background image

4.7uF 10V

C1

10uF 10V

C4

1M

R3

VIN

VIO

4.7uF 10V

C2

1

M

R

7

V

IO

4.7uF 25V
X6S

C12

4.7uF 25V
X6S

C13

1

1

2

2

4.7uH

L2

A

2

K

1

D6

10uF
10V

C19

4.7uF 25V
X6S

C27

VN

D4

D5

10nF 25V

C23

4.7uF 25V
X6S

C30

4

.7

u

F

2

5

V

X

6

S

C

3

1

V

P

O

S

1

1

2

2

2

.2

u

H

L

1

V

IN

1

0

u

F

2

5

V

X

6

S

C

6

D

1

4

.7

u

F

X

6

S

C

3

4

D2

D3

4.7uF 25V
X6S

C26

10nF 25V

C21

S

D

A

S

C

L

P

W

R

U

P

VN

4

.7

u

F

1

0

V

C

5

4

3

K

R

2

WAKEUP

VNEG

1M

R6

1M

R1

47.5k

R10

52.3K

R4

V

B

1

0

K

N

T

C

D

N

I

C

1

7

D

N

I

C

1

4

V

N

VEE

GND

GND

GND

GND

GND

GND

GND

GND

GND

GND

GND

GNDGND

GND

GND

GND

GND

GND

GND

GND

GND

VDDH

V

IN

3

P

3

V

3

P

3

V

N

V

C

O

M

1

0

K

R

8

1

0

K

R

9

V

IO

V

IO

VCOM_CTRL

4

.7

u

F

2

5

V

X

6

S

C

3

3

GND

GND

GND

VREF

1

nINT

2

VNEG

3

VNEG_IN

4

WAKEUP

5

DGND

6

INT_LDO

7

AGND1

8

VNEG_DIS

9

VIN

10

N/C

11

VCOM_CTRL

12

N

/C

1

3

V

C

O

M

_

D

IS

1

4

V

C

O

M

1

5

V

C

O

M

_

PW

R

1

6

SC

L

1

7

SD

A

1

8

V

PO

S

_

D

IS

1

9

N

/C

2

0

PW

R

U

P

2

1

PB

K

G

2

2

PW

R

_

G

O

O

D

2

3

V

IN

_

P

2

4

VN_SW

25

VN

26

VEE_IN

27

VEE_DRV

28

VEE_DIS

29

VEE_D

30

VEE_FB

31

PGND2

32

VDDH_FB

33

VDDH_D

34

VDDH_DIS

35

VDDH_DRV

36

V

D

D

H

_

IN

3

7

N

/C

3

8

N

/C

3

9

V

B

_

SW

4

0

PG

N

D

1

4

1

V

B

4

2

V

PO

S

_

IN

4

3

V

PO

S

4

4

V

IN

3

P

3

4

5

V

3

P

3

4

6

TS

4

7

A

G

N

D

2

4

8

PPAD

0

U

1

TPS65185

nINT

GND

V

IN

GND

V

P

O

S

4

.7

u

F

X

6

S

C

7

GND

0

R12

VNEG

0

R5

0

R11

0

R

1

3

0

R

1

4

TP1

VREF

TP3

VNEG

TP7

INT_LDO

TP10

VIN

T

P

1

5

V

C

O

M

TP33

VDDH_FB

TP31

VEE_FB

T

P

4

4

V

P

O

S

T

P

4

7

T

S

GND

T

P

4

3

V

B

*

TP27

VN

TP2

nINT

T

P

2

3

P

W

R

_

G

O

O

D

VIO

WAKEUP

PWRUP

VCOM_CTRL

JP1

JP2

JP3

VPOS

3

1

2

4

J1

VCOM

VNEG

GND

VEE

VDDH

3

1

2

4

J2

V

IN

GND

3

1

2

4

J3

GND

8

5

2

9

6

3

10

7

4

1

J4

GPIO7
GPIO6
GPIO5
GPIO4
V3p3
GND
GPIO3
GPIO2
SCL
SDA

GND

SDA

SCL

VIO

100k

R17

100k

R16

100k

R15

PWRUP

VCOM_CTRL

WAKEUP

V

IN

3

P

3

V

3

P

3

GND

GND

100nF25V

C35

GND

100nF25V

C36

GND

VN

*

TP29

VEE

*

TP35

VDDH

Copyright © 2017, Texas Instruments Incorporated

EVM Schematic

www.ti.com

8

SLVU548A – October 2011 – Revised November 2017

Submit Documentation Feedback

Copyright © 2011–2017, Texas Instruments Incorporated

TPS65185 Evaluation Module

9

EVM Schematic

10

Bill of Materials

Table 1

lists the bill of materials for the TPS65185EVM.

Summary of Contents for TPS65185

Page 1: ...dware 2 3 Software 2 4 EVM Overview 3 4 1 Powering Up the EVM GPIO Control 4 5 Software Installation Instruction 4 6 Powering Up the EVM Software Control 5 6 1 Configuration Registers BASIC Tab 5 6 2...

Page 2: ...tation Feedback Copyright 2011 2017 Texas Instruments Incorporated TPS65185 Evaluation Module 1 EVM Package Contents The EVM package contains the following components EVM TPS65185 installed User s gui...

Page 3: ...tober 2011 Revised November 2017 Submit Documentation Feedback Copyright 2011 2017 Texas Instruments Incorporated TPS65185 Evaluation Module 4 EVM Overview Figure 2 identifies the main components of t...

Page 4: ...software control and therefore no I2 C communication is required the USB interface still needs to be connected This is because the interface board also provides the 3 3 V VIO rail To operate the EVM w...

Page 5: ...e Connect a 3 V 6 V supply from the VIN terminal to GND Move the WAKEUP jumper from the GND position to VIO position Run the TPS65185 exe software Click on start Click on All Programs Select TPS65185...

Page 6: ...Controls Tab Use this page to change the I2 C interface data rate and SDA SCL pullup resistors which are built into the USB interface adapter This tab also provides controls for the VCOM_CTRL PWRUP an...

Page 7: ...for the GUI is to update the register settings immediately after the user changes values Select MANUAL update control if you wish to change multiple values before writing to the TPS65185 The GUI perio...

Page 8: ...9 VEE_D 30 VEE_FB 31 PGND2 32 VDDH_FB 33 VDDH_D 34 VDDH_DIS 35 VDDH_DRV 36 VDDH_IN 37 N C 38 N C 39 VB_SW 40 PGND1 41 VB 42 VPOS_IN 43 VPOS 44 VIN3P3 45 V3P3 46 TS 47 AGND2 48 PP AD 0 U1 TPS65185 nINT...

Page 9: ...52 3K 0603 Rohm Semi MCR03EZPFX5232 RES 52 3K OHM 1 10W 1 0603 SMD Res1 5 R5 R11 R12 R13 R14 0 0603 Rohm Semi MCR03EZPJ000 RES 0 0 OHM 1 10W 0603 SMD Res1 2 R8 R9 10K 0603 Rohm Semi MCR03EZPFX1002 RE...

Page 10: ...on History Revision History NOTE Page numbers for previous revisions may differ from page numbers in the current version Changes from Original October 2011 to A Revision Page Added slave address updat...

Page 11: ...set forth above or credit User s account for such EVM TI s liability under this warranty shall be limited to EVMs that are returned during the warranty period to the address designated by TI and that...

Page 12: ...the antenna types listed in the user guide with the maximum permissible gain and required antenna impedance for each antenna type indicated Antenna types not included in this list having a gain great...

Page 13: ...t the EVM user guide prior to connecting any load to the EVM output If there is uncertainty as to the load specification please contact a TI field representative During normal operation even with the...

Page 14: ...OST OF REMOVAL OR REINSTALLATION ANCILLARY COSTS TO THE PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES RETESTING OUTSIDE COMPUTER TIME LABOR COSTS LOSS OF GOODWILL LOSS OF PROFITS LOSS OF SAVINGS LOSS OF...

Page 15: ...TI Resource NO OTHER LICENSE EXPRESS OR IMPLIED BY ESTOPPEL OR OTHERWISE TO ANY OTHER TI INTELLECTUAL PROPERTY RIGHT AND NO LICENSE TO ANY TECHNOLOGY OR INTELLECTUAL PROPERTY RIGHT OF TI OR ANY THIRD...

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