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    • 1. 发明授权
    • Diamond pn junction diode and method for the fabrication thereof
    • 金刚石pn结二极管及其制造方法
    • US06727171B2
    • 2004-04-27
    • US10368482
    • 2003-02-20
    • Daisuke TakeuchiHideyuki WatanabeHideyo OkushiMasataka HasegawaMasahiko OguraNaoto KobayashiKoji KajimuraSadanori Yamanaka
    • Daisuke TakeuchiHideyuki WatanabeHideyo OkushiMasataka HasegawaMasahiko OguraNaoto KobayashiKoji KajimuraSadanori Yamanaka
    • H01L214763
    • H01L33/34H01L29/1602H01L29/6603H01L29/66136H01L29/861H01S5/3045H01S5/305
    • A diamond pn junction diode includes a p-type diamond thin-film layer formed on a substrate and an n-type diamond thin-film layer formed by forming a high-quality undoped diamond thin-film layer on the p-type diamond thin-film layer and ion-implanting an impurity into the high-quality undoped diamond thin-film layer, or alternatively includes an n-type diamond thin-film layer formed on a substrate and a p-type diamond thin-film layer formed by forming a high-quality undoped diamond thin-film layer on the n-type diamond thin-film layer and ion-implanting an impurity into the high-quality undoped diamond thin-film layer. A method of fabricating a diamond pn junction diode includes the steps of forming a p-type diamond thin-film layer on a substrate, forming a high-quality undoped diamond thin-film layer on the p-type diamond thin-film layer, and making the high-quality undoped diamond thin-film layer an n-type diamond thin-film layer by ion implantation of an impurity, or alternatively includes the steps of forming an n-type diamond thin-film layer on a substrate, forming a high-quality undoped diamond thin-film layer on the n-type diamond thin-film layer, and making the high-quality undoped diamond thin-film layer a p-type diamond thin-film layer by ion implantation of an impurity.
    • 金刚石pn结二极管包括形成在基板上的p型金刚石薄膜层和通过在p型金刚石薄膜层上形成高品质未掺杂的金刚石薄膜层形成的n型金刚石薄膜层, 膜层,并将杂质离子注入到高质量未掺杂的金刚石薄膜层中,或者还可以包括形成在基板上的n型金刚石薄膜层和形成p型金刚石薄膜层的p型金刚石薄膜层, 在n型金刚石薄膜层上的高品质未掺杂金刚石薄膜层,并将杂质离子注入到高品质未掺杂的金刚石薄膜层中。 制造金刚石pn结二极管的方法包括以下步骤:在衬底上形成p型金刚石薄膜层,在p型金刚石薄膜层上形成高质量未掺杂的金刚石薄膜层;以及 通过离子注入杂质使高品质未掺杂的金刚石薄膜层成为n型金刚石薄膜层,或者也可以包括在基板上形成n型金刚石薄膜层的步骤,形成高 在n型金刚石薄膜层上的质量未掺杂的金刚石薄膜层,并且通过离子注入杂质使高品质未掺杂的金刚石薄膜层成为p型金刚石薄膜层。
    • 5. 发明授权
    • Sealing ring with a pulsar ring for a rotary encoder
    • 密封环,带旋转编码器的脉冲星环
    • US07960967B2
    • 2011-06-14
    • US12225495
    • 2007-03-15
    • Naoto Kobayashi
    • Naoto Kobayashi
    • G01P3/48G01B7/30
    • G01D5/2451F16C19/184F16C33/7879F16C33/7889F16C41/007F16C2326/02G01P3/443
    • A pulsar ring for a rotary encoder has a mounting ring (1) made of a non-magnetic material, with one end being fixed to an inner ring (202) at the rotation side and the other end being positioned in proximity to an outer ring (201) at the stationary side via labyrinth-shaped clearances (G1, G2, G3), a pulsar ring body (2) formed by a synthetic resin material or rubber-like elastic material mixed with magnetic powder, magnetized to have multiple poles, and integrally installed on an inner surface of the mounting ring (1), and a seal ring (3) disposed inside the mounting ring (1), fixed to the inner ring (202) via the mounting ring (1), and slidably in contact with the outer ring (201), whereby the pulsar ring is hardly exposed to disturbances by foreign matters, muddy water, and external magnetic fields from the outside, and consequently can maintain a stable magnetic pattern.
    • 用于旋转编码器的脉冲星环具有由非磁性材料制成的安装环(1),其一端在旋转侧固定到内环(202),另一端位于外环附近 (201)通过迷宫形间隙(G1,G2,G3)在固定侧,由合成树脂材料或与磁粉混合的橡胶状弹性材料形成的脉冲星环体(2)被磁化成具有多个极, 并且一体地安装在所述安装环(1)的内表面上,以及密封环(3),其设置在所述安装环(1)的内部,经由所述安装环(1)固定到所述内圈(202) 与外圈(201)接触,由此脉冲星环几乎不会受到异物,泥水和来自外部的外部磁场的干扰,从而可以保持稳定的磁性图案。
    • 6. 发明申请
    • SEALING DEVICE FOR UNIVERSAL JOINT
    • 密封设备用于通用接头
    • US20100289226A1
    • 2010-11-18
    • US12680883
    • 2008-09-29
    • Naoto Kobayashi
    • Naoto Kobayashi
    • F16J15/32
    • F16J15/3232F16C33/7809F16C2361/41F16D3/385
    • To prevent damage and malfunction, a sealing device for a universal joint has a metal ring (11) fitted on the outer peripheral surface of a shaft portion (111) of a cruciform spider (110) of the universal joint, and inner seal lips (12, 13) and an outer seal lip (14) made of a rubber-like elastic material and provided integrally with the metal ring (11), the inner seal lips (12, 13) slidably contact with the inner peripheral surface of an end of an outer ring (121) of a bearing (120) relatively rotatably supporting the shaft portion (111), the outer seal lip (14) slidably contact with a rising surface (112a) of a boss portion (112) of the cruciform spider (110), and the rising surface (112a) is a surface rising, outside the position where the metal ring (11) is fitted, in an outward radial direction from the shaft portion (111).
    • 为了防止损坏和故障,用于万向接头的密封装置具有安装在万向接头的十字形蜘蛛(110)的轴部(111)的外周面上的金属环(11)和内密封唇 12和13)和由橡胶状弹性材料制成并与金属环(11)一体设置的外部密封唇缘(14),内部密封唇缘(12,13)与端部的内周表面滑动接触 的轴承(120)的外圈(121)相对可旋转地支撑所述轴部(111),所述外密封唇(14)与所述十字形蜘蛛的凸台部(112)的上升表面(112a)滑动接触, (110),并且所述上升面(112a)是从所述轴部(111)向外径方向上升高在所述金属环(11)的所述位置的外侧的表面。
    • 8. 发明授权
    • Sealing apparatus with encoder
    • 带编码器的密封装置
    • US07232129B2
    • 2007-06-19
    • US10961049
    • 2004-10-12
    • Naoto Kobayashi
    • Naoto Kobayashi
    • F16J15/02
    • G01P3/443F16C19/184F16C33/7883F16C41/007F16C2326/02F16J15/326
    • To prevent lowering and unstableness of magnetic force and trouble caused by influence of muddy water or the like entered between the magnetic encoder (21) and a magnetic sensor (6), a sealing apparatus (4) comprises an approximately C-shaped protecting annular member (11) fitted to one of an inner member (1) and an outer member (2), a first encoder member (12) having a cylinder portion (12a) fitted to the protecting annular member (11), a second encoder member (13) held between the protecting annular member (11) and the first encoder member (12), a seal annular member (14), and a seal member (15) which is vulcanized and bonded to the seal annular member (14) and has seal lips slidably contacting with the protecting annular member (11) and the encoder member (12).
    • 为了防止在磁性编码器(21)和磁性传感器(6)之间进入的泥水等的影响引起的磁力的降低和不稳定以及故障,密封装置(4)包括大致C形的保护环形构件 (11),安装在内部构件(1)和外部构件(2)中的一个上;第一编码器构件(12),具有装配到保护环形构件(11)的圆筒部分(12a),第二编码器构件 (13),其保持在保护环形构件(11)和第一编码器构件(12)之间,密封环形构件(14)和密封构件(15),其被硫化并结合到密封环形构件(14)和 具有与保护环形构件(11)和编码器构件(12)可滑动接触的密封唇。
    • 9. 发明申请
    • Sealing device
    • 密封装置
    • US20070024273A1
    • 2007-02-01
    • US10571106
    • 2004-09-10
    • Naoto Kobayashi
    • Naoto Kobayashi
    • H02K19/20G01P3/48F16C41/04
    • F16C41/007F16C19/184F16C33/768F16C33/783F16C33/7879F16C2326/02F16J15/326
    • To provide a sealing device in which a magnetic encoder can be protected so as to improve detecting precision and reliability, without increasing the number of parts and assembling man-hour and without enlarging a setting space, the sealing device is structured such that a detected portion is arranged in the sealed fluid side of an annular member, a first annular member fitted to a shaft is formed with an axial direction portion and diametrical direction portions extending in the inward and outward diametrical directions from the axial direction portion, one of the diametrical direction portions supports the detected portion in the sealed fluid side, a seal lip is in slidably contact with the other diametrical direction portion for sealing, and the seal portion is formed with the seal lip and the micro space.
    • 为了提供一种可以保护磁性编码器以便提高检测精度和可靠性的密封装置,而不增加部件数量和组装工时并且不扩大设置空间,密封装置被构造成使得检测部分 设置在环状部件的密封流体侧,嵌合于轴的第一环状部件形成有沿轴向方向部分沿径向方向部分延伸的轴向方向部分和直径方向部分,径向方向 部分支撑密封流体侧的检测部分,密封唇与另一个直径方向部分滑动接触以进行密封,并且密封部分形成有密封唇和微空间。