针对传统N通道滤波器存在增益以及时钟的偶次谐波对滤波性能产生不利影响的问题,利用增益提高技术和差分时钟技术提出了一种增益提高型、时钟偶次谐波消除的N通道带通滤波器。在TSMC 90 nm工艺参数和1.2 V电源电压下对其进行Spectre模...针对传统N通道滤波器存在增益以及时钟的偶次谐波对滤波性能产生不利影响的问题,利用增益提高技术和差分时钟技术提出了一种增益提高型、时钟偶次谐波消除的N通道带通滤波器。在TSMC 90 nm工艺参数和1.2 V电源电压下对其进行Spectre模拟。结果表明,滤波器的增益高于9.8 d B,中心频率可调范围为0.2~2.2 GHz,S11>10 d B,IIP3>11 d B,阻带抑制为26 d B。电路结构简单,仅由反向器、开关和电容组成,且易于集成。展开更多
This paper proposes third order tunable bandwidth active Switched-Capacitor filter. The circuit consists of only op-amps and switched capacitors. The circuit is designed for circuit merit factor Q = 10. The proposed c...This paper proposes third order tunable bandwidth active Switched-Capacitor filter. The circuit consists of only op-amps and switched capacitors. The circuit is designed for circuit merit factor Q = 10. The proposed circuit implements three filter functions low pass, band pass and high pass simultaneously in single circuit. The filter circuit can be used for both narrow as well as for wide bandwidth. For various values of cut-off frequencies the behaviour of circuit is studied. The circuit works properly only for higher central frequencies, when f0 > 10 kHz.展开更多
通过在微带开口谐振环加载数字可调电容,设计了一种新颖数字微带可调滤波器,同时提出了新型的非均匀开口谐振环混合耦合结构,使谐振器间耦合系数随谐振频率的降低而增大,实现恒定绝对带宽可调滤波器。接着对所提出的基于5 bit数字可调...通过在微带开口谐振环加载数字可调电容,设计了一种新颖数字微带可调滤波器,同时提出了新型的非均匀开口谐振环混合耦合结构,使谐振器间耦合系数随谐振频率的降低而增大,实现恒定绝对带宽可调滤波器。接着对所提出的基于5 bit数字可调电容的数字可调微带滤波器进行了仿真和制作,测试表明,其通带中心频率可实现374~747 MHz可调,-3 d B绝对带宽在44~67 MHz之间变化,OIP3大于50 d Bm。展开更多
This paper presents a novel microstrip feedline structure to introduce an extra and controllable transmission zero(TZ)with high rejection for a narrowband filter. This structure loads a reconfigurable capacitor at t...This paper presents a novel microstrip feedline structure to introduce an extra and controllable transmission zero(TZ)with high rejection for a narrowband filter. This structure loads a reconfigurable capacitor at the end of the input feedline without changing the main structure of the filter. The capacitor is recognized by a 2-bit inter-digital capacitor array. The asymmetrical microstrip feedline structure is suitable for multiple-pole filter designs. A low-loss six-pole high-temperature superconducting bandpass filter with a reconfigurable TZ is designed and fabricated. The center frequency of the filter is 5.22 GHz with TZ at the lower stopband. The TZ can be tuned among four different states. The out-of-band rejection at the TZ frequency is higher than 90 d B, and the insertion loss is lower than 0.92 d B. The measured results are consistent with the simulations.展开更多
文摘针对传统N通道滤波器存在增益以及时钟的偶次谐波对滤波性能产生不利影响的问题,利用增益提高技术和差分时钟技术提出了一种增益提高型、时钟偶次谐波消除的N通道带通滤波器。在TSMC 90 nm工艺参数和1.2 V电源电压下对其进行Spectre模拟。结果表明,滤波器的增益高于9.8 d B,中心频率可调范围为0.2~2.2 GHz,S11>10 d B,IIP3>11 d B,阻带抑制为26 d B。电路结构简单,仅由反向器、开关和电容组成,且易于集成。
文摘This paper proposes third order tunable bandwidth active Switched-Capacitor filter. The circuit consists of only op-amps and switched capacitors. The circuit is designed for circuit merit factor Q = 10. The proposed circuit implements three filter functions low pass, band pass and high pass simultaneously in single circuit. The filter circuit can be used for both narrow as well as for wide bandwidth. For various values of cut-off frequencies the behaviour of circuit is studied. The circuit works properly only for higher central frequencies, when f0 > 10 kHz.
文摘通过在微带开口谐振环加载数字可调电容,设计了一种新颖数字微带可调滤波器,同时提出了新型的非均匀开口谐振环混合耦合结构,使谐振器间耦合系数随谐振频率的降低而增大,实现恒定绝对带宽可调滤波器。接着对所提出的基于5 bit数字可调电容的数字可调微带滤波器进行了仿真和制作,测试表明,其通带中心频率可实现374~747 MHz可调,-3 d B绝对带宽在44~67 MHz之间变化,OIP3大于50 d Bm。
基金Project supported by the National Natural Science Foundation of China(Grant No.61371009)the Chinese Ministry of Science and Technology(Grant No.2014AA032703)
文摘This paper presents a novel microstrip feedline structure to introduce an extra and controllable transmission zero(TZ)with high rejection for a narrowband filter. This structure loads a reconfigurable capacitor at the end of the input feedline without changing the main structure of the filter. The capacitor is recognized by a 2-bit inter-digital capacitor array. The asymmetrical microstrip feedline structure is suitable for multiple-pole filter designs. A low-loss six-pole high-temperature superconducting bandpass filter with a reconfigurable TZ is designed and fabricated. The center frequency of the filter is 5.22 GHz with TZ at the lower stopband. The TZ can be tuned among four different states. The out-of-band rejection at the TZ frequency is higher than 90 d B, and the insertion loss is lower than 0.92 d B. The measured results are consistent with the simulations.