Master the principles and technologies behind modern display systems, from LCDs to emerging technologies like e-ink and electrowetting.
Master the principles and technologies behind modern display systems, from LCDs to emerging technologies like e-ink and electrowetting.
This course cannot be purchased separately - to access the complete learning experience, graded assignments, and earn certificates, you'll need to enroll in the full Active Optical Devices Specialization program. You can audit this specific course for free to explore the content, which includes access to course materials and lectures. This allows you to learn at your own pace without any financial commitment.
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English
What you'll learn
Understand basic principles of electroluminescent displays
Master fundamental concepts driving display operation
Analyze different display technologies and their applications
Design display systems for specific applications
Optimize display performance and characteristics
Skills you'll gain
This course includes:
1.9 Hours PreRecorded video
6 quizzes
Access on Mobile, Tablet, Desktop
FullTime access
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There are 3 modules in this course
This comprehensive course explores electronic display technologies, focusing on liquid crystals, electroluminescent displays, plasma displays, and emerging technologies like e-ink and electrowetting displays. Students learn about design principles, operational characteristics, and real-world applications. The curriculum covers fundamental concepts and practical considerations for selecting and implementing display technologies in various applications.
Liquid Crystal Displays
Module 1 · 3 Hours to complete
Electroluminescent Displays
Module 2 · 2 Hours to complete
E-ink, Electrowetting, & Plasma Displays
Module 3 · 2 Hours to complete
Fee Structure
Instructor
Professor
Juliet Gopinath is a faculty member at the University of Colorado Boulder, leading the Optics and Photonics Research Group. Her research focuses on various aspects of laser technology, including ultrafast and high-power continuous wave (cw) and pulsed lasers. Gopinath's work encompasses beam combining, mid-infrared sources and materials, and the spectroscopy of semiconductors and other novel materials. Current projects in her lab involve adaptive optics, mid-infrared lasers, and the generation and detection of orbital angular momentum of light. The applications of her research extend to sensors, communications, LIDAR systems, medical imaging, water purification, and environmental monitoring. She actively engages in interdisciplinary research that integrates optics and photonics with solid-state devices and nanotechnology, offering research opportunities for both undergraduate and graduate students.
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