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Controllable high-power, variable-frequency CMOS circuit for microactuator applications

机译:适用于微执行器应用的可控大功率,可变频率CMOS电路

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摘要

A large-output power, high-current high-voltage, CMOS driving circuit for electrothermal microactuators is presented in this work. The circuit addresses the challenge of providing microelectromechanical systems devices with a monolithic integrated circuit that is capable of outputting high voltage with low output resistance that matches the actuator load for maximum power transfer. The circuit is implemented using a modified eight-stage charge pump. A digital control logic is designed to control the working charge pump stages in order have a variable output voltage between 4 and 15.5 V on a 1.5 kΩ load producing about 150 mW maximum output power. To the authors' knowledge, the circuit's output resistance is the lowest among charge pumps that are capable of producing such high voltages. An AC pulse output of 15.5 V amplitude and variable frequency between 60 and 2000 Hz is included in the circuit. The circuit is operated by a conventional 5 V supply. With the variable DC output voltage level and AC output capability, the circuit is suitable for driving many electrothermal microactuators. The total size of the chip excluding pads is 5 mm~2.
机译:这项工作提出了一种用于电热微致动器的大输出功率,高电流,高电压,CMOS驱动电路。该电路解决了向微机电系统设备提供单片集成电路的挑战,该集成电路能够输出具有低输出电阻的高电压,该电压与致动器负载相匹配以实现最大的功率传输。该电路使用改进的八级电荷泵实现。设计了数字控制逻辑来控制工作电荷泵级,以便在1.5kΩ负载下具有4至15.5 V之间的可变输出电压,从而产生约150 mW的最大输出功率。据作者所知,该电路的输出电阻在能够产生如此高电压的电荷泵中是最低的。电路中包含交流15.5 V振幅和60至2000 Hz之间可变频率的交流脉冲输出。该电路由常规的5 V电源供电。该电路具有可变的直流输出电压电平和交流输出能力,适合驱动许多电热微致动器。不包括焊盘的芯片总尺寸为5 mm〜2。

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