提出了一种可切换固定带宽的可调频率带通滤波器新结构,且实现了在带宽切换前后都能保持固定带宽的特性。基于谐振线间的耦合系数提取算法,参考滤波器综合理论,设计并加工了工作频段为1.3~1.45 GHz的开环微带谐振可切换带宽的可调频率...提出了一种可切换固定带宽的可调频率带通滤波器新结构,且实现了在带宽切换前后都能保持固定带宽的特性。基于谐振线间的耦合系数提取算法,参考滤波器综合理论,设计并加工了工作频段为1.3~1.45 GHz的开环微带谐振可切换带宽的可调频率带通滤波器。测试结果表明,在整个工作频段内,3 d B带宽在切换前后分别为120 MHz、100 MHz和80 MHz,对应的插入损耗各是-2.9 d B、-2.4 d B、-2.6 d B,测试结果与仿真结果吻合良好。该滤波器具有结构简单、加工难度低、体积小、馈电控制简单等优点。展开更多
A low cost of die area and power consumption CMOS image sensor readout circuit with fixed pattern noise(FPN) cancellation is proposed.By using only one coupling capacitor and switch in the double FPN cancelling correl...A low cost of die area and power consumption CMOS image sensor readout circuit with fixed pattern noise(FPN) cancellation is proposed.By using only one coupling capacitor and switch in the double FPN cancelling correlative double sampling(CDS),pixel FPN is cancelled and column FPN is stored and eliminated by the sampleand-hold operation of digitally programmable gain amplifier(DPGA).The bandwidth balance technology based on operational amplifier(op-amp) sharing is also introduced to decrease the power dissi...展开更多
文摘提出了一种可切换固定带宽的可调频率带通滤波器新结构,且实现了在带宽切换前后都能保持固定带宽的特性。基于谐振线间的耦合系数提取算法,参考滤波器综合理论,设计并加工了工作频段为1.3~1.45 GHz的开环微带谐振可切换带宽的可调频率带通滤波器。测试结果表明,在整个工作频段内,3 d B带宽在切换前后分别为120 MHz、100 MHz和80 MHz,对应的插入损耗各是-2.9 d B、-2.4 d B、-2.6 d B,测试结果与仿真结果吻合良好。该滤波器具有结构简单、加工难度低、体积小、馈电控制简单等优点。
基金Supported by National Natural Science Foundation of China (No.60806010,No.60976030)Tianjin Innovation Special Funds for Science and Technology (No.05FZZDGX00200)
文摘A low cost of die area and power consumption CMOS image sensor readout circuit with fixed pattern noise(FPN) cancellation is proposed.By using only one coupling capacitor and switch in the double FPN cancelling correlative double sampling(CDS),pixel FPN is cancelled and column FPN is stored and eliminated by the sampleand-hold operation of digitally programmable gain amplifier(DPGA).The bandwidth balance technology based on operational amplifier(op-amp) sharing is also introduced to decrease the power dissi...