← 返回 JSSC 论文列表JSSC 2015第8期Analog Circuits40nmOp-Amp
A 40 nm CMOS Derivative-Free IF Active-RC BPF With Programmable Bandwidth and Ce
40纳米CMOS工艺下实现的可编程带宽带通滤波器,采用新型零电容扩展技术
85-225 MHz中心频率,5%-40%带宽比,31 dBm IIP3,33 mA@1.5V
带通滤波器CMOS可编程带宽零电容扩展频率补偿
▸创新点1:零电容扩展技术(ZCS),通过设计实现零电容扩展,显著减少了电容器的数量和面积,降低了制造成本和功耗,同时提高了滤波器的稳定性和性能。
▸创新点2:积分器频率补偿(IFC),结合ZCS技术,有效补偿了积分器的频率响应,提高了滤波器的频率选择性和整体性能,特别是在高频段的表现。
▸创新点3:电流复用分路前馈补偿(FFC),采用电流复用和分路前馈补偿技术,优化了运算放大器的带宽和功耗,显著降低了整体电路的功耗,同时保持了高性能。
▸创新点4:数字可编程带宽和中心频率,通过数字控制实现带宽和中心频率的灵活调节,适应不同应用场景的需求,提高了滤波器的适用性和灵活性。
Abstract
An 8th-order Cheybshev-II ladder active-RC BPF
was fabricated in a 40 nm CMOS low-leakage digital process.
A new technique to design for zero capacitance spread (ZCS) is
reported to enable the applicati on of integrator frequency com-
pensation (IFC). Combined wit h wideband op-amps employing
a current-reusing, split-path f eed-forward compensation (FFC)
technique, significant power s avings is achieved in a standard
40 nm CMOS process. The BPF measures a center frequency (CF)
of 85–225 MHz and f