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    • 1. 发明授权
    • Light emitting device and process for producing the same
    • 发光装置及其制造方法
    • US06806505B2
    • 2004-10-19
    • US10180827
    • 2002-06-26
    • Shigeru KojimaKatsuya ShiraiYoshifumi MoriAtsushi Toda
    • Shigeru KojimaKatsuya ShiraiYoshifumi MoriAtsushi Toda
    • H01L2967
    • H01L33/08H01L33/18H01L33/26H01L51/5203H01S5/32341
    • There is provided a light emitting device and a process for producing the same in that the light emission efficiency is high, the range of selection of the material is broad, and a device array of a large area can be formed. On a substrate 11 comprising quartz glass, an n-type clad layer 12 comprising a non-single crystal body of n-type AlGaN, a light emitting layer 13 containing plural microcrystals 13a comprising ZnO, and a p-type clad layer 14 comprising a non-single crystal body of p-type BN are laminated in this order. Between the n-type clad layer 12 and the p-type clad layer 14, an insulating layer 15 is formed to fill the gap among the microcrystals 13a to prevent a leaking electric current. The insulating layer 15 is formed by oxidizing the surface of the n-type clad layer 12. Because the light emitting layer 13 contains the plural microcrystals 13a having an increased crystallinity, the light emission efficiency is increased, the range of selection of the materials of the light emitting layer 13, the n-type clad layer 12, the p-type clad layer 14 and the substrate 11 is broadened, and a device array of a large area can be formed.
    • 提供了一种发光器件及其制造方法,其发光效率高,材料选择范围宽,可以形成大面积的器件阵列。 在包括石英玻璃的衬底11上,包括n型AlGaN的非单晶体的n型覆盖层12,包含多个包含ZnO的微晶体13a的发光层13和包含ZnO的p型覆盖层14 依次层叠p型BN的非单晶体。 在n型覆盖层12和p型覆盖层14之间形成绝缘层15,以填充微晶13a之间的间隙,以防止漏电。 绝缘层15通过氧化n型覆盖层12的表面而形成。由于发光层13含有具有增加的结晶度的多个微晶13a,所以发光效率提高,材料的选择范围 发光层13,n型覆盖层12,p型覆盖层14和基板11变宽,可以形成大面积的元件阵列。
    • 2. 发明授权
    • Light emitting device, production method thereof, and light emitting apparatus and display unit using the same
    • 发光装置及其制造方法以及使用该发光装置的发光装置及显示装置
    • US06639354B1
    • 2003-10-28
    • US09621656
    • 2000-07-21
    • Shigeru KojimaKatsuya ShiraiYoshifumi MoriAtsushi Toda
    • Shigeru KojimaKatsuya ShiraiYoshifumi MoriAtsushi Toda
    • H05B3300
    • H01L33/20H01L33/08H01L33/28
    • An n-type cladding layer formed of a non-single crystal body of n-type AlGaN, a light emitting layer containing a plurality of micro-crystals made from ZnO, and a p-type cladding layer formed of a non-single crystal body of p-type BN are sequentially stacked on a substrate made from quartz glass. An insulating layer is formed between the n-type cladding layer and the p-type cladding layer in such a manner as to bury spaces between the micro-crystals, to thereby prevent occurrence of leakage current. The insulating layer is formed by oxidizing the surface of the n-type cladding layer. Since the light emitting layer contains the plurality of micro-crystals improved in crystallinity, it is possible to enhance the emission efficiency, to extend the selection range of each of materials for forming the light emitting layer, n-type cladding layer, p-type cladding layer, and substrate, and to form a device array on a common substrate having a large area.
    • 由n型AlGaN的非单晶体形成的n型覆层,由ZnO构成的多个微晶体的发光层和由非单晶体形成的p型覆盖层 的p型BN依次层叠在由石英玻璃制成的基板上。 在n型包覆层和p型覆层之间形成绝缘层,以掩盖微晶间的空隙,防止漏电流的发生。 绝缘层通过氧化n型包层的表面而形成。 由于发光层含有结晶度提高的多个微晶,因此能够提高发光效率,扩大形成发光层的材料的选择范围,n型包覆层,p型 包覆层和衬底,并且在具有大面积的公共衬底上形成器件阵列。
    • 3. 发明授权
    • Plasma display device and method of producing the same
    • 等离子体显示装置及其制造方法
    • US07002295B2
    • 2006-02-21
    • US10398908
    • 2002-07-17
    • Shigeru KojimaToshiharu SuzukiKatsuya Shirai
    • Shigeru KojimaToshiharu SuzukiKatsuya Shirai
    • H01J17/49
    • H01J9/02H01J11/12H01J11/38
    • A plasma display device such that fluctuation of discharge start voltage and lowering of luminance would not easily occur, the burning phenomenon of the screen is suppressed, and excellent reliability and long life can be secured, and a method of producing the same, are disclosed. The plasma display device comprises a first panel (10) provided with discharge sustaining electrodes (12) and a dielectric layer (14) on the inside thereof, and a second panel (20) laminated on the first panel (10) so that discharge spaces (4) are formed on the inside of the first panel (10), and the trap density and/or the movable metallic ion density in the dielectric layer (14) is not more than 1×1018 pieces/cm3, preferably not more than 1×1017 pieces/cm3.
    • 等离子体显示装置不会容易发生放电开始电压的波动和亮度的降低,屏幕的燃烧现象被抑制,并且可以确保优异的可靠性和长的使用寿命,并且公开了其制造方法。 等离子体显示装置包括在其内部设置有放电维持电极(12)和电介质层(14)的第一面板(10)和层叠在第一面板(10)上的第二面板(20),使得放电空间 (4)形成在第一面板(10)的内部,并且电介质层(14)中的陷阱密度和/或可动金属离子密度不大于1×10 18个/ 3/3,优选不超过1×10 17个/ cm 3以上。
    • 5. 发明授权
    • Drive-control apparatus for electric drive vehicle
    • 电动车辆用驱动控制装置
    • US08104556B2
    • 2012-01-31
    • US12439349
    • 2006-12-27
    • Shigeru Kojima
    • Shigeru Kojima
    • B60W10/00
    • B60W20/13B60K6/28B60K6/46B60K2001/003B60L7/02B60L2200/26B60L2240/421B60L2240/423B60L2240/662B60L2240/80B60W10/06B60W10/08B60W20/00B60W2510/081B60W2510/24B60W2550/12B60W2710/0644B60W2710/083H02P1/48Y02T10/6217Y02T10/6286Y02T10/642Y02T10/7291Y02T90/16
    • A drive-control apparatus for an electric-drive vehicle drives and controls a vehicle driven by electric power generated from mechanical power produced by an internal combustion engine (1). In order to cool down an electric power converter (3) without increasing the engine-rotation speed during deceleration of the locomotive using electric braking; the drive-control apparatus includes a braking resistor (10) for dissipating electric power that is generated by a main rotating machine (4) and supplied through the electric power converter (3); a fan motor (7), whose pole number is changeable, supplied with alternating electric power that is generated by an auxiliary generator (6) and has a frequency proportional to a rotation speed of the internal combustion engine (1); a fan (8) for making an air flow in order to cool down the electric power converter (3), being driven by the fan motor (7); a pole-number-changing switch (9) for changing the pole number of the fan motor (7); and a controlling unit for controlling the internal combustion engine (1), the electric power converter (3), the braking resistor (10), and the pole-number-changing switch (9).
    • 用于电动车辆的驱动控制装置驱动和控制由内燃机(1)产生的机械动力产生的电力驱动的车辆。 为了在使用电制动的机车减速期间不降低发动机转速而冷却电力转换器(3); 所述驱动控制装置具有:制动电阻(10),用于耗散由所述主旋转机(4)产生并通过所述电力转换器(3)供给的电力; 提供具有与辅助发电机(6)产生并具有与内燃机(1)的转速成比例的频率的交流电力的风扇电动机(7),其极数可变; 风扇马达(7)驱动的用于使空气流动的风扇(8),以冷却电力转换器(3)。 用于改变风扇马达(7)的极数的极数转换开关(9); 以及用于控制内燃机(1),电力转换器(3),制动电阻器(10)和极数转换开关(9)的控制单元。
    • 6. 发明申请
    • WORK MACHINE
    • 工作机器
    • US20100000367A1
    • 2010-01-07
    • US12095027
    • 2006-09-20
    • Eiji AkahaneNobumi ToyouraShigeru KojimaMassayuki Takano
    • Eiji AkahaneNobumi ToyouraShigeru KojimaMassayuki Takano
    • G05G1/30
    • E02F9/2004E02F9/2025Y10T74/20012Y10T74/20528Y10T74/2054
    • In a work machine equipped with a switchover means enabling selective operation of traveling devices and a work device by means of common operating levers, switchover can easily be performed and also easily recognized. In a work machine having traveling devices and a work device, operating levers that are capable of operating the traveling devices and the work device are respectively disposed at the sides of an operating seat. A foot switch connected to a controller is disposed in the proximity of and operable with a foot of an operator seated at the operating seat. While the foot switch is being operated with the foot, the traveling devices are operated by the operating levers through the controller. While the foot switch is not being operated, the work device is operated by means of the operating levers through the controller.
    • 在配有切换装置的工作机械中,能够通过公共操作杆对行驶装置和作业装置进行选择性操作,能够容易地进行切换,也容易识别。 在具有行走装置和作业装置的作业机械中,能够操作行走装置和作业装置的操作杆分别设置在操作座椅的侧面。 连接到控制器的脚踏开关设置在坐在操作座上的操作者的脚部附近并可操作。 当脚踏开关用脚操作时,行驶装置由操作杆通过控制器操作。 当脚踏开关未被操作时,工作装置通过操作杆通过控制器操作。
    • 9. 发明申请
    • Display device for presentation
    • 显示设备进行演示
    • US20060007115A1
    • 2006-01-12
    • US10522747
    • 2003-07-17
    • Toshinori FuruhashiKazuya ArakawaShigeru Kojima
    • Toshinori FuruhashiKazuya ArakawaShigeru Kojima
    • G09G5/00
    • G06F3/0482G06F3/0346
    • In a display apparatus for presentation including an image display device 30 that allows for moving a selection marker across a plurality of menu items arranged in vertical and horizontal directions and displayed on a screen 1 in accordance with received angular velocity information, a menu item to which the selection marker should be moved is determined in accordance with the number of cycles of angular velocity sampling during which the move distance of the pointing device obtained for every sampling cycle from the angular velocity information exceeds a predetermined value continuously. This improved the inconvenience to use with a conventional pointing device in which a distance by which an object should be moved on the display screen is proportional to the entire distance over which the pointing device was moved, calculated from angular velocity; thus, the operator has to tilt the remote controller incorporating a gyroscope to a large extent to move the object by a long distance on the screen.
    • 在一种用于演示的显示装置中,包括图像显示装置30,其允许沿着垂直和水平方向排列的多个菜单项移动选择标记,并根据接收到的角速度信息显示在屏幕1上;菜单项, 根据角速度采样的周期数,根据角速度信息获得的每个采样周期获得的指示装置的移动距离连续超过预定值,确定移动选择标记。 这改善了使用常规指点设备的不方便性,其中在显示屏幕上物体应该移动的距离与从角速度计算的指示设备移动的整个距离成比例; 因此,操作者必须将包含陀螺仪的遥控器在很大程度上倾斜以在屏幕上长距离移动物体。