Shunt bootstrap transimpedance amplifier for optical wireless receive

Due to optical wireless link power budget considerations, the receiver is required to have a large collection area. Typical large photodetection area commercial wireless photodetectors has capacitance are around 100-300pF compared to 50pF in fiber link. Hence, techniques to reduce the effective d...

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Main Authors: Mohd. Supa'at, Abu Sahmah, Idrus, Sevia Mahdaliza, Ramli, Arnidza
Format: Book Section
Published: Penerbit UTM 2007
Subjects:
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author Mohd. Supa'at, Abu Sahmah
Idrus, Sevia Mahdaliza
Ramli, Arnidza
author_facet Mohd. Supa'at, Abu Sahmah
Idrus, Sevia Mahdaliza
Ramli, Arnidza
author_sort Mohd. Supa'at, Abu Sahmah
collection ePrints
description Due to optical wireless link power budget considerations, the receiver is required to have a large collection area. Typical large photodetection area commercial wireless photodetectors has capacitance are around 100-300pF compared to 50pF in fiber link. Hence, techniques to reduce the effective detector capacitance are required in order to achieve a low noise and wide bandwidth design. The bootstrap transimpedance amplifications (BTA) technique offers the usual advantages of the transimpedance amplifier together with an effective capacitance reduction technique for optical wireless detector. In this chapter, analysis on the shunt-BTA for input capacitance reduction will be reported. Significant bandwidths enhancement was achieved by shunt-BTA compared to transimpedance front-end.
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institution Universiti Teknologi Malaysia - ePrints
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spelling utm.eprints-140622011-08-17T07:55:00Z http://eprints.utm.my/14062/ Shunt bootstrap transimpedance amplifier for optical wireless receive Mohd. Supa'at, Abu Sahmah Idrus, Sevia Mahdaliza Ramli, Arnidza TK Electrical engineering. Electronics Nuclear engineering Due to optical wireless link power budget considerations, the receiver is required to have a large collection area. Typical large photodetection area commercial wireless photodetectors has capacitance are around 100-300pF compared to 50pF in fiber link. Hence, techniques to reduce the effective detector capacitance are required in order to achieve a low noise and wide bandwidth design. The bootstrap transimpedance amplifications (BTA) technique offers the usual advantages of the transimpedance amplifier together with an effective capacitance reduction technique for optical wireless detector. In this chapter, analysis on the shunt-BTA for input capacitance reduction will be reported. Significant bandwidths enhancement was achieved by shunt-BTA compared to transimpedance front-end. Penerbit UTM 2007 Book Section PeerReviewed Mohd. Supa'at, Abu Sahmah and Idrus, Sevia Mahdaliza and Ramli, Arnidza (2007) Shunt bootstrap transimpedance amplifier for optical wireless receive. In: Advances In Free Space Optical Technology. Penerbit UTM , Johor, pp. 45-59. ISBN 978-983-52-0670-2
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Mohd. Supa'at, Abu Sahmah
Idrus, Sevia Mahdaliza
Ramli, Arnidza
Shunt bootstrap transimpedance amplifier for optical wireless receive
title Shunt bootstrap transimpedance amplifier for optical wireless receive
title_full Shunt bootstrap transimpedance amplifier for optical wireless receive
title_fullStr Shunt bootstrap transimpedance amplifier for optical wireless receive
title_full_unstemmed Shunt bootstrap transimpedance amplifier for optical wireless receive
title_short Shunt bootstrap transimpedance amplifier for optical wireless receive
title_sort shunt bootstrap transimpedance amplifier for optical wireless receive
topic TK Electrical engineering. Electronics Nuclear engineering
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AT idrusseviamahdaliza shuntbootstraptransimpedanceamplifierforopticalwirelessreceive
AT ramliarnidza shuntbootstraptransimpedanceamplifierforopticalwirelessreceive