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An integrated circuit for biotelemetry with digital IC sensors.

机译:一种带有数字IC传感器的生物遥测集成电路。

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Totally implantable multichannel telemetry systems are increasingly valuable instruments to the physiological researcher. In these applications, however, conventional passive sensors are not ideal because their small analog output voltages are particularly susceptible to electromagnetic interference and can be degraded by shunt leakage currents across the cable. For these reasons, sensors that emit digital signals are becoming increasingly popular. The Center for Integrated Electronics in Medicine at Stanford University, for example, has developed the capacitive pressure transducer (CPT3) in which a pressure-sensitive capacitor modulates the period of a relaxation oscillator. Because most physiologists wish to measure a number of parameters simultaneously, however, a means of multiplexing a variety of digital signals through a single telemetry package is required. The research reported here describes a custom integrated circuit which is the key to incorporating multiple digital sensors into a single implantable package.; The asynchronous digital multiplexer (ADM) integrated circuit commutates the digital data signals from four CPT3 sensors. A unique two-tiered self-clocked multiplexing architecture enables compatibility with any type of pulse-modulated data signals (except PAM) and a programmable sampling rate set by the sensors. Designed in bipolar technology, the ADM combines both digital and analog circuitry. The digital portion of the ADM circuitry is a mixture of the EFL (for speed) and I{dollar}sp2{dollar}L (for density) logic families; careful attention focuses on the speed-power trade-offs required for low-power operation of the digital logic. Several new circuits have been developed for the ADM and include low-power EFL-compatible input-stage and output-buffer circuits, an I{dollar}sp2{dollar}L-to-EFL logic-level translator circuit that is insensitive to process and operating-point variations, and a triggerable astable time-out oscillator circuit based on a unique method for temperature-independent operation.; Fabricated at the Center for Integrated Systems at Stanford University, the ADM IC measures 3.4 x 4.6 mm and dissipates only 1 mW. Results from functional testing confirm the successful operation of this integrated circuit.
机译:完全可植入的多通道遥测系统对生理学研究人员而言越来越有价值。但是,在这些应用中,传统的无源传感器并不理想,因为它们的小模拟输出电压特别容易受到电磁干扰,并且会因电缆上的分流泄漏电流而降低。由于这些原因,发射数字信号的传感器变得越来越流行。例如,斯坦福大学医学集成电子中心开发了电容压力传感器(CPT3),其中的压敏电容器调制张弛振荡器的周期。但是,由于大多数生理学家希望同时测量多个参数,因此需要一种通过单个遥测软件包多路复用各种数字信号的方法。这里报道的研究描述了一种定制集成电路,这是将多个数字传感器集成到单个可植入包装中的关键。异步数字多路复用器(ADM)集成电路对来自四个CPT3传感器的数字数据信号进行整流。独特的两层自时钟多路复用架构可与任何类型的脉冲调制数据信号(PAM除外)兼容,并由传感器设置可编程的采样率。 ADM采用双极技术设计,结合了数字和模拟电路。 ADM电路的数字部分是EFL(针对速度)和I {dol} sp2 {dollar} L(针对密度)逻辑系列的混合体。谨慎的注意力集中在数字逻辑低功耗操作所需的速度-功率折衷上。已经为ADM开发了几种新电路,其中包括低功耗EFL兼容的输入级和输出缓冲电路,对处理不敏感的I {sp} {2} L到EFL逻辑电平转换器电路和工作点变化,以及基于与温度无关的独特操作方法的可触发的稳定超时振荡器电路。 ADM IC由斯坦福大学集成系统中心制造,尺寸为3.4 x 4.6 mm,功耗仅为1 mW。功能测试的结果证实了该集成电路的成功运行。

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