EE220 2024 Noise Analysis and Simulation
- Instructions: This activity is structured as a tutorial with an activity at the end. Should you have any questions, clarifications, or issues, please contact your instructor as soon as possible.
- At the end of this activity, the student should be able to:
- Perform noise simulations using Cadence Spectre using the GlobalFoundries 22nm FDSOI design kit.
Activity 1: NMOS Noise
Bias a 0.8V SLVT NMOS transistor with and . For a width of and a length of :
- What is the resulting DC drain current?
- What is the transistor's and ?
Run a noise analysis from to .
- Plot the drain current noise power spectral density, .
- Identify the regions where thermal noise and flicker noise dominates.
- What is the flicker noise corner?
- Estimate the value of .
- Estimate the value of
- What is the total integrated drain current noise power?
Recall that the MOSFET drain current noise can be modeled as:
Change the length of the transistor to and . Identify and explain any changes in the drain current noise power spectral density.
Activity 2: PMOS Noise
Repeat Activity 1 but with a 0.8V SLVT PMOS transistor with the same size and with and .
Activity 3: Cascode Amplifier Noise Analysis
Consider the cascoded NMOS amplifier (biased with an ideal current source) shown in Fig. 1. Ignoring all other capacitances except , and given the small-signal parameters , , and :
- Calculate the small-signal gain of the cascode amplifier, . Assume and .
- Calculate the noise spectral density, , and the total integrated output noise, . Assuming that and , and that the flicker noise is zero.
- Repeat (2) but with finite and . How does this affect the output noise?
Activity 4: Input-Referred Noise
Given the gate-source capacitance, , of transistor of the cascode amplifier in Fig. 1, calculate:
- The input equivalent voltage noise generator, .
- The input equivalent current noise generator, .
Note that when calculating the output noise, you can assume that and , but when calculating the gains, assume finite and .
Report Guide
Write up a report (maximum of 5 pages including figures) answering the questions above. Include annotated graphs if needed.