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Adaptive RF Power Control For Wireless Implantable Bio-Sensing Network To Monitor Untethered Laboratory Animal Real-Time Biological Signals

机译:用于无线植入生物传感网络的自适应RF功率控制,监测不受限化的实验室动物实时生物信号

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摘要

A wireless implantable adaptive RF power converter system for monitoring real-time biological signals of an untethered small laboratory animal inside a housing cage is developed. The overall prototype sensing system exhibiting a dimension of 6 mm X 6 mm X 2 mm and a weight less than 100 mg can be implanted in the animal abdomen. The implant unit consisting of a tuned 20-turn spiral coil is inductively coupled a 4 MHz RF energy source from an external power amplifier driving a tuned 25 cm X 15 cm, 4-turn RF coil. An on-chip rectifier and linear regulator circuit convert the received AC voltage to a stable 2 V DC supply with 1 mA driving capability. Due to animal's different positions and tilting angles (up to 60 degrees) inside the cage with a 1 cm nominal separation distance between internal and external coils, a large varying RF coupling strength is produced and can be detected by a power sensing circuit. The received RF power level is quantized and processed with other biological data before wireless transmission using frequency shift keying (FSK) scheme. The external power source can adaptively adjust its RF power strength based on the received one-bit power sensing data to achieve a stable and reliable voltage supply for the overall bioimplant microsystem with an optimal power coupling efficiency.
机译:开发了一种用于监测壳体笼内未电型小实验室动物的实时生物信号的无线可植入自适应RF功率转换器系统。可以植入在动物腹部植入表现出6mm×6mm×2mm的尺寸和重量小于100mg的总原型传感系统。由调谐的20转螺旋线圈组成的植入物单元由驱动调谐的25cm×15cm,4转射频线圈的外部功率放大器感应耦合4 MHz RF能量源。片上整流器和线性调节器电路将接收的AC电压转换为具有1 mA驱动能力的稳定的2 V直流电源。由于动物的不同位置和倾斜角度(在所述笼子内的倾斜角度(最多60度),内部和外部线圈之间的标称分离距离为1cm,产生大的射频耦合强度,并且可以通过功率感测电路检测。在使用频移键控(FSK)方案之前,通过在无线传输之前用其他生物数据量化和处理接收的RF功率电平。外部电源可以基于接收的一位功率感测数据自适应地调节其RF功率强度,以实现整体生物互补性微系统的稳定可靠的电压,具有最佳的功率耦合效率。

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