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A Receiver for Inductive Ear-to-Ear Communication

机译:感应式耳对讲机

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This paper proposes a receiver circuit for inductive ear-to-ear communication. Its input resonance structure, an LCR front-end, is optimized for both a data transmission rate of 100 kbit/s and maximum voltage excess. Following an analytical study, the optimal quality factor$Q_{ext {LCR}}$is found to be 12.8. Subsequent amplification of ON-OFF keyed bits is performed with a four-stage JFET amplifier, introducing a total amplification of 68.6 dB at a sensitivity of$31.6~mu ext{V}$. Each stage is implemented in common-source JFET topology containing a current source in its drain path instead of the conventional drain resistor. This modification allows for a per-stage increase in voltage amplification by a factor of 1.87, avoiding extra quiescent current (detailed circuit theory is added). A hardware realization for signal demodulation reconstructs the baseband signal. In combination with a dedicated transmitter, a Hartley Oscillator, the inductive ear-to-ear transmission system demonstrates a reliable functionality over a distance of 18 cm. Operation is possible with a standard 1.5 V battery cell requiring low currents on a discrete benchtop prototype [transmitter: 0.8 mA; receiver: 4.0 mA]. Applying a carrier frequency of 3.175 MHz, the system is fully compliant with ITU regulation 5.115.
机译:本文提出了一种用于感应式耳对耳通信的接收器电路。其输入谐振结构(LCR前端)针对100 kbit / s的数据传输速率和最大过电压进行了优化。经过分析研究,最佳质量因数 n <在线公式xmlns:mml = “ http://www.w3.org/1998/Math/MathML ” xmlns:xlink = “ http:// www。 w3.org/1999/xlink"> $ Q _ { t​​ext {LCR}} $ nis被发现是12.8。随后用四级JFET放大器执行ON-OFF键控位的放大,在灵敏度为 n $ 31.6〜 mu text {V} $ n。每个阶段均采用共源JFET拓扑实现,其漏极路径中包含电流源,而不是传统的漏极电阻器。这种修改允许电压放大的每级增加1.87倍,避免了额外的静态电流(增加了详细的电路原理)。信号解调的硬件实现可重构基带信号。结合专用发射器,Hartley振荡器,感应式耳对耳传输系统在18厘米的距离内显示出可靠的功能。使用分立式台式原型机上需要低电流的标准1.5 V电池,可以工作[变送器:0.8 mA;接收器:4.0 mA]。使用3.175 MHz的载波频率,该系统完全符合ITU法规5.115。

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