Title :
An Ultra Low-Power 7th order active-RC LPF for IEEE 802.15.4a standard compliant transceiver
Author :
Klymenko, Oleksiy ; Fischer, Gunter ; Martynenko, Denys
Author_Institution :
IHP, Frankfurt (Oder), Germany
Abstract :
This paper describes an ultra-low power differential 7th order active-RC low pass filter (LPF). The proposed filter is ready for the use in Impulse-Radio (IR) Ultra-Wideband (UWB) IEEE 802.15.4a standard compliant transceivers. The circuit is composed of three biquadratic and one first order filter sections. The structure of the operational amplifier (op amp) is adopted to ensure high linearity demands of the design. The evaluation of the LPF was done both for the stand alone version and with the cooperation of other transceiver components inside the IR UWB receiver and the transmitter test circuits. The designed LPF can handle the signals with the peak-to-peak amplitude of 680 mV, has corner frequency of 180 MHz and consumes 3.2 mA from 2.6 V supply. The circuit is fabricated in 0.25 μm SiGe:C BiCMOS technology of the IHP. The chip size is 130×430 μm2.
Keywords :
BiCMOS integrated circuits; Ge-Si alloys; Zigbee; biquadratic filters; carbon; low-pass filters; low-power electronics; radio transceivers; radiofrequency integrated circuits; semiconductor materials; ultra wideband communication; BiCMOS technology; IEEE 802.15.4a standard compliant transceiver; IR UWB receiver; SiGe:C; active-RC low pass filter; biquadratic filter; current 3.2 mA; frequency 180 MHz; impulse radio; size 0.25 mum; transmitter test circuits; ultra low-power 7th order active-RC LPF; ultrawideband transceivers; voltage 2.6 V; voltage 680 mV; Electronics packaging; Frequency measurement; Operational amplifiers; Receivers; Semiconductor device measurement; Semiconductor device modeling; Transceivers; Active-RC LPF; IEEE 802.15.4a; IR UWB Transceiver; impulse radio;
Conference_Titel :
Ph.D. Research in Microelectronics and Electronics (PRIME), 2011 7th Conference on
Conference_Location :
Trento
Print_ISBN :
978-1-4244-9138-4
Electronic_ISBN :
978-1-4244-9136-0
DOI :
10.1109/PRIME.2011.5966234