This paper presents a multistandard ultra-low-power (ULP) 2.36/2.4GHz transceiver for personal and body-area networks (PAN/BAN). The presented radio complies with 3 short-range standards: Bluetooth Low Energy (BT-LE), IEEE802.15.4 (ZigBee) and IEEE802.15.6 (Medical Body-Area Networks, MBAN). A proprietary 2Mb/s mode is also implemented to support data-streaming applications like hearing aids. Current short-range radios for Zigbee and BT-LE typically consume more than 20mW DC power, which is rather high for autonomous systems with limited battery energy. The dual-mode MBAN/BT-LE transceiver achieves a power consumption of 6.5mW for the RX and 5.9mW for the TX by employing a sliding-IF RX and a polar TX architecture. However, it suffers from ...
The main bottleneck to achieve energy autonomy in body area networks (BAN) is the design of an ultra...
The main bottleneck to achieve energy autonomy in body area networks (BAN) is the design of an ultra...
The main bottleneck to achieve energy autonomy in body area networks (BAN) is the design of an ultra...
This paper presents a multistandard ultra-low-power (ULP) 2.36/2.4GHz transceiver for personal and b...
This paper presents a multistandard ultra-low-power (ULP) 2.36/2.4GHz transceiver for personal and b...
This paper presents a multistandard ultra-low-power (ULP) 2.36/2.4GHz transceiver for personal and b...
This paper presents a multistandard ultra-low-power (ULP) 2.36/2.4GHz transceiver for personal and b...
This paper presents a multistandard ultra-low-power (ULP) 2.36/2.4GHz transceiver for personal and b...
This paper presents a multistandard ultra-low-power (ULP) 2.36/2.4GHz transceiver for personal and b...
This paper presents an ultra-low-power (ULP) 2.3/2.4GHz multi-standard transmitter (TX) for wireless...
This paper presents an ultra-low-power (ULP) 2.3/2.4GHz multi-standard transmitter (TX) for wireless...
This paper presents an ultra-low-power (ULP) 2.3/2.4GHz multi-standard transmitter (TX) for wireless...
This paper presents an ultra-low-power (ULP) 2.3/2.4GHz multi-standard transmitter (TX) for wireless...
This book describes the design of ultra low power transceivers for body area networks. Since these ...
The main bottleneck to achieve energy autonomy in body area networks (BAN) is the design of an ultra...
The main bottleneck to achieve energy autonomy in body area networks (BAN) is the design of an ultra...
The main bottleneck to achieve energy autonomy in body area networks (BAN) is the design of an ultra...
The main bottleneck to achieve energy autonomy in body area networks (BAN) is the design of an ultra...
This paper presents a multistandard ultra-low-power (ULP) 2.36/2.4GHz transceiver for personal and b...
This paper presents a multistandard ultra-low-power (ULP) 2.36/2.4GHz transceiver for personal and b...
This paper presents a multistandard ultra-low-power (ULP) 2.36/2.4GHz transceiver for personal and b...
This paper presents a multistandard ultra-low-power (ULP) 2.36/2.4GHz transceiver for personal and b...
This paper presents a multistandard ultra-low-power (ULP) 2.36/2.4GHz transceiver for personal and b...
This paper presents a multistandard ultra-low-power (ULP) 2.36/2.4GHz transceiver for personal and b...
This paper presents an ultra-low-power (ULP) 2.3/2.4GHz multi-standard transmitter (TX) for wireless...
This paper presents an ultra-low-power (ULP) 2.3/2.4GHz multi-standard transmitter (TX) for wireless...
This paper presents an ultra-low-power (ULP) 2.3/2.4GHz multi-standard transmitter (TX) for wireless...
This paper presents an ultra-low-power (ULP) 2.3/2.4GHz multi-standard transmitter (TX) for wireless...
This book describes the design of ultra low power transceivers for body area networks. Since these ...
The main bottleneck to achieve energy autonomy in body area networks (BAN) is the design of an ultra...
The main bottleneck to achieve energy autonomy in body area networks (BAN) is the design of an ultra...
The main bottleneck to achieve energy autonomy in body area networks (BAN) is the design of an ultra...
The main bottleneck to achieve energy autonomy in body area networks (BAN) is the design of an ultra...