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Single-Inductor Quad-Output Switching Converter With Priority-Scheduled Program for Fast Transient Response and Unlimited Load Range in 40 nm CMOS Technology

机译:具有优先级编程程序的单电感四路输出开关转换器,可实现快速瞬态响应和40 nm CMOS技术中的无限负载范围

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摘要

System-on-a-chip (SoC) applications require multiple power supply voltages with the features of low noise for analog circuits and high efficiency for digital circuits. Thus, this paper proposes the priority-scheduled program (PSP) for the single-inductor quad-output (SIQO) switching converter. This technique manages energy delivery to multiple outputs, facilitates fast transient response, and reduces cross-regulation simultaneously. Moreover, a level bypass detector (LBD) is used to overcome the limitation of significant loading differences among quad outputs in conventional designs because the PSP technique cantransfer additional energy to low-priority outputs to avoid overshoot voltage at high-priority outputs. Furthermore, voltage disturbance can be filtered out using two additional low-dropout regulators that operate as buffers cascaded at two low-priority outputs. Therefore, the SIQO converter that is fabricated in 40 nm CMOS technology satisfies the power requirements in portable electronics given its low cross-regulation of 0.2%, fast transient response of 15 , and an output voltage ripple that is smaller than 30 mV.
机译:片上系统(SoC)应用需要多种电源电压,其模拟电路的噪声低,数字电路的效率高。因此,本文提出了单电感四路输出(SIQO)开关转换器的优先级调度程序(PSP)。该技术管理能量到多个输出的传递,促进快速的瞬态响应,并同时减少交叉调节。此外,电平旁路检测器(LBD)用于克服常规设计中四路输出之间明显的负载差异的限制,因为PSP技术可以将额外的能量转移到低优先级输出,以避免高优先级输出处的过冲电压。此外,可以使用两个额外的低压差稳压器来滤除电压干扰,该稳压器作为在两个低优先级输出上级联的缓冲器工作。因此,采用40 nm CMOS技术制造的SIQO转换器具有0.2%的低交叉调节,15的快速瞬态响应以及小于30 mV的输出电压纹波,可满足便携式电子产品的功率要求。

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