Wide-Locking Range Divide-by-4 Injection-Locked Frequency Divider Using Dual-Resonance RLC Resonator for Biomedical Sensor Applications

W. Lai, S. Jang, Ho Chang Lee, Shih-Jie Jian
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引用次数: 0

Abstract

This paper presents a wide locking range divide-by-4 RLC injection-locked frequency divider (ILFD) implemented in the TSMC 0.18 μm 1P6M CMOS processs for biomedical application. The ILFD is based on a cross-coupled oscillator with two direct injection MOSFETs in series and a dual-resonance RLC resonator. The resistor is used to enhance the locking range. At the drain-source bias of 1.2 V, and at the incident power of 0 dBm the locking range of the divide-by-4 ILFD is 3.6 GHz, from the incident frequency 11.5 to 15.1 GHz, the locking range percentage is 27.07%. The power consumption of ILFD core is 9.12 mW. The die area is 0.858 × 0.722 mm2 for radio frequency linear position sensor.
应用于生物医学传感器的双共振RLC谐振器的宽锁定范围/ 4注射锁定分频器
提出了一种采用TSMC 0.18 μm 1P6M CMOS工艺实现的宽锁定范围/ 4 RLC注射锁定分频器(ILFD),用于生物医学应用。该ILFD基于交叉耦合振荡器,具有两个直接注入mosfet串联和双谐振RLC谐振器。电阻器用于提高锁定范围。在漏源偏置为1.2 V,入射功率为0 dBm时,除以4 ILFD的锁定范围为3.6 GHz,在11.5 ~ 15.1 GHz的入射频率范围内,锁定范围百分比为27.07%。ILFD核心的功耗为9.12 mW。射频线性位置传感器的模具面积为0.858 × 0.722 mm2。
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