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Biphasic, energy-efficient, current-controlled stimulation back-end for retinal visual prosthesis

机译:视网膜视觉假体的双相,节能,电流控制的刺激后端

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This paper reports an energy-efficient waveform generator, dedicated to implantable retinal microstimulators. The circuit features flexible current-mode stimuli such as rising and falling exponential pulses in addition to rectangular pulses. In order to apply the stimulation current to the electrode at the defined current levels (±96µA) and with sufficient voltage headroom (±3V), a class AB second generation current conveyor is designed as the output stage. To upconvert the 1.2-V supply voltage to ±3.3V, the output stage is equipped with an on-chip electrode-tissue driver. Duration of the generated current pulses is programmable within the range of 100µs to 3ms. Current-steering DACs are used to set the amplitudes of pulses. They exhibit DNL and INL of 0.04 and 0.17LSB, respectively. The amplitude, duration, and time constant of exponential pulses are independently programmable. Designed in the IBM in 130nm process, the circuit consumes 1.5×1.5 mm2 of silicon area. Post-layout simulation results indicate that the stimuli generator meets expected requirements when connected to electrode-tissue impedance as high as 30kΩ. The proposed design consumes a maximum of 1.2mW in the rectangular pulse mode.
机译:本文报道了一种节能型波形发生器,专用于植入式视网膜微刺激器。该电路具有灵活的电流模式刺激,例如矩形脉冲之外的上升和下降指数脉冲。为了在规定的电流水平(±96µA)且具有足够的电压裕量(±3V)的情况下将刺激电流施加到电极,AB级第二代电流传送器被设计为输出级。为了将1.2V电源电压上转换为±3.3V,输出级配备了片上电极组织驱动器。产生的电流脉冲的持续时间可在100µs至3ms的范围内进行编程。电流控制DAC用于设置脉冲幅度。它们的DNL和INL分别为0.04和0.17LSB。指数脉冲的幅度,持续时间和时间常数可以独立编程。该电路是在IBM的130nm工艺中设计的,消耗的硅面积为1.5×1.5 mm2。布局后的仿真结果表明,当连接到高达30kΩ的电极组织阻抗时,刺激发生器可以满足预期的要求。所提出的设计在矩形脉冲模式下的最大功耗为1.2mW。

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