT2
10V1210
COUT3
10V1210
COUT4
1GND1
1VOUT1
COUT7
10V1210
COUT6
10V1210
COUT8
NS
1210
COUT103
VFB
113.3k
0603R25
22pF0603C9
VOUT1
1
GND
1
VIN
120uF 35V
CIN1
CIN100
10uF 50V1210
CIN2
10uF 50V1210
CIN3
10uF 50V1210
CIN4
10uF 50V1210
CIN5
4.7uF 16V0805C1
INTV
CC
1uF 16V0805C2
EXTV
CC
DNP
0603R111
VOUT1
DNP
0603R112 V
OUT2
10uF 16V0805C104
DNP
0603R39
RUN2
RUN1
DNP
0603R14
DNP
0603R17
VFB
2VFB
1
DNP
0603R28
COMP2
COMP1
10k
0603R24
INTV
CC
PGOOD 205K
0603R30
FSET
INTV
CC
COMP1
COMP2
0402R113
DNP
0402R114
DNP
0402
C12
DNP
0402
C106D
NP
0402
C107
DNP
0402
C10D
NP
RUN1
DNP
0603
C3
RUN2
DNP
0603
C4
TRACK_SS1
123
J_TRACK1
3pin Jump
0.1uF0603
C5
60.4k
0603R9
60.4k
0603
R12
1
TRACK_SO
FT_START_1TR
ACK/SS2
0.1uF0603
C7
60.4k
0603
R18
1TR
ACK2
60.4k
0603R15
1
TRACK_SO
FT_START_2
DNP
0603
R13
DNP
0603R10
VOUT1
TOP_1
SW2
SW1
VIN
MODE_PLLIN
SW1
H10
EXTVCC J4
FREQ
_PLLFLTRJ8
SGND
J6
MODE_PLLIN
H8
INTVCC F6
SW2
H3
VFB
1K7
VFB
2K6
RUN1
J9
RUN2
J5
TRACK/SS1
K8
TRACK/SS2
K5
PGOOD
H5
COMP1
L7
COMP2
L6
SGND
J7
SGND
H6
SGND
H7
VOUT1
A10
VOUT1
A11
VOUT1
A12
VOUT1
B10
VOUT1
B11
VOUT1
B12
VOUT1
C10
VOUT1
C11
VOUT1
C12
VOUT1
D10
VOUT1
D11
VOUT1
D12
VOUT2
A1
VOUT2
A2
VOUT2
A3
VOUT2
B1
VOUT2
B2
VOUT2
B3
VOUT2
C1
VOUT2
C2
VOUT2
C3
VOUT2
D1
VOUT2
D2
VOUT2
D3
GND
A4
GND
H1
GND
H2
GND
H4
GND
H9
GND
H11
VIN J1
VIN J2
VIN J3
VIN J10
VIN J11
VIN J12
VIN K1
VIN K2
VIN K3
VIN K4
VIN K9
VIN K10
VIN K11
VIN K12
VIN L1
VIN L2
VIN L3
VIN L4
VIN L5
VIN L8
VIN L9
VIN L10
VIN L11
VIN L12
VIN M1
VIN M2
VIN M3
VIN M4
VIN M5
VIN M6
VIN M7
VIN M8
VIN M9
VIN M10
VIN M11
VIN M12
GNDG9
GNDG10
GNDG11
GNDG12
GNDF1
GNDF2
GNDF3
GNDF4
GNDF5
GNDF7
GNDF8
GNDF9
GNDF10
GNDF11
GNDF12
GNDE1
GNDE2
GNDE3
GNDE4
GNDE5
GNDE6
GNDE7
GNDE8
GNDE9
GNDE10
GNDE11
GNDE12
GNDD4
GNDD5
GNDD6
GNDD7
GNDD8
GNDD9
GNDC4
GNDC5
GNDC6
GNDC7
GNDC8
GNDC9
GND
H12
GND
G1
GND
G2
GND
G3
GND
G4
GNDG5
GNDG6
GNDG7
GNDG8
GNDB4
GNDB5
GND
B6
GND
B7
GND
B8
GND
B9
GND
A5
GND
A6
GND
A7
GND
A8
GND
A9 U
1
DNP
0603R200
1
PGOOD_PU
LLUP
DNP
0603R16
INTV
CC
VIN
12
34
56
J_TRACK2
Header 3X
2
LOGO
1MHOLE
2MHOLE
3MHOLE
4MHOLE
TRACK_SS1
TRACK/SS2
12
VOUT1+
BLA
DETER
M
12
VOUT1-
BLA
DETER
M
12
VOUT2+
BLA
DETER
M
12
VOUT2-
BLA
DETER
M
12
VIN+BLA
DETER
M
12
VIN-BLA
DETER
M
DP
1DPSW
1
DP
1DPG
ND1DP
1DPSW
2
DP
1DPG
ND2
DNP
0603
R100
NS
NS
10V1210
COUT5
COUT1
NS NS
MXL7204
MXL7204-D
EMO EV
ALU
ATIO
N BOARD
146-6734-022.0
1 of 1
MxL7204 EVB Manual
2/13/18 9
MxL7204EVB PCB Layers
PCB
Figure 10: EVB PCB, Top View
MxL7204 EVB Manual
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Figure 11: EVB PCB Layer 2, Ground Plane
PCB
MxL7204 EVB Manual
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Figure 12: EVB PCB Layer 3, Signal Plane
PCB
MxL7204 EVB Manual
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PCB
Figure 13: EVB PCB, Bottom View
MxL7204 EVB Manual
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MxL7204EVB Bill of MaterialsTable 6: EVB Bill of Materials
Item Qty Reference Designator Manufacturer Part Number Package Size Component
1 1 PCB MaxLinear 146-6734-02 PCBMXL7204EVB Evaluation Board
2 1 U1 MaxLinear MXL7204AYA-T 15x15mmLGAMXL7204 Power Module
3 1 CIN100 Panasonic 35SVPF120M 10.3x10.3mm OSCON 120µF, 35V
4 4 CIN2, CIN3, CIN4, CIN5 Murata GRM32ER71H106KA12L 1210
Ceramic Cap., 10µF, 50V, X7R, 10%
5 3COUT2, COUT3, COUT4
Murata GRM32ER71A476KE15L 1210Ceramic Cap., 47µF, 10V, X7R, 10%
6 3COUT5, COUT8, COUT6
Murata GRM32ER71A476KE15L 1210Ceramic Cap., 47µF, 10V, X7R, 10%
7 1 C6 Murata GRM1885C1H330JA01D 0603Ceramic Cap., 33µF, 50V, NP0, 10%
8 1 C9 Murata GRM1885C1H220JA01D 0603Ceramic Cap., 22µF, 50V, NP0, 10%
9 2 C1, C104 Murata GRM21BR71C475KA73L 0805Ceramic Cap., 4.7µF, 16V, X7R, 10%
10 1 C2 Murata GRM188R71C105KA12D 0603Ceramic Cap., 1.0µF, 16V, X7R, 10%
11 2 C5, C7 Murata GRM188R71H104KA93D 0603Ceramic Cap., 0.1µF, 50V, X7R, 10%
12 1 R19 Panasonic ERJ-3EKF3012V 0603Resistor 30.1kΩ, 1/10W, 1%, SMD
13 1 R25 Panasonic ERJ-3EKF1332V 0603Resistor 13.3kΩ, 1/10W, 1%, SMD
14 1 R30 Panasonic ERJ-3EKF2053V 0603Resistor 205kΩ, 1/10W, 1%, SMD
15 1 R24 Panasonic ERJ-3EKF1002V 0603Resistor 10.0kΩ, 1/10W, 1%, SMD
16 4VIN, GND, VOUT1, VOUT2
Wurth Elektronik 61300111121 2.54mm Header 1 pin
17 4 GND1, GND8, GND9, GND11 Wurth Elektronik 61300111121 2.54mm Header 1 pin
18 2 J_TRACK1, J_MODE Wurth Elektronik 61300311121 2.54mm Header 3 pin
19 2 J_RUN1, J_RUN2 Wurth Elektronik 61300211121 2.54mm Header 2 pin
20 1 J_TRACK2 Wurth Elektronik 61300621121 2.54mm Header 6 pin dual row21 2 VIN+, VIN- Wurth Elektronik 7471287 0.32x0.10in Blade connectors
22 2 VOUT1+, VOUT1- Wurth Elektronik 7471287 0.32x0.10in Blade connectors
23 2 VOUT2+, VOUT2- Wurth Elektronik 7471287 0.32x0.10in Blade connectors
Bill of Materials
MaxLinear, Inc. 5966 La Place Court, Suite 100 Carlsbad, CA 92008 760.692.0711 p 760.444.8598 f
www.maxlinear.com
14
Disclaimer
The content of this document is furnished for informational use only, is subject to change without notice, and should not be construed as a commitment by MaxLinear, Inc.. MaxLinear, Inc. assumes no responsibility or liability for any errors or inaccuracies that may appear in the informational content contained in this guide. Complying with all applicable copyright laws is the responsibility of the user. Without limiting the rights under copyright, no part of this document may be reproduced into, stored in, or introduced into a retrieval system, or transmitted in any form or by any means (electronic, mechanical, photocopying, recording, or otherwise), or for any purpose, without the express written permission of MaxLinear, Inc.
MaxLinear, Inc. may have patents, patent applications, trademarks, copyrights, or other intellectual property rights covering subject matter in this document. Except as expressly provided in any written license agreement from MaxLinear, Inc., the furnishing of this document does not give you any license to these patents, trademarks, copyrights, or other intellectual property.
Trademarks Company and product names may be registered trademarks or trademarks of the respective owners with which they are associated.
Copyright © 2018 MaxLinear, Inc. All rights reserved.
High Performance Analog 1060 Rincon Circle San Jose, California 95131 USA 669.265.6100 p 669.265.6101 f Email: [email protected]
2/13/18
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