TIDUFB5A December   2024  – January 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 Redundant Input Supplies
      2. 2.2.2 Ethernet Ring
      3. 2.2.3 Audio Video Bridging (AVB)
      4. 2.2.4 Low-Power Mode and Wake
      5. 2.2.5 Limp Home Mode
      6. 2.2.6 SPI Daisy Chain
      7. 2.2.7 Reset Aggregation
    3. 2.3 Highlighted Products
      1. 2.3.1  AM263P4-Q1
      2. 2.3.2  DP83TG721S-Q1
      3. 2.3.3  DP83TD555J-Q1
      4. 2.3.4  TPS653860-Q1
      5. 2.3.5  TPS2HCS10-Q1
      6. 2.3.6  TPS2HCS05-Q1
      7. 2.3.7  DRV8245S-Q1
      8. 2.3.8  TIC12400-Q1
      9. 2.3.9  LM74900-Q1
      10. 2.3.10 LM74703-Q1
      11. 2.3.11 INA186-Q1
      12. 2.3.12 TPS7B81-Q1
      13. 2.3.13 TPS3762-Q1
      14. 2.3.14 TPS62903-Q1
      15. 2.3.15 TPS62902-Q1
      16. 2.3.16 TPS7B4256-Q1
      17. 2.3.17 TPS1211-Q1
      18. 2.3.18 TPS1HC30-Q1
      19. 2.3.19 TPS4HC120-Q1
      20. 2.3.20 TPS2HC08-Q1
      21. 2.3.21 TPS1HC04-Q1
      22. 2.3.22 DRV8714S-Q1
      23. 2.3.23 DRV8145S-Q1
      24. 2.3.24 DRV81602-Q1
      25. 2.3.25 TPS1214-Q1
      26. 2.3.26 TCAN1043A-Q1
      27. 2.3.27 TCAN1044-Q1
      28. 2.3.28 TCAN1046V-Q1
      29. 2.3.29 SN3257-Q1
      30. 2.3.30 TLIN1021A-Q1
      31. 2.3.31 TLIN1024A-Q1
      32. 2.3.32 TAS6754-Q1
      33. 2.3.33 TMUX1308-Q1
      34. 2.3.34 TPLD1201-Q1
      35. 2.3.35 SN74CBTLV3861-Q1
      36. 2.3.36 TXE8124-Q1
      37. 2.3.37 TCAL9539-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
      1. 3.4.1 Redundant Input Supply
      2. 3.4.2 Power Sequence
      3. 3.4.3 Reset Aggregation
      4. 3.4.4 Low Power Mode Tests
        1. 3.4.4.1 Low Power Mode Quiescent Current
        2. 3.4.4.2 Wake Measurement Results
        3. 3.4.4.3 CAN Wake
        4. 3.4.4.4 LIN Wake
        5. 3.4.4.5 High-Side Switch Controller Wake
        6. 3.4.4.6 Smart eFuse Wake
        7. 3.4.4.7 High-Side Switch Wake
  10. 4Design and Documentation Support
    1. 4.1 Design Files
      1. 4.1.1 Schematics
      2. 4.1.2 Layout
      3. 4.1.3 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

TIC12400-Q1

The TIC12400-Q1 is an advanced Multiple Switch Detection Interface (MSDI) designed to detect external switch status in an automotive system. This device has an integrated 10-bit ADC to monitor multi-position analog switches and a comparator to monitor 24 digital switches independently of the MCU. The TIC12400-Q1 supports wake-up operation on all switch inputs to allow the MCU to shut down and can enter polling mode to periodically sample the input status for low-power-mode applications.