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A dedicated electrode driving ASIC for epidural spinal cord stimulation in rats

机译:专用电极驱动ASIC刺激大鼠硬膜外脊髓

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This paper discusses the design of an application-specific integrated circuit (ASIC) suitable for mounting on a multi-electrode array for epidural spinal cord stimulation in rats. The ASIC acts as a demultiplexer, driving 12 electrodes on the array in any configuration. It is capable of routing biphasic constant current pulses of up to 1 mA to high impedance loads (with a maximum output voltage swing of approximately 25 V) and is small enough to be implanted into a rat's spinal column. Communication with its driver is achieved via 3 wires to minimize the number of interconnections. The circuit was implemented in a 0.18-μm high-voltage CMOS technology occupying a core area of 0.36 mm2. Power dissipation is about 110 μW. Post-layout simulations are presented which show the correct operation of the system.
机译:本文讨论适用于安装在大鼠硬膜外脊髓刺激的多电极阵列上的专用集成电路(ASIC)的设计。 ASIC充当解复用器,以任何配置驱动阵列上的12个电极。它能够将高达1 mA的双相恒流脉冲路由到高阻抗负载(最大输出电压摆幅约为25 V),并且体积小到可以植入大鼠的脊柱中。通过3条线与驱动器进行通信,以最大程度地减少互连数量。该电路采用0.18μm高压CMOS技术实现,其核心面积为0.36 mm 2 。功耗约为110μW。提出了布局后仿真,该仿真显示了系统的正确操作。

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