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Delta-Sigma Modulator-Based Step-Up DC–DC Converter with Dynamic Output Voltage Scaling

机译:基于Delta-Sigma调制的升压DC-DC转换器,具有动态输出电压缩放

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摘要

The switching noise and conversion efficiency of step-up DC-DC converters need to be improved to meet increasing demand. The delta-sigma modulation (DSM) technique is typically used to improve the performance of buck converters; however, this control scheme is not directly applicable for boost converters. This paper presents a boost DC−DC converter using a continuous-time delta-sigma modulator (DSM) controller for battery-powered and noise-sensitive applications. The proposed converter can adjust a wide range of output voltages dynamically by clamping the maximum duty cycle of the DSM, thus enabling stable and robust transient responses of the converter. The switching harmonics in the converter output are reduced effectively by the noise shaping property of the modulator. Moreover, the converter does not suffer from instability of mode switching due to the use of a fixed third-order DSM. Fabricated in a 180 nm CMOS, the converter occupies an active area of 0.76 mm2. It produced an output voltage ranging from 2.5 V to 5.0 V at an input voltage of 2.0 V and achieved a peak conversion efficiency of 95.5%. The output voltage ripples were maintained under 25 mV for all load conditions. A low noise output spectrum with a first spurious peak located −91 dBc from the signal was achieved.
机译:需要改进升压DC-DC转换器的开关噪声和转换效率以满足越来越多的需求。 Delta-Sigma调制(DSM)技术通常用于提高降压转换器的性能;但是,该控制方案不可直接适用于升压转换器。本文为升压DC-DC转换器提供了一种用于电池供电和噪声敏感应用的连续时间Δ-Sigma调制器(DSM)控制器。所提出的转换器可以通过钳位DSM的最大占空比来动态调整各种输出电压,从而实现转换器的稳定且稳健的瞬态响应。通过调制器的噪声整形性能有效地减少了转换器输出中的开关谐波。此外,由于使用固定的三阶DSM,转换器不会遭受模式切换的不稳定性。转换器中的180nm CMOS制造在180nm CMOS中,占据0.76mm2的有效面积。它在2.0V的输入电压下产生的输出电压为2.5 V至5.0V,并达到95.5%的峰值转化效率。输出电压纹波在25 mV下保持为所有负载条件。实现了具有来自信号的第一奇迹峰的低噪声输出频谱。

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