Design of Analog CMOS Integrated Circuits¶
Razavi, B. (2017). Design of Analog CMOS Integrated Circuits. McGraw-Hill.
Cited by¶
1 citation across 1 artifact.
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Primes¶
- Threshold
- Conflating natural thresholds with regulatory definitions produces confusion about precision and transportability—exactly the natural-vs-engineered distinction Razavi (2017) draws explicit in his analysis of Schmitt-trigger hysteresis, where the upper and lower switching thresholds are deliberate design choices that shape, but are not identical to, the underlying transistor switching point.
This sourceCanonical analog-CMOS textbook: analyzes the Schmitt trigger and hysteresis, showing how upper and lower switching thresholds are deliberate design choices that shape but are not identical to the underlying transistor switching point, illustrating the natural-vs-engineered threshold distinction.
- Conflating natural thresholds with regulatory definitions produces confusion about precision and transportability—exactly the natural-vs-engineered distinction Razavi (2017) draws explicit in his analysis of Schmitt-trigger hysteresis, where the upper and lower switching thresholds are deliberate design choices that shape, but are not identical to, the underlying transistor switching point.
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