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Design of a Microelectronic Circuit to Amplify and Modulate the Signal of a Micro-Electro-Mechanical Systems Arterial Pressure Sensor

机译:微电子电路的设计,以放大和调制微机电系统动脉压力传感器的信号

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In the article, the design and stimulation is presented of an integrated circuit for the amplification and modulation of an electrical signal proceeding from a Micro-Electro-Mechanical Systems (MEMS) arterial pressure sensor. The signal consists of voltage ranking from 0-10 mV, 1 mA and frequency of 50-500 Hz. This simple but effective design consists of an operational amplifier (op-amp) configured as a differential amplifier, which amplifies the signal (up to IV and 10 mA), originating from a Wheatstone bridge in the MEMS sensor, and then this signal is modulated by Pulse width modulation (PWM). The technology employed in this circuit is MOSIS AMIS 1.5 μm. The circuit was designed with a two-state op-amp, which is utilized in diverse stages of the system. The use of a differential amplifier, the op-amp, and PWM simplifies the design and renders this compact due to the employment of few components (40 transistors). The use of the PWM facilitates the signaling process at later stages. Results comprise the design of the circuit and the simulation. This consists of a schematic diagram of the layers of all the rules specified in the MOSIS AMIS 1.5 μm. Electric and LTSpice software was employed for the design and simulation of the circuit. We present a complete description of the design philosophy, design criteria, figures, and final results.
机译:在本文中,提出了一种集成电路的设计和激励,该集成电路用于放大和调制从微机电系统(MEMS)动脉压力传感器发出的电信号。该信号由0-10 mV的电压,1 mA的电压和50-500 Hz的频率组成。这种简单而有效的设计由配置为差分放大器的运算放大器(op-amp)组成,该放大器放大来自MEMS传感器中惠斯通电桥的信号(高达IV和10 mA),然后对该信号进行调制通过脉冲宽度调制(PWM)。该电路采用的技术是MOSIS AMIS 1.5μm。该电路设计有一个两态运算放大器,可在系统的各个阶段使用。差分放大器,运算放大器和PWM的使用简化了设计,并且由于使用了很少的元件(40个晶体管)而使其变得紧凑。 PWM的使用有助于后续阶段的信号处理。结果包括电路设计和仿真。这由MOSIS AMIS 1.5μm中指定的所有规则的层的示意图组成。使用Electric和LTSpice软件进行电路的设计和仿真。我们提供有关设计理念,设计标准,图形和最终结果的完整描述。

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