A 0.8V 0.8mm bluetooth 5/BLE digital-intensive transceiver with a 2.3mW phase-tracking RX utilizing a hybrid loop filter for interference resilience in 40nm CMOS.

ISSCC(2018)

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摘要
This paper presents a low-voltage (0.8V) ultra-low-power Bluetooth 5(BT5)/Bluetooth Low Energy(BLE) digitally-intensive transceiver for IoT applications. In comparison to BLE, BT5 has a 2x higher data-rate and 4x longer range, while having u003e8x longer packet. The BLE prior arts [1-5] have made significant efforts to minimize the power consumption for longer battery life, as well as the chip area. However, the prior-art Cartesian BLE radios consume namely 6 to 10mW [1-3] to achieve a DD ) (u003e1.0V). Operating a BLE RF transceiver at a lower V DD (e.g., DD down to 0.85V. However, it suffers from a degraded sensitivity due to a poor deviation frequency control and an excessive loop delay, limited ACR (Adjacent-Channel-Rejection) due to the digitally-controlled-oscillator (DCO) side-lobe energy, and an undefined initial carrier frequency due to the lack of a PLL/FLL that could have a risk of tracking to an interference. This work presents a fully-integrated 0.8V phase-domain BT5/BLE-combo transceiver, including a PHY-layer digital baseband (DBB), and addresses the above-mentioned issues by employing two key techniques: 1) a hybrid loop filter with a loop-delay compensation for DCO side-lobe suppression to enhance interference tolerance, and 2) an all-digital PLL(ADPLL)-based digital FM interface shared between RX and TX is employed, including a deviation frequency calibration, and it also precisely defines the initial frequency. Moreover, the PHY-layer DBB that supports a packet-mode phase-tracking RX operation is also demonstrated.
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hybrid loop filter,power consumption,DD,BLE RF transceiver,digitally-controlled-oscillator side-lobe energy,packet-mode phase-tracking RX operation,single-channel phase-tracking RX,bluetooth 5-BLE digital-intensive transceiver,phase-tracking RX,power-management-unit complexity,cartesian BLE radios,Bluetooth low energy,digitally-intensive transceiver,IoT applications,ACR,adjacent-channel-rejection,PLL-FLL,fully-integrated phase-domain BT5-BLE-combo transceiver,PHY-layer digital baseband,DBB,loop-delay compensation,DCO side-lobe suppression,interference tolerance enhancement,all-digital PLL,ADPLL-based digital FM interface,deviation frequency calibration,power 6.0 mW to 10.0 mW,voltage 0.8 V,power 2.3 mW,size 40.0 nm
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