DocumentCode
2893487
Title
Design and Implementation of a Linear Transconductance Amplifier with a Digitally Controlled Current Source
Author
Nagaraj, R.L. ; Yagain, Deepa
Author_Institution
Dept. of Electron. & Commun. VLSI Design & Embedded Syst, People´´s Educ. Soc. Inst. of Technol., Bangalore, India
fYear
2011
fDate
18-20 Nov. 2011
Firstpage
274
Lastpage
279
Abstract
This paper presents a new configuration for balanced Operational Transconductance amplifies where digitally controlled current switch is designed to generate the different bias currents. To achieve better linearity, the source degeneration circuit for differential pair is used in the Balanced OTA [1]. The digitally controlled switch is nothing but MOSFETs with different width and lengths. This helps to have different bias currents just by turning on particular MOSFET in the switch module. Using the designed structure a variable resistor is designed [2]. Also as an application example, an electronically tunable phase shifter is implemented [3]. In this phase shifter using the designed OTA, by applying different bias currents generated through the digital switch we can obtain different phase shifts. The circuit performance of linear transconductance amplifier is measured in terms of the linearity, slew rate, CMRR, settling time, over shoot and undershoot. Here all the circuits are implemented Tanner EDA and simulated in 130nm using TSMC MOSIS Level-49 model in TSPICE simulator.
Keywords
SPICE; circuit simulation; constant current sources; digital control; electronic design automation; field effect transistor switches; operational amplifiers; phase shifters; varistors; CMRR; MOSFET switch; TSMC MOSIS Level-49 model; TSPICE simulator; Tanner EDA; balanced OTA; balanced operational transconductance amplifier; bias currents; circuits simulation; differential pair source degeneration circuit; digitally controlled current source; digitally controlled switch; electronically tunable phase shifter; linear transconductance amplifier; overshoot; settling time; size 130 nm; slew rate; undershoot; variable resistor; Linearity; MOSFETs; Resistors; Switches; Transconductance; CMOS Balanced OTA; Differential Pair; Digitally Controlled Current Source and Variable Resistor; Linearity; Source Degeneration;
fLanguage
English
Publisher
ieee
Conference_Titel
Emerging Trends in Engineering and Technology (ICETET), 2011 4th International Conference on
Conference_Location
Port Louis
ISSN
2157-0477
Print_ISBN
978-1-4577-1847-2
Type
conf
DOI
10.1109/ICETET.2011.24
Filename
6120596
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