In this paper, a new form of printed antenna for a five-band C-band applications is presented. The proposed antenna consists of six simple rectangles, whose geometry resembles all the “hand” of man. By varying the g...In this paper, a new form of printed antenna for a five-band C-band applications is presented. The proposed antenna consists of six simple rectangles, whose geometry resembles all the “hand” of man. By varying the geometries and dimensions of these six rectangles, five different resonance modes can be effectively created for five distinct frequency bands, respectively. The overall dimension of the proposed antenna can reach 45 × 50 × 2.54 mm3. The simulated results show that the presented antenna is adapted to 4.6/5.24/5.6/6.7/7.3 GHz five bands which are applied to C-band.展开更多
介绍了一种C频段五通道接收组件的设计方法。阐述了接收组件的工作原理,给出了功能实现框图,分析了电长度补偿单元、通道选择单元、幅相控制单元、信号合成单元共4个部分的设计方案。采用盘旋同轴线方案实现了电长度补偿,补偿最大值达63...介绍了一种C频段五通道接收组件的设计方法。阐述了接收组件的工作原理,给出了功能实现框图,分析了电长度补偿单元、通道选择单元、幅相控制单元、信号合成单元共4个部分的设计方案。采用盘旋同轴线方案实现了电长度补偿,补偿最大值达635°。接收组件集成了限幅、通道选择、5位移相、5位衰减、电长度补偿、信号合成、电压转换等功能。接收组件的测试结果为噪声系数3.5 d B,增益25 d B,输入输出驻波比小于1.5∶1,总功耗780 m W。展开更多
文摘In this paper, a new form of printed antenna for a five-band C-band applications is presented. The proposed antenna consists of six simple rectangles, whose geometry resembles all the “hand” of man. By varying the geometries and dimensions of these six rectangles, five different resonance modes can be effectively created for five distinct frequency bands, respectively. The overall dimension of the proposed antenna can reach 45 × 50 × 2.54 mm3. The simulated results show that the presented antenna is adapted to 4.6/5.24/5.6/6.7/7.3 GHz five bands which are applied to C-band.
文摘介绍了一种C频段五通道接收组件的设计方法。阐述了接收组件的工作原理,给出了功能实现框图,分析了电长度补偿单元、通道选择单元、幅相控制单元、信号合成单元共4个部分的设计方案。采用盘旋同轴线方案实现了电长度补偿,补偿最大值达635°。接收组件集成了限幅、通道选择、5位移相、5位衰减、电长度补偿、信号合成、电压转换等功能。接收组件的测试结果为噪声系数3.5 d B,增益25 d B,输入输出驻波比小于1.5∶1,总功耗780 m W。