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首页> 外文期刊>Biomedical Circuits and Systems, IEEE Transactions on >A Low-Power Bidirectional Telemetry Device With a Near-Field Charging Feature for a Cardiac Microstimulator
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A Low-Power Bidirectional Telemetry Device With a Near-Field Charging Feature for a Cardiac Microstimulator

机译:具有心脏微刺激器近场充电功能的低功率双向遥测设备

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In this paper, wireless telemetry using the near-field coupling technique with round-wire coils for an implanted cardiac microstimulator is presented. The proposed system possesses an external powering amplifier and an internal bidirectional microstimulator. The energy of the microstimulator is provided by a rectifier that can efficiently charge a rechargeable device. A fully integrated regulator and a charge pump circuit are included to generate a stable, low-voltage, and high-potential supply voltage, respectively. A miniature digital processor includes a phase-shift-keying (PSK) demodulator to decode the transmission data and a self-protective system controller to operate the entire system. To acquire the cardiac signal, a low-voltage and low-power monitoring analog front end (MAFE) performs immediate threshold detection and data conversion. In addition, the pacing circuit, which consists of a pulse generator (PG) and its digital-to-analog (D/A) controller, is responsible for stimulating heart tissue. The chip was fabricated by Taiwan Semiconductor Manufacturing Company (TSMC) with 0.35-$mu$m complementary metal–oxide semiconductor technology to perform the monitoring and pacing functions with inductively powered communication. Using a model with lead and heart tissue on measurement, a ${-}5$-V pulse at a stimulating frequency of 60 beats per minute (bpm) is delivered while only consuming 31.5 $mu$ W of power.
机译:在本文中,提出了一种采用近场耦合技术和圆线线圈的无线遥测技术,用于植入式心脏微刺激器。拟议的系统拥有一个外部功率放大器和一个内部双向微刺激器。微刺激器的能量由可有效为可充电设备充电的整流器提供。包含一个完全集成的稳压器和一个电荷泵电路,分别用于生成稳定的,低压和高电位电源电压。微型数字处理器包括用于解码传输数据的相移键控(PSK)解调器和用于操作整个系统的自我保护系统控制器。为了采集心脏信号,低压低功耗监控模拟前端(MAFE)执行立即阈值检测和数据转换。此外,起搏电路由脉冲发生器(PG)及其数模(D / A)控制器组成,负责刺激心脏组织。该芯片是由台湾积体电路制造公司(TSMC)使用0.35-μm互补金属氧化物半导体技术制造的,以通过感应供电的通信执行监视和起搏功能。使用测量铅和心脏组织的模型,以每分钟60次搏动(bpm)的刺激频率提供$ {-} 5 $ -V脉冲,而仅消耗31.5μW的功率。

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