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Design considerations for low-power ADC for retinal prosthesis applications

机译:用于视网膜假体应用的低功耗ADC的设计注意事项

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Retinal prostheses have great potential in helping restore vision in patients suffering age-related macular degeneration and retinitis pigmentosa. Power consumption is a major problem for implanted devices. Biomedical implant researchers are investigating suitable low-power architectures for future implant systems. For this reason, the design of ultra-low power interfaces, especially analog-to-digital converters is very important. A successive approximation analog-to-digital converter (ADC) has a simple and flexible architecture that makes it well-suited for systems utilizing wireless power transfer and operation below 1 Volt. This paper reviews power-efficient ADC techniques suitable for biomedical implant devices.
机译:视网膜假体在帮助恢复与年龄相关的黄斑变性和色素性视网膜炎的患者的视力方面具有巨大潜力。功耗是植入设备的主要问题。生物医学植入物研究人员正在研究适合未来植入物系统的低功耗架构。因此,超低功耗接口的设计,尤其是模数转换器,非常重要。逐次逼近式模数转换器(ADC)具有简单灵活的架构,使其非常适合使用无线功率传输和1 V以下工作的系统。本文回顾了适用于生物医学植入设备的高能效ADC技术。

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