115 results on '"Okandan M"'
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2. Suitable Silicon Solar Cell Technologies for Use in Space Applications
3. Nonhermetic encapsulation materials for MEMS-based movable microelectrodes for long-term implantation in the brain
4. Portable Stimulator Design Aimed at Differentiating Facial Nerves from Normal Tissues
5. Next Generation Photovoltaic Technologies For High-Performance Remote Power Generation (Final Report)
6. Fault localization and failure modes in microsystems-enabled photovoltaic devices
7. Flat Plate Concentrators with Large Acceptance Angle Enabled by Microcells and Mini Lenses: Performance Evaluation
8. Ultrathin and Flexible Single Crystal Silicon Mini-Modules
9. Microscale PV Cells for Concentrated PV Applications
10. Fault localization and failure modes in microsystems-enabled photovoltaic devices
11. Advanced Compound Semiconductor and Silicon Fabrication Techniques for Next-Generation Solar Power Systems
12. Substrate-modified scattering properties of silicon nanostructures for solar energy applications
13. Light Trapping Using Silicon Nanostructures For Solar Cells
14. FLIP-CHIP BASED PACKAGING FOR LINEAR RATCHETING MICROACTUATORS ENABLES 3D STACKS OF MOVEBLE MICROELECTRODES FOR THE BRAIN
15. Photo-Voltaic System Using Micro-Optics
16. Radial bulk-mode vibrations in a gate-all-around silicon nanowire transistor
17. Gate-all-arround single-crystalline silicon nanowire optical sensor
18. Micro-optics for high-efficiency optical performance and simplified tracking for concentrated photovoltaics (CPV)
19. Back-contacted and small form factor GaAs solar cell
20. Thin and small form factor cells: Simulated behavior
21. SOI-enabled MEMS processes lead to novel mechanical, optical, and atomic physics devices
22. Micromachined Accelerometers With Optical Interferometric Read-Out and Integrated Electrostatic Actuation
23. Surface and Bulk-Silicon-Micromachined Optical Displacement Sensor Fabricated With the SwIFT-Lite™ Process
24. Recent advancements in the gas-phase MicroChemLab
25. Micro-analytical systems for national security applications
26. Integrated FET-Polysilicon Micromachining Process for Optical MEMS
27. Electrostatic Microactuators for Precise Positioning of Neural Microelectrodes
28. Novel Microsystem Applications with New Techniques in Low-Temperature Co-Fired Ceramics
29. An Array of Microactuated Microelectrodes for Monitoring Single-Neuronal Activity in Rodents
30. Micromachined Platforms for Microscopic Measurements
31. Optimal cell connections for improved shading, reliability, and spectral performance of microsystem enabled photovoltaic (MEPV) modules.
32. Microscale c-Si (c)PV cells for low-cost power.
33. LTCC in microelectronics, microsystems, and sensors.
34. Optical Microphone Structures Fabricated for Broad Bandwidth and Low Noise.
35. Integrated Microsystems for Microfluidics/BioMEMS: Cellular Sample Handling and Analysis
36. Diagnosing mitral and tricuspid stenosis with the help of artificial neural networks built on the fast Fourier transformation sonogram.
37. Wearout, Quasi Breakdown, and Annealing of Ultrathin Dielectrics Impact on Complementary Metal Oxide Semiconductor Performance and Reliability
38. Cyclic current-voltage characterization applied to edge damage evaluation in gate definition plasma etching
39. Soft-breakdown damage in MOSFET's due to high-density plasma etching exposure
40. Impact of polysilicon dry etching on 0.5 /spl mu/m NMOS transistor performance: the presence of both plasma bombardment damage and plasma charging damage
41. Assessing Processing Induced Darnage Using Cyclic I-V Analysis.
42. Recent advancements in the gas-phase MicroChemLab.
43. Sphincter muscle stimulator to be used before treating anal atresia.
44. High Speed (GHz), Ultra-High Pressure (GPA) Sensor Array Fabricated in Integrated CMOS+MEMS Process.
45. Long-term cortical recordings with microactuated microelectrodes.
46. Ultrathin Flexible Crystalline Silicon: Microsystems-Enabled Photovoltaics
47. BioMEMS and microfluidics applications of surface micromachining technology.
48. Analysis of evolution to and beyond quasi-breakdown in ultra-thin oxide and oxynitride.
49. Analysis of evolution to and beyond quasi-breakdown in ultra-thin oxide and oxynitride.
50. Observation of Electrolurninescence and "Soft-breakdown" Effects in Sub-0.5/spl mu/m CMOS with Ultrathin Gate Oxides.
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