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RF performance optimization of a SAW based transmitter for remote keyless entry system

机译:基于SAW的远程无钥匙进入系统发射机的射频性能优化

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In recent years, SAW resonator based oscillators have found wide applications in Remote Keyless Entry (RKE) systems in automobiles. In the present paper, we present a methodology that optimizes the radiofrequency (RF) performance of a hand-held microprocessor controlled RKE transmitter to meet our objective of 10 meter minimum range. We measured the S-parameters of several SAW resonators on an HP8753C network analyzer, and used these data in Libra, a nonlinear RF circuit simulation tool. Using the harmonic balance method we modeled the SAW resonator, and extracted the equivalent circuit elements by using the optimization feature of this simulator. We then analyzed the oscillator circuit, and optimized it for stable oscillation at 315 MHz with a start-up time of >25 ns. This modeling was also verified in Pspice. We used the tolerance analysis feature of Libra to account for component tolerances to make the circuit realizable with commonly available components. The circuit was fabricated, and tested over temperature. It has met all the specifications, and FCC Part 15 requirements.
机译:近年来,基于SAW谐振器的振荡器在汽车中的远程无钥匙入口(RKE)系统中发现了广泛的应用。在本文中,我们提出了一种方法,可以优化手持式微处理器控制RKE发射器的射频(RF)性能,以满足我们10米最小范围的目标。我们在HP8753C网络分析仪上测量了几个SAW谐振器的S参数,并在Libra中使用了非线性RF电路仿真工具的这些数据。使用谐波余量方法我们建模SAW谐振器,并通过使用该模拟器的优化特征提取等效电路元件。然后,我们分析了振荡器电路,并优化了315 MHz的稳定振荡,启动时间> 25 ns。在PSPICE中也核实了这种建模。我们使用Libra的公差分析功能来解释组件公差,使电路可实现常用组件。制造电路,并测试过温度。它符合所有规格和FCC第15部分要求。

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