标题: | 三轴加速度计整合分频多工读出电路设计 Innovative Three-Axis Accelerometer with Frequency Division Multiplexing Readout Circuit |
作者: | 林鸿庭 Lin, Hong-Ting 温瓌岸 Wen, Kuei-Ann 电子工程学系 电子研究所 |
关键字: | 加速度计;分频多工;Accelerometer;Frequency Division Multiplexing |
公开日期: | 2014 |
摘要: | 本论文提出一加速度感测系统单晶片,采用分频多工之前端读出电路整合三轴加速度计之设计。此感测系统全程于0.18m CMOS MEMS 制程下完成制作。该三轴加速度计设计上,提出一梯型电极设计来取代一般Z轴感测电容采用上下极板的架构并提出一复数轴向感测之电极设计来降低三轴加速度面积至0.453mm^2,相较于相同制程下之文献减少约35%面积。 整合之多工读出电路,其三轴输出杂讯为9.84 V/Hz-1/2, 8.36 V/Hz-1/2 以及 7.44 V/Hz-1/2。电路功耗经电路模拟软体Cadence所得之值为0.5583mW。经由MEMS模拟软体Coventor,建立等效模组转换至Cadence电路模拟软体模拟X、Y及Z轴之灵敏度分别为128.7mV/g、135.6mV/g及104.5mV/g。电路上藉由分频多工技术,利用单套电路完成多轴讯号之同时输出。此分频读出电路操作范围为9g,而三轴共用一套电路并共享最大电路输出摆幅。当三轴同时产生正或负加速度讯号时,单轴最大操作范围即为3g。 This thesis presents a capacitive three-axis accelerometer with frequency division multiplexing readout circuit fabricated in 0.18m CMOS MEMS process. The ladder electrode design proposed in this work is derived from multi-metal layers which are available in CMOS process and it provides a way to realize small area three axis accelerometer without wet-etching process. The accelerometer area is 0.453mm^2. The sensing system combines a multiplexing readout circuit. The system power dissipation is 0.5583mW. The MEMS structure behavior parameters can be simulated in Coventor, which is simulation software for MEMS, and create a equivalent model simulating with CMOS circuit in Cadence SpectreRF. The sensitivity of x, y and z axis are 128.7mV/g、135.6mV/g and 104.5mV/g respectively. By applying the chopper stabilization theorem, three axis signals can be processing simultaneously after the signals are shifted to their corresponding frequency bands. The output refer noise of x, y and z axis are 9.84 V/Hz-1/2, 8.36 V/Hz-1/2 and 7.44 V/Hz-1/2 respectively. The system sensing range is 9g which is shared by three axis acceleration signals. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT070150257 http://hdl.handle.net/11536/75766 |
显示于类别: | Thesis |