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    • 3. 发明授权
    • Method for electrically characterizing the insulator in SOI devices
    • 用于在SOI器件中表征绝缘体的方法
    • US5519336A
    • 1996-05-21
    • US356041
    • 1994-12-06
    • Michael S. LiuCheisan J. YuePaul S. Fechner
    • Michael S. LiuCheisan J. YuePaul S. Fechner
    • G01R31/26G01R31/28H01L21/66G01R19/08
    • G01R31/2831G01R31/2648H01L22/14
    • A rapid method for determining electrical characteristics of SOI wafers whereby the silicon substrate acts as a gate and tungsten probes make a source and drain connection at the top silicon surface to form a point contact transistor. Drain current is measured as a function of gate voltage as gate voltage is swept from negative to positive values. The subthreshold voltage current characteristic exhibits a minimum drain current occurring close to zero gate voltage. The tungsten probe point contacts apparently are responding to both electron and hole conduction or simply intrinsic CMOS behavior. Using current voltage characteristics, estimates may be made of interface state density and oxide charge density. Analysis of the gate voltage shift for minimum drain current allows determination of threshold voltage shift due to radiation.
    • 用于确定SOI晶片的电特性的快速方法,其中硅衬底用作栅极和钨探针,在顶部硅表面处形成源极和漏极连接,以形成点接触晶体管。 当栅极电压从负值扫描到正值时,将漏极电流作为栅极电压的函数进行测量。 亚阈值电压电流特性表现出接近零栅极电压的最小漏极电流。 钨探针点接触显然是响应于电子和空穴传导或简单的本征CMOS行为。 使用电流电压特性,可以估计接口态密度和氧化物电荷密度。 分析最小漏极电流的栅极电压偏移允许确定由于辐射导致的阈值电压偏移。
    • 7. 发明授权
    • Rotary electric field intensity measuring device
    • 旋转电场强度测量装置
    • US4055798A
    • 1977-10-25
    • US662281
    • 1976-02-27
    • Giichiro Kato
    • Giichiro Kato
    • G01R19/08G01R29/12G01W1/16G01R5/28G01R31/02
    • G01R29/12
    • A rotary electric field intensity measuring device comprising a grounded housing, an amplifier mounted within said housing and electrically connected to an external recording device, an electric motor mounted within said housing and having an output shaft, said motor being adapted to be connected to an external power source, a rotary grounded shielding conical electrode means having a rotary shaft connected to said output shaft of the motor for rotation therewith and alternating voltage inducing means and a shielded stationary conical electrode means secured to said housing within said shielding rotary electrode means in spaced relationship to the latter and having alternating voltage inducing means in cooperation with said alternating voltage inducing means of the rotary electrode means.
    • 一种旋转电场强度测量装置,包括接地壳体,安装在所述壳体内并电连接到外部记录装置的放大器,安装在所述壳体内并具有输出轴的电动机,所述电动机适于连接到外部 电源,旋转接地屏蔽锥形电极装置,其具有连接到所述电动机的所述输出轴的旋转轴与其一起旋转的交流电压感生装置和屏蔽的固定的圆锥形电极装置,所述屏蔽固定的圆锥形电极装置以所述屏蔽旋转电极装置的间隔关系 并且具有与所述旋转电极装置的所述交流电压感应装置协作的交流电压感生装置。
    • 9. 发明授权
    • Laser light pulse monitoring system
    • 激光灯脉冲监测系统
    • US3761185A
    • 1973-09-25
    • US3761185D
    • 1970-12-18
    • TRW INC
    • BLACKWELL D
    • G01J1/42G01J1/10G01R19/08
    • G01J1/4257
    • The light output of a doubly pulsed laser is monitored by converting the two successive light pulses into corresponding electrical pulses and feeding the electrical pulses to a pair of parallel connected circuit channels. A first one of the circuit channels is conditioned to receive the first electrical pulse while a second one of the circuit channels is rendered immune to that pulse. The first electrical pulse charges a capacitor to a voltage proportional to the pulse amplitude and the voltage is displayed on a direct current voltmeter. The second circuit channel is conditioned to receive the second electrical pulse while the first circuit channel is rendered immune to that pulse. The second electrical pulse charges another capacitor to a voltage proportional to the pulse amplitude and the voltage is displayed on another meter. Both voltages are maintained for comparison with one another, after which the circuit channels may be reset to their initial condition for reception of the next set of electrical pulses.
    • 通过将两个连续的光脉冲转换成相应的电脉冲并将电脉冲馈送到一对并联的电路通道来监测双脉冲激光器的光输出。 电路通道中的第一个被调节以接收第一电脉冲,而电路通道中的第二个电路通道被免除该脉冲。 第一个电脉冲将电容器充电到与脉冲幅度成比例的电压,并且电压显示在直流电压表上。 第二电路通道被调节为接收第二电脉冲,同时使第一电路通道免于该脉冲。 第二个电脉冲将另一个电容器充电到与脉冲幅度成比例的电压,并且电压显示在另一个仪表上。 维持两个电压以便彼此比较,之后电路通道可以被重置到其初始状态以接收下一组电脉冲。