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A Fully Integrated Bluetooth Low-Energy Transceiver with Integrated Single Pole Double Throw and Power Management Unit for IoT Sensors

机译:具有集成单极双投掷和电源管理单元的全集成蓝牙低能电机,用于IOT传感器

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This paper presents a low power Gaussian Frequency-Shift Keying (GFSK) transceiver (TRX) with high efficiency power management unit and integrated Single-Pole Double-Throw switch for Bluetooth low energy application. Receiver (RX) is implemented with the RF front-end with an inductor-less low-noise transconductance amplifier and 25% duty-cycle current-driven passive mixers, and low-IF baseband analog with a complex Band Pass Filter(BPF). A transmitter (TX) employs an analog phase-locked loop (PLL) with one-point GFSK modulation and class-D digital Power Amplifier (PA) to reduce current consumption. In the analog PLL, low power Voltage Controlled Oscillator (VCO) is designed and the automatic bandwidth calibration is proposed to optimize bandwidth, settling time, and phase noise by adjusting the charge pump current, VCO gain, and resistor and capacitor values of the loop filter. The Analog Digital Converter (ADC) adopts straightforward architecture to reduce current consumption. The DC-DC buck converter operates by automatically selecting an optimum mode among triple modes, Pulse Width Modulation (PWM), Pulse Frequency Modulation (PFM), and retention, depending on load current. The TRX is implemented using 1P6M 55-nm Complementary Metal–Oxide–Semiconductor (CMOS) technology and the die area is 1.79 mm 2 . TRX consumes 5 mW on RX and 6 mW on the TX when PA is 0-dBm. Measured sensitivity of RX is ?95 dBm at 2.44 GHz. Efficiency of the DC-DC buck converter is over 89% when the load current is higher than 2.5 mA in the PWM mode. Quiescent current consumption is 400 nA from a supply voltage of 3 V in the retention mode.
机译:本文介绍了具有高效率电源管理单元的低功耗高斯频移键控(GFSK)收发器(TRX),并为蓝牙低能量应用集成单极双掷开关。接收器(Rx)用RF前端用电感器 - 较少的低噪声跨导放大器和25%占空比电流驱动的无源混频器和具有复杂带通滤波器(BPF)的低IF基带模拟的电感器。发射器(TX)采用模拟锁相环(PLL),具有单点GFSK调制和D类数字功率放大器(PA),以降低电流消耗。在模拟PLL中,设计了低功耗电压控制振荡器(VCO),并提出了通过调整循环电荷泵电流,VCO增益和电阻和电容器和电容器和电容值来优化带宽,沉降时间和相位噪声的自动带宽校准。筛选。模拟数字转换器(ADC)采用简单的架构来降低电流消耗。根据负载电流,DC-DC降压转换器通过自动选择三种模式,脉冲宽度调制(PWM),脉冲频率调制(PFM)和保留,通过自动选择最佳模式。 TRX采用1P6M 55-NM互补金属氧化物 - 半导体(CMOS)技术来实现,模具面积为1.79mm 2。当PA为0-DBM时,TRX在TX上消耗5 MW和6 MW。测量Rx的敏感性是在2.44 GHz的95 dBm。当PWM模式下负载电流高于2.5 mA时,DC-DC降压转换器的效率超过89%。静态电流消耗在保留模式下的3 V的电源电压为400 nA。

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