IEEE Trans Biomed Circuits Syst. 2024 Oct;18(5):1112-1122. doi: 10.1109/TBCAS.2024.3379208. Epub 2024 Sep 26.
This paper presents an energy-efficient wireless power receiver for implantable electrical stimulation applications, which can achieve one-step adiabatic bipolar-supply that is generated by a hybrid single-stage dual-output regulating (SSDOR) rectifiers. The structure using only four switches overcomes the disadvantages that the two output voltage values in the traditional dual-output rectifiers are close to each other. A constant-current (CC) controlled adiabatic dynamic voltage scaling (DVS) technique is proposed to minimize the voltage headroom of the stimulating drivers and improve the stimulation efficiency significantly. In addition, the receiver adopts only one general constant on-time (COT) low-frequency control to adjust the stimulation current, reducing both the power consumption and the complexity of the control circuits. The proposed receiver has been fabricated in a 0.18 μm BCD process with ±6 V voltage compliance and 2.5 mA maximum stimulating current. With a current range from ±1.5 mA to ±2.5 mA, the measured maximum average headroom voltage is only 80 mV and the peak total efficiency of the receiver is 85.6 %. The functionalities of the proposed receiver have been successfully verified through in vitro experiments.
本文提出了一种用于植入式电刺激应用的节能无线功率接收器,该接收器可以通过混合单级双输出调节 (SSDOR) 整流器实现一步绝热双极电源。该结构仅使用四个开关,克服了传统双输出整流器中两个输出电压值彼此接近的缺点。提出了一种恒流 (CC) 控制绝热动态电压缩放 (DVS) 技术,以最小化刺激驱动器的电压裕量并显著提高刺激效率。此外,接收器仅采用一种通用的恒定导通时间 (COT) 低频控制来调节刺激电流,降低了控制电路的功耗和复杂性。该接收器已采用 0.18 μm BCD 工艺制造,具有 ±6 V 电压容限和 2.5 mA 的最大刺激电流。在 ±1.5 mA 至 ±2.5 mA 的电流范围内,测量到的最大平均裕量电压仅为 80 mV,接收器的峰值总效率为 85.6%。通过体外实验成功验证了所提出的接收器的功能。