WLAN应用的LNA设计

M. Iyer, T. Shanmuganantham
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引用次数: 4

摘要

C波段微波频率的一个重要应用是工作在5ghz的无线局域网(WLAN)。由于工作频率从2.45 GHz增加到5 GHz,噪声的敏感性也增加,因此接收器初始阶段的选择性应该非常高,以消除这些噪声成分并向接收器目的地发送干净的信息。接收机的初始阶段是低噪声放大器,即微波放大器,通常采用先进的固态器件如BJT、FET和新开发的异质结器件如HBT和HEMT来设计。在这项工作中,我们主动使用高级设计系统(ADS)仿真软件设计了具有高选择性和灵敏度的低噪声放大器,通过考虑阻抗匹配,功率增益,稳定性和选择低噪声偏置条件之间的权衡,将噪声降至最低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
LNA design for WLAN applications
An important applications of C band microwave frequencies is the Wireless LAN (WLAN) operating at 5 GHz. Since the frequency of operation has increased from 2.45 GHz to 5 GHz the susceptance of noise also increases and hence the selectivity of the receiver initial stages should be very high to remove these noise components and send a clean information to the receiver destination. The initial stage of the receiver is the low noise amplifier which is nothing but microwave amplifier often designed using the highly advanced solid state devices like BJT's, FET's and newly developed heterojunction devices like HBT's and HEMT's. In this work we have taken an initiative to design the low noise amplifier using Advanced Design System (ADS) simulation software with high selectivity and sensitivity that minimizes the noise by considering the trade-off between the impedance matching, power gain, stability and selecting low noise biasing conditions.
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