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Performance Enhancement of 3-way Doherty Power Amplifier using Gate and Drain bias control

机译:利用栅极和漏极偏置控制增强三路Doherty功率放大器的性能

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摘要

In this thesis, 50W Doherty amplifier was designed and implemented for Beyond 3G's repeater and base-station. Auxiliary amplifier of doherty amplifier was implemented by Gate bias control circuit. Though gate bias control circuit solved auxiliary's bias problem, output characteristics of doherty amplifier was limited. To enhance the output characteristic relativize Drain control circuit. And To improve power efficiency make 3-way Doherty power amplifier, therefore, 3-way GDCD (Gate and Drain bias Control Doherty) power amplifier is embodied to drain bias circuit for General Doherty power amplifier. The 3-way GDCD power amplifier composed of matching circuit with chip capacitor and micro strip line using FR4 dielectric substance of specific inductive capacity(εr) 4.6, dielectric substance height(H) 30 Mills, and 2.68 Mills(2 oz) of copper plate thickness(T). Experiment result satisfied specification of amplifier with gains are 57.03 dB in 2.11 ~ 2.17 GHz, 3GPP frequency band, PEP output is 50.30 dBm, W-CDMA average power is 47.01 dBm, and ACLR characteristics at 5MHz offset frequency band station is -40.45 dBc. Especially, 3-way DCHD power amplifier showed excellence efficiency performance improvement in same ACLR than general doherty power amplifier.
机译:本文针对Beyond 3G的中继器和基站设计并实现了50W Doherty放大器。 doherty放大器的辅助放大器由栅极偏置控制电路实现。尽管栅极偏置控制电路解决了辅助偏置的问题,但Doherty放大器的输出特性受到限制。为了提高输出特性,需要将漏极控制电路相对应。并且为了提高功率效率,制作了三路Doherty功率放大器,因此,将三路GDCD(栅极和漏极偏置控制Doherty)功率放大器具体化为通用Doherty功率放大器的漏极偏置电路。一种三向GDCD功率放大器,由具有片状电容器的匹配电路和微带线组成,使用比电感容量(εr)4.6,电介质高度(H)30密耳和2.68密耳(2 oz)的铜板FR4电介质厚度(T)。在2.11〜2.17 GHz,3GPP频段,增益为57.03 dB,3GPP频带,PEP输出为50.30 dBm,W-CDMA平均功率为47.01 dBm,5MHz偏置频带站的ACLR特性为-40.45 dBc时,放大器的实验结果满足规格要求。特别是,三路DCHD功率放大器在相同的ACLR中显示出比普通doherty功率放大器出色的效率性能改进。

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