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Low-Power BPSK Inductive Data Link for an Implanted Intracortical Visual Prosthesis

机译:低功耗BPSK植入植入性视觉假体的诱导数据链路

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In making visually impaired people see again, for most cases the only option is to stimulate the visual cortex. In building such a system, it is desired that the communication to/from the implant and powering be done wirelessly to avoid infections. For the downlink, which is sending stimulation data to the implanted electrode, bandpass-sampled binary phase shift keying (BPSK) is chosen due to its potential for low-power consumption at its digital receiver. However, since an inductive link is most suited, designing practical inductive links with a flat band region to avoid poor phase transition and also refining the reset timing for imperfect transition times as well as designing low-power custom 1- bit Analog-to-digital converter is crucial. The bandpass-sampled BPSK system is designed and simulated at circuit level in Cadence using 180 nm CMOS technology at data rates of 0.5-4 Mbps and carrier frequency of 5-12 MHz. The improved bandpass-sampled BPSK system meets the requirements on data-rate, low-power consumption and robustness and is an integral part of the overall wireless communication and powering of the implanted intracortical visual prosthesis.
机译:在视障人士再次看到,对于大多数情况而言,唯一的选择是刺激视觉皮质。在建造这样的系统中,期望与/来自植入物和供电的通信是无线完成的,以避免感染。对于将刺激数据发送到植入电极的下行链路,由于其数字接收器处的低功耗电量,因此选择了带通采样的二进制相移键控(BPSK)。然而,由于感应链接最适合,设计具有平坦带区域的实用电感链接,以避免相位过渡的差,并且还改进了不完美转换时间的复位定时以及设计低功耗定制1位模数转数到数字转换器至关重要。带通采样的BPSK系统在CADENCE的电路电平以0.5-4Mbps和5-12MHz的载波频率的数据速率下设计和模拟CADENCE的电路电平。改进的带通采样的BPSK系统符合数据速率,低功耗和鲁棒性的要求,并且是整体无线通信和植入的内部视觉假体供电的一部分。

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