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STANDARD TERMS FOR EVALUATION MODULES

1.

Delivery:

TI delivers TI evaluation boards, kits, or modules, including any accompanying demonstration software, components, and/or

documentation which may be provided together or separately (collectively, an “EVM” or “EVMs”) to the User (“User”) in accordance
with the terms set forth herein. User's acceptance of the EVM is expressly subject to the following terms.

1.1

EVMs are intended solely for product or software developers for use in a research and development setting to facilitate feasibility
evaluation, experimentation, or scientific analysis of TI semiconductors products. EVMs have no direct function and are not
finished products. EVMs shall not be directly or indirectly assembled as a part or subassembly in any finished product. For
clarification, any software or software tools provided with the EVM (“Software”) shall not be subject to the terms and conditions
set forth herein but rather shall be subject to the applicable terms that accompany such Software

1.2

EVMs are not intended for consumer or household use. EVMs may not be sold, sublicensed, leased, rented, loaned, assigned,
or otherwise distributed for commercial purposes by Users, in whole or in part, or used in any finished product or production
system.

2

Limited Warranty and Related Remedies/Disclaimers

:

2.1

These terms do not apply to Software. The warranty, if any, for Software is covered in the applicable Software License
Agreement.

2.2

TI warrants that the TI EVM will conform to TI's published specifications for ninety (90) days after the date TI delivers such EVM
to User. Notwithstanding the foregoing, TI shall not be liable for a nonconforming EVM if (a) the nonconformity was caused by
neglect, misuse or mistreatment by an entity other than TI, including improper installation or testing, or for any EVMs that have
been altered or modified in any way by an entity 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 in the EVMs within ten (10)
business days after delivery, or of any hidden defects with ten (10) business days after the defect has been detected.

2.3

TI's sole liability shall be at its option to repair or replace EVMs that fail to conform to the warranty 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 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 repair such EVM or provide replacements. Repaired EVMs shall be
warranted for the remainder of the original warranty period. Replaced EVMs shall be warranted for a new full ninety (90) day
warranty period.

WARNING

Evaluation Kits are intended solely for use by technically qualified,

professional electronics experts who are familiar with the dangers

and application risks associated with handling electrical mechanical

components, systems, and subsystems.

User shall operate the Evaluation Kit within TI’s recommended

guidelines and any applicable legal or environmental requirements

as well as reasonable and customary safeguards. Failure to set up

and/or operate the Evaluation Kit within TI’s recommended

guidelines may result in personal injury or death or property

damage. Proper set up entails following TI’s instructions for

electrical ratings of interface circuits such as input, output and

electrical loads.

NOTE:

EXPOSURE TO ELECTROSTATIC DISCHARGE (ESD) MAY CAUSE DEGREDATION OR FAILURE OF THE EVALUATION
KIT; TI RECOMMENDS STORAGE OF THE EVALUATION KIT IN A PROTECTIVE ESD BAG.

Summary of Contents for TPS53126EVM-600

Page 1: ...bly Drawings and Layout 15 9 Bill of Materials 18 10 Revision History 19 List of Figures Figure 3 1 TPS53126EVM 600 Schematic 5 Figure 4 1 Tip and Barrel Measurement for Output Voltage Ripple 7 Figure...

Page 2: ...Points Description 6 Table 9 1 TPS53126EVM 600 Bill of Materials 18 Trademarks D CAP2 is a trademark of Texas Instruments All trademarks are the property of their respective owners Trademarks www ti...

Page 3: ...ers in evaluating the performance of the TPS53126 controller in their applications 1 2 Applications Digital television Set top box DSL and cable modems Cost sensitive digital consumer products 1 3 Fea...

Page 4: ...8 V to 22 V 0 4 A VOUT2 Output Voltage 2 VIN 12 V IOUT2 2 A 1 80 V Line Regulation VIN 8 V to 22 V 1 Load Regulation IOUT2 0 A to 4 A 1 VOUT2_rip Output Voltage Ripple VIN 12 V IOUT2 4 A 30 mVpp IOUT...

Page 5: ...Specific Values Figure 3 1 TPS53126EVM 600 Schematic www ti com Schematic SLVU435A FEBRUARY 2011 REVISED JANUARY 2022 Submit Document Feedback TPS53126 Buck Controller Evaluation Module User s Guide...

Page 6: ...SW1 Monitor Switching Node for Channel 1 Section 4 3 4 TP6 GND Ground for Channel 2 Output Voltage Section 4 3 3 TP7 VOUT2 Monitor Output Voltage for Channel 2 Section 4 3 3 TP8 VOUT1 Monitor Output V...

Page 7: ...ique shown in Figure 4 1 4 3 4 Switching Node Monitoring TP3 TP5 and TP11 TPS53126EVM 600 provides two test points for measuring the switching node waveform voltages TP5 monitors the switching node of...

Page 8: ...Adc The minimum recommended wire size is AWG 16 with the total length of wire less than 2 feet 1 foot input 1 foot return J1 to LOAD1 and J2 to LOAD2 The connection between J1 and LOAD1 and J2 and LOA...

Page 9: ...AN Figure 5 1 TPS53126EVM 600 Recommended Test Setup www ti com Test Setup SLVU435A FEBRUARY 2011 REVISED JANUARY 2022 Submit Document Feedback TPS53126 Buck Controller Evaluation Module User s Guide...

Page 10: ...ge output voltage and input current from V1 V2 V3 and A1 respectively 6 Shut down the TPS53126EVM 600 per Section 6 4 6 3 Output Ripple Voltage Measurement Procedure 1 Set up the TPS53126EVM 600 per S...

Page 11: ...5 2 2 5 3 3 5 4 4 5 I Load Current A LOAD V 8 V IN V 12 V IN V 22 V IN b F 700 kHz SW Figure 7 1 Efficiency vs Load VIN 8 V 22 V VOUT1 1 05 V IOUT1 0 A 4 A 95 90 85 80 75 70 65 60 h Efficiency 0 0 5 1...

Page 12: ...A a F 350 kHz SW 1 84 1 83 1 82 1 81 1 8 1 79 1 78 1 77 1 76 V Output Voltage V OUT 0 0 5 1 1 5 2 2 5 3 3 5 4 4 5 I Load Current A LOAD V 22 V IN V 8 V IN V 12 V IN 1 84 1 83 1 82 1 81 1 8 1 79 1 78 1...

Page 13: ...3126EVM 600 Output Ripple Test condition Vin 12 V Vo 2 1 8 4A 350 kHz Figure 7 6 Output Voltage Ripple VIN 12 V VOUT2 1 8 V IOUT2 4 A FSW 350 kHz www ti com Performance Data and Typical Characteristic...

Page 14: ...126EVM 600 Switch Node Test condition Vin 12 V Vo 2 1 8 V 4A 350 kHz Figure 7 8 Switching Waveform VIN 12 V VOUT2 1 08 V IOUT2 4 A FSW 350 kHz Performance Data and Typical Characteristic Curves www ti...

Page 15: ...evaluate the TPS53126 control integrated circuit in a practical application Moving components to both sides of the PCB or using additional internal layers can offer additional size reduction for spac...

Page 16: ...Bottom Layer EVM Assembly Drawings and Layout www ti com 16 TPS53126 Buck Controller Evaluation Module User s Guide SLVU435A FEBRUARY 2011 REVISED JANUARY 2022 Submit Document Feedback Copyright 2022...

Page 17: ...6 Internal Layer 2 www ti com EVM Assembly Drawings and Layout SLVU435A FEBRUARY 2011 REVISED JANUARY 2022 Submit Document Feedback TPS53126 Buck Controller Evaluation Module User s Guide 17 Copyright...

Page 18: ...Q2 Q3 Q4 CSD17507Q5A MOSFET N Chan 30V 65A 11 8m QFN 8 POWER CSD17507Q5A TI 1 R1 1 40k Resistor Chip 1 16W 1 0603 Std Std 2 R11 R12 5 11 Resistor Chip 1 16W 1 0603 Std Std 1 R13 332 Resistor Chip 1 1...

Page 19: ...ision A January 2022 Page Updated the numbering format for tables figures and cross references throughout the document 3 Updated the user s guide title 3 www ti com Revision History SLVU435A FEBRUARY...

Page 20: ...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 21: ...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 22: ...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 23: ...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 24: ...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 25: ...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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