基于2μm的In Ga P/Ga As异质结双极晶体管(HBT)工艺设计了一种可应用于IEEE802.11 b/g/n无线局域网(WLAN)的高线性度射频功率放大器。为了提高射频功率放大器的线性度,采用了负反馈镜像电路提供直流工作点,设计了良好的输入、输出和级...基于2μm的In Ga P/Ga As异质结双极晶体管(HBT)工艺设计了一种可应用于IEEE802.11 b/g/n无线局域网(WLAN)的高线性度射频功率放大器。为了提高射频功率放大器的线性度,采用了负反馈镜像电路提供直流工作点,设计了良好的输入、输出和级间匹配电路来提高射频功率放大器的线性输出功率。流片结果表明,在工作电压为3.3 V时,射频功率放大器的1 d B线性压缩输出功率(P1d B)可达27 d Bm,当误差向量幅度(EVM)为3%时,2.4 GHz64 QAM激励下,输出功率可达19.8 d Bm,满足标准规范要求。展开更多
A 2.4 GHz, direct-conversion RF transmitter front-end with an up converter and PA driver is fabricated in a 0.13/zm CMOS process for the reliable transmission of 54 Mb/s OFDM signals. The front-end output power is -3 ...A 2.4 GHz, direct-conversion RF transmitter front-end with an up converter and PA driver is fabricated in a 0.13/zm CMOS process for the reliable transmission of 54 Mb/s OFDM signals. The front-end output power is -3 dBm while the corresponding EVM is -27 dB which is necessary for the 802.11g standard of EVM at-25 dB. With the adopted gain control strategy the output power changes from -14.3 to -3.7 dBm with every step 0.8 dB (20%) which covers the gain variation due to working temperature and process. A power detector indicates the output power and delivers a voltage to the baseband to control the output power.展开更多
文摘基于2μm的In Ga P/Ga As异质结双极晶体管(HBT)工艺设计了一种可应用于IEEE802.11 b/g/n无线局域网(WLAN)的高线性度射频功率放大器。为了提高射频功率放大器的线性度,采用了负反馈镜像电路提供直流工作点,设计了良好的输入、输出和级间匹配电路来提高射频功率放大器的线性输出功率。流片结果表明,在工作电压为3.3 V时,射频功率放大器的1 d B线性压缩输出功率(P1d B)可达27 d Bm,当误差向量幅度(EVM)为3%时,2.4 GHz64 QAM激励下,输出功率可达19.8 d Bm,满足标准规范要求。
文摘A 2.4 GHz, direct-conversion RF transmitter front-end with an up converter and PA driver is fabricated in a 0.13/zm CMOS process for the reliable transmission of 54 Mb/s OFDM signals. The front-end output power is -3 dBm while the corresponding EVM is -27 dB which is necessary for the 802.11g standard of EVM at-25 dB. With the adopted gain control strategy the output power changes from -14.3 to -3.7 dBm with every step 0.8 dB (20%) which covers the gain variation due to working temperature and process. A power detector indicates the output power and delivers a voltage to the baseband to control the output power.