首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >Soft-Start Method With Small Capacitor Charged by Pulse Current and Gain-Degeneration Error Amplifier for On-Chip DC–DC Power Converters
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Soft-Start Method With Small Capacitor Charged by Pulse Current and Gain-Degeneration Error Amplifier for On-Chip DC–DC Power Converters

机译:片上DC-DC电源转换器的由小电流脉冲电流和增益退化误差放大器充电的小电容软启动方法

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This paper proposes a soft-start method with the features of a small on-chip capacitor and start stability for dc–dc converters. During the soft-start process, a slowly and linearly ramped-up voltage reference is generated based on the principle of the small on-chip capacitor charged by an oscillator-controlled pulse current to replace the normal reference. Meanwhile, the switching frequency is also reduced so that the inductor current has more time to decay and massive inrush current can be avoided. However, in this way, the system may be unstable in that the bandwidth could not keep less than 1/7 of the reduced switching frequency. In this paper, an error amplifier (EA) with gain-degeneration is proposed to solve this problem. When the switching frequency is reduced, the gain of the EA is also reduced and the bandwidth becomes narrower accordingly. A dc–dc converter using the proposed soft-start method has been implemented with a 0.5-$mu{rm m}$ CMOS process. Experimental results show that a soft-start period of 600 $mu{rm s}$ is achieved with an on-chip capacitor of 15 pF. Furthermore, both the output voltage and inductor current rise smoothly without oscillation and overshoot during the startup process.
机译:本文提出了一种具有小片上电容器和DC-DC转换器启动稳定性的软启动方法。在软启动过程中,基于由振荡器控制的脉冲电流对小型片上电容器进行充电的原理来生成缓慢且线性上升的电压基准,以代替常规基准。同时,开关频率也降低了,因此电感器电流有更多的衰减时间,并且可以避免大量的浪涌电流。然而,以这种方式,系统可能不稳定,因为带宽不能保持小于减小的开关频率的1/7。本文提出了一种具有增益退化的误差放大器(EA)来解决这个问题。当开关频率降低时,EA的增益也降低,带宽相应地变窄。使用建议的软启动方法的DC-DC转换器已通过0.5- $ mu {rm m} $ 实现CMOS工艺。实验结果表明,使用片上电容器可以实现600的软启动周期<公式> 15 pF。此外,在启动过程中,输出电压和电感器电流均平稳上升,而不会发生振荡和过冲。

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