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    • 1. 发明授权
    • Method of processing optical fiber
    • 光纤加工方法
    • US07242836B2
    • 2007-07-10
    • US11212720
    • 2005-08-29
    • Masahiro FushimiMitsunori Iima
    • Masahiro FushimiMitsunori Iima
    • G02B6/02G01N21/00
    • G02B6/4222G02B6/262G02B6/264G02B6/4206
    • There is provided a method of processing an optical fiber having a core and a clad. The optical fiber has a first facet and a second facet. The method includes fixing the optical fiber in a state in which at least a portion thereof is bent in a predetermined curvature radius, applying a resist to a region on the first facet at least including an entirety of the core, irradiating the second facet with light of a predetermined wavelength so that only the resist applied to the core in the first facet is exposed to the light through an inside of the optical fiber, developing the resist, and forming a level gap at a boundary between the core and the clad in the first facet utilizing the resist remaining after the irradiating and the developing.
    • 提供了一种处理具有芯和包层的光纤的方法。 光纤具有第一面和第二面。 该方法包括将光纤固定在其至少一部分以预定的曲率半径弯曲的状态,将至少包括整个芯的区域上的抗蚀剂施加到第一小面上的区域,用光照射第二面 使得只有施加到第一面中的芯的抗蚀剂通过光纤的内部暴露于光,显影抗蚀剂,并且在芯和包层之间的边界处形成水平间隙 第一小面利用在照射和显影后残留的抗蚀剂。
    • 4. 发明申请
    • Method of processing optical fiber
    • 光纤加工方法
    • US20060045447A1
    • 2006-03-02
    • US11212720
    • 2005-08-29
    • Masahiro FushimiMitsunori Iima
    • Masahiro FushimiMitsunori Iima
    • G02B6/02
    • G02B6/4222G02B6/262G02B6/264G02B6/4206
    • There is provided a method of processing an optical fiber having a core and a clad. The optical fiber has a first facet and a second facet. The method includes fixing the optical fiber in a state in which at least a portion thereof is bent in a predetermined curvature radius, applying a resist to a region on the first facet at least including an entirety of the core, irradiating the second facet with light of a predetermined wavelength so that only the resist applied to the core in the first facet is exposed to the light through an inside of the optical fiber, developing the resist, and forming a level gap at a boundary between the core and the clad in the first facet utilizing the resist remaining after the irradiating and the developing.
    • 提供了一种处理具有芯和包层的光纤的方法。 光纤具有第一面和第二面。 该方法包括将光纤固定在其至少一部分以预定的曲率半径弯曲的状态,将至少包括整个芯的区域上的抗蚀剂施加到第一小面上的区域,用光照射第二面 使得只有施加到第一面中的芯的抗蚀剂通过光纤的内部暴露于光,显影抗蚀剂,并且在芯和包层之间的边界处形成水平间隙 第一小面利用在照射和显影后残留的抗蚀剂。
    • 6. 发明申请
    • Image forming apparatus
    • 图像形成装置
    • US20060113893A1
    • 2006-06-01
    • US11335759
    • 2006-01-20
    • Masahiro Fushimi
    • Masahiro Fushimi
    • H01J1/62
    • H01J29/028H01J29/467H01J29/864H01J31/127H01J2329/8625
    • In an image forming apparatus including an electron-source substrate having a plurality of cold-cathode electron emitting elements, each having an electron emitting portion and a pair of element electrodes, an acceleration electrode for applying an acceleration voltage operating on electrons emitted from the electron emitting elements, disposed so as to face the electron emitting elements, a spacer disposed between the electron-source substrate and the acceleration electrode, a wiring portion formed on the electron-source substrate for driving the electron emitting elements, these components being accommodated within an envelope, an electron-trajectory correcting electrode for correcting beam deviation due to charging of the spacer is provided near an electron emitting element near the spacer.
    • 在包括具有多个冷阴极电子发射元件的电子源基板的图像形成装置中,每个具有电子发射部分和一对元件电极,加速电极用于对从电子发射的电子施加加速电压 设置在电子源基板和加速电极之间的间隔物,布置在电子源基板上用于驱动电子发射元件的布线部分,这些部件容纳在电子源基板和加速电极之间, 在间隔物附近的电子发射元件附近设置用于校正由间隔物的充电引起的光束偏移的电子轨迹校正电极。
    • 9. 发明授权
    • Image forming apparatus for forming image by electron irradiation
    • 用于通过电子照射形成图像的图像形成装置
    • US06351065B2
    • 2002-02-26
    • US09049922
    • 1998-03-30
    • Koji YamazakiMasahiro FushimiHideaki Mitsutake
    • Koji YamazakiMasahiro FushimiHideaki Mitsutake
    • H01J162
    • H01J29/028H01J29/467H01J29/864H01J31/127H01J2329/864H01J2329/8645H01J2329/8655
    • A support member (20) for maintaining the distance between a face plate (30) and a rear plate (31) is interposed between the face plate (30) and the rear plate (31). An insulating film is formed on the support member (20) or its surface. An intermediate layer (21) is formed at a portion near the rear plate (31). The intermediate layer (21) is set at a low resistance and the same potential as that of the rear plate (31). As a result, an electron beam emitted from an electron-emitting portion near the support member (20) follows an orbit which is directed temporarily away from the support member and then comes close to the support member near the face plate (30) due to the steady charge-up of the support member. Then, the electron beam is irradiated on a defined position on the face plate (30).
    • 用于保持面板(30)和后板(31)之间的距离的支撑构件(20)插入在面板(30)和后板(31)之间。 在支撑构件(20)或其表面上形成绝缘膜。 中间层(21)形成在靠近后板(31)的部分。 中间层(21)被设定为与后板(31)相同的电阻和相同的电位。 结果,从支撑构件(20)附近的电子发射部分发射的电子束跟随着一个轨道,该轨道临时远离支撑构件,然后靠近靠近面板(30)的支撑构件,由于 支撑构件的稳定充电。 然后,将电子束照射在面板(30)上的限定位置上。