Title :
An interference rejection filter for an ultra-wideband quadrature downconversion autocorrelation receiver
Author :
Bagga, Sumit ; Haddad, Sandro A P ; Van Hartingsveldt, Koen ; Lee, Simon ; Serdijn, Wouter A. ; Long, John R.
Author_Institution :
Electron. Res. Lab., Delft Univ. of Technol., Netherlands
Abstract :
An analog filter is designed based upon the requirement of an interference rejection filter for the quadrature downconversion autocorrelation receiver (QDAR). The transfer function of an eight-order elliptic bandpass filter is selected. As a result, a state-space approach (i.e. the orthonormal form) is adopted, which is intrinsically semi-optimized for dynamic range, has low sensitivity, high sparsity and its coefficients can be physically implemented. Each coefficient in the state-space description of the filter is implemented at circuit level using a novel 2-stage gm cell based upon the principle of negative feedback. Simulation results in IBM´s Bi-CMOS 0.18 μm technology show that the interference rejection filter requires a total current of 90 mA at a 1.8 V power supply. The 1-dB compression point of the filter is at 565 mV and the SNR is 47.5 dB. On performing a Monte Carlo simulation, it becomes evident that the overall filter transfer response does not suffer from process variations.
Keywords :
BiCMOS analogue integrated circuits; band-pass filters; circuit feedback; elliptic filters; interference suppression; radio receivers; state-space methods; transfer functions; ultra wideband communication; 0.18 micron; 1.8 V; 565 mV; 90 mA; BiCMOS; Monte Carlo simulation; QDAR; UWB receivers; analog integrated circuits; dual-stage gm cell; elliptic filter transfer function; interference rejection band-pass filter; narrowband interference; negative feedback; orthonormal state-space method; transconductance amplifier; ultra-wideband quadrature downconversion autocorrelation receiver; Autocorrelation; Band pass filters; Circuit simulation; Dynamic range; Feedback circuits; Interference; Negative feedback; Power supplies; Transfer functions; Ultra wideband technology; analog integrated circuits; narrowband interference; orthonormal filter; quadrature downconversion autocorrelation receiver; state-space synthesis; ultra-wideband;
Conference_Titel :
Circuits and Systems, 2005. ISCAS 2005. IEEE International Symposium on
Print_ISBN :
0-7803-8834-8
DOI :
10.1109/ISCAS.2005.1465846