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A common drain parallel amplifier in GaN using baseband PWM and direct filter connection for efficiency enhancement

机译:GaN中的常见漏极并联放大器,使用基带PWM和直接滤波器连接以提高效率

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To cope with the increasing demand for bandwidth in wireless communications coding schemes with high crest factors are employed. As a result the power amplifier (PA) is operated far below maximum output power for most of the time leading to low average efficiency in traditional designs. Therefore PA concepts providing efficiency enhancement in back off are key for efficient transmitters. Baseband PWM operated PAs in combination with direct filter connection are possible candidates. Due to the constant current of the used filters special PA structures are required. The proposed parallel common drain amplifier offers this properties. Its general operational principle is explained and an implementation study in a GaN MMIC process is presented. The designed PA operates at 2.65GHz delivering a maximum output power of 3W. To get optimum performance of the direct filter connection a codesign of the PA and the cavity filter included in the output matching network was done, resulting in a compact solution.
机译:为了应对在无线通信中对带宽日益增长的需求,采用了具有高波峰因数的编码方案。结果,功率放大器(PA)大部分时间都在远低于最大输出功率的条件下工作,从而导致传统设计中的平均效率较低。因此,在后退中提供效率增强的功率放大器概念对于有效的发射机而言至关重要。基带PWM操作的PA与直接滤波器连接相结合是可能的选择。由于所用滤波器的电流恒定,因此需要特殊的PA结构。所提出的并联公共漏极放大器具有这种特性。解释了其一般工作原理,并提出了在GaN MMIC工艺中的实现研究。设计的功率放大器工作在2.65GHz,可提供最大3W的输出功率。为了获得直接滤波器连接的最佳性能,对功率放大器和输出匹配网络中包含的空腔滤波器进行了代码签名,从而形成了紧凑的解决方案。

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