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Prototyping of an All-pMOS-Based Cross-Coupled Voltage Multiplier in Single-Well CMOS Technology for Energy Harvesting Utilizing a Gastric Acid Battery

机译:基于胃酸电池的单阱CMOS技术中基于全pMOS的交叉耦合电压倍增器的原型设计

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A gastric acid battery and its charge storage in a capacitor are a simple and safe method to provide a power source to an ingestible device. For that method, the electromotive force of the battery should be boosted for storing a large amount of energy. In this study, we have proposed an all-p-channel metal-oxide semiconductor (pMOS)-based cross-coupled voltage multiplier (CCVM) utilizing single-well CMOS technology to achieve a voltage boosting higher than from a conventional complementary MOS (CMOS) CCVM. We prototyped a custom integrated circuit (IC) implemented with the above CCVMs and a ring oscillator as a clock source. The characterization experiment demonstrated that our proposed pMOS-based CCVM can boost the input voltage higher because it avoids the body effect problem resulting from an n-channel MOS transistor. This circuit was also demonstrated to significantly reduce the circuit area on the IC, which is advantageous as it reduces the chip size or provides an area for other functional circuits. This simple circuit structure based on mature and low-cost technologies matches well with disposal applications such as an ingestible device. We believe that this pMOS-based CCVM has the potential to become a useful energy harvesting circuit for ingestible devices.
机译:胃酸电池及其在电容器中的电荷存储是一种为可摄入设备提供电源的简单安全的方法。对于该方法,应提高电池的电动势以存储大量能量。在这项研究中,我们提出了一种利用单阱CMOS技术的基于全p沟道金属氧化物半导体(pMOS)的交叉耦合电压倍增器(CCVM),以实现比传统互补MOS(CMOS)更高的升压)CCVM。我们使用上述CCVM和环形振荡器作为时钟源实现了定制集成电路(IC)的原型。表征实验表明,我们提出的基于pMOS的CCVM可以提高输入电压,因为它避免了n沟道MOS晶体管引起的体效应问题。还证明了该电路可以显着减小IC上的电路面积,这是有利的,因为它可以减小芯片尺寸或为其他功能电路提供面积。这种基于成熟和低成本技术的简单电路结构非常适合诸如可摄入设备之类的处理应用。我们认为,这种基于pMOS的CCVM有可能成为可摄取设备有用的能量收集电路。

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