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JSSC 2019第5期RF & Wireless40nmVCO

Analysis and Design of an Ultra-Low-Power Bluetooth Low-Energy Transmitter With Ring Oscillator-Based ADPLL and 4 × Frequency

设计了一种基于全数字环形振荡器的超低功耗蓝牙低能耗发射器,适用于短距离物联网应用。
40nm CMOS, 486µW功耗, 0.0166mm²面积
蓝牙低能耗超低功耗全数字环形振荡器物联网发射器
采用全数字环形振荡器(RO)降低功耗
使用4×频率边缘组合器生成2.4GHz信号
优化开关电容数字功率放大器以提高效率
Abstract
In this paper, we present an all-digital ring oscilla- tor (RO)-based Bluetooth low-energy (BLE) transmitter (TX) for ultra-low-power radios in short range Internet-of-Things (IoT) applications. The power consumption of state-of-the-art BLE TXs has been limited by the relatively power-hungry local oscillator (LO) due to the use of LC oscillators for superior phase noise (PN) performance. This paper addresses this issue by analyzing the PN limit of a BLE TX and proposes an RO-based solution for power and cost savings. The proposed transmitter features: 1) a wideband all-digital phase-locked loop (ADPLL) featuring an f RF/4 RO, with an embedded 5-bit TDC; 2) a 4 × frequency edge combiner to generate the 2.4-GHz signal; and 3) a switch-capacitor digital PA optimized for high efficiency at low transmit power levels. These not only help reduce the power consumption and improve PN performance but also enhance the TX efficiency for short range applications. The TX is prototyped in 40-nm CMOS, occupies an active area of 0.0166 mm 2,a n d consumes 486 µW in its low-power mode, while configured as a non-connectable advertiser. The TX has been validated by wirelessly communicating beacon messages to a mobile phone.