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    • 1. 发明授权
    • Method of fabricating charge coupled device
    • 制造电荷耦合器件的方法
    • US5607872A
    • 1997-03-04
    • US477299
    • 1995-06-06
    • Jae H. Jeong
    • Jae H. Jeong
    • H01L29/762H01L21/339H01L27/148H01L29/423H01L21/265H01L21/70H01L27/00
    • H01L29/42396H01L27/14831
    • Charge couples devices and methods for the fabrication of the same are disclosed.The charge coupled device is structured to comprise: a first electrode consisting of a first region and second region having lower resistance than the first region; and a second electrode consisting a first region and a second region having lower resistance than this first region, the first region of the first electrode being adjacent to said first region of the second region at an interval of an insulating film.Capable of utilizing the force of electrical field, the charge coupled device is superior in charge transfer efficiency as well as charge transfer velocity.In addition, it has capability to improve the performances of high picture quality solid state image sensing device as well as time delay device, which both necessitate a charge coupled device and operates at high frequencies.Furthermore, a solid state image sensing device employing the charge coupled device is not degraded in a dark state of generating a few number of pulse charges.
    • 公开了用于其制造的电荷耦合器件和方法。 电荷耦合器件被构造成包括:由第一区域和第二区域组成的第一电极,其具有比第一区域低的电阻; 以及第二电极,其包括具有比该第一区域低的电阻的第一区域和第二区域,第一电极的第一区域以绝缘膜的间隔与第二区域的所述第一区域相邻。 能够利用电场的力,电荷耦合器件的电荷转移效率以及电荷转移速度是优异的。 另外,它具有提高高质量固态图像感测装置的性能以及时间延迟器件的能力,这两者都需要电荷耦合器件并在高频下工作。 此外,在产生少量脉冲电荷的黑暗状态下,采用电荷耦合器件的固态图像感测装置不会劣化。
    • 2. 发明授权
    • Charge coupled device
    • 电荷耦合器件
    • US5442207A
    • 1995-08-15
    • US250757
    • 1994-05-26
    • Jae H. Jeong
    • Jae H. Jeong
    • H01L29/762H01L21/339H01L27/148H01L29/423H01L29/78
    • H01L29/42396H01L27/14831
    • A charge coupled device including a first electrode consisting of a first region and a second region having lower resistance than the first region, and a second electrode consisting of a first region and a second region having lower resistance than this first region. The first region of the first electrode is adjacent to the first region of the second region at an interval of an insulating film. Capable of utilizing the force of electrical field, the device is superior in charge transfer efficiency as well as charge transfer velocity. It also has the capability to improve the performances of high picture quality solid state image sensing devices and time delay devices, which both necessitate a charge coupled device and operate at high frequencies. Additionally, a solid state image sensing device employing this device is not degraded in a dark state by generating a few pulse charges.
    • 一种电荷耦合器件,包括由第一区域和第二区域构成的第一电极,第一区域和第二区域具有比第一区域低的电阻,第二电极由第一区域和第二区域组成,该第二区域具有比该第一区域低的电阻。 第一电极的第一区域以绝缘膜的间隔与第二区域的第一区域相邻。 能够利用电场的力,该装置的电荷转移效率以及电荷转移速度是优异的。 它还具有提高高画质固态摄像装置和延时装置性能的能力,这两者都需要电荷耦合器件并在高频下工作。 此外,采用该装置的固态图像感测装置在黑暗状态下不会通过产生几个脉冲电荷而劣化。
    • 3. 发明授权
    • Motor control system and method for a fuel burner
    • 燃油机控制系统及方法
    • US5325037A
    • 1994-06-28
    • US913765
    • 1992-06-30
    • Jae H. Jeong
    • Jae H. Jeong
    • F23N3/08G05F1/66G05F5/02
    • F23N3/082G05F1/66F23N2023/08F23N2023/20F23N2033/08
    • A motor control system for a fuel burner comprises a microprocessor and a voltage fluctuation compensating portion provided with a bridge circuit for rectifying the current of a power source, a portion for generating a comparison signal having a delay time corresponding to the voltage fluctuation of the rectified signal from the bridge circuit and a portion for generating a zero-crossing signal from the voltage signal of the bridge circuit, whereby a microprocessor determines whether a power voltage applied to the system is higher or lower than a normal voltage. The microprocessor generates a compensating signal programmed to equalize the fluctuation power to the reference power and a controller controls the power to be applied to a load according to the compensating signal.
    • 一种用于燃料燃烧器的电动机控制系统包括微处理器和电压波动补偿部分,该电压波动补偿部分设置有用于整流电源电流的桥接电路,用于产生具有与整流的电压波动相对应的延迟时间的比较信号的部分 来自桥接电路的信号和用于从桥接电路的电压信号产生过零信号的部分,由此微处理器确定施加到系统的电源电压是高于还是低于正常电压。 微处理器产生一个编程的补偿信号,以将波动功率与参考功率相等,并且控制器根据补偿信号控制施加到负载的功率。