DocumentCode :
3342762
Title :
Highly linear VHF current-mode Miller integrator with 90 dB DC gain
Author :
Pierzchala, Edmund ; Schaumann, Rolf ; Van Halen, Paul ; Szczepanski, Stanislaw ; Perkowski, Marek A.
Author_Institution :
Dept. of Electr. Eng., Portland State Univ., OR, USA
Volume :
3
fYear :
1995
fDate :
30 Apr-3 May 1995
Firstpage :
1852
Abstract :
This paper presents a concept and an implementation of a current-mode integrator based on the Miller effect. The circuit has a highly linear, no feedback, current path, implemented using a Gilbert amplifier cell, and a voltage feedback path with capacitors, realizing integration. A bipolar transistor array process with devices with an f T of 8 GHz has been used for the circuit simulation. Phase response of -90±0.5° has been obtained in the frequency range of 1 MHz to 670 MHz (the low-frequency pole can be tuned electronically down to about 3 Hz). Excess phase can be compensated electronically to obtain exactly -90° for any frequency in the entire useful range. The gain of the circuit can be tuned electronically over at least 40 dB. THD for 1 MHz is better than 0.052% for an output current of 2.8 mApp, which represents 93% of the output tail current. DC gain of the circuit can be turned up to over 90 dB
Keywords :
VHF circuits; bipolar analogue integrated circuits; circuit analysis computing; circuit feedback; harmonic distortion; integrating circuits; 1 to 670 MHz; 90 dB; DC gain; Gilbert amplifier cell; THD; VHF current-mode Miller integrator; bipolar transistor array process; circuit simulation; current path; output current; phase response; voltage feedback path; Bipolar transistors; Capacitors; Circuit simulation; Feedback circuits; Frequency; Gain; Tail; Tuned circuits; VHF circuits; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Circuits and Systems, 1995. ISCAS '95., 1995 IEEE International Symposium on
Conference_Location :
Seattle, WA
Print_ISBN :
0-7803-2570-2
Type :
conf
DOI :
10.1109/ISCAS.1995.523776
Filename :
523776
Link To Document :
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