Collaborative Microelectronic Design Excellence Center (CEDEC), Universiti Sains Malaysia, SAINS@USM, Level 1 Block C, No 10, Persiaran Bukit Jambul, Bayan Lepas 11900, Malaysia.
R&D Laboratory, Cellico Company, 815 Daewangpangyo-ro, Seongnam-si 13449, Korea.
Sensors (Basel). 2022 Apr 13;22(8):2970. doi: 10.3390/s22082970.
Power-efficient digital controllers are proposed for wireless retinal prosthetic systems. Power management plays an important role in reducing the power consumption and avoiding malfunctions in implantable medical devices. In the case of implantable devices with only one-way communication, the received power level is uncertain because there is no feedback on the power status. Accordingly, system breakdown due to inefficient power management should be avoided to prevent harm to patients. In this study, digital power controllers were developed for achieving two-way communication. Three controllers-a forward and back telemetry control unit, a power control unit, and a preamble control unit-operated simultaneously to control the class-E amplifier input power, provided command data to stimulators, monitored the power levels of the implanted devices, and generated back telemetry data. For performance verification, we implemented a digital power control system using a field-programmable gate array and then demonstrated it by employing a wireless telemetry system.
提出了用于无线视网膜假体系统的节能数字控制器。电源管理在降低功耗和避免植入式医疗设备故障方面起着重要作用。在仅具有单向通信的植入式设备的情况下,由于没有关于功率状态的反馈,因此接收到的功率电平是不确定的。因此,应避免因功率管理效率低下而导致系统故障,以防止对患者造成伤害。在这项研究中,开发了数字功率控制器以实现双向通信。三个控制器-前向和后向遥测控制单元、功率控制单元和前置码控制单元-同时运行以控制 E 类放大器的输入功率,向刺激器提供命令数据,监测植入设备的功率水平,并生成后向遥测数据。为了进行性能验证,我们使用现场可编程门阵列实现了数字功率控制系统,然后通过使用无线遥测系统进行了演示。