An Energy-Efficient UWB Transmitter with Wireless Injection Locking for RF Energy-Harvesting Sensors

An ultralow-power ultrawideband (UWB) transmitter with an energy-efficient injection-locked radio frequency (RF) clock harvester that generates a carrier from an RF signal is proposed for RF energy-harvesting Internet-of-Things (IoT) sensor applications. The energy-efficient RF clock harvester based...

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Main Authors: Jun-Tae Kim, Bo-Ram Heo, Ickjin Kwon
Format: Article
Language:English
Published: MDPI AG 2021-02-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/21/4/1426
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spelling doaj-2fe7dfcfc508453ca7fad5942548b0a72021-02-19T00:03:55ZengMDPI AGSensors1424-82202021-02-01211426142610.3390/s21041426An Energy-Efficient UWB Transmitter with Wireless Injection Locking for RF Energy-Harvesting SensorsJun-Tae Kim0Bo-Ram Heo1Ickjin Kwon2Department of Electrical and Computer Engineering, College of Information Technology, Ajou University, Suwon 16499, KoreaDepartment of Electrical and Computer Engineering, College of Information Technology, Ajou University, Suwon 16499, KoreaDepartment of Electrical and Computer Engineering, College of Information Technology, Ajou University, Suwon 16499, KoreaAn ultralow-power ultrawideband (UWB) transmitter with an energy-efficient injection-locked radio frequency (RF) clock harvester that generates a carrier from an RF signal is proposed for RF energy-harvesting Internet-of-Things (IoT) sensor applications. The energy-efficient RF clock harvester based on the injection-locked ring oscillator (ILRO) is proposed to achieve optimal locking range and minimum input sensitivity to obtain an injection-locked 450 MHz clock in ultralow-power operation. A current-starved inverter-based delay stage is adopted that allows delay adjustment by bias voltage to minimize dynamic current consumption while maintaining a constant delay regardless of changes in process, supply voltage, and temperature (PVT). To minimize static current consumption, a UWB transmitter based on a digital-based UWB pulse generator and a pulse-driven switching drive amplifier is proposed. The proposed injection-locked RF clock harvester achieves the best RF input sensitivity of −34 dBm at a power consumption of 2.03 μW, enabling energy-efficient clock harvesting from low RF input power. In ultralow-power operation, a 23.8% locking range is achieved at the RF injection power of –15 dBm to cope with frequency changes due to PVT variations. The proposed UWB transmitter with RF clock harvester achieves the lowest energy consumption per pulse with an average power consumption of 97.03 μW and an energy consumption of 19.41 pJ/pulse, enabling operation with the energy available in RF energy-harvesting applications.https://www.mdpi.com/1424-8220/21/4/1426RF energy harvestingultrawidebandtransmitterRF clock generatorpulse generatorenergy-harvesting sensor
collection DOAJ
language English
format Article
sources DOAJ
author Jun-Tae Kim
Bo-Ram Heo
Ickjin Kwon
spellingShingle Jun-Tae Kim
Bo-Ram Heo
Ickjin Kwon
An Energy-Efficient UWB Transmitter with Wireless Injection Locking for RF Energy-Harvesting Sensors
Sensors
RF energy harvesting
ultrawideband
transmitter
RF clock generator
pulse generator
energy-harvesting sensor
author_facet Jun-Tae Kim
Bo-Ram Heo
Ickjin Kwon
author_sort Jun-Tae Kim
title An Energy-Efficient UWB Transmitter with Wireless Injection Locking for RF Energy-Harvesting Sensors
title_short An Energy-Efficient UWB Transmitter with Wireless Injection Locking for RF Energy-Harvesting Sensors
title_full An Energy-Efficient UWB Transmitter with Wireless Injection Locking for RF Energy-Harvesting Sensors
title_fullStr An Energy-Efficient UWB Transmitter with Wireless Injection Locking for RF Energy-Harvesting Sensors
title_full_unstemmed An Energy-Efficient UWB Transmitter with Wireless Injection Locking for RF Energy-Harvesting Sensors
title_sort energy-efficient uwb transmitter with wireless injection locking for rf energy-harvesting sensors
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2021-02-01
description An ultralow-power ultrawideband (UWB) transmitter with an energy-efficient injection-locked radio frequency (RF) clock harvester that generates a carrier from an RF signal is proposed for RF energy-harvesting Internet-of-Things (IoT) sensor applications. The energy-efficient RF clock harvester based on the injection-locked ring oscillator (ILRO) is proposed to achieve optimal locking range and minimum input sensitivity to obtain an injection-locked 450 MHz clock in ultralow-power operation. A current-starved inverter-based delay stage is adopted that allows delay adjustment by bias voltage to minimize dynamic current consumption while maintaining a constant delay regardless of changes in process, supply voltage, and temperature (PVT). To minimize static current consumption, a UWB transmitter based on a digital-based UWB pulse generator and a pulse-driven switching drive amplifier is proposed. The proposed injection-locked RF clock harvester achieves the best RF input sensitivity of −34 dBm at a power consumption of 2.03 μW, enabling energy-efficient clock harvesting from low RF input power. In ultralow-power operation, a 23.8% locking range is achieved at the RF injection power of –15 dBm to cope with frequency changes due to PVT variations. The proposed UWB transmitter with RF clock harvester achieves the lowest energy consumption per pulse with an average power consumption of 97.03 μW and an energy consumption of 19.41 pJ/pulse, enabling operation with the energy available in RF energy-harvesting applications.
topic RF energy harvesting
ultrawideband
transmitter
RF clock generator
pulse generator
energy-harvesting sensor
url https://www.mdpi.com/1424-8220/21/4/1426
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