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Bill of Materials

11

SNVU702 – February 2020

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Copyright © 2020, Texas Instruments Incorporated

LM63625QDRREVM EVM User’s Guide

6

Bill of Materials

Table 2. BOM for LM63625EVM

DESIGNATOR

COMMENT

DESCRIPTION

MANUFACTURER

PART NUMBER

QUANTITY

C1

CB

CAP, CERM, 0.22 µF, 16 V, ±10%, X7R, AEC-

Q200 Grade 1, 0603

Samsung

CL10B224KO8VPNC

1

C2,C3

CO1,CO2

CAP, CERM, 22 µF, 16 V, ±20%, X7R, AEC-Q200

Grade 1, 1210

Taiyo Yuden

EMK325B7226MMHT

2

C6

CVCC

CAP, CERM, 1 µF, 16 V, ±10%, X7R, AEC-Q200

Grade 1, 0603

Taiyo Yuden

EMK107B7105KAHT

1

C7

CINHF

CAP, CERM, 0.22 µF, 50 V, ±10%, X7R, AEC-

Q200 Grade 1, 0603

Kemet

CGA3E3X7R1H224K080AB

1

C8,C9,C13

CIN1, Cin2, Cf2

CAP, CERM, 4.7 µF, 50 V, ±10%, X7R, AEC-

Q200 Grade 1, 1206

TDK

CGA5L3X7R1H475K160AE

3

C7

CVCC

CAP, CERM, 1 µF, 16 V, ±10%, X7R, AEC-Q200

Grade 1, 0603

TDK

EMK107B7105KAHT

1

C10

Cblk

CAP, AL, 47 µF, 63 V, ±20%, AEC-Q200 Grade 2,

SMD

Panasonic

EEE-HA1J470UP

1

C11

Cf3

CAP, CERM, 1 µF, 50 V, ±10%, X7R, AEC-Q200

Grade 1, 1206

Taiyo Yuden

UMK316B7105KLHT

1

J1, J2, J3

EN, VSEL,

SYNC/MODE

Header, 100 mil, 3x1, Gold, TH

Samtec

HTSW-103-07-G-S

3

L1

L1

Inductor, Shielded, Composite, 2.2 µH, 6.1 A,

0.0201

Ω

, AEC-Q200 Grade 1, SMD

Coilcraft

XEL4030-222MEB

1

L2

Lf2

Inductor, Shielded, Metal Composite, 4.7 µH, 2.9

A, 0.076

Ω

, SMD

Wurth Elektronik

74438356047

1

L3

Lf1

Ferrite Bead, 600

Ω

at 100 MHz, 3 A, 1210

Taiyo Yuden

FBMH3225HM601NT

1

R1

RINJ

RES, 49.9, 1%, 0.1 W, AEC-Q200 Grade 0, 0603

Vishay-Dale

CRCW060349R9FKEA

1

R2, R6

RT2, RFBT

RES, 0, 1%, 0.1 W, AEC-Q200 Grade 0, 0603

Stackpole

Electronics Inc

RMCF0603ZT0R00

2

R6

RINJ

RES, 49.9, 1%, 0.1 W, AEC-Q200 Grade 0, 0603

Vishay-Dale

CRCW060349R9FKEA

1

TP1, TP2, TP3,
TP4, TP5, TP6,
TP7, TP8, TP9,

TP11

VINS, VOUTS,

VIN_EMI, EN, VOUT,

GND, TPGND2,

TPGND1, GNDS,

RESET, SYNC

Terminal, Turret, TH, Double

Keystone

1593-2

10

U1

LM63625DQB1DRRQ1

3.5-V to 36-V, 2.5-A, Automotive Step-down

Voltage Converter, DRR0012E (WSON-12)

Texas Instruments

LM63625DQB1DRRQ1

1

C4

CO3

CAP, CERM, 22 µF, 16 V, ±20%, X7R, AEC-Q200

Grade 1, 1210

Taiyo Yuden

EMK325B7226MMHT

0

C5

CFF

CAP, CERM, 10 pF, 50 V, ±5%, C0G/NP0, 0603

MuRata

GRM1885C1H100JA01D

0

C12

Cf1

CAP, CERM, 1 µF, 50 V, ±10%, X7R, AEC-Q200

Grade 1, 1206

Taiyo Yuden

UMK316B7105KLHT

0

C14

COHF

CAP, CERM, 0.22 µF, 50 V, ±10%, X7R, AEC-

Q200 Grade 1, 0603

TDK

CGA3E3X7R1H224K080AB

0

L4

L4

Coupled inductor, 0.015

Ω

, AEC-Q200 Grade 1,

SMD

TDK

ACM70V-701-2PL-TL00

0

R3, R5

RFFB, RT1

RES, 0, 1%, 0.1 W, AEC-Q200 Grade 0, 0603

Stackpole

Electronics Inc

RMCF0603ZT0R00

0

R4

RPU

RES, 100 k, 1%, 0.1 W, AEC-Q200 Grade 0, 0603

Vishay-Dale

CRCW0603100KFKEA

0

R7

Radj

RES, 10.0 k, 1%, 0.1 W, AEC-Q200 Grade 0,

0603

Vishay-Dale

CRCW060310K0FKEA

0

Содержание LM63625QDRREVM

Страница 1: ... V The LM63625 Q1 features a selectable output voltage of 3 3 V or 5 V and a switching frequency of 2 1 MHz See the LM636x5 Q1 3 5 V to 36 V 1 5 A and 2 5 A Automotive Step down Voltage Converter Data Sheet for additional features detailed description and available options The EVM options are found in Table 1 Table 1 Device and Package Configurations EVM DEVICE OUTPUT CURRENT SWITCHING FREQUENCY P...

Страница 2: ...3 3 V fSW 2100 KHz 6 7 Efficiency Without Input Filter AUTO Mode VOUT 5 V fSW 2100 KHz 6 8 LM63625EVM Schematic 7 9 Top View of EVM 8 10 Bottom View of EVM 8 11 EVM Top Copper Layer 9 12 EVM Mid Layer One 9 13 EVM Mid Layer Two 10 14 EVM Bottom Copper Layer 10 List of Tables 1 Device and Package Configurations 1 2 BOM for LM63625EVM 11 Trademarks All trademarks are the property of their respective...

Страница 3: ...r connections See Figure 2 for the top of board connections and Figure 3 for the card edge connections See the LM636x5 Q1 3 5 V to 36 V 1 5 A and 2 5 A Automotive Step down Voltage Converter Data Sheet for details The following lists the functions of the connections VINEMI Input supply to EVM Connect to a suitable input supply GND System ground VOUT Output of EVM Connect to desired load VOS Output...

Страница 4: ... Edge Connections 1 1 Jumpers See Figure 4 for jumper locations VSEL This jumper allows output voltage selection of either 3 3 V or 5 V See the Section 2 for details MODE This jumper allows the selection of either AUTO mode or FPWM mode In addition by removing this jumper and supplying a clock signal to the SYNC MODE test point the device can by synchronized to an external clock EN This jumper tur...

Страница 5: ... sense connection Connect to DMM GNDS Ground sense point for analog measurements Connect to DMM EN Connected to the EN input of the device RESET Connected to the RESET pin of the IC It is used as a flag output The reset function can be monitored at this test point Pull up resistor RPU must be populated A typical value for pullup resistor is 100 kΩ SYNC MODE Connected to the SYNC MODE pin of the IC...

Страница 6: ...otive Step down Voltage Converter Data Sheet for more information The switching mode of the EVM can be changed by using the SYNC MODE jumper this selection can be made on the fly To use the RESET function a pullup resistor is required A place for this resistor is provided on the bottom of the PCB RPU Values of 10 kΩ to 100 kΩ are appropriate Be sure to limit the voltage on this pullup to less than...

Страница 7: ...www ti com Schematic 7 SNVU702 February 2020 Submit Documentation Feedback Copyright 2020 Texas Instruments Incorporated LM63625QDRREVM EVM User s Guide 4 Schematic Figure 8 LM63625EVM Schematic ...

Страница 8: ...e burns Do not touch Board Layout www ti com 8 SNVU702 February 2020 Submit Documentation Feedback Copyright 2020 Texas Instruments Incorporated LM63625QDRREVM EVM User s Guide 5 Board Layout Figure 9 Top View of EVM Figure 10 Bottom View of EVM ...

Страница 9: ... com Board Layout 9 SNVU702 February 2020 Submit Documentation Feedback Copyright 2020 Texas Instruments Incorporated LM63625QDRREVM EVM User s Guide Figure 11 EVM Top Copper Layer Figure 12 EVM Mid Layer One ...

Страница 10: ...yout www ti com 10 SNVU702 February 2020 Submit Documentation Feedback Copyright 2020 Texas Instruments Incorporated LM63625QDRREVM EVM User s Guide Figure 13 EVM Mid Layer Two Figure 14 EVM Bottom Copper Layer ...

Страница 11: ...2 Inductor Shielded Metal Composite 4 7 µH 2 9 A 0 076 Ω SMD Wurth Elektronik 74438356047 1 L3 Lf1 Ferrite Bead 600 Ω at 100 MHz 3 A 1210 Taiyo Yuden FBMH3225HM601NT 1 R1 RINJ RES 49 9 1 0 1 W AEC Q200 Grade 0 0603 Vishay Dale CRCW060349R9FKEA 1 R2 R6 RT2 RFBT RES 0 1 0 1 W AEC Q200 Grade 0 0603 Stackpole Electronics Inc RMCF0603ZT0R00 2 R6 RINJ RES 49 9 1 0 1 W AEC Q200 Grade 0 0603 Vishay Dale C...

Страница 12: ...other 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 techniques are used to the extent TI deems necessary TI does not test all parameters of each EVM User s claims against TI under this Section 2 are void if User fails to notify TI of any apparent defects...

Страница 13: ... 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 installed and used in accordance with the instructions may cause harmful interference to radio communications However there is no guarantee that interference will not occur in a particular installation...

Страница 14: ...y for convenience and should be verified by User 1 Use EVMs in a shielded room or any other test facility as defined in the notification 173 issued by Ministry of Internal Affairs and Communications on March 28 2006 based on Sub section 1 1 of Article 6 of the Ministry s Rule for Enforcement of Radio Law of Japan 2 Use EVMs only after User obtains the license of Test Radio Station as provided in R...

Страница 15: ... 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 electrical shock hazard User assumes all responsibility and liability for any improper or unsafe handling or use of the EVM by User or its employees affiliates contractors or designees 4 4 User assumes all...

Страница 16: ...OR 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 Furthermore no return of EVM s will be accepted if the package has been opened and no return of the EVM s will be accepted if they are damaged or otherwise not in a resalable condition If User feels it has...

Страница 17: ...se resources are subject to 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 these resources is prohibited No license is granted to any other TI intellectual property right or to any third party intellectual property right TI disclaims responsibility for...

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