• Principle and method for designing high voltage thin film SOI devices with linearly doped drift region are given.

    给出漂移为线性掺杂高压薄膜soi器件设计原理方法

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  • Several methods manufacturing the SOI(simulator on silicon) materials are described and the main application fields of SOI devices are presented.

    介绍SOI材料几种制备技术SOI材料的主要应用领域

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  • If we select substrate temperature, laser power and the scan speed properly, we can get good crystallization. It is useful to the fabrication of SOI devices.

    适当选择衬底温度激光功率扫描速度可望获得良好结晶SO I器件制作有意义的。

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  • The dependence of breakdown voltages of the thin film SOI devices on the concentration gradient in the linearly doped drift region is experimentally investigated for the first time.

    首次薄膜SOI功率器件击穿电压与线性掺杂漂移区的杂质浓度梯度的关系进行了实验研究。

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  • It is confirmed in this work that SOI technology has a bright future in the area of development and production of semiconductor circuits and devices.

    肯定SOI结构半导体电路器件研制生产具有重要发展前景

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  • This dynamic body discharge technique eliminates body potential mismatches of PD SOI CMOS devices, achieving repeatable low threshold voltage and fast SRAM access time.

    这种动态放电方法有效地解决了部分耗尽SOICMOS器件电位不匹配的问题,得到可重复性阈值电压,提高了SRAM的读取速度。

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  • Also, the PSD device structures based on SOI technology were suggested in order to improve the response speed of sensitive devices.

    同时提高器件响应速度提出基于SOI技术PS D器件结构

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  • Silicon-on-insulator (abbreviated as SOI) optical waveguide is the base of silicon-based optical waveguide devices and other integrated optical devices.

    SOI波导硅基光波导器件基础,也是实现其它集成光学器件的基础。

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  • Silicon-on-insulator (abbreviated as SOI) optical waveguide is the base of silicon-based optical waveguide devices and other integrated optical devices.

    SOI波导硅基光波导器件基础,也是实现其它集成光学器件的基础。

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