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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.

3

Regulatory Notices:

3.1

United States

3.1.1

Notice applicable to EVMs not FCC-Approved:

FCC NOTICE:

This kit is designed to allow product developers to evaluate electronic components, circuitry, or software

associated with the kit to determine whether to incorporate such items in a finished product and software developers to write
software applications for use with the end product. This kit is not a finished product and when assembled may not be resold or
otherwise marketed unless all required FCC equipment authorizations are first obtained. Operation is subject to the condition
that this product not cause harmful interference to licensed radio stations and that this product accept harmful interference.
Unless the assembled kit is designed to operate under part 15, part 18 or part 95 of this chapter, the operator of the kit must
operate under the authority of an FCC license holder or must secure an experimental authorization under part 5 of this chapter.

3.1.2

For EVMs annotated as FCC – FEDERAL COMMUNICATIONS COMMISSION Part 15 Compliant:

CAUTION

This device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) This device may not
cause harmful interference, and (2) this device must accept any interference received, including interference that may cause
undesired operation.

Changes or modifications not expressly approved by the party responsible for compliance could void the user's authority to
operate the equipment.

FCC Interference Statement for Class A EVM devices

NOTE: This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to part 15 of
the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is
operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not
installed and used in accordance with the instruction manual, may cause harmful interference to radio communications.
Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to
correct the interference at his own expense.

Summary of Contents for TPS543C20EVM-054

Page 1: ...2 2 EVM Features 4 3 EVM Electrical Performance Specifications 4 4 Schematic 5 5 Test Equipment 6 6 BSR054EVM 7 7 List of Test Points Jumpers and Switch 8 8 Test Procedure 9 8 1 Line and Load Regulation Measurement Procedure 9 8 2 Efficiency 9 8 3 Equipment Shutdown 10 9 Performance Data and Typical Characteristic Curves 10 9 1 Efficiency 10 9 2 Power Loss 10 9 3 Load Regulation 11 9 4 Transient R...

Page 2: ...r Assembly Drawing Top View 16 15 BSR054EVM Top Solder Mask Top View 17 16 BSR054EVM Top Layer Top View 18 17 BSR054EVM Inner Layer 1 Top View 19 18 BSR054EVM Inner Layer 2 Top View 20 19 BSR054EVM Inner Layer 3 Top View 21 20 BSR054EVM Inner Layer 4 Top View 22 21 BSR054EVM Bottom Layer Top View 23 22 BSR054EVM Bottom Solder Mask Top View 24 23 BSR054EVM Bottom Overlay Layer Top View 25 List of T...

Page 3: ...plicable to your laboratory Caution Do not leave the EVM powered when unattended WARNING The circuit module has signal traces components and component leads on the bottom of the board This may result in exposed voltages hot surfaces or sharp edges Do not reach under the board during operation CAUTION The circuit module may be damaged by over temperature To avoid damage monitor the temperature duri...

Page 4: ...ls 2 2 EVM Features Regulated 0 9 V output up to 40 A steady state output current Convenient test points for probing critical waveforms 3 EVM Electrical Performance Specifications Table 1 BSR054EVM Electrical Performance Specifications Parameter Test Conditions Min Typ Max Units Input Characteristics Voltage range VIN tied to VDD 5 12 16 V Maximum input current VIN 12 V IO 40 A VOUT 0 9 V FSW 500 ...

Page 5: ...1 NC 32 EN 33 PGD 34 SYNC 35 SS 37 RT 38 MODE 39 AGND 29 RAMP 40 PAD 41 U1 TPS543C20RVFT 1 00 R4 TP7 GND 1 2 J3 GND 0 R11 DNP BP_5V BP_5V TP14 TP5 TP6 TP8 0 R6 DNP 0 R1 100k R16 GND GND 45 3k R8 0 R10 DNP 40 2k R14 8 66k R15 DNP 0 R3 DNP 22pF C18 DNP 22pF C19 DNP 0 R9 DNP 22pF C22 DNP 0 R5 DNP GND TP9 SYNC TP3 TP10 TP2 TP13 187k R2 0 R12 0 R13 TP12 TP11 TP15 TP16 TP17 GND 0 1uF C12 TP18 SYNC 1 2 3...

Page 6: ...loscope is recommended for measuring output noise and ripple Output ripple must be measured using a tip and barrel method or better as shown in Figure 3 The scope must be adjusted to 20 MHz bandwidth AC coupling at 50 mV division and must be set to 1 µs division Fan During prolonged operation at high loads it may be necessary to provide forced air cooling with a small fan aimed at the EVM Temperat...

Page 7: ...EVM 7 SLUUBW8 July 2018 Submit Documentation Feedback Copyright 2018 Texas Instruments Incorporated TPS543C20EVM 054 40 A Single Phase Synchronous Step Down Converter 6 BSR054EVM Figure 2 BSR054EVM Overview Spacer Figure 3 Tip and Barrel Measurement ...

Page 8: ...H loop CH B Measure loop stability TP3 T H loop LocS Sense VOUT locally across C11 Use for efficiency and ripple measurements TP10 T H loop LocS Sense VOUT locally across C11 Use for efficiency and ripple measurements TP1 T H loop PVIN Sense VIN across C8 TP4 T H loop PGND Sense VIN across C8 TP6 T H loop VDD Supplies the internal circuitry TP9 T H loop BP LDO output TP14 T H loop PG Power good TP...

Page 9: ...n regulation as defined in Table 1 9 Vary VIN from 5 V to 16 V VOUT must remain in regulation as defined in Table 1 10 Decrease the load to 0 A 11 Put the jumper back on JP3 to disable the converter 12 Decrease VIN to 0 V or turn off the supply 8 2 Efficiency To measure the efficiency of the power train on the EVM it is important to measure the voltages at the correct location This is necessary be...

Page 10: ...est Procedure www ti com 10 SLUUBW8 July 2018 Submit Documentation Feedback Copyright 2018 Texas Instruments Incorporated TPS543C20EVM 054 40 A Single Phase Synchronous Step Down Converter 8 3 Equipment Shutdown 1 Reduce the load current to 0 A 2 Reduce input voltage to 0 V 3 Shut down the external fan if in use 4 Shut down equipment 9 Performance Data and Typical Characteristic Curves Figure 4 th...

Page 11: ...ance Data and Typical Characteristic Curves 11 SLUUBW8 July 2018 Submit Documentation Feedback Copyright 2018 Texas Instruments Incorporated TPS543C20EVM 054 40 A Single Phase Synchronous Step Down Converter 9 3 Load Regulation Figure 6 Load Regulation of 0 9 V Output 9 4 Transient Response Figure 7 Transient Response of 0 9 V Output at 12 VIN Transient is 15 A to 25 A to 15 A the Step is 10 A at ...

Page 12: ...umentation Feedback Copyright 2018 Texas Instruments Incorporated TPS543C20EVM 054 40 A Single Phase Synchronous Step Down Converter 9 5 Output Ripple Figure 8 Output Ripple and SW Node of 0 9 V Output at 12 VIN 40 A Output Figure 9 Output Ripple and SW Node of 0 9 V Output at 12 VIN 0 A Output ...

Page 13: ...mentation Feedback Copyright 2018 Texas Instruments Incorporated TPS543C20EVM 054 40 A Single Phase Synchronous Step Down Converter 9 6 Control On Figure 10 Start up from Control 0 9 V Output at 12 VIN 10 mA Output Figure 11 0 5 V Pre bias start up from Control 0 9 V Output at 12 VIN 20 A Output ...

Page 14: ...SLUUBW8 July 2018 Submit Documentation Feedback Copyright 2018 Texas Instruments Incorporated TPS543C20EVM 054 40 A Single Phase Synchronous Step Down Converter 9 7 Control On and Off Figure 12 Output Voltage Start up and Shutdown 0 9 V Output at 12 VIN 0 5 A Output ...

Page 15: ...s 15 SLUUBW8 July 2018 Submit Documentation Feedback Copyright 2018 Texas Instruments Incorporated TPS543C20EVM 054 40 A Single Phase Synchronous Step Down Converter 9 8 Thermal Image Figure 13 Thermal Image at 0 9 V Output at 12 VIN 40 A Output at 25 C Ambient ...

Page 16: ...s Incorporated TPS543C20EVM 054 40 A Single Phase Synchronous Step Down Converter 10 EVM Assembly Drawing and PCB Layout Figure 14 through Figure 21 show the design of the BSR054EVM printed circuit board PCB The BSR054EVM has a 2 oz copper finish for all layers Spacer Figure 14 BSR054EVM Top Layer Assembly Drawing Top View spacer ...

Page 17: ...wing and PCB Layout 17 SLUUBW8 July 2018 Submit Documentation Feedback Copyright 2018 Texas Instruments Incorporated TPS543C20EVM 054 40 A Single Phase Synchronous Step Down Converter Figure 15 BSR054EVM Top Solder Mask Top View ...

Page 18: ...B Layout www ti com 18 SLUUBW8 July 2018 Submit Documentation Feedback Copyright 2018 Texas Instruments Incorporated TPS543C20EVM 054 40 A Single Phase Synchronous Step Down Converter Figure 16 BSR054EVM Top Layer Top View spacer ...

Page 19: ...awing and PCB Layout 19 SLUUBW8 July 2018 Submit Documentation Feedback Copyright 2018 Texas Instruments Incorporated TPS543C20EVM 054 40 A Single Phase Synchronous Step Down Converter Figure 17 BSR054EVM Inner Layer 1 Top View ...

Page 20: ...Layout www ti com 20 SLUUBW8 July 2018 Submit Documentation Feedback Copyright 2018 Texas Instruments Incorporated TPS543C20EVM 054 40 A Single Phase Synchronous Step Down Converter Figure 18 BSR054EVM Inner Layer 2 Top View spacer ...

Page 21: ...awing and PCB Layout 21 SLUUBW8 July 2018 Submit Documentation Feedback Copyright 2018 Texas Instruments Incorporated TPS543C20EVM 054 40 A Single Phase Synchronous Step Down Converter Figure 19 BSR054EVM Inner Layer 3 Top View ...

Page 22: ...Layout www ti com 22 SLUUBW8 July 2018 Submit Documentation Feedback Copyright 2018 Texas Instruments Incorporated TPS543C20EVM 054 40 A Single Phase Synchronous Step Down Converter Figure 20 BSR054EVM Inner Layer 4 Top View spacer ...

Page 23: ...rawing and PCB Layout 23 SLUUBW8 July 2018 Submit Documentation Feedback Copyright 2018 Texas Instruments Incorporated TPS543C20EVM 054 40 A Single Phase Synchronous Step Down Converter Figure 21 BSR054EVM Bottom Layer Top View ...

Page 24: ...out www ti com 24 SLUUBW8 July 2018 Submit Documentation Feedback Copyright 2018 Texas Instruments Incorporated TPS543C20EVM 054 40 A Single Phase Synchronous Step Down Converter Figure 22 BSR054EVM Bottom Solder Mask Top View spacer ...

Page 25: ...ng and PCB Layout 25 SLUUBW8 July 2018 Submit Documentation Feedback Copyright 2018 Texas Instruments Incorporated TPS543C20EVM 054 40 A Single Phase Synchronous Step Down Converter Figure 23 BSR054EVM Bottom Overlay Layer Top View ...

Page 26: ...AP CERM 4 7 µF 16 V 10 X5R 0603 0603 GRM188R61C475KAAJ MuRata C23 1 0 1uF CAP CERM 0 1 µF 50 V 10 X7R 0603 0603 06035C104KAT2A AVX 885012206095 Wurth Elektronik C24 1 1000pF CAP CERM 1000 pF 50 V 10 C0G NP0 0603 0603 06035A102KAT2A AVX 885012006062 Wurth Elektronik C25 1 0 01uF CAP CERM 0 01 uF 50 V 5 X7R 0402 0402 C0402C103J5RACTU Kemet H9 H10 H11 H12 4 Bumpon Hemisphere 0 44 X 0 20 Clear Transpa...

Page 27: ...tpoint 5001 Keystone TP23 TP24 2 SMT Test Point Miniature SMT Testpoint_Keystone_Miniat ure 5015 Keystone U1 1 40A FIXED FREQUENCY NON COMPENSATON STACKABLE SYNCHRONOUS BUCK CONVERTER RVF0040A LQFN CLIP 40 RVF0040A TPS543C20EVM 054RVFT Texas Instruments Texas Instruments C6 0 22uF CAP CERM 22 µF 25 V 20 X5R 1206_190 1206_190 C3216X5R1E226M160AB TDK C10 C15 C16 0 100uF CAP CERM 100 µF 6 3 V 20 X5R ...

Page 28: ...y 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 warr...

Page 29: ...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 greater than the maximum gain indicated for that type are strictly prohibited for use with this device Concernant les EVMs avec antennes détachables Conformément à la réglementation d Industrie Canada le présent émetteur radio peut fo...

Page 30: ...ed loads Any loads applied outside of the specified output range may also result in unintended and or inaccurate operation and or possible permanent damage to the EVM and or interface electronics Please consult 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 ...

Page 31: ...COST 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 USE LOSS OF DATA OR BUSINESS INTERRUPTION NO CLAIM SUIT OR ACTION SHALL BE BROUGHT AGAINST TI MORE THAN TWELVE 12 MONTHS AFTER THE EVENT THAT GAVE RISE TO THE CAUSE OF ACTION HAS OCCURRED 8 2 Specif...

Page 32: ... 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 PARTY IS GRANTED HEREIN including but not limited to any patent right copyright mask work right or other intellectual property right relating to any combination machine or process in which TI product...

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