SEMICONDUCTOR INTEGRATED CIRCUITS

Design of a constant-voltage and constant-current controller with dual-loop and adaptive switching frequency control

Yingping Chen and Zhiqian Li

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 Corresponding author: Yingping Chen, E-mail: yingpingchen@hotmail.com

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Abstract: A 5.0-V 2.0-A flyback power supply controller providing constant-voltage (CV) and constant-current (CC) output regulation without the use of an optical coupler is presented. Dual-close-loop control is proposed here due to its better regulation performance of tolerance over process and temperature compared with open loop control used in common. At the same time, the two modes, CC and CV, could switch to each other automatically and smoothly according to the output voltage level not sacrificing the regulation accuracy at the switching phase, which overcomes the drawback of the digital control scheme depending on a hysteresis comparator to change the mode. On-chip compensation using active capacitor multiplier technique is applied to stabilize the voltage loop, eliminate an additional package pin, and save on the die area. The system consumes as little as 100 mW at no-load condition without degrading the transient response performance by utilizing the adaptive switching frequency control mode. The proposed controller has been implemented in a commercial 0.35-μ m 40-V BCD process, and the active chip area is 1.5 × 1.0 mm2. The total error of the output voltage due to line and load variations is less than ± 1.7%.

Key words: constant voltageconstant currentdual-loopadaptive switching frequency



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Fig. 1.  Block diagram of CV/CC controller.

Fig. 2.  Switching waveforms.

Fig. 3.  Equivalent diagram of CC control mode.

Fig. 4.  Equivalent diagram of CV control mode.

Fig. 5.  Magnitude curve of Bode plot.

Fig. 6.  Current-mode capacitor multiplier.

Fig. 7.  Start-up procedure at 110 Vrms. (a) Output voltage at no-load state. (b) 2 A full-load state.

Fig. 8.  Transient response at 110 Vrms changing current load from (a) 0.5 to 0.1 A and (b) 0.1 to 0.5 A.

Fig. 9.  Regulating performance. (a) Load regulation at different line voltages. (b) Line regulation at different load conditions.

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Table 1.   Comparison with other typical products.

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    Received: 07 October 2014 Revised: Online: Published: 01 May 2015

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      Yingping Chen, Zhiqian Li. Design of a constant-voltage and constant-current controller with dual-loop and adaptive switching frequency control[J]. Journal of Semiconductors, 2015, 36(5): 055004. doi: 10.1088/1674-4926/36/5/055004 Y P Chen, Z Q Li. Design of a constant-voltage and constant-current controller with dual-loop and adaptive switching frequency control[J]. J. Semicond., 2015, 36(5): 055004. doi: 10.1088/1674-4926/36/5/055004.Export: BibTex EndNote
      Citation:
      Yingping Chen, Zhiqian Li. Design of a constant-voltage and constant-current controller with dual-loop and adaptive switching frequency control[J]. Journal of Semiconductors, 2015, 36(5): 055004. doi: 10.1088/1674-4926/36/5/055004

      Y P Chen, Z Q Li. Design of a constant-voltage and constant-current controller with dual-loop and adaptive switching frequency control[J]. J. Semicond., 2015, 36(5): 055004. doi: 10.1088/1674-4926/36/5/055004.
      Export: BibTex EndNote

      Design of a constant-voltage and constant-current controller with dual-loop and adaptive switching frequency control

      doi: 10.1088/1674-4926/36/5/055004
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      • Corresponding author: E-mail: yingpingchen@hotmail.com
      • Received Date: 2014-10-07
      • Accepted Date: 2014-11-17
      • Published Date: 2015-01-25

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