Practice Conclusion (1.9) - Introduction to Low Power Circuit Design with CMOS and FinFETs
Students

Academic Programs

AI-powered learning for grades 8-12, aligned with major curricula

Professional

Professional Courses

Industry-relevant training in Business, Technology, and Design

Games

Interactive Games

Fun games to boost memory, math, typing, and English skills

Conclusion

Practice - Conclusion

Enroll to start learning

You’ve not yet enrolled in this course. Please enroll for free to listen to audio lessons, classroom podcasts and take practice test.

Learning

Practice Questions

Test your understanding with targeted questions

Question 1 Easy

What does CMOS stand for?

💡 Hint: Think about complementary pairs.

Question 2 Easy

Name one technique used for reducing power in CMOS designs.

💡 Hint: It involves lowering a certain electrical parameter.

4 more questions available

Interactive Quizzes

Quick quizzes to reinforce your learning

Question 1

Which of the following is a source of static power dissipation?

Voltage supply fluctuation
Subthreshold leakage current
You're GND

💡 Hint: This current flows even when the device is 'off'.

Question 2

True or False: Dynamic power increases with the frequency of operation.

True
False

💡 Hint: More switching means more power consumption.

1 more question available

Challenge Problems

Push your limits with advanced challenges

Challenge 1 Hard

Design a hypothetical low-power module incorporating both CMOS and FinFET technologies. Outline your strategies for managing power consumption effectively.

💡 Hint: Think about where you can balance efficiency and expenses.

Challenge 2 Hard

Evaluate the impact of switching frequency on both dynamic and static power dissipation in a given circuit design. What recommendations would you make based on your findings?

💡 Hint: Focus on the relationship between switching frequency and power.

Get performance evaluation

Reference links

Supplementary resources to enhance your learning experience.