dstinis400/dstinis-00x sockets evaluation board
TRANSCRIPT
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GENERAL DESCRIPTION The TINI® sockets boards are motherboards designed to host the corresponding TINI evaluation module. The combination of the two boards allows full evaluation of the features of the target microprocessor. To evaluate the DS80C400, you only need to order the DS80C400-KIT. To evaluate the DS80C410 or DS80C411, you must order both the DSTINIm410# and the DSTINIs400# and use them together. The DSTINIm410# is used to evaluate both the DS80C410 and DS80C411. Although various boards support different evaluation modules, the most popular is the DSTINIs400#. It includes a 144-pin SODIMM connector and provides 1-Wire®, CAN2.0B, serial, and a 10/100 Ethernet PHY for connecting the DSTINIm400# or DSTINIm410# to the physical world. The DSTINIm400# and DSTINIm410# are designed as modules to be plugged into the 144-pin SODIMM connector on the DSTINIs400#. All are fully assembled and, when used together in the correct combinations, they form a complete evaluation system for the network microcontroller. The DSTINIm400# and DSTINIm410# modules include the DS80C400 and DS80C410 network microcontrollers, a real-time clock, 1MB flash, 1MB static RAM, and support for an external Ethernet PHY for connecting to a wide variety of networks. Detailed information about the initial setup process and use of the TINI platform is contained in Application Note 612: Getting Started with the TINIm400 (DS80C400) Verification Module.
ORDERING INFORMATION PART INPUT
VOLTAGE* USED WITH
MODULE DIMENSIONS
DSTINIs400 Replaced with DSTINIs400#
DSTINIs400# 5V DC regulated DSTINIm400 12cm x 10cm
DSTINIs-005 5V DC regulated
DSTINI1-1MG, DSTINI1-512 16cm x 10cm
DSTINIs-006 9V to 18V DC
DSTINI1-1MG, DSTINI1-512 16cm x 10cm
Note: The DSTINIm400 is an evaluation board and is only tested to prototype standards. It is not tested for use in a production product. *The user must supply an external power supply. # Denotes a RoHS-compliant device that may include lead that is exempt under the RoHS requirements.
FEATURES Hosts the TINI Runtime Environment in
Validated Hardware Design (in Conjunction with the DSTINIm400)
10/100 Base-T Ethernet Port Two Serial Ports Dual 1-Wire Network Ports CAN2.0B Port 5.0V Single-Supply Operation (DSTINIm400) Fully Assembled and Tested Design
COMPONENT LIST
DESIGNATION QTY DESCRIPTION
C1 1 47pFcapacitor (1206) C2, C4, C5, C6 4 47μF capacitors (1206)
C3, C7, C9, C13, C15, C26, C28,
C30, C38 9 100nF capacitors (1206)
C12, C14, C17, C19, C25, C27, C29, C33, C37
9 10nF capacitors (1206)
C8 1 220nF, 16V capacitor (1206) C10, C31, C32,
C34–C36 6 1.0μF capacitors (1206)
C11 1 4.7μF capacitor (1206)
DSTINIs400/DSTINIs-00x Sockets Evaluation Board
www.maxim-ic.com
TINI and 1-Wire are registered trademarks of Dallas Semiconductor Corp., a wholly owned subsidiary of Maxim Integrated Products, Inc.
DSTINIs400/DSTINIs-00x Sockets Evaluation Board
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COMPONENT LIST (continued)DESIGNATION QTY DESCRIPTION
C16, C18 2 270pF capacitor (1206) C20–C22 3 1nF, 2kV radial capacitors C23, C24 2 27pF capacitors (1206)
C40 1 0.10μF ±10%, 50V capacitor (1206)
D1 1 1N5908 D0-201 D2 1 BAT54 SOT-23
D3, D4 2 BAT54S SOT-23
J1 1 SODIMM144 Molex 54698-7000
J2 1 2.5mm center, 5.5mm outside barrel connector
J3–J6, J20, J21, J27 7 Dual-row connectors, 0.025
square pins J7 1 RJ-45 modular jack
J9–J11 3 3 x 1-pin headers, 0.1 centers
J12 1 DB9 serial female J13 1 DB9 serial male J14 1 Pad jumper J16 1 RJ11 modular jack L1 1 22μH inductor
Q1 1 BSS84 SIPMOS FET SOT-23
R1 1 205kΩ ±1% resistor (1206) R2 1 121kΩ ±1% resistor (1206) R3 1 10kΩ ±5% resistor (1206)
R4–R7, R8, R10–R12 8 49.9Ω ±1% resistors (1206)
R13, R9 2 47Ω resistor (1206) R14 1 22.1kΩ ±1% resistor (1206)
R15, R17, R18 3 220Ω resistors (1206)
DESIGNATION QTY DESCRIPTION R16 1 10kΩ resistor (1206) R19 1 Pad jumper R20 1 47kΩ resistor (1206) R21 1 124Ω ±1% resistor (1206)
R22, R23 2 1kΩ resistor (1206) R24 1 10kΩ resistor (1206)
T1 1 BelFuse S558-5999-T7 transformer
U1 1 MAX1692 PWM step-down regulator
U3 1 Intel LXT972ALC Ethernet PHY
U4–U6 3 Dialight 597-7741 LED U7 1 MAX560CAI transceiver
U8 1 DS2480B serial 1-Wire line driver
U9 1 DS9502 ESD protection diode
U11 1 65HVD230D CAN transceiver
Y1 1 25.000MHz, HC49US
Z1–Z3 3 Ferrite Bead, Fair-Rite 2512067007Y3
UNPOPULATED COMPONENTS J15 1 DS9094F iButton® Clip
J18, J28–J30 1 Not used
U2 1 MAX1792EUA18 linear regulator
U10 1 DS2408 1-Wire 8-channel addressable switch
U12 1 Not used
JUMPERS (DSTINIs400) Network Boot Jumper (J3)
JUMPER CONFIGURATION
1-2 DS80C400 attempts to boot through Ethernet using DHCP and TFTP
DTR Reset Jumper (J14) JUMPER CONFIGURATION
1-2 DTR reset communicates with the DS80C400 loader application.
Quiet Boot Jumper (J5) JUMPER CONFIGURATION
1-2 DS80C400 boots without sending loader information to serial port.
iButton is a registered trademark of Dallas Semiconductor Corp., a wholly owned subsidiary of Maxim Integrated Products, Inc.
DSTINIs400/DSTINIs-00x Sockets Evaluation Board
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DSTINIs400 Ethernet Configuration Jumpers (J9, J10, J11) AUTO-
NEGOTIATION SPEED (Mbps) DUPLEX J9 J10 J11
Half 2-3 (L) 2-3 (L) 2-3 (L) 10 Full 2-3 (L) 2-3 (L) 1-2 (H) Half 2-3 (L) 1-2 (H) 2-3 (L) Disabled
100 Full 2-3 (L) 1-2 (H) 1-2 (H) Half 1-2 (H) 2-3 (L) 2-3 (L) 100 Only Full/Half 1-2 (H) 2-3 (L) 1-2 (H)
Half Only 1-2 (H) 1-2 (H) 2-3 (L) Enabled 10/100 Full or Half 1-2 (H) 1-2 (H) 1-2 (H)
PIN HEADERS CONNNECTOR DESCRIPTION
J18 Recreated I/O Port. Latched from 1-Wire bus. Requires installation of DS2408. See schematic.
J20 CAN Bus. See schematic for pinout.
J21 SPI™ Bus. See schematic for pinout. Alternately provides connection to P5.4–P5.7
J27 I2C Bus. See schematic for pinout. Alternately provides connection to P1.0 and P1.1.
J28, J29, J30 Unused. No user-accessible pins available.
QUICK START Recommended Equipment The sockets board requires an external power supply and cables as needed to access the desired features of the board. The 5V DC power supply is mandatory, but the other cables are required only if that feature is to be used. The specific example shown here is for a DSTINIm400#/DSTINIs400# system.
Hardware: 5V DC Power Supply
Input Voltage: per customer requirements Output Voltage: 5V DC ±10% Output Current: >150mA Polarization: Positive Center Output Plug Type: 2.5mm I.D. x 5.5mm O.D. x 12mm female (P-6) Example: Digi-Key (www.digikey.com) part number T309-P6P-ND (110V input), 5V DC power
Ethernet Cable: Note: There are two types of Ethernet cable. For connection to a router or hub, use a standard "straight-through" Ethernet cable. For direct connection to an Ethernet port on the back of a PC, use a "crossover" Ethernet cable. A crossover cable is specially made for two-computer networking. These cables can be purchased from almost any computer or electronics store.
Example (straight-through): Radio Shack (www.radioshack.com) Cat 5E (3ft) Network Cable, part number 278-1763
Example (crossover): Radio Shack Cat 5E (3m) Crossover Cable, part number 278-2011
RS-232C Serial Cable (DB9 Male to DB9 Female): This cable is straight-through, not a null-modem (crossover). These cables can be purchased from any computer or electronics store.
DSTINIs400/DSTINIs-00x Sockets Evaluation Board
4 of 11 Maxim/Dallas Semiconductor cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim/Dallas Semiconductor product. No circuit patent licenses are implied. Maxim/Dallas Semiconductor reserves the right to change the circuitry and specifications without notice at any time. Maxim Integrated Products , 120 San Gabrie l Dr ive , Sunnyvale , CA 94086 408-737-7600
© 2007 Maxim Integrated Products The Maxim logo is a registered trademark of Maxim Integrated Products, Inc. The Dallas logo is a registered trademark of Dallas Semiconductor Corporation.
Important Note Regarding U12 Component U12 is not placed on the product as supplied by Dallas Semiconductor, nor is it available for sale from Dallas Semiconductor. Inclusion of this component and related circuitry in the schematic is intended to demonstrate one method to add I/O expansion capability to the DSTINIs400, but the implementation details are left to the user; any modification of the product is not guaranteed or supported by Dallas Semiconductor. For more information on the possible uses of component U12, refer to Application Note 3664: Expanding TINI’s I/O Capability and Application Note 3412: TINIs400 External Serial Port Reference Design.
MORE INFORMATION TINI platform details can be found at www.maxim-ic.com/TINI. The TINI Specification and Developer’s Guide (Addison-Welsey, 2001) is an invaluable resource when developing with the TINI platform. Download a free copy from our website at www.maxim-ic.com/TINIguide.
ADDITIONAL RESOURCES For detailed information about the initial setup and use of the TINI platform, refer to Application Note 612: Getting Started with the TINIm400 (DS80C400) Verification Module at www.maxim-ic.com/AN612.
DS80C400 Network Microcontroller Data Sheet: www.maxim-ic.com/DS80C400
DS80C410 Networked Microcontroller Data Sheet: www.maxim-ic.com/DS80C410
DS80C400 Evaluation Kit (DS80C400-KIT): www.maxim-ic.com/DS80C400-KIT
DSTINIm400 Networked Microcontroller Evaluation Board: www.maxim-ic.com/DSTINIm400
DSTINIm410 Networked Microcontroller Evaluation Board: www.maxim-ic.com/DSTINIm410
Microcontroller Website: www.maxim-ic.com/microcontrollers
SPI is a trademark of Motorola, Inc.
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MA
X56
0CA
I
C1+12
C1-14
T1I
N7
T2I
N6
T3I
N20
T4I
N21
R1O
UT
8
R2O
UT
5
R3O
UT
26
R4O
UT
22
R5O
UT
19
V+13
VCC11
EN24
SHDN25
C2+15
C2-16
GND 10
V- 17
T1O
UT
2
T2O
UT
3
T3O
UT
1
T4O
UT
28
R1I
N9
R2I
N4
R3I
N27
R4I
N23
R5I
N18
J14
PA
D J
UM
PE
R
+
C3
21
uF
+
C3
51
uF
+
C3
61
uF
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
TX1
XO
WIO
RX
1
VC
C5
VC
C5
VC
C5
P13
P12
Loca
l1W
nE
xtIn
t
Titl
e
Siz
eD
ocu
me
nt
Nu
mb
er
Re
v
Da
te:
She
eto
f
TIN
Is4
00
C
TIN
Im4
00
So
cke
t B
oa
rd:
Ext
ern
al 1
-Wir
e I
nte
rfa
ce a
nd D
S24
08
A
57
We
dn
esd
ay,
Ma
y 2
1,
20
03
Co
pyr
igh
t (C
) 2
00
3 D
alla
s S
em
ico
nd
uct
or
/ M
axi
m
I-B
UT
TO
N C
LIP
EX
TE
RN
AL
1-W
IRE
8 I
/O L
INE
S W
ITH
ST
RO
BE
U9
DS
9502
C1
1
A1
2
NC
13
C2
6
NC
24
A2
5
J17
Pa
d J
um
per
C3
7
0.0
1 u
F
J18
11
x1
1 2 3 4 5 6 7 8 9 10 11
C3
8
0.1
uF
J15
DS
90
94F
U8
DS
2480
B
GND 1VDD4
TX
D7
RX
D8
PO
L6
NC
3
OW
IO2
VP
P5
D2
BA
T54
U1
0
DS
2408
NC
11
NC
1515
NC
1616
VCC3
OW
IO4
GND 5
ST
RB
10
P0
2
P1
14
P2
13
P3
12
P4
11
P5
9
P6
8
P7
7
+C
39
47
uF
J16
RJ1
1
1 2 3 4 5 6
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
C0T
X
C0R
X
SD
A
SC
LK
nP
CE
0n
PC
E1
nP
CE
2n
PC
E3
VC
C3
VC
C5
VC
C5
VC
C5
VC
C3
VC
C5
VC
C3
VC
C5
VC
C5
V50
V33
V33
P50
P51
P10
P11
nP
CE
[3:0
]
nS
hDn
Titl
e
Siz
eD
ocu
me
nt
Nu
mb
er
Re
v
Da
te:
She
eto
f
TIN
Is4
00
C
TIN
Im4
00
So
cke
t B
oa
rd:
Oth
er
I/O
A
67
We
dn
esd
ay,
Ma
y 2
1,
20
03
Co
pyr
igh
t (C
) 2
00
3 D
alla
s S
em
ico
nd
uct
or
/ M
axi
m
I2C
BU
S
CA
N B
US
CO
NN
EC
T T
O T
ER
MIN
AT
E
SPI
D4
BA
T54
S
12
3
R2
21
K
J19 R
21
124
J21
4x2
12
34
56
78
R2
31
K
C4
0
0.1
uF
J26
Pa
d J
um
per
J20
5x2
1 2 3 4 5 6 7 8 9 10
J27
4 H
EA
DE
R P
INS
, 0
.1"
1 2 3 4
R2
4
10K
J22
J23
J24
U1
1
SN
65
HV
D23
0
VCC3 GND 2
RS
8
CA
NH
7
CA
NL
6
TX
D1
RX
D4
VR
EF
5
J25
D3
BA
T54
S
12
3
5 5
4 4
3 3
2 2
1 1
DD
CC
BB
AA
D7
D6
D5
D4
D3
D2
D1
D0
nC
E3
nC
E4
nC
E5
nC
E6
nC
E7
A1
A17
A19A20
A18
A16
UIO
0U
IO1
UIO
2U
IO3
UIO
4UIO5
UIO
7
UIO
8U
IO9
UIO
10
UIO
11
UIO
12
UIO
13
UIO
14
UIO
15
UIO
16
UIO
17
UIO
18
UIO
19
UIO
20
UIO
21
UIO
6
UIO32
UIO31
UIO30UIO29UIO28UIO27
UIO26
UIO25
UIO23UIO24
UIO22
XIO0
XIO1
XIO
2
XIO
3
XIO
5X
IO6
XIO
7
XIO15XIO14
XIO13
XIO12XIO11XIO10
XIO9
XIO8
XIO
0X
IO1
XIO
2X
IO3
XIO
4X
IO5
XIO
6X
IO7
XIO
8X
IO9
XIO
10X
IO11
XIO
12X
IO13
XIO
14X
IO15
UIO
0U
IO1
UIO
2U
IO3
UIO
4U
IO5
UIO
6U
IO7
UIO
8U
IO9
UIO
10
UIO
11
UIO
12
UIO
13
UIO
14
UIO
15
UIO
16
UIO
17
UIO
18
UIO
19
UIO
20
UIO
21
UIO
22
UIO
23
UIO
24
UIO
25
UIO
26
UIO
27
UIO
28
UIO
29
UIO
30
UIO
31
UIO
32
XIO
4
TDO
TD
O
A21A0
A2A3
V18
V18
V33
V33
V33
V18
V33
D[7
:0]
ALE
nR
stO
ut
nPS
En
nR
d
nWr
nC
E[7
:3]
nE
xtIn
tP
53P
17
A16
A17
A18
A19
A20
A21
A0
A1
A2
A3
Titl
e
Siz
eD
ocu
me
nt
Nu
mb
er
Re
v
Da
te:
She
eto
f
DS
TIN
Is4
00
C
Pro
gra
mm
ab
le I
/O
A
77
We
dn
esd
ay,
Ma
y 2
1,
20
03
Co
pyr
igh
t (C
) 2
00
3 D
alla
s S
em
ico
nd
uct
or
/ M
axi
m
each U1 V33 connection
One 10 nF ceramic capacitor
for each U1 V18 connection
Expanded I/O
User I/O
One 10 nF ceramic capacitor for
One 100 nF ceramic capacitor
for each U1 V33 connection
One 100 nF ceramic capacitor
for each U1 V18 connection
J29
20 P
in d
ual1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20
C4
2
100
nF
C4
1
100
nF
C5
1
10
nF
C4
7
100
nF
C5
7
10
nF
C4
9
10
nF
C4
3
100
nF
C5
0
10
nF
J30
8Pin
12
34
56
78
C4
8
100
nF
J28
40 P
in d
ual
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40
C5
4
10
nF
C5
5
10
nF
U1
2X
C2C
64-7
VQ
100C
IO1
1
IO2
2
IO3
3
IO4
4
VA
UX
5
IO6
6
IO7
7
IO8
8
IO9
9
IO10
10
IO11
11
IO12
12
IO13
13
IO14
14
IO15
15
IO16
16
IO17
17
IO18
18
IO19
19
Vxx
20
GN
D21
21
IO22
22
IO23
23
IO24
24
GN
D25
V18a 26
IO27 27
IO28 28
IO29 29
IO30 30
GND1 31
IO32 32
IO33 33
IO34 34
IO35 35
IO36 36
IO37 37
VIO1 38
IO39 39
IO40 40
IO41 41
IO42 42
IO43 43
IO44 44
TDI 45
IO46 46
TMS 47
TCK 48
IO49 49
IO50 50GN
D4
75
IO74
74
IO73
73
IO72
72
IO71
71
IO70
70
GN
D3
69
IO68
68
IO67
67
IO66
66
IO65
65
IO64
64
IO63
63
GN
D2
62
IO61
61
IO60
60
IO59
59
IO58
58
V18
b57
IO56
56
IO55
55
IO54
54
IO53
53
IO52
52
VIO
251
GND6100
IO9999
VIO498
IO9797
IO9696
IO9595
IO9494
IO9393
IO9292
IO9191
IO9090
IO8989
VIO388
IO8787
IO8686
IO8585
GND584
TDO83
IO8282
IO8181
IO8080
IO7979
IO7878
IO7777
IO7676
C4
5
100
nF
C5
6
10
nF
C5
3
10
nF
C5
2
10
nF
C4
6
100
nF
C4
4
100
nF