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Table 2. EVM Configuration Options for ISO35T and ISO3086T (continued)

Jumper Function

Configuration

I/O Load

JMP8 – Y Output

R10 set source termination across

R10 – 54

Ω

JMP9 – Z Output

mmm

Driver pins Y and Z

R10 – 54

Ω

JMP25 – A Test Point

JMP26 – Z Test Point

JMP27 – B Test Point

JMP28 – Y Test Point

JMP29 – GND2

Jumper installed from pin 1 to pin 2

Jumper short installed to short U1-10 to
GND2

JMP32 – Regulator Output

Connects regulator output to Vcc2. Remove
this jumper when connecting power
externally (regulator not In use)

2.2

Bill of Materials

The items used in the ISO1176T/35T/3086TEVM are listed in the bill of materials in

Table 3

,

Table 4

, and

Table 5

.

Table 3. ISO1176TEVM Bill of Material

Item

Qty

Reference

Value

Footprint

Manufacturer

Part Number

1

1

C2

68 µF

cc7260

SPRAGUE

592D68X0010R2T

2

1

C3

10 µF

cc7343

SPRAGUE

293D106X0035D2W

3

1

C4

1 µF

cc1206

AVX

12063G105ZATRA

4

1

C5

0.1 µF

cc1206

AVX

12065C104JATMA

5

1

C6

0.01 µF

cc0805

AVX

06033G102JATMA

6

1

C7

DNI

cc0805

7

2

C15, C17

10 µF

cc1206

8

1

C16

22 µF

cc1210

9

2

D1,D2

1N5817

10

10

JMP1, JMP16, JMP22–JMP29

Header 3x1

11

8

JMP2–JMP9

Header 4x1

12

3

JMP30–JMP32

Header 2x1

13

2

P1, P2

Banana-Jack

bjack

ITT-POMONA

3267

14

1

R1

1K

r0805

15

5

R2, R3, R4

49.9

r0805

16

2

R7, R8, R10, R11

DNI

r0805

17

1

R9

54

r0805

18

1

T1

DA2304-AL

Coil Craft

DA2304-AL

19

1

U1

ISO1176T

16 pin DW

TI

ISO1176T

20

1

U3

LP2985A-

SOT23-5

TI

LP2985A-50DBVR

50DBVR

10

ISO1176T/35T/3086T Evaluation Module

SLLU122A – April 2010 – Revised July 2010

Copyright © 2010, Texas Instruments Incorporated

Summary of Contents for ISO1176T

Page 1: ...th a tool for evaluation and the successful design of an end product Contents 1 Overview 2 2 Recommended Equipment 8 List of Figures 1 ISO1176T Device Pinout and Block Diagram 3 2 ISO35T Device Pinout and Block Diagram 3 3 ISO3086T Device Pinout and Block Diagram 3 4 ISO1176T 35T 3086TEVM Board 5 5 Point to Point Simplex Circuit 6 6 Parallel Terminated Simplex Circuit 6 7 Five Node Multipoint Circ...

Page 2: ... careful when using the EVM to test isolation voltage Finally the ISO1176TEVM allows half duplex operation whereas the ISO35T and ISO3086T are full duplex devices The PCBs are configured for either half or full duplex operation in their as shipped configuration Changes between configurations can easily be done using the notes provided on the schematic The EVMs allow the user to evaluate half duple...

Page 3: ...re 2 ISO35T Device Pinout and Block Diagram Figure 3 ISO3086T Device Pinout and Block Diagram 1 1 PROFIBUS RS 485 The TIA EIA 485 also known as RS 485 standard was created in response to a demand from the data communications community for a general purpose high speed balanced interface standard for multipoint applications The standard Electrical Characteristics of Generators and Receivers for Use ...

Page 4: ...cifically for these types of environments The two standards are indeed very similar 1 2 EVM Kit Contents 1 2 1 ISO1176TEVM Kit Contents ISO1176TEVM circuit board with ISO1176TDW installed 6510416 1 This PCB is configured with a DA2304 AL transformer and LP2985A 50DBVR LDO for 3 V to 5 V operation on the logic side of the device and 5 V operation on the bus side 1 2 2 ISO35TEVM Kit Contents ISO35TE...

Page 5: ...e EVMs can be obtained to allow the user to construct various bus configurations With just two EVMs the user may evaluate performance of a point to point simplex parallel terminated point to point simplex and two node multipoint operation When using multiple EVMs all of these modes of operation can be configured through onboard jumpers external cabling and the R7 R10 resistors 5 SLLU122A April 201...

Page 6: ... tied to GND1 Note that with only a single termination the differential bus voltage is higher than normal Figure 5 Point to Point Simplex Circuit This configuration also can have a termination at the source and load parallel terminated as shown Figure 6 thereby keeping nominal PROFIBUS RS 485 signal levels Figure 6 Parallel Terminated Simplex Circuit 1 3 2 Multipoint The multipoint configuration i...

Page 7: ...y This extended common mode range is important because communications between equipment located hundreds of meters apart usually means a voltage offset exists between the grounds of each node The EVMs can be configured with three power supplies with isolated outputs in such a way as to input a fixed offset between the grounds see Figure 7 This induces a ground potential difference voltage VGPD bet...

Page 8: ... configured for each case 2 1 EVM Configurations The schematic for the ISO1176TEVM appears on the last page of this manual Table 1 contains a list of the onboard jumpers and their function as well as the input and output loading installed on the board for the half duplex ISO1176TEVM Table 2 contains the same information for the full duplex ISO35TEVM and ISO3086TEVM Table 1 EVM Configuration Option...

Page 9: ...T device R9 54 Ω only R7 R8 AND R10 R7 R8 and R10 for full duplex are uninstalled device Table 2 EVM Configuration Options for ISO35T and ISO3086T Jumper Function Configuration I O Load DATA CONTROL SIDE JUMPERS JMP1 Receiver Output R1 see JMP16 JMP2 Receiver Enable R2 50 Ω 1 JMP3 Driver Enable R3 50 Ω 1 JMP4 Driver Input R4 50 Ω 1 R7 Uninstalled JMP6 D1 D2 Test Point JMP16 Rout Load Jumper short ...

Page 10: ... Table 5 Table 3 ISO1176TEVM Bill of Material Item Qty Reference Value Footprint Manufacturer Part Number 1 1 C2 68 µF cc7260 SPRAGUE 592D68X0010R2T 2 1 C3 10 µF cc7343 SPRAGUE 293D106X0035D2W 3 1 C4 1 µF cc1206 AVX 12063G105ZATRA 4 1 C5 0 1 µF cc1206 AVX 12065C104JATMA 5 1 C6 0 01 µF cc0805 AVX 06033G102JATMA 6 1 C7 DNI cc0805 7 2 C15 C17 10 µF cc1206 8 1 C16 22 µF cc1210 9 2 D1 D2 1N5817 10 10 J...

Page 11: ...35T 20 1 U3 LP2985A 33DBVR SOT23 5 TI LP2985A 33DBVR Table 5 ISO3086TEVM Bill of Materials Item QTY Reference Value Footprint Manufacturer Part Number 1 1 C2 68 µF cc7260 SPRAGUE 592D68X0010R2T 2 1 C3 10 µF cc7343 SPRAGUE 293D106X0035D2W 3 1 C4 1 µF cc1206 AVX 12063G105ZATRA 4 1 C5 0 1 µF cc1206 AVX 12065C104JATMA 5 1 C6 0 01 µF cc0805 AVX 06033G102JATMA 6 1 C7 DNI cc0805 7 2 C15 C17 10 µF cc1206 ...

Page 12: ...ignal routing The remaining layers Figure 11 and Figure 13 are power and ground planes These are split planes to keep the Vcc1 GND1 separate from Vcc2 GND2 The I O traces are designed to have a characteristic impedance of 50 Ω Figure 10 PCB Top Layer 12 ISO1176T 35T 3086T Evaluation Module SLLU122A April 2010 Revised July 2010 Copyright 2010 Texas Instruments Incorporated ...

Page 13: ...www ti com Recommended Equipment Figure 11 Silk Screen Top Side 13 SLLU122A April 2010 Revised July 2010 ISO1176T 35T 3086T Evaluation Module Copyright 2010 Texas Instruments Incorporated ...

Page 14: ...Recommended Equipment www ti com Figure 12 Signal Traces Bottom Layer 14 ISO1176T 35T 3086T Evaluation Module SLLU122A April 2010 Revised July 2010 Copyright 2010 Texas Instruments Incorporated ...

Page 15: ...www ti com Recommended Equipment Figure 13 Silkscreen Bottom Layer 15 SLLU122A April 2010 Revised July 2010 ISO1176T 35T 3086T Evaluation Module Copyright 2010 Texas Instruments Incorporated ...

Page 16: ...2 Enable 3 NR 4 Vout 5 Vin 1 C17 10uF C17 10uF C7 DNI C7 DNI C3 10 uF C3 10 uF JMP25 Header 3x1 JMP25 Header 3x1 1 2 3 JMP29 Header 3x1 JMP29 Header 3x1 1 2 3 JMP6 Header 4x1 JMP6 Header 4x1 1 2 3 4 T1 DA2303_AL T1 DA2303_AL 1 2 3 4 5 6 7 8 JMP28 Header 3x1 JMP28 Header 3x1 1 2 3 JMP4 Header 4x1 JMP4 Header 4x1 1 2 3 4 JMP32 Header 2x1 JMP32 Header 2x1 1 2 JMP1 Header 3x1 JMP1 Header 3x1 1 2 3 C4 ...

Page 17: ...roduct This notice contains important safety information about temperatures and voltages For additional information on TI s environmental and or safety programs please contact the TI application engineer or visit www ti com esh No license is granted under any patent right or other intellectual property right of TI covering or relating to any machine process or combination in which such TI products...

Page 18: ...ch statements TI products are not authorized for use in safety critical applications such as life support where a failure of the TI product would reasonably be expected to cause severe personal injury or death unless officers of the parties have executed an agreement specifically governing such use Buyers represent that they have all necessary expertise in the safety and regulatory ramifications o...

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