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A sub-10 nJ/b +1.9-dBm output power FSK transmitter for body area network applications

机译:低于10 nJ / b +1.9 dBm输出功率的FSK发射机,用于人体局域网应用

摘要

This paper presents a low-power frequency shift keying (FSK) transmitter using a direct voltage-controlled oscillator (VCO) modulation scheme integrated in a 0.13-μm CMOS technology. The carrier frequency is set with a finite-modulo fractional-N phase-locked loop (PLL) in order to achieve a low start-up time of 5.5 μs. The LC-based VCO is directly modulated using simple pMOS transistors to change the tank capacitance. Measurements verify that the carrier frequency and the frequency deviation meet the requirements of the Bluetooth low energy standard up to 85°C even considering supply voltage variations of 1.0 V ± 10%. The FSK synthesizer only consumes 600 μW and drives a power amplifier (PA) with a differential class-E output stage. An integrated step-up transformer is used to up-convert the antenna impedance to a load impedance of 840 Ω seen by the PA. The overall transmitter consumes 8.9 mA and delivers +1.9 dBm to the antenna, which means a total power efficiency of 17.4%.
机译:本文介绍了一种采用集成在0.13μmCMOS技术中的直接压控振荡器(VCO)调制方案的低功率频移键控(FSK)发射机。载波频率通过有限模分数N锁相环(PLL)设置,以实现5.5 µs的低启动时间。使用简单的pMOS晶体管直接调制基于LC的VCO,以改变储能电容。测量结果证明,即使考虑到1.0 V±10%的电源电压变化,载波频率和频率偏差也能满足高达85°C的蓝牙低功耗标准的要求。 FSK合成器仅消耗600μW,并驱动具有差分E类输出级的功率放大器(PA)。集成的升压变压器用于将天线阻抗上变频为PA看到的840Ω负载阻抗。整个发射器消耗8.9 mA电流,并向天线提供+1.9 dBm,这意味着总功率效率为17.4%。

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