Advancements in Transistors, Wireless Charging, and MicroLED Displays

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This Microelectronics TOE profiles developments in transistors, wireless charging, and microLED displays. Innovations include hardware accelerator for neuromorphic computing, wireless charging for autonomous vehicles, microLED fabrication using advanced laser transfer technology, near-threshold voltage transistor ICs using ultra-low power technology, and low-power microcontroller units for IoT applications.

The Microelectronics TechVision Opportunity Engine (TOE) captures global electronics-related innovations and developments on a weekly basis. Developments are centred on electronics attributed by low power and cost, smaller size, better viewing, display and interface facilities, wireless connectivity, higher memory capacity, flexibility and wearables. Research focus themes include small footprint lightweight devices (CNTs, graphene), smart monitoring and control (touch and haptics), energy efficiency (LEDs, OLEDs, power and thermal management, energy harvesting), and high speed and improved conductivity devices (SiC, GaN, GaAs).

Miniaturization, a move toward lower power consumption, and the need for enhanced features are driving innovations in the electronics sector. Technology focus areas include semiconductor manufacturing and design, flexible electronics, 3D integration/IC, MEMS and NEMS, solid state lighting, advanced displays, nanoelectronics, wearable electronics, brain computer interface, advanced displays, near field communication, and next generation data storage or memory.

Keywords: Transistors, wireless charging, MicroLED, displays, neuromorphic computing, autonomous vehicles, fabrication, microcontroller, IoT

Table of Contents

Advancements in Transistors, Wireless Charging, and MicroLED DisplaysInnovations in Transistors, Wireless Charging, and MicroLED DisplaysHardware Accelerator for Neuromorphic ComputingWireless Charging for Autonomous Vehicles MicroLED Fabrication Using Advanced Laser Transfer TechnologyNear-threshold Voltage Transistor ICs Using Ultra-low Power Technology Low-power Microcontroller Units for IoT ApplicationsIndustry Contacts




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