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Current-Mode Hysteretic Buck Converter With Spur-Free Control for Variable Switching Noise Mitigation

机译:具有无杂散控制的电流模式迟滞降压转换器,可降低开关噪声

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摘要

This paper proposes a current-mode hysteretic buck converter with a spur-free constant-cycle frequency-hopping controller that fully eliminates spurs from the switching noise spectrum irrespective of variations in the switching frequency and operating conditions. As a result, the need for frequency regulation loops to ensure nonvarying switching frequency (i.e., fixed spurs location) in hysteretic controllers is eliminated. Moreover, compared to frequency regulation loops, the proposed converter offers the advantage of eliminating mixing and interference altogether due to its spur-free operation, and thus, it can be used to power, or to be integrated within noise-sensitive systems while benefiting from the superior dynamic performance of its hysteretic operation. The proposed converter uses dual-sided hysteretic band modulation to eliminate the inductor current imbalance that results from frequency hopping along with the output voltage transients and low-frequency noise floor peaking associated with it. Moreover, a feedforward adaptive hysteretic band controller is proposed to reduce variations in the switching frequency with the input voltage, and an all-digital soft-startup circuit is proposed to control the in-rush current without requiring any off-chip components. The converter is implemented in a 0.35-μm standard CMOS technology and it achieves 92% peak efficiency.
机译:本文提出了一种具有无杂散恒定周期跳频控制器的电流模式迟滞降压转换器,该杂散降压转换器可完全消除开关噪声频谱中的杂散,而与开关频率和工作条件的变化无关。结果,消除了对用于确保磁滞控制器中的不变开关频率(即固定的支脚位置)的频率调节环路的需要。此外,与频率调节环路相比,所建议的转换器具有无杂散运行的优点,可完全消除混频和干扰,因此,它可用于供电或集成到对噪声敏感的系统中,同时受益于滞回运行的卓越动态性能。拟议的转换器使用双面滞后带调制,以消除由于跳频,输出电压瞬变以及与之相关的低频本底噪声峰值而引起的电感器电流不平衡。此外,提出了一种前馈自适应滞后带控制器,以减少开关频率随输入电压的变化,并提出了一种全数字软启动电路来控制涌入电流,而无需任何片外组件。该转换器采用0.35μm标准CMOS技术实现,峰值效率达到92%。

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