SLVK232 February   2026 TPS7H4104-SP

 

  1.   1
  2.   2
  3.   Trademarks
  4. 1 Introduction
  5. 2 Single-Event Effects (SEE)
  6. 3 Device and Test Board Information
  7. 4 Irradiation Facility and Setup
  8. 5 Depth, Range, and LETEFF Calculation
  9. 6 Test Setup and Procedures
  10. 7 Destructive Single-Event Effects (DSEE)
    1. 7.1 Safe Operating Area (SOA) Results
    2. 7.2 Single-Event Latch-up (SEL) Results
    3. 7.3 Single-Event Burnout (SEB) and Single-Event Gate Rupture (SEGR) Results
  11. 8 Single-Event Transients (SET)
  12. 9 Event Rate Calculations
  13. 10Summary
  14.   A References

Summary

The purpose of this study was to characterize the effect of heavy-ion irradiation on the single-event effect (SEE) performance of the TPS7H4104-SP 7V, 3A per channel, multichannel, peak-current mode, synchronous buck converter. Heavy-ions with LETEFF = 75 MeV·cm2/mg were used for the SEE characterization campaign. Flux of ≈105 ions/cm2/s and fluences of 107 ions/cm2 per run were used for the characterization. The SEE results demonstrated that the TPS7H4104-SP is free of destructive SEL and SEB at LETEFF = 75 MeV·cm2/mg at the SOA bias conditions described in this report. Transient conditions and scope configurations at LETEFF = 75 MeV·cm2 /mg on VOUT are presented and discussed, showing that the TPS7H4104-SP is SET and SEFI free. CREME96-based worst week event-rate calculations for LEO(ISS) and GEO orbits for the DSEE and SET are presented for reference.