Title :
The origin of 1/f PM and AM noise in bipolar junction transistor amplifiers
Author :
Walls, F.L. ; Ferre-Pikal, E.S. ; Jefferts, S.R.
Author_Institution :
Nat. Inst. of Stand. & Technol., Boulder, CO, USA
fDate :
31 May-2 Jun 1995
Abstract :
In this paper we report the results of extensive research on phase modulation (PM) and amplitude modulation (AM) noise in linear bipolar junction transistor (BJT) amplifiers. BJT amplifiers exhibit 1/f PM and AM noise about a carrier signal that is much larger than the amplifier´s thermal noise at those frequencies in the absence of the carrier signal. Our work shows that the 1/f PM noise of a BJT based amplifier is accompanied by 1/f AM noise which can be higher, lower, or nearly equal depending on the circuit implementation. The 1/f AM and PM noise in BJTs is primarily the result of 1/f fluctuations in transistor current, transistor capacitance, circuit supply voltages, circuit impedances, and circuit configuration. We discuss the theory and present experimental data in reference to common emitter amplifiers, but the analysis can be applied to other configurations as well. This study provides the functional dependence of 1/f AM and PM noise on transistor parameters, circuit parameters, and signal frequency, thereby laying the groundwork for a comprehensive theory of 1/f AM and PM noise in BJT amplifiers. We show that in many cases the 1/f PM and AM noise can be reduced below the thermal noise of the amplifier
Keywords :
1/f noise; amplifiers; amplitude modulation; bipolar transistor circuits; circuit noise; equivalent circuits; linear network analysis; phase modulation; 1/f AM noise; 1/f fluctuations; 1/f noise; amplitude modulation noise; bipolar junction transistor amplifiers; circuit configuration; circuit impedances; circuit parameters; circuit supply voltages; common emitter amplifiers; linear BJT amplifiers; phase modulation noise; signal frequency; transistor capacitance; transistor current; transistor parameters; Amplitude modulation; Capacitance; Circuit noise; Fluctuations; Frequency; Low-noise amplifiers; Noise level; Noise reduction; Phase modulation; Phase noise;
Conference_Titel :
Frequency Control Symposium, 1995. 49th., Proceedings of the 1995 IEEE International
Conference_Location :
San Francisco, CA
Print_ISBN :
0-7803-2500-1
DOI :
10.1109/FREQ.1995.483914