Title :
High frequency log domain all pass filter based on KHN topology
Author :
Arslanalp, Remzi ; Tola, Abdullah T. ; Yilmaz, Saziye Surav
Author_Institution :
Dept. of Electr.&Electron. Eng., Pamukkale Univ., Denizli
fDate :
Aug. 31 2008-Sept. 3 2008
Abstract :
In this study, a current mode Log domain Class AB differential type all pass filter based on KHN structure has been synthesized by using the state space method and by adopting translinear circuits for the first time. The proposed circuit is synthesized for high frequency applications, i.e. around 100 MHz. Varying the values of the current sources of the circuit, the natural frequency of the filter can be tuned electronically. The circuit is simulated in PSpice by using both idealized and real transistors that are suitable for high frequency operations. Simulations showed that amplitude response of the system remains almost constant for 6 decades between 10 kHz and 10 GHz. Moreover, natural frequency of the filter can be set by electronically changing the source currents between 2 mA and 7 mA. In addition to these simulations, THD and noise analysis are carried out. The obtained results are given.
Keywords :
SPICE; all-pass filters; circuit simulation; circuit tuning; current-mode circuits; harmonic distortion; network topology; state-space methods; KHN topology structure; PSpice; THD; amplitude response; circuit simulation; current 2 mA to 7 mA; current mode Class AB differential filter; frequency 10 kHz to 10 GHz; high frequency log domain all pass filter; high frequency transistors; natural frequency tuning; noise analysis; state space method; translinear circuits; Adders; Band pass filters; Circuit simulation; Circuit synthesis; Frequency; Low pass filters; Signal processing; Topology; Transfer functions; Voltage;
Conference_Titel :
Electronics, Circuits and Systems, 2008. ICECS 2008. 15th IEEE International Conference on
Conference_Location :
St. Julien´s
Print_ISBN :
978-1-4244-2181-7
Electronic_ISBN :
978-1-4244-2182-4
DOI :
10.1109/ICECS.2008.4674808