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首页> 外文期刊>Journal of mechanics in medicine and biology >EFFICIENT DATA AND POWER TRANSFER FOR BIO-IMPLANTED DEVICES BASED ON ASK MODULATION TECHNIQUES
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EFFICIENT DATA AND POWER TRANSFER FOR BIO-IMPLANTED DEVICES BASED ON ASK MODULATION TECHNIQUES

机译:基于ASK调制技术的生物植入设备的有效数据和功率传输

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摘要

This paper presents a fully integrated system for implanted micro-system devices with efficient power and data transfer based on amplitude shift keying (ASK) modulation techniques. A proposed efficient class-E power amplifier is presented. The design presents a full transcutaneous inductive powering system to transfer power and data from an outside human body to implanted devices such as implanted microsystems to stimulate and monitor the nerves and muscles with low band frequency of 13.56 MHz according to the industrial—scientific—medical (ISM) band to avoid the tissue damage. A novel ASK demodulator powered with 1.9 V is proposed with a power recovery system. The modulation index is 13% and the modulation rate 7.3% with data rate IMbit/s, and with power efficiency 66%. The system has been designed using 0.35-/im fabricated CMOS technology. The mathematical model is given and the design is simulated using OrCAD PSpice 16.2 software tool and for real-time simulation, the electronic workbench MULISIM 11 has been used to simulate the class-E power amplifier.
机译:本文提出了一种基于幅度移位键控(ASK)调制技术的,具有有效功率和数据传输功能的,用于植入式微系统设备的完全集成系统。提出了一种有效的E类功率放大器。该设计提出了一种完整的经皮感应供电系统,根据工业-科学-医学技术,该技术可将功率和数据从人体外部传输到植入设备,例如植入的微系统,从而以13.56 MHz的低频带频率刺激和监测神经和肌肉( ISM)乐队以避免组织损伤。提出了一种具有1.9 V电源的新型ASK解调器,并带有电源恢复系统。调制速率为13%,调制速率为7.3%,数据速率为IMbit / s,功率效率为66%。该系统使用0.35 / im内置CMOS技术进行设计。给出了数学模型,并使用OrCAD PSpice 16.2软件工具对设计进行了仿真,并且为了进行实时仿真,已使用电子工作台MULISIM 11来仿真E类功率放大器。

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