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An ultra-low power CMOS oscillating pixel array for retina implantation

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【作者】 孙康明袁祥辉孟丽娅饶程

【Author】 SUN Kang-ming1,2**,YUAN Xiang-hui1,MENG Li-ya1,and RAO Cheng1 1.Key Laboratory of Optoelectronic Technology and Systems of the Education Ministry of China,Chongqing University,Chongqing 400030,China 2.Chongqing Technology and Business Institute,Chongqing 400052,China

【机构】 Key Laboratory of Optoelectronic Technology and Systems of the Education Ministry of China,Chongqing UniversityChongqing Technology and Business Institute

【摘要】 A light-controlled oscillating array for retina prosthesis is presented.The unique advantage of the circuit is that it has a lower voltage and ultra-low power consumption.And it has some other features as below:it is applicable to the natural light illumination and each pixel is an independent oscillator whose frequency is proportional to the intensity of the incident light.The fundamental characteristics of the circuit are analyzed.It is fabricated with a standard 0.6 μm CMOS technology.The experimental results indicate that the proposed circuit can be used for retina implantation,taking the place of the suffered photoreceptor in the retina of the blind and partially recovering the blind,s eyesight.

【Abstract】 A light-controlled oscillating array for retina prosthesis is presented.The unique advantage of the circuit is that it has a lower voltage and ultra-low power consumption.And it has some other features as below:it is applicable to the natural light illumination and each pixel is an independent oscillator whose frequency is proportional to the intensity of the incident light.The fundamental characteristics of the circuit are analyzed.It is fabricated with a standard 0.6 μm CMOS technology.The experimental results indicate that the proposed circuit can be used for retina implantation,taking the place of the suffered photoreceptor in the retina of the blind and partially recovering the blind,s eyesight.

【基金】 supported by the National Natural Science Foundation of China (Nos. 30470469 and 60702007)
  • 【文献出处】 Optoelectronics Letters ,光电子快报(英文版) , 编辑部邮箱 ,2010年04期
  • 【分类号】TN432
  • 【下载频次】25
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