Browse > Article
http://dx.doi.org/10.5916/jkosme.2008.32.8.1263

LNA Design Uses Active and Passive Biasing Circuit to Achieve Simultaneous Low Input VSWR and Low Noise  

Jeon, Joong-Sung (한국해양대학교 부설 해사산업연구소)
Abstract
In this paper, the low noise power amplifier for GaAs FET ATF-10136 is designed and fabricated with active bias circuit and self bias circuit. To supply most suitable voltage and current, active bias circuit is designed. Active biasing offers the advantage that variations in the pinch-off voltage($V_p$) and saturated drain current($I_{DSS}$) will not necessitate a change in either the source or drain resistor value for a given bias condition. The active bias network automatically sets a gate-source voltage($V_{gs}$) for the desired drain voltage and drain current. Using resistive decoupling circuits, a signal at low frequency is dissipated by a resistor. This design method increases the stability of the LNA, suitable for input stage matching and gate source bias. The LNA is fabricated on FR-4 substrate with active and self bias circuit, and integrated in aluminum housing. As a results, the characteristics of the active and self bias circuit LNA implemented more than 13 dB and 14 dB in gain, lower than 1 dB and 1.1 dB in noise figure, 1.7 and 1.8 input VSWR at normalized frequency $1.4{\sim}1.6$, respectively.
Keywords
Active biasing circuit; FET(Field-effect transistor); RF power amplifier; Resistive decoupling circuit; Low noise amplifier: LNA; Pinch-off voltage: $V_P$;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 Robert L. Boylestad, Louis Nashelsky, "Electronic Devices and Circuit Theory," Ninth Edition, pp. 460-466, 2006
2 K. E. Kuijk, "A Precision Reference Voltage Source," IEEE Journal of Solid-State Circuits, Vol. SC-6, pp. 222-226, 1973
3 Hewlett Packard, "Communication Component -GaAs & Silicon Products Designer Catalog," pp.7-9, 2003
4 Thomas L. Floyd, David Buchla, "Fundamentals of Analog Circuits," Second Edition, pp. 223-228, 2002
5 Paul R. Gray, Robert G. Meyer, "Analysis and Design of Analog Integrated Circuits", John Wiley & Sons, pp. 333-346, 1993
6 전중성, "온도변화에 따른 LDMOS의 전류변동 억제에 관한 연구", 마린엔지니어링학회지, 제30권, 8호, pp. 901-906, 2006   과학기술학회마을