TIDUFE8A November   2025  – April 2026

 

  1.   1
  2.   Description
  3.   Resources
  4.   Features
  5.   Applications
  6.   6
  7. 1System Description
  8. 2System Overview
    1. 2.1 Block Diagram
    2. 2.2 Design Considerations
      1. 2.2.1 Backbone
      2. 2.2.2 TPLD1201-Q1 For Reverse ISCP Protection
      3. 2.2.3 48V to 12V Conversion
      4. 2.2.4 Jump Post
      5. 2.2.5 LP-AM263P
    3. 2.3 Highlighted Products
      1. 2.3.1  TPS1212-Q1 (48V)
      2. 2.3.2  TPS1HTC30-Q1 (48V)
      3. 2.3.3  TPS482H85-Q1 (48V)
      4. 2.3.4  TPS1214-Q1 (48V)
      5. 2.3.5  DRV8263-Q1 (48V)
      6. 2.3.6  DRV8363-Q1 (48V)
      7. 2.3.7  TPS2HCS10-Q1 (12V)
      8. 2.3.8  TPS4HC120-Q1 (12V)
      9. 2.3.9  DRV8245-Q1 (12V)
      10. 2.3.10 TPS1211-Q1 (12V)
      11. 2.3.11 TPLD1201-Q1
      12. 2.3.12 TXE8124-Q1
  9. 3Hardware, Software, Testing Requirements, and Test Results
    1. 3.1 Hardware Requirements
    2. 3.2 Software Requirements
    3. 3.3 Test Setup
    4. 3.4 Test Results
  10. 4Design and Documentation Support
    1. 4.1 Design Files
      1. 4.1.1 Schematics
      2. 4.1.2 BOM
    2. 4.2 Tools and Software
    3. 4.3 Documentation Support
    4. 4.4 Support Resources
    5. 4.5 Trademarks
  11. 5About the Author
  12. 6Revision History

TPS1211-Q1 (12V)

The TPS1211-Q1 is a 45V, smart high-side driver with protection and diagnostics. The device has a strong 3.7A peak source (PU) and 4A peak sink (PD) gate driver that enables power switching using parallel FETs in high-current system designs. Use INP as the gate driver control input. The device has accurate current sensing (±2% at 30mV) output (IMON) enabling system designs for energy management. The device has integrated two-level overcurrent protection with FLT_I output with complete adjustability of thresholds and response time. Auto-retry and latch-off fault behavior can be configured. The device features remote overtemperature protection with FLT_T output. The TPS12111-Q1 integrates a pre-charge driver (G) with control input (INP_G). This features enables designs that must drive large capacitive loads. In shutdown mode (EN/UVLO < 0.3V), the controller draws a total shutdown current of 0.9µA (typical).