Integrated current-sensing circuit with offset-current cancellation for dc-dc boost converters using 0.13um CMOS technology / Intan Shazana Shamsul Sahar

Shamsul Sahar, Intan Shazana (2015) Integrated current-sensing circuit with offset-current cancellation for dc-dc boost converters using 0.13um CMOS technology / Intan Shazana Shamsul Sahar. Degree thesis, Universiti Teknologi MARA (UiTM).

Abstract

The project proposed a configuration of CMOS current sensing circuit with offset-current cancellation for boost converters. This design will contrast the power and operational sensing speed with the traditional proposed current-sensing circuit. By eliminating the offset-current, it will improve the current sensing performance. It can be accomplish by applying current mirror as opposed of utilizing operational amplifier as a voltage follower in conventional design which serves to subside power consumption due to reducing the number of transistor. Moreover, this proposed design also can cancel off the offset-current in the traditional current sensing circuit, thus the improvement of sensing-accuracy will accomplished. The proposed design will be designed using 0.13um technology and simulation will be carried out in Mentor graphics. The dc-dc boost converter will be set with operating frequency of 500kHz and designed with the supply voltage of 2V.

Metadata

Item Type: Thesis (Degree)
Creators:
Creators
Email / ID Num.
Shamsul Sahar, Intan Shazana
2011142153
Contributors:
Contribution
Name
Email / ID Num.
Thesis advisor
Tuan Yaakub, Tuan Norjihan
UNSPECIFIED
Subjects: T Technology > TJ Mechanical engineering and machinery > Energy consumption
T Technology > TK Electrical engineering. Electronics. Nuclear engineering
Divisions: Universiti Teknologi MARA, Shah Alam > Faculty of Electrical Engineering
Programme: Bachelor of Electrical Engineering (Hons) in Electronic
Keywords: Current-sensing circuit, DC-DC Boost Converters, offset-current, low power consumption, sensing-accuracy
Date: 2015
URI: https://ir.uitm.edu.my/id/eprint/98690
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