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A pseudo-noise coded constant-off-time (PNC-COT) control switching converter with maximum 18.7 dBm peak spur reduction and 92 efficiency in 40 nm CMOS

机译:一种伪噪声编码的恒定关断时间(PNC-COT)控制开关转换器,在40 nm CMOS中具有最大的18.7 dBm的峰值杂散减少和92%的效率

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A pseudo-noise coded constant-off-time (PNC-COT) controlled switching converter is proposed in the power module to provide fast envelope tracking and reduced voltage ripple of the supply for radio-frequency power amplifier. The proposed spread spectrum frequency controller (SSFC) conquers the difficulty in spread spectrum realization for the COT control owing to the lack of clock signal. With pseudo-noise coded controlled, low electromagnetic interference is accomplished by softly spreading the switching frequency. Thus, fast voltage tracking, highest 92% efficiency, 35 mV voltage ripple and a 18.7 dBm peak spur reduction can be achieved in a fabricated SS embedded power module with an active area of 0.476mm2 in 40nm CMOS process.
机译:在电源模块中提出了一种伪噪声编码的恒定关断时间(PNC-COT)控制的开关转换器,以提供快速的包络跟踪并降低射频功率放大器电源的电压纹波。所提出的扩频频率控制器(SSFC)克服了由于缺少时钟信号而在COT控制中实现扩频的困难。在伪噪声编码控制下,通过软扩展开关频率可实现低电磁干扰。因此,在40nm CMOS中具有0.476mm 2 的有效面积的SS嵌入式功率模块中,可以实现快速的电压跟踪,最高的92%效率,35 mV的电压纹波和18.7 dBm的峰值杂散降低。过程。

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