Texas Instruments TPS65916EVM User Manual Download Page 6

D3

GND

GND

GND

GND

+3V3

+1V8

+3V3

GND

GND

GND

RESET_OUT

LDOVR

TC_OUT

GPIO_6

GND

GND

SCLK

SIMO

CS

GND

GND

SOMI

GND

GND

GND

GND

GND

+3V3

IO9

IO8

IO11

IO10

GND

+3V3

GND

+3V3

Orange

D4

Ye llow

D1

GND

Ye llow

D2

IO12

IO7

CS

IO3

SOMI

SCLK

SIMO

GND

I2C_SCL_MSP

I2C_SDA_MSP

I2C_SCL_MSP

I2C_SDA_MSP

I2C1_SCL

I2C1_SDA

GPIO_4

GPIO_2

1

2

P1

GND

GND

GND

MSP430

VIO_IN

MISO
MOSI

I2C_SCL_MSP

I2C_SDA_MSP

GND

SCLK2

GND

TP10

DNP

TP11

DNP

TP6

DNP

TP7

DNP

TP8

DNP

TP9

DNP

TP12

DNP

PWRON

IO13

D+

+3V3

+3V3

+3V3

VIO_IN_LS

VIO_IN_LS

VIO_IN_LS

VIO_IN_LS

VIO_IN_LS

GPIO_0

GPIO_1

GPIO_2

GPIO_3

GPIO_4

GPIO_6

MISO

D+

TP29

DNP

VPU

TP32

DNP

TP34

DNP

TP30

DNP

TP31

DNP

TP33

DNP

TP35

DNP

GND

+3V3

SSN

MOSI

SCLK2

GND

Ye llow

D5

GND

Ye llow

D6

GND

Ye llow

D7

INT

IO13

GND

+3V3

IO13A

IO8

GND

+3V3

IO8A

IO7

GND

+3V3

IO7A

IO10

GND

+3V3

IO10A

IO12

GND

+3V3

IO12A

IO9

GND

+3V3

IO9A

IO3

GND

+3V3

IO3A

IO11

GND

+3V3

IO11A

IO9A

IO12A

IO11A

IO10A

IO7A

IO3A

IO8A

IO13A

GND

SSN

TP41

DNP

TP42

DNP

GND

+3V3

SBWTCK

SBWTDIO

SBWTCK

SBWTDIO

TP50

DNP

GND

+3V3

GND

+3V3

GND

+3V3

GND

+3V3

GND

+3V3

GND

+3V3

GPIO_5

GPIO_1

POWE RGOOD

POWE RHOLD

RESET_IN

GND

1

2

3

4

5

6

7

8

9

10

11

12

13

14

P18

1

2

3

4

5

6

7

8

9

10

P21

GND

1

2

3

4

5

6

7

10

11

8

9

J1

IN

1

2

EN

3

NC

4

OUT

5

GND

U2

TPS76333D

BVRG4

IN

1

2

EN

3

NR

4

OUT

5

GND

U3

TPS73618D

BVRG4

VCCA

1

1DIR

2

2DIR

3

1A1

4

1A2

5

2A1

6

2A2

7

GND

8

GND

9

2B2

10

2B1

11

1B2

12

1B1

13

2OE

14

1OE

15

VCCB

16

U5

SN74AVC4 T245PWR

VCCA

1

1DIR

2

2DIR

3

1A1

4

1A2

5

2A1

6

2A2

7

GND

8

GND

9

2B2

10

2B1

11

1B2

12

1B1

13

2OE

14

1OE

15

VCCB

16

U6

SN74AVC4 T245PWR

VCCA

1

1DIR

2

2DIR

3

1A1

4

1A2

5

2A1

6

2A2

7

GND

8

GND

9

2B2

10

2B1

11

1B2

12

1B1

13

2OE

14

1OE

15

VCCB

16

U7

SN74AVC4 T245PWR

NC

1

A

2

GND

3

Y

4

VCC

5

U8

SN74LV1 T04DBVR

P6.4/CB4/A4

1

P6.5/CB5/A5

2

P6.6/CB6/A6

3

P6.7/CB7/A7

4

P7.0/CB8/A12

5

P7.1/CB9/A13

6

P7.2/CB10/A14

7

P7.3/CB11/A15

8

P5.0/A8/VREF+/VEREF+

9

P5.1/A9/VREF-/VEREF-

10

AVCC1

11

P5.4/XIN

12

P5.5/XOUT

13

AVSS1

14

P8.0

15

P8.1

16

P8.2

17

DVCC1

18

DVSS1

19

VCORE

20

P1.0/T

A0CLK/ACLK

21

P1.1/T

A0.0

22

P1.2/T

A0.1

23

P1.3/T

A0.2

24

P1.4/T

A0.3

25

P1.5/T

A0.4

26

P1.6/T

A1CLK/CBOUT

27

P1.7/T

A1.0

28

P2.0/T

A1.1

29

P2.1/T

A1.2

30

P2.2/T

A2CLK/SMCLK

31

P2.3/T

A2.0

32

P2.4/T

A2.1

33

P2.5/T

A2.2

34

P2.6/R

TCCLK/DMAE0

35

P2.7/UCB0STE/UCA0CLK

36

P3.0/UCB0SIMO/UCB0SDA

37

P3.1/UCB0SOMI/UCB0SCL

38

P3.2/UCB0CLK/UCA0STE

39

P3.3/UCA0TXD/UCA0SIMO

40

P3.4/UCA0RXD/UCA0SOMI

41

P3.5/TB0.5

42

P3.6/TB0.6

43

P3.7/TB0OUTH/SVMOUT

44

P4.0/PM_UCB1STE/PM_UCA1CLK

45

P4.1/PM_UCB1SIMO/PM_UCB1SDA

46

P4.2/PM_UCB1SOMI/PM_UCB1SCL

47

P4.3/PM_UCB1CLK/PM_UCA1STE

48

DVSS2

49

DVCC2

50

P4.4/PM_UCA1TXD/PM_UCA1SIMO

51

P4.5/PM_UCA1RXD/PM_UCA1SOMI

52

P4.6/PM_NONE

53

P4.7/PM_NONE

54

P5.6/TB0.0

55

P5.7/TB0.1

56

P7.4/TB0.2

57

P7.5/TB0.3

58

P7.6/TB0.4

59

P7.7/TB0CLK/MCLK

60

VSSU

61

PU.0/DP

62

PUR

63

PU.1/DM

64

VBUS

65

VUSB

66

V18

67

A

VSS2

68

P5.2/XT2IN

69

P5.3/XT2OUT

70

TEST/SBWTCK

71

PJ.0/TDO

72

PJ.1/TDI/TCLK

73

PJ.2/TMS

74

PJ.3/TCK

75

RST/NMI/SBWTDIO

76

P6.0/CB0/A0

77

P6.1/CB1/A1

78

P6.2/CB2/A2

79

P6.3/CB3/A3

80

U4

MSP430 F5529IPN

1

6

S2A

2

5

S2B

3

4

S2C

1

6

S5A

2

5

S5B

3

4

S5C

1

6

S1A

2

5

S1B

3

4

S1C

1

6

S4A

2

5

S4B

3

4

S4C

1

6

S8A

2

5

S8B

3

4

S8C

1

6

S7A

2

5

S7B

3

4

S7C

1

6

S3A

2

5

S3B

3

4

S3C

1

6

S6A

2

5

S6B

3

4

S6C

22pF

C33

22pF

C34

10.0k

R18

10.0k

R21

10.0k

R17

10.0k

R20

10.0k

R64

10.0k

R66

10.0k

R22

10.0k

R65

10.0k

R68

10.0k

R70

10.0k

R67

10.0k

R69

10.0k

R41

10.0k

R44

10.0k

R49

10.0k

R50

10.0k

R51

10.0k

R53

10.0k

R54

10.0k

R52

10.0k

R47

10.0k

R45

10.0k

R42

10.0k

R39

10.0k

R40

10.0k

R43

10.0k

R46

10.0k

R48

10.0k

R4

0.1µF

C39

0.1µF

C40

0.1µF

C41

0.1µF

C43

0.1µF

C37

0.1µF

C38

1µF

C28

1µF

C31

1000pF

C35

2.20k

R14

2.20k

R13

4.7µF

C29

4.7µF

C32

100pF

C30

100pF

C36

1

2

24MHz

Y1

1.50k

R5

1.50k

R11

1.50k

R12

1.50k

R8

1.50k

R36

1.50k

R37

1.50k

R38

1.50k

R9

1.50k

R15

1.50k

R16

33.0

R7

33.0

R6

120k

R10

0.47µF

C42

1

2

3

Q5
BSS138W

1

2

3

Q6
BSS138W

1

2

3

Q9
BSS138W

1

2

3

Q8
BSS138W

1

2

3

Q7
BSS138W

1

2

3

Q2
BSS138W

1

2

3

Q3
BSS138W

1

2

3

Q4
BSS138W

1

2

3

Q1
BSS138W

1

2

3

J4

1

2

3

J5

1

2

3

J6

1

2

3

J43

1

2

3

J45

1

2

3

J44

1

2

3

J46

1

2

3

J47

1

2

3

J49

1
2
3

J11

1

2

3

J48

1

2

3

J50

1

2

3

J53

1

2

3

J51

1

2

3

J52

1

2

3

J54

1

2

3

JP3

1
2
3

JP4

1

2

3

JP6

1

2

3

JP7

1

2

3

4

5

6

7

8

9

10

11

12

13

14

15
17
19

16
18
20

P2

1

2

J22

1

2

J23

1

2

J20

1

2

J21

1

2

J18

1

2

J19

1

2

J8

1

2

J7

1

2

J9

1

2

J10

1

2

J12

1

2

J13

1

2

J14

1

2

J15

1

2

J16

1

2

J2

1

2

J35

1

2

J36

1

2

J3

1

2

J34

Schematics, Bill of Materials, and Layout

www.ti.com

6

SLIU021 – September 2016

Submit Documentation Feedback

Copyright © 2016, Texas Instruments Incorporated

TPS65916 EVM User’s Guide

Figure 4. TPS65916 EVM Schematic (Page 2)

Summary of Contents for TPS65916EVM

Page 1: ...6 EVM Schematic Page 2 6 5 TPS65916 EVM Schematic Page 3 7 6 TPS65916 EVM Schematic Page 4 8 7 Composite Top View 12 8 Top Layer 13 9 Layer 1 GND 13 10 Layer 2 SIGNAL 14 11 Layer 3 POWER 14 12 Bottom...

Page 2: ...Windows to allow access to the registers of the PMIC through USB I2C 1 2 EVM with Components Identified Figure 1 EVM LEDs Display status of POWERGOOD RESET_IN POWER_HOLD LDOVRTC_OUT RESET_OUT INT and...

Page 3: ...through the GUI J26 GPIO_5 Selection GPIO_5 is shorted HIGH to allow the device to power up J30 BOOT Selection BOOT is shorted LOW to exercise the default power up sequence J31 PWRON Selection PWRON i...

Page 4: ...he VIO supply voltage of the PMIC CAUTION It is important to make sure that there is a total of one shunt populated between P12 and P15 If there is a shunt on P12 there should not be one on P15 and vi...

Page 5: ...IN 29 SMPS2_SW 30 SMPS3_FDBK 9 SMPS3_IN 10 SMPS3_SW 11 SMPS4_FDBK 17 SMPS4_IN 18 SMPS4_SW 19 SMPS5_FDBK 45 SMPS5_IN 46 SMPS5_SW 47 SYNCCLKOUT 48 VBG 40 VCCA 42 VCC_SENSE 37 VIO_IN 34 VPROG 20 U1 TPS65...

Page 6: ...DMAE0 35 P2 7 UCB0STE UCA0CLK 36 P3 0 UCB0SIMO UCB0SDA 37 P3 1 UCB0SOMI UCB0SCL 38 P3 2 UCB0CLK UCA0STE 39 P3 3 UCA0TXD UCA0SIMO 40 P3 4 UCA0RXD UCA0SOMI 41 P3 5 TB0 5 42 P3 6 TB0 6 43 P3 7 TB0OUTH SV...

Page 7: ...10 0k R25 10 0k R56 10 0k R24 10 0k R55 10 0k R23 4 1 2 3 P16 4 1 2 3 P5 4 1 2 3 P7 4 1 2 3 P9 4 1 2 3 P11 4 1 2 3 P14 4 1 2 3 P17 1 2 3 J17 1 2 3 J24 1 2 3 J25 1 2 3 J26 1 2 3 J27 1 2 3 J28 1 2 3 J2...

Page 8: ...303 CLEAR H11 SJ 5303 CLEAR H12 SJ 5303 CLEAR Schematics Bill of Materials and Layout www ti com 8 SLIU021 September 2016 Submit Documentation Feedback Copyright 2016 Texas Instruments Incorporated TP...

Page 9: ...J28 J29 J30 J31 J43 J44 J45 J46 J47 J48 J49 J50 J51 J52 J53 J54 JP2 JP3 JP4 JP5 JP6 JP7 31 Header 100mil 3x1 Tin TH Header 3 PIN 100mil Tin PEC03SAAN Sullins Connector Solutions J33 1 Connector TH BNC...

Page 10: ...S Electrocomponents SH 1 SH 2 SH 3 SH 4 SH 5 SH 6 SH 7 SH 8 SH 9 SH 10 SH 11 SH 12 SH 13 SH 14 SH 15 SH 16 SH 17 SH 18 SH 19 SH 20 SH 21 SH 22 SH 23 SH 24 SH 25 SH 26 SH 27 SH 28 28 1x2 Shunt 100mil G...

Page 11: ...7x4 7mm ABLS 24 000MHZ K4F T Abracon Corporation FID1 FID2 FID3 FID4 FID5 FID6 0 Fiducial mark There is nothing to buy or mount Fiducial N A N A L2 0 1uH Inductor Shielded Drum Core Powdered Iron 1 H...

Page 12: ...ocumentation Feedback Copyright 2016 Texas Instruments Incorporated TPS65916 EVM User s Guide 2 3 Layout and Component Placement Figure 7 through Figure 13 show the overviews and layers of the printed...

Page 13: ...m Schematics Bill of Materials and Layout 13 SLIU021 September 2016 Submit Documentation Feedback Copyright 2016 Texas Instruments Incorporated TPS65916 EVM User s Guide Figure 8 Top Layer Figure 9 La...

Page 14: ...l of Materials and Layout www ti com 14 SLIU021 September 2016 Submit Documentation Feedback Copyright 2016 Texas Instruments Incorporated TPS65916 EVM User s Guide Figure 10 Layer 2 SIGNAL Figure 11...

Page 15: ...tics Bill of Materials and Layout 15 SLIU021 September 2016 Submit Documentation Feedback Copyright 2016 Texas Instruments Incorporated TPS65916 EVM User s Guide Figure 12 Bottom Layer Figure 13 Compo...

Page 16: ...ht See Figure 2 3 2 TPS65916EVM Graphical User Interface GUI The GUI for TPS65916EVM gives the user the ability to interact with the internal registers of the device while also allowing control of som...

Page 17: ...where I2 C communication with the device is done This page has four groups blocks of registers Expand each group by clicking the next to the group which lists all the registers in that group Addition...

Page 18: ...n run the commands from the main GUI After each register write or read the script editor records the command that was run When finished recording select Script Stop Recording To save the script on the...

Page 19: ...History 19 SLIU021 September 2016 Submit Documentation Feedback Copyright 2016 Texas Instruments Incorporated Revision History Figure 17 Sample Script Revision History DATE REVISION NOTES September 2...

Page 20: ...ing the warranty period to the address designated by TI and that are determined by TI not to conform to such warranty If TI elects to repair or replace such EVM TI shall have a reasonable time to repa...

Page 21: ...transmitter has been approved by Industry Canada to operate with the antenna types listed in the user guide with the maximum permissible gain and required antenna impedance for each antenna type indic...

Page 22: ...ified allowable ranges some circuit components may have elevated case temperatures These components include but are not limited to linear regulators switching transistors pass transistors current sens...

Page 23: ...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 USE L...

Page 24: ...sponsible for compliance with all legal regulatory and safety related requirements concerning its products and any use of TI components in its applications notwithstanding any applications related inf...

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