An optimized highly efficient RF power amplifier for WLAN system application
The class-AB/ F power amplifier (PA), Class F is commonly understood to be a switching PA, but in fact, it can also be a transconductance PA, depending on how hard the active device is driven. This paper presents the design a multistage class AB/Inverse F power Amplifier with high power added effici...
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my.uniten.dspace-57122017-12-14T08:43:37Z An optimized highly efficient RF power amplifier for WLAN system application Ali, M.H. Chakrabarty, C.K. Raheema, M.H. The class-AB/ F power amplifier (PA), Class F is commonly understood to be a switching PA, but in fact, it can also be a transconductance PA, depending on how hard the active device is driven. This paper presents the design a multistage class AB/Inverse F power Amplifier with high power added efficiency (PAE) and acceptable linearity for the WLAN applications. The effectiveness of the proposed controller has been verified by comparing proposed method with another methods using simulation study under a variety of conditions. The proposed circuit operation for a WLAN signal delivers a power-added efficiency (PAE) of 43.9% is measured at 32.1-dBm output power and linearity of inverse class F displays the simulation result of 1-dB compression output power of 17.5 dBm at -22.4 dBm input power. Finally, the proposed PA is show a good and acceptable result for the WLAN system. 2017-12-08T06:45:37Z 2017-12-08T06:45:37Z 2012 Article 10.5539/mas.v6n2p2 en_US Modern Applied Science Volume 6, Issue 2, February 2012, Pages 2-5 |
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The class-AB/ F power amplifier (PA), Class F is commonly understood to be a switching PA, but in fact, it can also be a transconductance PA, depending on how hard the active device is driven. This paper presents the design a multistage class AB/Inverse F power Amplifier with high power added efficiency (PAE) and acceptable linearity for the WLAN applications. The effectiveness of the proposed controller has been verified by comparing proposed method with another methods using simulation study under a variety of conditions. The proposed circuit operation for a WLAN signal delivers a power-added efficiency (PAE) of 43.9% is measured at 32.1-dBm output power and linearity of inverse class F displays the simulation result of 1-dB compression output power of 17.5 dBm at -22.4 dBm input power. Finally, the proposed PA is show a good and acceptable result for the WLAN system. |
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Ali, M.H. Chakrabarty, C.K. Raheema, M.H. |
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Ali, M.H. Chakrabarty, C.K. Raheema, M.H. An optimized highly efficient RF power amplifier for WLAN system application |
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Ali, M.H. Chakrabarty, C.K. Raheema, M.H. |
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Ali, M.H. |
title |
An optimized highly efficient RF power amplifier for WLAN system application |
title_short |
An optimized highly efficient RF power amplifier for WLAN system application |
title_full |
An optimized highly efficient RF power amplifier for WLAN system application |
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An optimized highly efficient RF power amplifier for WLAN system application |
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An optimized highly efficient RF power amplifier for WLAN system application |
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optimized highly efficient rf power amplifier for wlan system application |
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2017 |
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