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4

EVM Use Restrictions and Warnings:

4.1 EVMS ARE NOT FOR USE IN FUNCTIONAL SAFETY AND/OR SAFETY CRITICAL EVALUATIONS, INCLUDING BUT NOT

LIMITED TO EVALUATIONS OF LIFE SUPPORT APPLICATIONS.

4.2 User must read and apply the user guide and other available documentation provided by TI regarding the EVM prior to handling

or using the EVM, including without limitation any warning or restriction notices. The notices contain important safety information
related to, for example, temperatures and voltages.

4.3

Safety-Related Warnings and Restrictions:

4.3.1

User shall operate the EVM within TI’s recommended specifications and environmental considerations stated in the user
guide, other available documentation provided by TI, and any other applicable requirements and employ reasonable and
customary safeguards. Exceeding the specified performance ratings and specifications (including but not limited to input
and output voltage, current, power, and environmental ranges) for the EVM may cause personal injury or death, or
property damage. If there are questions concerning performance ratings and specifications, User should contact a TI
field representative prior to connecting interface electronics including input power and intended 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 with the inputs and outputs kept within the specified 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 sense resistors, and heat sinks, which can be identified using the
information in the associated documentation. When working with the EVM, please be aware that the EVM may become
very warm.

4.3.2

EVMs 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 assumes all responsibility and liability for proper and safe handling and use of the EVM by User or its employees,
affiliates, contractors or designees. User assumes all responsibility and liability to ensure that 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 responsibility and liability to determine whether the EVM is subject to any applicable international, federal,

state, or local laws and regulations related to User’s handling and use of the EVM and, if applicable, User assumes all
responsibility and liability for compliance in all respects with such laws and regulations. User assumes all responsibility and
liability for proper disposal and recycling of the EVM consistent with all applicable international, federal, state, and local
requirements.

5.

Accuracy of Information:

To the extent TI provides information on the availability and function of EVMs, TI attempts to be as accurate

as possible. However, TI does not warrant the accuracy of EVM descriptions, EVM availability or other information on its websites as
accurate, complete, reliable, current, or error-free.

6.

Disclaimers:

6.1 EXCEPT AS SET FORTH ABOVE, EVMS AND ANY MATERIALS PROVIDED WITH THE EVM (INCLUDING, BUT NOT

LIMITED TO, REFERENCE DESIGNS AND THE DESIGN OF THE EVM ITSELF) ARE PROVIDED "AS IS" AND "WITH ALL
FAULTS." TI DISCLAIMS ALL OTHER WARRANTIES, EXPRESS OR IMPLIED, REGARDING SUCH ITEMS, INCLUDING BUT
NOT LIMITED TO ANY EPIDEMIC FAILURE WARRANTY OR IMPLIED WARRANTIES OF MERCHANTABILITY OR FITNESS
FOR A PARTICULAR PURPOSE OR NON-INFRINGEMENT OF ANY THIRD PARTY PATENTS, COPYRIGHTS, TRADE
SECRETS OR OTHER INTELLECTUAL PROPERTY RIGHTS.

6.2 EXCEPT FOR THE LIMITED RIGHT TO USE THE EVM SET FORTH HEREIN, NOTHING IN THESE TERMS SHALL BE

CONSTRUED AS GRANTING OR CONFERRING ANY RIGHTS BY LICENSE, PATENT, OR ANY OTHER INDUSTRIAL OR
INTELLECTUAL PROPERTY RIGHT OF TI, ITS SUPPLIERS/LICENSORS OR ANY OTHER THIRD PARTY, TO USE THE
EVM IN ANY FINISHED END-USER OR READY-TO-USE FINAL PRODUCT, OR FOR ANY INVENTION, DISCOVERY OR
IMPROVEMENT, REGARDLESS OF WHEN MADE, CONCEIVED OR ACQUIRED.

7.

USER'S INDEMNITY OBLIGATIONS AND REPRESENTATIONS.

USER WILL DEFEND, INDEMNIFY AND HOLD TI, ITS

LICENSORS AND THEIR REPRESENTATIVES HARMLESS FROM AND AGAINST ANY AND ALL CLAIMS, DAMAGES, LOSSES,
EXPENSES, COSTS AND LIABILITIES (COLLECTIVELY, "CLAIMS") ARISING OUT OF OR IN CONNECTION WITH ANY
HANDLING OR USE OF THE EVM THAT IS NOT IN ACCORDANCE WITH THESE TERMS. THIS OBLIGATION SHALL APPLY
WHETHER CLAIMS ARISE UNDER STATUTE, REGULATION, OR THE LAW OF TORT, CONTRACT OR ANY OTHER LEGAL
THEORY, AND EVEN IF THE EVM FAILS TO PERFORM AS DESCRIBED OR EXPECTED.

Summary of Contents for TPS7H4010EVM

Page 1: ...7H4010 SEP Schematic 4 Figure 1 4 TPS7H4010 SEP Package Marking 5 Figure 4 1 TPS7H4010EVM PVIN 5 V VOUT 1 8 V Schematic 10 Figure 4 2 TPS7H4010EVM PVIN 12 V VOUT 3 3 V Schematic 11 Figure 5 1 Top Laye...

Page 2: ...ble 1 1 Device and Package Configurations 3 Table 1 2 Converter Circuit Variants 4 Table 6 1 TPS7H4010EVM BOM 17 Trademarks All other trademarks are the property of their respective owners Trademarks...

Page 3: ...figurations CONVERTER IC PACKAGE U1 U2 TPS7H4010 SEP 30 pin wettable flanks QFN WQFN 6 mm 4 mm 0 8 mm 1 2 TPS7H4010 SEP Synchronous Step Down Voltage Converter The TPS7H4010 SEP is an easy to use sync...

Page 4: ...The TPS7H4010 SEP evaluation module is orderable part number TPS7H4010EVM The EVM contains two independent converter circuits targeting two common applications POLA FSW 500 kHz PVIN 5 V VOUT 1 8 V IOU...

Page 5: ...Figure 1 4 TPS7H4010 SEP Package Marking www ti com Introduction SNVU744 OCTOBER 2020 Submit Document Feedback TPS7H4010EVM User s Guide 5 Copyright 2020 Texas Instruments Incorporated...

Page 6: ...e are being tested 1 Connect the input voltage supply between J3 PVIN_A and J2 GND_A using short low gauge wires Note For very accurate PVIN control across all load conditions connect sense lines from...

Page 7: ...d on the bottom side of board should be added to avoid oscillations between the cable parasitic inductance and the low ESR ceramic capacitors PVIN_EMI_A J4 PVIN_EMI_B J13 Input voltage to input filter...

Page 8: ...be found by Equation 2 Remove RENB from the board if it is desired to have the same voltage on the EN pin as the EN_EXT_x voltage schematic is shown in Figure 1 3 PGOOD_A TP11 PGOOD_B TP25 Test point...

Page 9: ...ternal clock SYNC_A TP13 SYNC_B TP27 Test point to monitor the SYNC MODE pin and external clock input The SYNC_x test point can used to monitor the SYNC MODE pin voltage on the device It is also the e...

Page 10: ...ematic is shown in Figure 4 1 below Figure 4 1 TPS7H4010EVM PVIN 5 V VOUT 1 8 V Schematic Schematic www ti com 10 TPS7H4010EVM User s Guide SNVU744 OCTOBER 2020 Submit Document Feedback Copyright 2020...

Page 11: ...Figure 4 2 TPS7H4010EVM PVIN 12 V VOUT 3 3 V Schematic www ti com Schematic SNVU744 OCTOBER 2020 Submit Document Feedback TPS7H4010EVM User s Guide 11 Copyright 2020 Texas Instruments Incorporated...

Page 12: ...optimal thermal performance The PCB consists of a 4 layer design There are 2 oz copper planes on the top and bottom and 1 oz copper mid layer planes to dissipate heat with an array of thermal vias und...

Page 13: ...Figure 5 2 Top Layer Routing www ti com Board Layout SNVU744 OCTOBER 2020 Submit Document Feedback TPS7H4010EVM User s Guide 13 Copyright 2020 Texas Instruments Incorporated...

Page 14: ...Figure 5 3 Mid Layer 1 Ground Plane Board Layout www ti com 14 TPS7H4010EVM User s Guide SNVU744 OCTOBER 2020 Submit Document Feedback Copyright 2020 Texas Instruments Incorporated...

Page 15: ...Figure 5 4 Mid Layer 2 Routing www ti com Board Layout SNVU744 OCTOBER 2020 Submit Document Feedback TPS7H4010EVM User s Guide 15 Copyright 2020 Texas Instruments Incorporated...

Page 16: ...Figure 5 5 Bottom Layer Routing Board Layout www ti com 16 TPS7H4010EVM User s Guide SNVU744 OCTOBER 2020 Submit Document Feedback Copyright 2020 Texas Instruments Incorporated...

Page 17: ...hine Screw Round 4 40 x 1 4 Nylon Philips panhead Screw NY PMS 440 0025 PH B F Fastener Supply H7 H8 H9 H10 H11 H12 6 Standoff Hex 0 5 L 4 40 Nylon Standoff 1902C Keystone J1 J2 J3 J4 J5 J10 J11 J12 J...

Page 18: ...5 2 TE Connectivity TP1 TP15 2 Test Point Multipurpose Orange TH Orange Multipurpose Testpoint 5013 Keystone TP2 TP3 TP7 TP8 TP9 TP10 TP16 TP17 TP21 TP22 TP23 TP24 12 Test Point Multipurpose Black TH...

Page 19: ...00 1 820 5 000 4 000 1 821 5 000 3 000 1 822 5 000 2 000 1 822 5 000 1 000 1 823 5 000 0 900 1 823 5 000 0 800 1 823 5 000 0 700 1 822 5 000 0 600 1 823 5 000 0 500 1 827 5 000 0 400 1 833 5 000 0 300...

Page 20: ...nse Figure 7 3 PVIN 5 V VOUT 1 8 V FSW 500 kHz Transient Response to current step from 2 A to 6 A at 1 A us TPS7H4010EVM Test Data www ti com 20 TPS7H4010EVM User s Guide SNVU744 OCTOBER 2020 Submit D...

Page 21: ...urrent step from 6 A to 2 A at 1 A us Figure 7 5 PVIN 5 V VOUT 1 8 V IOUT 6 A FSW 500 kHz Output Voltage Ripple www ti com TPS7H4010EVM Test Data SNVU744 OCTOBER 2020 Submit Document Feedback TPS7H401...

Page 22: ...IOUT 6 A FSW 500 kHz Soft Start Figure 7 7 FSW 500 kHz Efficiency vs IOUT TPS7H4010EVM Test Data www ti com 22 TPS7H4010EVM User s Guide SNVU744 OCTOBER 2020 Submit Document Feedback Copyright 2020 T...

Page 23: ...000 4 000 3 326 5 000 3 000 3 328 5 000 2 000 3 328 5 000 1 000 3 329 5 000 0 900 3 329 5 000 0 800 3 329 5 000 0 700 3 329 5 000 0 600 3 329 5 000 0 500 3 334 5 000 0 400 3 345 5 000 0 300 3 351 5 00...

Page 24: ...sponse Figure 7 10 PVIN 12 V VOUT 3 3 V FSW 500 kHz Transient Response to current step from 2 A to 6 A at 1 A us TPS7H4010EVM Test Data www ti com 24 TPS7H4010EVM User s Guide SNVU744 OCTOBER 2020 Sub...

Page 25: ...urrent step from 6 A to 2 A at 1 A us Figure 7 12 PVIN 12 V VOUT 3 3 V IOUT 6 A FSW 500 kHz Output Voltage Ripple www ti com TPS7H4010EVM Test Data SNVU744 OCTOBER 2020 Submit Document Feedback TPS7H4...

Page 26: ...V IOUT 6 A FSW 500 kHz Soft Start Figure 7 14 FSW 500 kHz Efficiency vs IOUT TPS7H4010EVM Test Data www ti com 26 TPS7H4010EVM User s Guide SNVU744 OCTOBER 2020 Submit Document Feedback Copyright 2020...

Page 27: ...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 28: ...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 29: ...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 30: ...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 31: ...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 32: ...e 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 reprod...

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