采用0.18μm CMOS工艺设计并制作了一款应用于便携式UHFRFID阅读器的射频发射前端电路。所设计的有源I/Q上混频器通过开关控制Q支路的信号输入,实现了EPC Global Class-1Gen-2协议中所要求3种调制方式;驱动放大器通过实现增益7级数字可...采用0.18μm CMOS工艺设计并制作了一款应用于便携式UHFRFID阅读器的射频发射前端电路。所设计的有源I/Q上混频器通过开关控制Q支路的信号输入,实现了EPC Global Class-1Gen-2协议中所要求3种调制方式;驱动放大器通过实现增益7级数字可调有效地预放大混频器的输出信号。在1.8V的电源电压下,测得阅读器前端电路的主要性能参数如下:上混频器的输入端P1dB,达到-14.9dBVrms,转换增益和噪声系数分别为3.18dB和13.20dB;驱动放大器的输出端P1dB在50Ω阻抗上达到3.5dBm,转换增益可调范围和噪声系数变化范围,分别为7.90~16.30dB和3.10~5.00dB。展开更多
This paper presents an up-conversion mixer for 2.4GHz wireless sensor networks in 0. 181xm RF complementary metal-oxide semiconductor (CMOS) technology. It is based on a double-balanced Gilbert cell type. With two G...This paper presents an up-conversion mixer for 2.4GHz wireless sensor networks in 0. 181xm RF complementary metal-oxide semiconductor (CMOS) technology. It is based on a double-balanced Gilbert cell type. With two Gilbert cells it was applied quadrature modulation. Operational ampli- tiers are used in this design to improve the conversion gain under low power consumption. The mixer design is based on 0.18txm RF CMOS process. And the mixer test results indicate that under 1.8V power supply, with input frequency 2.4 - 2.4835GHz, the conversion voltage gain is 1.2 - 2dB. When the output frequency is 2.4GHz, its power gain is -4.46dB, and its input referred 1 dB com- pression point is -11.5dBm and it consumes 1.77mA current.展开更多
文摘采用0.18μm CMOS工艺设计并制作了一款应用于便携式UHFRFID阅读器的射频发射前端电路。所设计的有源I/Q上混频器通过开关控制Q支路的信号输入,实现了EPC Global Class-1Gen-2协议中所要求3种调制方式;驱动放大器通过实现增益7级数字可调有效地预放大混频器的输出信号。在1.8V的电源电压下,测得阅读器前端电路的主要性能参数如下:上混频器的输入端P1dB,达到-14.9dBVrms,转换增益和噪声系数分别为3.18dB和13.20dB;驱动放大器的输出端P1dB在50Ω阻抗上达到3.5dBm,转换增益可调范围和噪声系数变化范围,分别为7.90~16.30dB和3.10~5.00dB。
基金Supported by the National High Technology Research and Development Program(No.2007AA01Z2A7)the Special Fund of Jiangsu Province for the Transformation of Scientific and Technological Achievements(No.BA2010073)
文摘This paper presents an up-conversion mixer for 2.4GHz wireless sensor networks in 0. 181xm RF complementary metal-oxide semiconductor (CMOS) technology. It is based on a double-balanced Gilbert cell type. With two Gilbert cells it was applied quadrature modulation. Operational ampli- tiers are used in this design to improve the conversion gain under low power consumption. The mixer design is based on 0.18txm RF CMOS process. And the mixer test results indicate that under 1.8V power supply, with input frequency 2.4 - 2.4835GHz, the conversion voltage gain is 1.2 - 2dB. When the output frequency is 2.4GHz, its power gain is -4.46dB, and its input referred 1 dB com- pression point is -11.5dBm and it consumes 1.77mA current.