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    • 4. 发明授权
    • Semiconductor light-emitting apparatus and method of fabricating the same
    • 半导体发光装置及其制造方法
    • US08735934B2
    • 2014-05-27
    • US14083477
    • 2013-11-19
    • Nichia Corporation
    • Ryo SuzukiTadao Hayashi
    • H01L23/00
    • H01L33/36H01L24/80H01L33/20H01L33/38H01L2924/01012H01L2924/01322H01L2924/12041H01L2924/12042H01L2924/15787H01L2924/351H01L2924/00
    • A light-emitting apparatus has a light-emitting device and a supporting board. The light-emitting device has a pair of n-electrodes with a p-electrode therebetween, on the same plane. The supporting board includes an insulating substrate on which positive and negative electrodes are formed, opposing to the p- and n-electrodes of the light-emitting device, respectively. Bonding members bond the p- and n-electrodes with the positive and negative electrodes, respectively. The positive electrode on the supporting board is formed within the width region of the p-electrode and narrower in width than the width of the p-electrode, in a cross-section along a line extending through the pair of n-electrodes. The negative electrodes oppose to the n-electrodes, respectively, with the same widths, or with that side face of each of the negative electrodes which faces the positive electrode being retracted outwardly from that side face of each of the n-electrodes which faces the p-electrode.
    • 发光装置具有发光装置和支撑基板。 发光装置在同一平面上具有一对具有p电极的n电极。 支撑板包括分别与发光器件的p电极和n电极相对形成有正极和负极的绝缘基板。 接合部件分别将p电极和n电极与正电极和负电极接合。 沿着延伸穿过该对n电极的线的横截面,支撑板上的正电极形成在p电极的宽度区域内并且宽度比p电极的宽度窄。 负电极分别以相同的宽度与n电极相对,或者与面对正电极的每个负电极的侧面从面向每个n电极的每个n电极的侧面向外缩回 p电极。
    • 9. 发明授权
    • Light-emitting module
    • US11342314B2
    • 2022-05-24
    • US17151904
    • 2021-01-19
    • NICHIA CORPORATION
    • Daisuke KasaiTadao HayashiToru Hashimoto
    • H01L25/075H01L33/60H01L33/50F21V8/00
    • A light-emitting module includes a light-emitting element unit including a light-emitting element, a light-transmissive member covering a main light-emitting surface of the light-emitting element, and a first light-reflective member covering lateral surfaces of the light-emitting element; a light-transmissive light-guiding plate having a first main surface and a second main surface having a recess accommodating the light-emitting element unit; a second light-reflective member covering the second main surface and the light-emitting element unit; and a light-transmissive bonding member disposed in contact with inner lateral surfaces of the recess and outer lateral surfaces of the light-emitting element unit. At least a portion of the first light-reflective member is located outside the recess in a cross-sectional view, and is in contact with the light-transmissive bonding member. The light-transmissive bonding member has an inclined surface forming an acute angle with a corresponding outer lateral surface of the first light-reflective member.