IEEE Trans Biomed Circuits Syst. 2011 Jun;5(3):283-91. doi: 10.1109/TBCAS.2010.2103558.
In near-field electromagnetic links, the inductive voltage is usually much larger than the compliance of low-voltage integrated-circuit (IC) technologies used for the implementation of implantable devices. Thus most integrated power-recovery approaches limit the induced signal to low voltages with inefficient shunt regulation or voltage clipping. In this paper, we propose using high-voltage (HV) complementary metal-oxide semiconductor technology to fully integrate the inductive power and data-recovery front end while adopting a step-down approach where the inductive voltage is left free up to 20 or 50 V. The advantage is that excessive inductive power will translate to an additional charge that can be stored in a capacitor, instead of shunting to ground excessive current with voltage limiters. We report the design of two consecutive HV custom ICs-IC1 and IC2-fabricated in DALSA semiconductor C08G and C08E technologies, respectively, with a total silicon area (including pads) of 4 and 9 mm(2), respectively. Both ICs include HV rectification and regulation; however, IC2 includes two enhanced rectifier designs, a voltage-doubler, and a bridge rectifier, as well as data recovery. Postlayout simulations show that both IC2 rectifiers achieve more than 90% power efficiency at a 1-mA load and provide enough room for 12-V regulation at a 3-mA load and a maximum-available inductive power of 50 mW only. Successful measurement results show that HV regulators provide a stable 3.3- to 12-V supply from an unregulated input up to 50 or 20 V for IC1 and IC2, respectively, with performance that matches simulation results.
在近场电磁链路中,感应电压通常远大于用于实现植入式设备的低压集成电路 (IC) 技术的合规电压。因此,大多数集成的功率恢复方法通过低效的分流调节或电压箝位将感应信号限制在低电压。在本文中,我们提出使用高压 (HV) 互补金属氧化物半导体技术来完全集成感应功率和数据恢复前端,同时采用降压方法,感应电压可自由升至 20 或 50V。优点是过多的感应功率将转化为额外的电荷,可以存储在电容器中,而不是通过电压限流器将过多的电流分流到地。我们报告了两个连续的 HV 定制集成电路 (IC) 的设计 - IC1 和 IC2 - 分别采用 DALSA 半导体 C08G 和 C08E 技术制造,总硅面积(包括焊盘)分别为 4 和 9mm²。这两个 IC 都包括高压整流和调节;然而,IC2 包括两个增强的整流器设计、一个倍压器和一个桥式整流器以及数据恢复。后布局模拟表明,两个 IC2 整流器在 1mA 负载下的功率效率超过 90%,并为 3mA 负载下的 12V 调节和最大可用感应功率 50mW 提供了足够的空间。成功的测量结果表明,HV 稳压器可提供从未调节输入高达 50 或 20V 的稳定 3.3V 至 12V 电源,性能与模拟结果匹配。