SLUAAO0 june   2023 TPS563207S

 

  1.   1
  2.   Abstract
  3.   Trademarks
  4. 1Introduction
  5. 2Lower Output Voltage Than Reference by AVS Control
  6. 3Simulation Result with TPS563252
  7. 4Test Results with TPS563252
  8. 5Summary
  9. 6References

Simulation Result with TPS563252

A circuit with TPS563252 Simplis model is built to do DC and AC analysis. TPS563252 is a part with high frequency to 1.2 MHz and high accuracy reference voltage. The reference voltage of TPS563252 is 0.6 V. If the SoC needs supply voltage to be 0.5 V to 0.7 V and typical supply voltage is 0.6 V. If Vtest voltage is 0, the output voltage is maximum value. Set bottom divider resister to be 10 kΩ, top divider resister 2 kΩ. Based on previous analysis, set AVS resister to be 47 kΩ which has small effect on loop at different output voltage. The voltage of AVS range is 1.07 V to 5.77 V based on Equation 3. Figure 3-1 shows TPS563252 schematic in Simplis.

GUID-20230530-SS0I-FJWS-WLJZ-VWNTRZXT9LSH-low.svg Figure 3-1 TPS563252 Schematic of Simplis

Figure 3-2 shows output voltage at Vtest voltage of 1.07 V, 3.1 V and 5.77 V. From steady state analysis, output voltage is stable and smooth. By this method, a desired output voltage, that is lower than reference voltage, is received.

GUID-20230530-SS0I-DDMB-MKTS-LLRZ08JCQD5J-low.svg Figure 3-2 Output Voltage Waveform at Different Vtest Voltage

The bode plot as Figure 3-3 is received by running the AC simulation. The gain and phase curve are nearly the same. From phase margin, the bode plot is stable.

GUID-20230530-SS0I-P9ZV-NZCK-HK8PGPLMN9VJ-low.svg Figure 3-3 Bode Plot