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9 Bill of Materials

Table 9-1. EVM Components List (Based on the Schematic, see 

Figure 4-1

)

DESIGNATOR

QUANTITY VALUE

DESCRIPTION

PACKAGE REFERENCE

PART NUMBER

MANUFACTURER

C1, C2, C3, C4

4

22 µF

Capacitor, Ceramic, 25 V, X5R, 10%

1206

GRM31CR61E226KE15L

Murata

C5

1

0.1 µF

CAP CER 0.1 µF 25 V 10% X5R 0402

0402

GRM155R61E104KA87D

Murata

C6, C10, C11, C12, 
C13, C14, C19, 
C21, C22, C23

10

22 µF

Capacitor, Ceramic, 6.3 V, X5R, 20%

1206

GRM31CR60J226KE19L

Murata

C7

1

0.1 µF

CAP CER 0.1 µF 50 V 10% X7R 0603

0603

GRM188R71H104KA93D

Murata

C8

1

470 pF

CAP CER 470 pF 50 V 10% X7R 0603

0603

GRM188R71H471KA01D

Murata

C9, C17

0

Open

Capacitor, Ceramic, 50 V, X7R, 10%

0603

Standard

Standard

C15, C16, C24, C27 0

Open

Capacitor, POSCAP, SMT, 2.5 V, 330 µF, 8 mΩ

7343(D)

2R5TPE330M9 or 6TPE330MIL

Sanyo

C18, C20, C25, C26 4

1 µF

CAP CER 1 µF 16 V 10% X7R 0603

0603

GRM188R71C105KA12J

Murata

FID1, FID2, FID3, 
FID4, FID5, FID6

0

Fiducial mark. There is nothing to buy or mount.

Fiducial

N/A

N/A

J1, J3

2

ED120/2DS

Terminal Block, 2-pin, 15-A, 5,1 mm

0.4 × 0.35 inch

ED120/2DS

OST

J2

1

PEC02SAAN

Header, Male 2-pin, 100-mil spacing,

0.1 × 2 inch

PEC02SAAN

Sullins

J4, J5, J6

3

PEC05DAAN

Header, Male 2×5-pin, 100-mil spacing

0.1 × 2 × 5 inch

PEC05DAAN

Sullins

J7

1

ED555/2DS

Terminal Block, 2-pin, 6-A, 3,5 mm

0.27 × 0.25 inch

ED555/2DS

OST

L1

1

1 µH

Inductor, Power Chokes SMD

6,6 × 7,1 mm

PIMB065T-1R0MS

Cyntec

L1A

0

DNP

Inductor, High Fq Power, ±15%

0.283 × 0.433 inch

69P987xN

Vitec

LBL1

1

Thermal Transfer Printable Labels, 0.650 (W) × 0.2 inch (H) — 10,000 per roll

PCB Label
0.65 (H) × 0.2 inch (W)

THT-14-423-10

Brady

R1, R2, R14, R15

4

100 k

RES, 100 kΩ, 1%, 0.1 W, 0603

0603

CRCW0603100KFKEA

Vishay-Dale

R3

1

1 k

RES, 1 kΩ, 1%, 0.1 W, 0603

0603

CRCW06031K00FKEA

Vishay-Dale

R4

1

300 k

RES, 300 kΩ, 1%, 0.1 W, 0603

0603

RC0603FR-07300KL

Yageo America

R5, R8, R19

3

0

RES, 0 Ω, 5%, 0.1 W, 0603

0603

CRCW06030000Z0EA

Vishay-Dale

R6

1

200 k

RES, 200 kΩ, 1%, 0.1 W, 0603

0603

CRCW0603200KFKEA

Vishay-Dale

R7

0

Open

Resistor, Chip, 1/16 W, 1%

0603

Standard

Standard

R9

1

3.01

RES, 3.01 Ω, 1%, 0.125 W, 0805

0805

CRCW08053R01FKEA

Vishay-Dale

R10

1

57.6 k

RES, 57.6 kΩ, 1%, 0.1 W, 0603

0603

RC0603FR-0757K6L

Yageo America

R11

1

20 k

RES, 20.0 kΩ, 1%, 0.1 W, 0603

0603

CRCW060320K0FKEA

Vishay-Dale

R12, R13

2

150 k

RES, 150 kΩ, 1%, 0.1 W, 0603

0603

CRCW0603150KFKEA

Vishay-Dale

R16

1

1

RES, 1 Ω, 1%, 0.1 W, 0603

0603

CRCW06031R00FKEA

Vishay-Dale

R20, R21

2

10k

RES, 10 kΩ, 1%, 0.1 W, 0603

0603

CRCW060310K0FKEA

Vishay-Dale

R22

1

10

RES, 10 Ω, 1%, 0.1 W, 0603

0603

CRCW060310R0FKEA

Vishay-Dale

TP1, TP2, TP3, 
TP5, TP6, TP7, 
TP8, TP10, TP11, 
TP12, TP13, TP14, 
TP15

13

5000

Test Point, Red, Thru Hole Color Keyed

0.1 × 0.1 inch

5000

Keystone

TP4, TP9

2

5001

Test Point, Black, Thru Hole Color Keyed

0.1 × 0.1 inch

5001

Keystone

U1

1

TPS53915RVE

IC, High Performance, 12-A Single Sync. Step-Down Converter with PMBus.

TPS53915RVE

TI

Bill of Materials

www.ti.com

16

TPS53915 Step-Down Converter Evaluation Module User's Guide

SLUUAS2C – OCTOBER 2013 – REVISED NOVEMBER 2021

Submit Document Feedback

Copyright © 2021 Texas Instruments Incorporated

Summary of Contents for TPS53915

Page 1: ...evice Scanning Mode 9 Figure 7 2 GUI for the Fusion Digital Power Designer 10 Figure 8 1 TPS53915EVM 587 Top Layer Assembly Drawing 12 Figure 8 2 TPS53915EVM 587 Bottom Layer Assembly Drawing 12 Figur...

Page 2: ...M selection Jumper J7 for extra 5 V input for further power saving purpose Convenient test points for probing critical waveforms 3 Electrical Performance Specifications Table 3 1 TPS53915EVM PWR587 El...

Page 3: ...14 TP15 470pF C8 ADDR RF 1 PGOOD 2 EN 3 VBST 4 NC 5 SW 6 SW 7 SW 8 SW 9 PGND 10 PGND 11 PGND 12 PGND 13 PGND 14 VIN 15 VIN 16 VIN 17 NC 18 VDD 19 VREG 20 MODE 21 AGND 22 FB 23 VO 24 TRIP 25 26 27 28 P...

Page 4: ...to J1 as shown in Figure 5 2 Multimeters V1 VIN at TP1 VIN and TP4 GND V2 VOUT at TP7 VOUT and TP9 GND Output Load The output load must an electronic constant resistance mode load capable of 0 to 15...

Page 5: ...2 2 Connect the voltmeter V1 at TP1 VIN and TP4 GND to measure the input voltage Output Connections 1 Connect the load to J3 and set the load to constant resistance mode to sink 0 ADC before VIN is ap...

Page 6: ...47 5 0010100 0 1268 0 1179 0 1363 249 36 0 0010011 0 0960 0 0900 0 1024 255 27 0 0010010 0 0684 0 0622 0 0752 255 18 7 0010001 0 0404 0 0340 0 0480 270 11 5 0010000 0 013 300 1 For different switching...

Page 7: ...etting the VDD pin connected to the VIN pins through R19 For power up input J7 with proper voltage The VDD pin input voltage range is from 4 5 V to 25 V www ti com Configurations SLUUAS2C OCTOBER 2013...

Page 8: ...e www ti com for more information to J4 of the EVM Ensure that Pin 1 of the USB interface adaptor red wire is connected correctly to Pin 1 of J4 on the EVM 6 Connect the USB wire of the USB interface...

Page 9: ...ice Scanning Mode www ti com Test Procedure SLUUAS2C OCTOBER 2013 REVISED NOVEMBER 2021 Submit Document Feedback TPS53915 Step Down Converter Evaluation Module User s Guide 9 Copyright 2021 Texas Inst...

Page 10: ...channel B to TP11 4 Connect the ground lead of channel A and channel B to TP15 5 Inject around 20 mV or less signal through the isolation transformer 6 To measure control loop gain and phase margin c...

Page 11: ...HA Input A for loop injection TP9 PGND Power ground TP10 RF RF pin TP11 TRIP TRIP pin TP12 EN Enable pin TP13 VDD VDD pin TP14 MODE MODE pin TP15 AGND Analog ground 7 5 Equipment Shutdown Follow these...

Page 12: ...d using a six layer 2 oz copper circuit board Figure 8 1 TPS53915EVM 587 Top Layer Assembly Drawing Figure 8 2 TPS53915EVM 587 Bottom Layer Assembly Drawing EVM Assembly Drawing and PCB Layout www ti...

Page 13: ...PS53915EVM 587 Layer Two Copper www ti com EVM Assembly Drawing and PCB Layout SLUUAS2C OCTOBER 2013 REVISED NOVEMBER 2021 Submit Document Feedback TPS53915 Step Down Converter Evaluation Module User...

Page 14: ...PS53915EVM 587 Layer Four Copper EVM Assembly Drawing and PCB Layout www ti com 14 TPS53915 Step Down Converter Evaluation Module User s Guide SLUUAS2C OCTOBER 2013 REVISED NOVEMBER 2021 Submit Docume...

Page 15: ...S53915EVM 587 Bottom Layer Copper www ti com EVM Assembly Drawing and PCB Layout SLUUAS2C OCTOBER 2013 REVISED NOVEMBER 2021 Submit Document Feedback TPS53915 Step Down Converter Evaluation Module Use...

Page 16: ...83 0 433 inch 69P987xN Vitec LBL1 1 Thermal Transfer Printable Labels 0 650 W 0 2 inch H 10 000 per roll PCB Label 0 65 H 0 2 inch W THT 14 423 10 Brady R1 R2 R14 R15 4 100 k RES 100 k 1 0 1 W 0603 06...

Page 17: ...d user s guide for clarity 2 Changed user s guide title 2 Changes from Revision A December 2013 to Revision B February 2014 Page Changed the test points in the Tip and Barrel Measurement for VOUT Ripp...

Page 18: ...ther than TI b the nonconformity resulted from User s design specifications or instructions for such EVMs or improper system design or c User has not paid on time Testing and other quality control tec...

Page 19: ...These limits are designed to provide reasonable protection against harmful interference in a residential installation This equipment generates uses and can radiate radio frequency energy and if not in...

Page 20: ...instructions set forth by Radio Law of Japan which includes but is not limited to the instructions below with respect to EVMs which for the avoidance of doubt are stated strictly for convenience and s...

Page 21: ...any interfaces electronic and or mechanical between the EVM and any human body are designed with suitable isolation and means to safely limit accessible leakage currents to minimize the risk of electr...

Page 22: ...R DAMAGES ARE CLAIMED THE EXISTENCE OF MORE THAN ONE CLAIM SHALL NOT ENLARGE OR EXTEND THIS LIMIT 9 Return Policy Except as otherwise provided TI does not offer any refunds returns or exchanges Furthe...

Page 23: ...change without notice TI grants you permission to use these resources only for development of an application that uses the TI products described in the resource Other reproduction and display of thes...

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