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A 1 V 1.8 MHz CMOS switched-opamp SC filter with rail-to-rail output swing

机译:A 1 V 1.8 MHz CMOS切换op驱动器SC过滤器,带轨到轨输出摆动

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The switched-capacitor technique which implements analog functions in CMOS technology requires capacitors, switches, and opamps. Supply voltage reduction does not affect capacitors. On the other hand, turning MOS switches on and off and maintaining proper opamp operation are difficult with reduced supply voltage. Reducing the supply voltage reduces MOS switch overdrive so complementary switches are not effective. Three solutions have been proposed: low-threshold devices, on-chip voltage multipliers, and switched-opamps. Technologies with low-threshold devices are costly. On-chip voltage multiplication is not possible in scaled-down technologies where devices cannot sustain the multiplied voltage. Switched opamps have the potential to solve the problem by eliminating critical switches in series with opamp output nodes and realizing their function by turning the opamp on and off. The authors present the structure of a prototype biquad band-pass filter (with fo/fs=0.25 and Q=7) implemented in 0.5 /spl mu/m CMOS technology. The area is about 0.15 mm/sup 2/ and the unit capacitance is 0.25 pF. The filter consumes about 160 /spl mu/W.
机译:实现CMOS技术中模拟功能的开关电容技术需要电容器,开关和opamps。电源降压不影响电容器。另一方面,随着电源电压的降低,难以打开和关闭MOS开关并保持适当的OPAMP操作。降低电源电压可减少MOS开关过驱动,因此互补开关无效。已经提出了三种解决方案:低阈值设备,片上电压倍增器和切换opamps。具有低阈值设备的技术昂贵。在缩小技术中不可能在缩小技术中不可能实现片上电压倍增。切换的opamps通过消除与opamp输出节点的串联串联的临界开关来解决问题,并通过打开和关闭opamp来实现其功能。作者呈现了在0.5 / SPL MU / M CMOS技术中实现的原型等频带过滤器(具有FO / FS = 0.25和Q = 7)的结构。该面积约为0.15毫米/ sup 2 /,单位电容为0.25pf。过滤器消耗约160 / SPL MU / W.

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