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Switched Capacitor based High Positive and Negative Voltage Charge-pump using Sample and Hold technique

机译:采用采样保持技术的基于开关电容器的高正负电荷泵

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A switched capacitor based high positive and negative voltage charge-pump using sample and hold technique is introduced. Circuit uses low voltage transistors, MOM capacitors and two-phase clock signals. As single circuit can generate both positive and negative voltages so we do not require huge on-chip capacitors separately for positive and negative charge-pump thus this circuit provides huge area saving. A self-timed clock is also generated to perform sample and hold process for this circuit. Another option is to use external clock for timing the sample and hold process. Circuit discuss about a single stage positive and negative voltage multiplier stage and four stage charge-pump system, which is designed and simulated in BCD-110nm technology with input supply of 2.5V. Circuit provides a voltage multiplication efficiency of 93% for positive voltage and 92% for negative voltages.
机译:介绍了一种使用采样和保持技术的基于开关电容器的高正负电荷泵。电路使用低压晶体管,MOM电容器和两相时钟信号。由于单个电路可以同时产生正电压和负电压,因此我们不需要分别用于正负电荷泵的大型片上电容器,因此该电路可节省大量面积。还产生一个自定时时钟,以对该电路执行采样和保持过程。另一种选择是使用外部时钟来计时采样和保持过程。电路讨论了单级正负乘法器级和四级电荷泵系统,该系统采用BCD-110nm技术设计并仿真,输入电源为2.5V。电路为正电压提供了93%的电压倍增效率,为负电压提供了92%的电压倍增效率。

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