DocumentCode :
3492432
Title :
New Error Amplifier Topology for Low Dropout Voltage Regulators Using Compound OTA-OPAMP
Author :
Kayal, M. ; Vaucher, F. ; Deval, Phi
Author_Institution :
Ecole Polytechnique Federale de Lausanne
fYear :
2006
fDate :
Sept. 2006
Firstpage :
536
Lastpage :
539
Abstract :
Typical low dropout voltage regulators (LDO), uses an error amplifier in a linear closed loop. The main advantage of such linear regulators is the low standby current due to the absence of switching. In addition, a fully integrated linear regulator with no external components is very attractive for applications with stringent area, low weight requirements and relatively small peak power. The architecture of error amplifier used in the feedback loop suffers from an inherent load regulation performance limitation. This limitation manifests itself through the limited DC open-loop gain, and results from limited closed-loop bandwidth. The frequency response of power supply loop is highly sensitive to the load conditions, thus, making proper compensation is a laborious effort. This paper discusses and addresses a new topology of an error amplifier offering a high open loop gain as well as a large band width by adding a zero to its transfer function. Proposed topology uses a compound OTA and OPAMP that enhances load regulation performance by relaxing the dc open-loop gain restrictions. An example of battery charger using this opamp topology is also described in this paper. This battery charger can be used as an LDO once the battery is not connected
Keywords :
battery chargers; operational amplifiers; transfer functions; voltage regulators; LDO; battery charger; compound OTA-OPAMP; dc open-loop gain restrictions; error amplifier topology; linear closed loop; linear regulator; load regulation performance; low dropout voltage regulators; opamp topology; operational transconductance amplifier; transfer function; Bandwidth; Batteries; Feedback loop; Frequency response; Low voltage; Performance gain; Power supplies; Regulators; Topology; Transfer functions;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Solid-State Circuits Conference, 2006. ESSCIRC 2006. Proceedings of the 32nd European
Conference_Location :
Montreux
ISSN :
1930-8833
Print_ISBN :
1-4244-0303-0
Type :
conf
DOI :
10.1109/ESSCIR.2006.307508
Filename :
4099822
Link To Document :
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