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This valuable monograph offers a complete of 7 prototypes: double-sampled S/H circuits, a time-interleaved ADC, an IF-sampling self-calibrated pipelined ADC, a present guidance DAC with a deglitcher, and pipelined ADCs utilising the SO recommendations.
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Extra resources for Circuit techniques for low-voltage and high-speed A/D converters
The lower bound of the frequency range over which gyrator-C is inductive is set by the output impedance of the transconductors. Cascode gyrator-C inductors lower the lower bound of the frequency without affecting both the effective inductance and self-resonant frequency. The quality factor of active inductors is mainly set by the parasitic series resistance of the inductors and can be improved by increasing the output impedance or the transconductance of the transconductors. The noise of gyrator-C active inductors is proportional to the noise of the transconductors.
11 compare the Monte Carlo simulation results of the output current with and without the balancing network. It should be noted that the balancing network approach consumes additional power and silicon area. 9. 2,5 Balancing network for mismatch compensation of current amplifiers. Power Reduction Techniques One of the drawbacks of current-mirror amplifiers is their high static power consumption, arising mainly from the large biasing current of the output branch. 12 with Jc = 0. The output current is given by io = AiA2iin and the biasing current of the output branch is given by J2 = A1A2J1.
14- Basic current amplifier with resistor series peaking. 15. Simulated frequency response of current amplifier with resistor series peaking. 375 kQ. 18)LAm CMOS technology. Inductor Series Peaking The thermal noise of the series peaking resistor increases the total noise of the amplifier. For low-noise apphcations, such as the frontend of Gb/s transceivers and optical pre-amplifiers, noiseless elements, such as inductors, are preferred over noisy resistors for bandwidth enhancement. It has been demonstrated that inductor shunt peaking can increase the bandwidth of voltage-mode circuits by as much as 70% [47, 48].