Improved InGaP/GaAs HBTs AC performance and linearity with collector design

Che-ming Wang, H. Hsu, H. Shu, Yu-An Liu, Y. Hsin
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Abstract

An additional thin high-doping layer within the collector of InGaP/GaAs HBTs has been designed and fabricated to improve the Kirk effect threshold current, cutoff frequency, and power distortion, while keeping a high breakdown voltage. The proposed structure effectively relieves the Kirk effect and results in a higher current drive and cut-off frequency. From the extracted C/sub BC/ with V/sub CB/, HBTs with non-uniform collector doping demonstrate less base-collector capacitance variation than that in baseline HBTs, due to the depletion region limited by the thin, high-doping layer. The experimental results on third-order intermodulation demonstrate a significant improvement in OIP3 by as large as 6 dB. This proposed InGaP/GaAs HBT, with non-uniform collector doping, is well suited to replace current InGaP/GaAs HBTs for power amplifier applications, due to its significantly improved linearity and current/frequency capability, with negligible impact on DC characteristics and fabrication.
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采用集电极设计提高了InGaP/GaAs HBTs的交流性能和线性度
在InGaP/GaAs hbt集电极内设计并制造了一层额外的高掺杂薄层,以提高柯克效应阈值电流、截止频率和功率畸变,同时保持高击穿电压。所提出的结构有效地缓解了柯克效应,并导致更高的电流驱动和截止频率。从提取的带有V/sub CB/的C/sub BC/中可以看出,由于损耗区受到薄的高掺杂层的限制,非均匀集电极掺杂的HBTs表现出比基线HBTs更小的基极-集电极电容变化。三阶互调的实验结果表明,OIP3显著提高了6 dB。这种采用非均匀集电极掺杂的InGaP/GaAs HBT非常适合取代目前用于功率放大器应用的InGaP/GaAs HBT,因为它显著改善了线性度和电流/频率能力,而对直流特性和制造的影响可以忽略不计。
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