标题: | 一个0.6V,0.66mW之以光耦合方式传输能源与讯号的耳膜致动装置音频驱动器 A 0.6V, 1.66mW Audio Driver for Tympanic Membrane Transducer with Wireless Optical Signal and Power Transfer |
作者: | 简仲廷 Jian, Jhong-Ting 陈巍仁 吴介琮 Chen, Wei-Zen Wu, Jieh-Tsorng 电子研究所 |
关键字: | 音频驱动器;超低压;D类放大器;助听器;无线能量传输;Audio Driver;Ultra-Low Voltage;Class-D;Hearing-Aid;Wireless Power Transmission |
公开日期: | 2012 |
摘要: | 在这篇论文中,提出了一个新式的以光为媒介的无线能源与讯号的传递方式,其将类比音频讯号经脉波宽度调变后耦合至雷射二极体发射,在接收端再透过整流器收集光感测二极体的光电流并同时由光接收器侦测脉波讯号,这个方式能够以无线方式同时传递能源与讯号。还有一个整合于单一矽晶片的超低压(0.6V)光接收器与音频驱动器,其采用了自频振荡放大器架构且不需额外偏压源以及时脉源并操作于超低压下以降低功耗并减少光电转换元件数量。 矽晶片是由台湾积体电路制造公司(TSMC) 90奈米互补式金氧半制程制作,晶片面积是0.88×0.84平方公厘。 实验时使用了光环科技公司提供的 TTR-1F45-427 VCSEL w/i monitor PD作为电光和光电转换元件。实验结果显示,在这篇论文中所提出的无线能源与讯号传递方式可以顺利工作,同时,在供应电压为0.6V、音频讯号为1kHz且调变深度为65%的情形之下,失真度(THD+N)为0.2%,最高功率效益为24.7%,消耗1.66mW。 In this thesis, we propose a novel light-based wireless power and signal transfer method for non-invasive hearing aid device. Analog audio signal is coupled to LD after pulse-width modulation. At the receiving end, a rectifier is used to collect the light current of the PD. Besides, an optical receiver is also used to detect the PWM signal at the same time. This method can transmit power and signal at the same time. An integrated ultra-low-voltage (0.6V) optical receiver and audio driver on single silicon chip are also proposed. It adopts the self-oscillation architecture to eliminate the need of clock source and operated under ULV to reduce power consumption and the quantity of optical/electrical device. The silicon chip is fabricated in TSMC 90nm CMOS technology. The chip occupies 0.88×0.84mm2 Experimental results show successful signal and power transmission through optical interconnect. THD+N is 0.2% under a 0.6V supply voltage, 1kHz audio signal and 65% modulation index. Highest Efficiency is 24.7% and total chip consumes 1.66mW. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079811661 http://hdl.handle.net/11536/46827 |
显示于类别: | Thesis |