An ultra-low power wake-up receiver for wireless sensor network applications is presented. The 915MHz OOK receiver is based on the double-sampling RF power detector architecture. Together with an on-chip ADC, the receiver achieves -86dBm sensitivity at 10kbps, while consuming 123µW. Flexible sensitivity/data-rate/power consumption options are also possible. The receiver front-end is fabricated in a 90nm CMOS technology and wire-bonded in a QFN56 packag
A high-sensitivity fully passive 868-MHz wake-up radio (WUR) front-end for wireless sensor network n...
As integrated circuit technology as well as intelligent computing technology advances, sensor networ...
The combination of ultra-low power analog front-ends and CMOS-compatible transducers enable new appl...
An ultra-low power wake-up receiver for wireless sensor network applications is presented. The 915MH...
In power-limited wireless devices such as wireless sensor networks, wearable components, and Interne...
A ultra-low power wake-up receiver based on a novel fast sampling method is presented. The innovativ...
An ultra-low power wake-up receiver for 2.4-GHz wireless sensor networks, based on a fast sampling m...
Recent advances in low power radio design have enabled a broad range of low activity applications su...
In this paper, we present an ultra low-power Wake-up Receiver front-end operating in the 868/915 MHz...
A novel wake-up receiver for wireless sensor networks is introduced. It operates with a modified med...
Wireless Sensor Networks have found diverse applications from health to agriculture and industry. Th...
Minimizing waste of resources by reduction of battery replacements in mobile smart objects gives an ...
We present a high performance low-power digital base-band architecture, specially designed for an en...
This paper presents a 2.45 GHz wake-up receiver front-end intended for use in sensor networks, and i...
In order to minimize power consumption without sacrificing much latency performance, wake-up radios ...
A high-sensitivity fully passive 868-MHz wake-up radio (WUR) front-end for wireless sensor network n...
As integrated circuit technology as well as intelligent computing technology advances, sensor networ...
The combination of ultra-low power analog front-ends and CMOS-compatible transducers enable new appl...
An ultra-low power wake-up receiver for wireless sensor network applications is presented. The 915MH...
In power-limited wireless devices such as wireless sensor networks, wearable components, and Interne...
A ultra-low power wake-up receiver based on a novel fast sampling method is presented. The innovativ...
An ultra-low power wake-up receiver for 2.4-GHz wireless sensor networks, based on a fast sampling m...
Recent advances in low power radio design have enabled a broad range of low activity applications su...
In this paper, we present an ultra low-power Wake-up Receiver front-end operating in the 868/915 MHz...
A novel wake-up receiver for wireless sensor networks is introduced. It operates with a modified med...
Wireless Sensor Networks have found diverse applications from health to agriculture and industry. Th...
Minimizing waste of resources by reduction of battery replacements in mobile smart objects gives an ...
We present a high performance low-power digital base-band architecture, specially designed for an en...
This paper presents a 2.45 GHz wake-up receiver front-end intended for use in sensor networks, and i...
In order to minimize power consumption without sacrificing much latency performance, wake-up radios ...
A high-sensitivity fully passive 868-MHz wake-up radio (WUR) front-end for wireless sensor network n...
As integrated circuit technology as well as intelligent computing technology advances, sensor networ...
The combination of ultra-low power analog front-ends and CMOS-compatible transducers enable new appl...