Performance Enhancement of 13.56MHz Crystal Oscillator with Component Optimization for Wireless Power Charging

Dinda Prameswari, A. Ridwan, Eki Ahmad Zaki Hamidi, Nurul Fahmi Arief Hakim, Arip Budiman, Ahmad Fairozi
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Abstract

Nowadays, mobile device technology has driven the need for more flexible charging using wireless technology. This technology is called wireless charging, a wireless technology used to transfer power to mobile devices. A wireless power transfer system consists of three parts: oscillator, power amplifier, and radiator. The oscillator is designed using a 74HC04 CMOS IC as the main part of the oscillator and a 13.56MHz crystal and is equipped with a common-collector amplifier using a Bipolar Junction Transistor (BJT) type BC547. This study discussed the optimization of the oscillator with the tuning method on the values of capacitors C1, C2, C3, and C4 and resistors R2, R3, and R4 to increase the signal output level. This research produces an output signal on the oscillator of -0.246dBm and a peak amplitude of 5.1V at a frequency of 13.573MHz. Compared to the previous study, the signal output has increased by 4.544 dBm, where the previous study produced a signal output of -4.79dBm with a peak amplitude of 0.95V at a frequency of 13.56MHz.
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13.56MHz晶体振荡器无线充电性能优化研究
如今,移动设备技术推动了对更灵活的无线充电技术的需求。这项技术被称为无线充电,是一种用于向移动设备传输电力的无线技术。无线电力传输系统由三部分组成:振荡器、功率放大器和散热器。该振荡器采用74HC04 CMOS IC作为振荡器的主体部分,采用13.56MHz的晶体设计,并配备了采用双极结晶体管(BJT)型BC547的共集电极放大器。本研究讨论了通过调整电容C1、C2、C3、C4和电阻R2、R3、R4的值来优化振荡器,以提高信号输出电平。本研究在频率为13.573MHz的振荡器上产生-0.246dBm的输出信号,峰值幅值为5.1V。与之前的研究相比,信号输出增加了4.544 dBm,其中之前的研究在13.56MHz的频率下产生了-4.79dBm的信号输出,峰值幅度为0.95V。
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