DocumentCode :
3020910
Title :
A high performance automatic level control circuit design
Author :
Li Zhuoming
Author_Institution :
41st Inst., China Electron. & Technol. Corp., Qingdao, China
fYear :
2013
fDate :
20-22 Dec. 2013
Firstpage :
654
Lastpage :
657
Abstract :
Power control of signal source is an important issue. Automatic level control (ALC) technology is widely used to this issue. In the present paper, the principle of the ALC technology is analyzed deeply. According to its characteristic, a high performance dual slop logarithm amplifier is designed. Microwave attenuator is one of the most important components in the ALC loop, In this paper, the relations between microwave attenuator characteristics and PIN diode spaces for a multi-stage attenuator are analyzed theoretically. According to theoretical results, a high performance wide dynamic range, broadband microwave attenuator whose band extends from 10 MHz to 26.5 GHz has been designed. In order to make it maintain good linearity in the whole power adjusting process, an exponential drive circuit has also been designed. After the design has been applied in microwave vector network analyzer for experiment, the results show that the dynamic range of the ALC can reach about 50 dB, and the linearity is within ±0.05 dB.
Keywords :
amplifiers; attenuators; driver circuits; integrated circuit design; microwave circuits; p-i-n diodes; ALC loop; ALC technology; PIN diode spaces; exponential drive circuit design; high performance automatic level control circuit design; high performance dual slop logarithm amplifier; microwave attenuator characteristics; microwave vector network analyzer; multistage attenuator; power adjusting process; power control; signal source; Attenuators; Broadband communication; Dynamic range; Linearity; Microwave amplifiers; Microwave circuits; PIN diode; exponential amplifier; microwave attenuator; power control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Mechatronic Sciences, Electric Engineering and Computer (MEC), Proceedings 2013 International Conference on
Conference_Location :
Shengyang
Print_ISBN :
978-1-4799-2564-3
Type :
conf
DOI :
10.1109/MEC.2013.6885145
Filename :
6885145
Link To Document :
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