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2019/04/01
Spotlight-One-lens camera using a biologically based artificial compound eye with multiple focal lengths
2019/03/09
Spotlight-Powerful LED-Based Train Headlight Optimized for Energy Savings
2018/03/01
Spotlight-SolarDrone (NTU), Allowing Drones to Explore Unexplored Frontiers Launches at CES 2018
2017/02/22
Spotlight-Nobel Laureate Lectures on Solid-State Lighting
2015/11/13
Spotlight-Nature Photonics
 
研究概況-實驗室
Professor Name Education Link
  Chee-Wee Liu Ph.D., Princeton Univ., U.S.A. Profile | Publication | Website | Laboratory
Number
Laboratory Advanced Silicon Device and Process Lab
Leader Chee-Wee Liu
Room R434, EE BuildingⅡ
TEL +886-2-33663700 ext.434
Website http://cc.ee.ntu.edu.tw/~cliu/

Advanced Silicon Device and Process Lab
(前瞻性矽元件與製程實驗室) :
The research in Prof. Chee Wee Liu’s group is based on the SiGe:C and strained Si/high-/metal gate, including

(1) CMOS and Bipolar circuit design using (strained) Si CMOS and Si/SiGe:C HBTs;

(2) device modeling and simulation on Strained Si/Ge FET, HBT, and optoelectronics devices;

(3) CMOS optoelectronics with detector, emitter and waveguide;

(4) material technologies such as SOI, GeOI, SSDOI, smart-cut, buckling quantum wells, nano-mechanics, and strained-SiGe:C; and

(5) the rapid thermal processors for RTA, RTO, RTCVD, and wafer bonding;

(6) Reliability modeling of poly-Si TFTs;

(7) Si Thin-film solar cells. The strained-Si/high-/metal gate is intentionally to bypass the red brick wall on the ITRS roadmap, but the novel applications such as optoelectronics application are also focused. To lower the cost of strained-Si technology, special local strain (process strain) technologies are being developed with calibrated process simulation.

1.EL/PL measurement system
2.Solar cell spectral response measurement system
3.Solar cell efficiency measurement system
4.FTIR measurement system
5.IV/CV measurement system
6.AFM measurement system
   
Function generator Keithley 2430
   
Pre Amplifier SR830 SR830 lock-in Amp
   
   
   
   

 

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