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Sony Corp. Kanagawa Jpn | 論文
- Derivation of Analytical Solution for Confocal Push-Pull Signals and Improved Confocal Push-Pull Detection Method Using Signal Processing
- Analysis of Confocal Push-Pull Detection of Tracking-error Signalsof Optical Disk Player
- A Monolithic Confocal Laser Coupler For an Optical Pick-up
- A Pit-edge Detection Method for Tracking-error Signals Using a Monolithic Confocal Laser Coupler
- Development of New a-Si/c-Si Heterojunction Solar Cells: ACJ-HIT (Artificially Constructed Junction-Heterojunction with Intrinsic Thin-Layer)
- Selective patterning of organic light-emitting diodes by physical vapor deposition of photosensitive materials (Special issue: Solid state devices and materials)
- Improved Characteristics of p^+-n Junctions formed by Excimer Laser Annealing with Low Temperature Pre-Annealing
- Determination of Detection Efficiency Curve for a Gas Monitor with a Built-in Germanium Detector
- Determination of Gamma-ray Efficiency Cruves for Volume Samples by the Combination of Monte Carlo Simulations and Point Source Calibration
- Nano-Fabrication on GaAs Surface by Resist Process with Scanning Tunneling Microscope Lithography ( Scanning Tunneling Microscopy)
- 0.13μm Metal-Oxide-Nitride-Oxide-Semiconductor Single Transistor Memory Cell with Separated Source Line
- Analysis of Carrier Traps in Si_3N_4N_4 in Oxide/Nitride/Oxide for Metal/Oxide/Nitride/Oxide/Silicon Nonvolatile Memory
- Development of Sub-Quarter-μm MONOS (metal/oxide/nitride/oxide/semiconductor)Type Memory Transistor
- Development of Sub-Quarter-μm MONOS Type Memory Transistor
- High-Quality p-Type μc-Si Films Prepared by the Solid Phase Crystallization Method
- Application of Pulse-Heating Method to Electroless Ni Alloy as a Thin-Film Resistor
- Low-Noise and Low-Operation Current AlGaAs Separated-Double-Heterostructure Lasers
- The Electronic Structure of One-Dimensional (1-D), 2-D, and 3-D Silicon Clusters
- Polymeric Film Deposition by Coevaporation of Polymerizable Monomer and Initiator
- Selective Patterning of Organic Light-Emitting Diodes by Physical Vapor Deposition of Photosensitive Materials