标题: | 癫痫治疗电子系统之研发及其动物实验之验证-子计画七:应用于癫痫治疗系统之双极性电流刺激器电路设计( I ) Biphasic Stimulus Driver Design for Epilepsy Prosthetic System |
作者: | 柯明道 KER MING-DOU 国立交通大学电子工程学系及电子研究所 |
关键字: | 电流刺激器;高压输入输出电路;可靠度;静电放电防护。;Stimulator;High-Voltage Input/Output Driver;Reliability;ESD Protection. |
公开日期: | 2011 |
摘要: | 在癫痫治疗系统晶片中,刺激器接触到的等效负载依接点位置、接触时间、和电极材质不同,负载阻抗为几十 kΩ 到几百 kΩ 都有可能,而一般刺激电流为数十 μA 到数百 μA,由此可知,在输出点会有相对高压产生,大于低压 CMOS 制程可承受的 1.8V/2.5V/3.3V 电压。因此,现有的电流刺激器都是以高压制程来实作。而为了系统单晶片整合的需求,如果利用低电压制程所设计的电流刺激器操作在高电压的环境,电性过压 (electrical overstress)、闸极氧化层可靠度 (gate-oxide reliability)、热载子衰退效应 (hot-carrier degradation)、漏电流 (leakage current) 等现象将会发生。本子计画将利用电路设计技巧,以低压制程实作可承受高压之双极性电流刺激器,并考虑电路元件可靠度的问题,以应用于癫痫治疗系统晶片。此外,在晶片生成后,在组装、使用、拿取中,晶片都有可能遭受到静电放电 (ESD) 的冲击,使得晶片在未使用前就损坏。因此,依据双极性电流刺激器的需求,设计出适用于双极性电流刺激器的静电放电防护电路,在本计画中也是相当重要的一环。本计画发展以积体电路与生物科技的结合为目标,研究成果将发表于国际研讨会与国际期刊,创新的研发成果也将申请专利,提供并保护业界使用本计画之研究成果。 In the epilepsy prosthetic system, the loading impedance of stimulus driver will vary from tens of kΩ to hundreds of kΩ due to different kinds of tissue location, implanted time, and electrode materials. The required stimulus current is about tens of μA or hundreds of μA, and then the output node will suffer the voltage level which is higher than the supply voltage (1.8V/2.5V/3.3V) in low-voltage CMOS process. Thus, the high-voltage processes were used to implement the stimulus driver. For the intelligent prostheses SOC applications, the stimulus driver implemented in low-voltage CMOS process will suffer the reliability issues, such as electrical overstress, gate-oxide reliability, hot-carrier degradation, and leakage current. This project will use the circuit techniques to design the high-voltage-tolerant biphasic stimulus driver in low-voltage CMOS process, and apply the biphasic stimulus driver to the SOC of epilepsy prosthetic system. The reliability issues will be considered in this design.After the chip is produced, the chip will suffer the impact of electrostatic discharge (ESD). Therefore, ESD protection for the biphasic stimulus driver is also an important issue in this project.The goal of this project is to combine the integrated circuit skill and biology technology. The research results will be presented in the international conferences and published in the international journals. Patents will be applied in this project in order to provide and defend the usage of this invention to the industry. |
官方说明文件#: | NSC100-2220-E009-021 |
URI: | http://hdl.handle.net/11536/99526 https://www.grb.gov.tw/search/planDetail?id=2311079&docId=361239 |
显示于类别: | Research Plans |