TY - GEN
T1 - A broadband 470-862 MHz direct conversion CMOS receiver
AU - Kulkarni, Raghavendra
AU - Kim, Jusung
AU - Jeon, Hyung Joon
AU - Silva-Martinez, Jose
AU - Xiao, Jianhong
PY - 2010
Y1 - 2010
N2 - This work presents an integrated ultra high frequency (UHF), broadband direct-conversion receiver. The receiver integrates a single-ended RFVGA, an on-chip single-to-differential balun, a current-mode passive mixer, and a combination of continuous and discrete-time baseband filter with built-in anti-aliasing. Targeted to operate between 470-862 MHz, the receiver achieves a noise figure of 7.9dB, an IIP3 of -8dBm at maximum gain and an IIP3 of +2dBm at 9dB RF attenuation. The gain- and frequency-programmable baseband section implements an 8th order inverse chebyshev low pass approximation achieving >42dB attenuation at an offset of 1.75 MHz for the 4 MHz frequency setting. Overall, the receiver consumes 120mW from 1.8V analog/2.5V digital dual supply and occupies 2:14mm2 in IBM 0:18μm RFCMOS technology.
AB - This work presents an integrated ultra high frequency (UHF), broadband direct-conversion receiver. The receiver integrates a single-ended RFVGA, an on-chip single-to-differential balun, a current-mode passive mixer, and a combination of continuous and discrete-time baseband filter with built-in anti-aliasing. Targeted to operate between 470-862 MHz, the receiver achieves a noise figure of 7.9dB, an IIP3 of -8dBm at maximum gain and an IIP3 of +2dBm at 9dB RF attenuation. The gain- and frequency-programmable baseband section implements an 8th order inverse chebyshev low pass approximation achieving >42dB attenuation at an offset of 1.75 MHz for the 4 MHz frequency setting. Overall, the receiver consumes 120mW from 1.8V analog/2.5V digital dual supply and occupies 2:14mm2 in IBM 0:18μm RFCMOS technology.
UR - https://www.scopus.com/pages/publications/77955992981
U2 - 10.1109/ISCAS.2010.5537208
DO - 10.1109/ISCAS.2010.5537208
M3 - Conference contribution
AN - SCOPUS:77955992981
SN - 9781424453085
T3 - ISCAS 2010 - 2010 IEEE International Symposium on Circuits and Systems: Nano-Bio Circuit Fabrics and Systems
SP - 2227
EP - 2230
BT - ISCAS 2010 - 2010 IEEE International Symposium on Circuits and Systems
T2 - 2010 IEEE International Symposium on Circuits and Systems: Nano-Bio Circuit Fabrics and Systems, ISCAS 2010
Y2 - 30 May 2010 through 2 June 2010
ER -