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SLUUC86 - March 2020
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Copyright © 2020, Texas Instruments Incorporated
Using the UCC5304EVM-035
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User's Guide
SLUUC86 - March 2020
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Using the UCC5304EVM-035
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Summary of Contents for Texas Instruments UCC5304EVM-035

  • Page 1: Table Of Contents

    Test Points and Jumpers ......................Jumpers Setting ................UCC5304EVM-035 Electrical Specifications ................Two-Channel Function Generator Settings ....................... Oscilloscope Settings ..................UCC5304EVM-035 List of Materials SLUUC86 – March 2020 Using the UCC5304EVM-035 Submit Documentation Feedback Copyright © 2020, Texas Instruments Incorporated...
  • Page 2: Introduction

    Introduction The UCC5304EVM-035 device is designed for evaluation of the UCC5304 device, with a 4-A source and 6-A sink peak current for driving Si MOSFETs and GaN FETs. Developed for high voltage applications where isolation and reliability are required, the UCC5304 device delivers reinforced isolation of 5.7-kV and a surge immunity tested up to 7.8-kV, with a common mode transient immunity (CMTI) greater than...
  • Page 3: Description

    Description The UCC5304EVM-035 kit has independent connection points for VCCI and VDD supplies, including separate ground points. A three-position header with jumpers for the input signal, lets designers easily tie input high or low. A variety of testing points are provided for easy connection, including some designated for use with ground springs for shorter measurement loops of key signals.
  • Page 4: I/O Description

    Primary supply positive input TP15 Output supply negative input TP16 Primary GND TP17 Primary GND J1-1 Connected to GND J1-2 Connected to IN J1-3 Connected to VCCI Using the UCC5304EVM-035 SLUUC86 – March 2020 Submit Documentation Feedback Copyright © 2020, Texas Instruments Incorporated...
  • Page 5: Jumpers (Shunt) Setting

    Jumper on J1-2 and J1-1 sets IN low. Option C Jumper on J1-2 and J1-3 sets IN high. Electrical Specifications Table 3 lists the UCC5304EVM-035 electrical specifications. Table 3. UCC5304EVM-035 Electrical Specifications Description UNIT Primary-side power supply Driver output power supply for UCC5304 Operating junction temperature range –40...
  • Page 6: Test Summary

    – Current limit: 0.100 A 4.2.2 Digital Multi-Meter (DMM) Settings • Digital multi-meter 1: – DC current measurement, auto-range. • Digital multi-meter 2: – DC current measurement, auto-range. Using the UCC5304EVM-035 SLUUC86 – March 2020 Submit Documentation Feedback Copyright © 2020, Texas Instruments Incorporated...
  • Page 7: Jumpers Installation Position

    10× or automatic 4.2.5 Jumper (Shunt) Settings The jumper on header J1 should NOT be installed for normal testing (see Figure Figure 1. Jumpers Installation Position SLUUC86 – March 2020 Using the UCC5304EVM-035 Submit Documentation Feedback Copyright © 2020, Texas Instruments Incorporated...
  • Page 8: Bench Setup Diagram And Configuration

    5. Oscilloscope Ch-1: If a TPP1000 or other ground spring compatible probe is available, attach oscilloscope channel-1 probe to TP3. Otherwise, connect positive node to TP9 (OUT) and TP13 (VSS). Figure 2. Bench Setup Diagram and Configuration Using the UCC5304EVM-035 SLUUC86 – March 2020 Submit Documentation Feedback Copyright © 2020, Texas Instruments Incorporated...
  • Page 9: Power Up And Power Down Procedure

    UCC5304 data sheet. Figure 3. Example Input and Output Waveforms (Inputs: CH2, Outputs: CH3) SLUUC86 – March 2020 Using the UCC5304EVM-035 Submit Documentation Feedback Copyright © 2020, Texas Instruments Incorporated...
  • Page 10: Example Input And Output Waveforms, Zoom In On Rise (Inputs: Ch2, Outputs: Ch3)

    Figure 4. Example Input and Output Waveforms, Zoom In on Rise (Inputs: CH2, Outputs: CH3) Using the UCC5304EVM-035 SLUUC86 – March 2020 Submit Documentation Feedback Copyright © 2020, Texas Instruments Incorporated...
  • Page 11: Power Down

    The following list describes the procedure to power down the EVM. 1. Disable the function generator. 2. Disable power supply 2. 3. Disable power supply 1. 4. Disconnect the cables and probes. SLUUC86 – March 2020 Using the UCC5304EVM-035 Submit Documentation Feedback Copyright © 2020, Texas Instruments Incorporated...
  • Page 12: Schematic

    Schematic www.ti.com Schematic Figure 6. UCC5304EVM-035 Schematic Using the UCC5304EVM-035 SLUUC86 – March 2020 Submit Documentation Feedback Copyright © 2020, Texas Instruments Incorporated...
  • Page 13: Layout Diagrams

    Layout Diagrams www.ti.com Layout Diagrams Figure 7. Top Overlay Figure 8. Top Layer SLUUC86 – March 2020 Using the UCC5304EVM-035 Submit Documentation Feedback Copyright © 2020, Texas Instruments Incorporated...
  • Page 14: Bottom Layer

    Layout Diagrams www.ti.com Figure 9. Bottom Layer Figure 10. Bottom Overlay Using the UCC5304EVM-035 SLUUC86 – March 2020 Submit Documentation Feedback Copyright © 2020, Texas Instruments Incorporated...
  • Page 15: List Of Materials

    List of Materials www.ti.com List of Materials Table 6. UCC5304EVM-035 List of Materials Designator Description Capacitor, ceramic, 33 pF, 50 V, ± 5%, C0G/NP0, 0603 C2, C5 Capacitor, ceramic, 1 µF, 50 V, ±10%, X7R, 0805 Capacitor, ceramic, 0.1 µF, 50 V, ±10%, X7R, 0805 Capacitor, ceramic, 1800 pF, 50 V, ±10%, X7R, 1206...
  • Page 16 STANDARD TERMS FOR EVALUATION MODULES 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.
  • Page 17 www.ti.com 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.
  • Page 18 www.ti.com Concernant les EVMs avec antennes détachables Conformément à la réglementation d'Industrie Canada, le présent émetteur radio peut fonctionner avec une antenne d'un type et d'un gain maximal (ou inférieur) approuvé pour l'émetteur par Industrie Canada. Dans le but de réduire les risques de brouillage radioélectrique à...
  • Page 19 www.ti.com 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.
  • Page 20 Notwithstanding the foregoing, any judgment may be enforced in any United States or foreign court, and TI may seek injunctive relief in any United States or foreign court. Mailing Address: Texas Instruments, Post Office Box 655303, Dallas, Texas 75265 Copyright © 2019, Texas Instruments Incorporated...
  • Page 21 TI products. TI’s provision of these resources does not expand or otherwise alter TI’s applicable warranties or warranty disclaimers for TI products. Mailing Address: Texas Instruments, Post Office Box 655303, Dallas, Texas 75265 Copyright © 2020, Texas Instruments Incorporated...

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