Title :
A fully integrated CMOS transceiver for Mobile UHF RFID reader
Author :
Shan Liu ; Bo Wang ; Jinpeng Shen ; Xin´an Wang ; Ru Huang ; Tao Ye
Author_Institution :
Key Lab. of Integrated Microsyst., Peking Univ., Shenzhen, China
Abstract :
For a Mobile UHF RFID reader a fully integrated transceiver, which satisfies the protocols of EPC Class-1 Gen-2, is implemented in a 0.18um 1P6M standard CMOS process. In the receiver, to deal with the large leakage signal, a mixer utilizing BJT paralleling with NMOS as input stage and vertical NPN BJT as switching stage is proposed to achieve high linearity(-2dBm P1dB) and low 1/f noise. Furthermore, an efficient low cost on-chip DC offset canceller (DCOC) with a high-input-impedance four-input OPAMP is utilized. In transmitter, a sigma-delta DAC with a novel single to differential (S2D) is used to reduce the noise of the transmitter. Besides a linear up-conversion mixer and a power amplifier driver are proposed. The transmitter achieves an ACPR1 of -27dBc and ACPR2 of -51.8dBc. Supporting FM0, Miller2/4/8 demodulation and DSB-ASK modulation, occupying an area of 10.24mm2 and consuming 130mA from a 1.8V supply, the transceiver can communicate with a transponder in a distance of 1m.
Keywords :
MOSFET; UHF bipolar transistors; UHF power amplifiers; amplitude shift keying; demodulation; digital-analogue conversion; electric impedance; protocols; radio transceivers; radiofrequency identification; transponders; 1P6M standard CMOS process; ACPR1; ACPR2; DCOC; DSB-ASK modulation; EPC Class-1 Gen-2; FM0; Miller2-4-8 demodulation; NMOS; NPN BJT; S2D; four-input OPAMP; high-input-impedance; integrated CMOS transceiver; linear up-conversion mixer; mobile UHF RFID reader; noise reduction; on-chip DC offset canceller; power amplifier driver; protocol; receiver; sigma-delta DAC; single to differential; switching stage; transponder; 1/f noise; CMOS; UHF RFID; linearity; transceiver;
Conference_Titel :
Information Science and Control Engineering 2012 (ICISCE 2012), IET International Conference on
Conference_Location :
Shenzhen
Electronic_ISBN :
978-1-84919-641-3
DOI :
10.1049/cp.2012.2371