This paper presents an energy-/area-efficient digitally controlled oscillator (DCO)-based phase-tracking Receiver for Internet-of-Things (IoT) applications. The RX leverages the constant-envelope nature of frequency shift keying modulation adopted in many IoT protocols, e.g., IEEE802.15.4 and Bluetooth low energy (BLE), to enhance the energy efficiency and to reduce the chip area. The proposed RX, with the DCO acting as a local oscillator (LO) and binary frequency feedback, promotes low-power and low-voltage circuit design, while a data-aided carrier-frequency tracking ensures the received carrier stability without a power-/area-hungry phase-locked loop (PLL). The RX avoids a compromise between a power-hungry I/Q LO generation and the image...
This thesis investigates how to fulfill the Narrow Band - Internet of Things (NB-IoT) specification ...
In this work, low effort architectures for Internet of Things (IoT) applications are proposed to sup...
This paper presents a duty cycle-based, dual-mode simultaneous wireless information and power transc...
The worldwide market of Internet-of-Things (IoT) is growing at a fast exponential rate due to the co...
We present an ultra-low-power Bluetooth low-energy (BLE) transceiver (TRX) for the Internet of Thing...
Frequency translation is required in any modern wireless communication systems.This is in large part...
The growing popularity of Internet of Things (IoT) emerges new applications and concepts in order to...
The Internet of Things (IoT) and cellular (mobile) systems are the most promising technologies of th...
Event-driven wireless communication is a promising concept that presents new challenges to designers...
This paper presents a low-voltage (0.8V) ultra-low-power Bluetooth 5(BT5)/Bluetooth Low Energy(BLE)...
Wireless sensors, which are responsible for local data acquisition, processing and communication, pl...
In this thesis work, a digitally controlled oscillator (DCO) is designed and implemented in a 65nm 6...
\u3cp\u3eThis paper presents an ultra-low-power (ULP) 2.4GHz RX for short-range wireless personal an...
Voltage controlled oscillator (VCO) is an integral part of IoT wireless transceiver components. In t...
This paper presents an ultra-low power 2.4 GHz FSK/PSK RX for wireless personal/body area networks. ...
This thesis investigates how to fulfill the Narrow Band - Internet of Things (NB-IoT) specification ...
In this work, low effort architectures for Internet of Things (IoT) applications are proposed to sup...
This paper presents a duty cycle-based, dual-mode simultaneous wireless information and power transc...
The worldwide market of Internet-of-Things (IoT) is growing at a fast exponential rate due to the co...
We present an ultra-low-power Bluetooth low-energy (BLE) transceiver (TRX) for the Internet of Thing...
Frequency translation is required in any modern wireless communication systems.This is in large part...
The growing popularity of Internet of Things (IoT) emerges new applications and concepts in order to...
The Internet of Things (IoT) and cellular (mobile) systems are the most promising technologies of th...
Event-driven wireless communication is a promising concept that presents new challenges to designers...
This paper presents a low-voltage (0.8V) ultra-low-power Bluetooth 5(BT5)/Bluetooth Low Energy(BLE)...
Wireless sensors, which are responsible for local data acquisition, processing and communication, pl...
In this thesis work, a digitally controlled oscillator (DCO) is designed and implemented in a 65nm 6...
\u3cp\u3eThis paper presents an ultra-low-power (ULP) 2.4GHz RX for short-range wireless personal an...
Voltage controlled oscillator (VCO) is an integral part of IoT wireless transceiver components. In t...
This paper presents an ultra-low power 2.4 GHz FSK/PSK RX for wireless personal/body area networks. ...
This thesis investigates how to fulfill the Narrow Band - Internet of Things (NB-IoT) specification ...
In this work, low effort architectures for Internet of Things (IoT) applications are proposed to sup...
This paper presents a duty cycle-based, dual-mode simultaneous wireless information and power transc...