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公开(公告)号:US06699379B1
公开(公告)日:2004-03-02
申请号:US10302844
申请日:2002-11-25
申请人: Shih-Tsung Ke , Jen-Chih Li , Ming-Der Ger , Le-Min Wang , Yeh Sung , Jauh-Jung Yang , Ya-Ru Huang
发明人: Shih-Tsung Ke , Jen-Chih Li , Ming-Der Ger , Le-Min Wang , Yeh Sung , Jauh-Jung Yang , Ya-Ru Huang
IPC分类号: C25D1500
摘要: An improved plating method in combination with a low-temperature thermal treatment is disclosed. The method for reducing the stress in the nickel-based alloy plating comprises the steps of: (a) adding ceramic particles into a plating bath containing soluble nickel salts; and (b) placing a substrate in the plating bath and thereafter carrying out a pulse-current electroplating in the plating bath. The method of this invention can prevent substrate softening or deformation problems. The use of a post low-temperature thermal treatment can slightly increase the hardness of the coating products. The use of the low-temperature thermal treatment can reduce the stress of the coatings since the hydrogen embrittlement resulting from exist of hydrogen in the coatings is eliminated.
摘要翻译: 公开了一种结合低温热处理的改进的电镀方法。 减少镍基合金镀层中的应力的方法包括以下步骤:(a)将陶瓷颗粒加入含有可溶性镍盐的镀浴中; 和(b)将基板放置在电镀液中,然后在电镀液中进行脉冲电流电镀。 本发明的方法可以防止基板软化或变形问题。 使用后期低温热处理可以稍微提高涂层产品的硬度。 使用低温热处理可以降低涂层的应力,因为消除了由涂层中的氢存在引起的氢脆化。
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公开(公告)号:US06309488B1
公开(公告)日:2001-10-30
申请号:US09447716
申请日:1999-11-23
申请人: Hsi-Harng Yang , Shih-Chou Chen , Chuan-Kang Mu , Jauh-Jung Yang
发明人: Hsi-Harng Yang , Shih-Chou Chen , Chuan-Kang Mu , Jauh-Jung Yang
IPC分类号: B32B3116
CPC分类号: G02B6/3865 , C25D1/10
摘要: A manufacturing method for a high precision mold comprises the steps of (a) placing a plastic body on a conductor substrate, (b) forming a plurality of perforating apertures in the plastic body using X-ray deep etching molding, (c) rounding the edges at the front end of the perforating apertures using ultraviolet (UV) lithography, and (d) electroforming the high precision mold using the plastic body with perforating apertures as a model. A fiber connector sleeve can be further manufactured by (e) molding a fiber aligning element using the high precision mold, (f) molding a fiber sleeve body using an usual mold, and (g) combining the fiber aligning element with the fiber sleeve body using ultrasonic waves to form the fiber connector sleeve.
摘要翻译: 一种高精度模具的制造方法,包括以下步骤:(a)将塑料体放置在导体基板上,(b)使用X射线深刻蚀成型在塑料体中形成多个穿孔,(c) 使用紫外(UV)光刻法在穿孔的前端处的边缘,以及(d)使用具有穿孔的塑料体作为模型对高精度模具进行电铸。 纤维连接器套筒可以通过(e)使用高精度模具成型纤维对准元件来进一步制造,(f)使用通常的模具成型纤维套筒主体,以及(g)将纤维对准元件与纤维套筒本体 使用超声波形成光纤连接器套筒。
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公开(公告)号:US20110228392A1
公开(公告)日:2011-09-22
申请号:US12790127
申请日:2010-05-28
申请人: Jauh-jung Yang , Chi-feng Chen
发明人: Jauh-jung Yang , Chi-feng Chen
CPC分类号: G02B5/124
摘要: An optical retroreflective apparatus and method thereof are described. The optical retroreflective apparatus includes a substrate, a first material layer, a first taper pattern layer, a reflecting layer, and a second material layer. The first material layer is formed on the substrate. The first taper pattern layer is formed on the first material layer wherein the first taper pattern layer has a plurality of first pyramidal units. The reflecting layer is formed on the first taper pattern layer wherein the reflecting layer has a plurality of reflecting patterns and each of the reflecting patterns is covered with each of first pyramidal units. The second material layer is formed on the reflecting layer wherein the second material layer has a second taper pattern layer having a plurality of second pyramidal units. The second taper pattern layer is covered with the reflecting layer and the second pyramidal units are filled with the spacing region between the reflecting patterns of the reflecting layer.
摘要翻译: 描述了一种光学逆反射装置及其方法。 光学回归反射装置包括基板,第一材料层,第一锥形图案层,反射层和第二材料层。 第一材料层形成在基板上。 第一锥形图案层形成在第一材料层上,其中第一锥形图案层具有多个第一金字塔形单元。 反射层形成在第一锥形图案层上,其中反射层具有多个反射图案,并且每个反射图案都被每个第一金字塔形单元覆盖。 第二材料层形成在反射层上,其中第二材料层具有具有多个第二金字塔形单元的第二锥形图案层。 第二锥形图案层被反射层覆盖,并且第二金字塔形单元填充有反射层的反射图案之间的间隔区域。
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4.
公开(公告)号:US20100259939A1
公开(公告)日:2010-10-14
申请号:US12625455
申请日:2009-11-24
申请人: Chi-feng Chen , Jauh-jung Yang
发明人: Chi-feng Chen , Jauh-jung Yang
IPC分类号: F21V5/02
CPC分类号: G02B5/02 , G02B3/0056
摘要: A brightness enhancement film having a composite lens and prism structure is described. The brightness enhancement film having a composite lens and prism structure includes a substrate layer and a composite structure layer. The substrate layer has an optical incident surface and an optical emission surface. The composite structure layer is positioned on the optical emission surface of the substrate layer and has a lens-type layer and a prism-type layer. The lens-type layer has a plurality of protrusion units and the prism-type layer has a plurality of prismatic units. The protrusion units are uniformly arranged among the prismatic units. An area ratio of the region of the protrusion units to the region of the prismatic units based on a predetermined unit area of the composite structure layer can be changed for adjusting a convergent angle when a light beam penetrates through the composite structure layer via the optical emission surface of the substrate layer.
摘要翻译: 描述了具有复合透镜和棱镜结构的亮度增强膜。 具有复合透镜和棱镜结构的亮度增强膜包括基底层和复合结构层。 基板层具有光入射面和光发射面。 复合结构层位于基板层的光发射表面上,并具有透镜型层和棱镜型层。 透镜型层具有多个突起单元,棱镜型层具有多个棱镜单元。 突出单元均匀地布置在棱柱形单元中。 可以改变基于复合结构层的预定单位面积的突出单元的区域与棱镜单元的区域的面积比,以便当光束经由光发射穿过复合结构层时调节收敛角 衬底层的表面。
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公开(公告)号:US20050145867A1
公开(公告)日:2005-07-07
申请号:US10812921
申请日:2004-03-31
申请人: Po-Hung Yau , Jauh-Jung Yang , Yu-Cheng Lin , I-Kai Pan
发明人: Po-Hung Yau , Jauh-Jung Yang , Yu-Cheng Lin , I-Kai Pan
摘要: A planar package structure for high power light emitting diode, comprising: a substrate; a package material; a light emitting diode chip disposed on the substrate, having a main light emitting surface served as a light source; and a planar optical modulation unit disposed on the package material, so that the planar optical modulation unit is above the main light emitting surface, and utilized for modulating the optical phase of the light source. The planar optical modulation unit can perform a refractive optical phase modulation or a diffractive optical phase modulation such that a thin and planar high power light emitting diode package element with function of optical phase modulation is obtained.
摘要翻译: 一种用于高功率发光二极管的平面封装结构,包括:衬底; 包装材料; 设置在所述基板上的发光二极管芯片,其具有用作光源的主发光表面; 以及设置在封装材料上的平面光调制单元,使得平面光调制单元在主发光表面之上,并用于调制光源的光相位。 平面光调制单元可以执行折射光相位调制或衍射光相位调制,从而获得具有光相位调制功能的薄平面大功率发光二极管封装元件。
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公开(公告)号:US06584250B2
公开(公告)日:2003-06-24
申请号:US09785289
申请日:2001-02-20
申请人: Yuh-Sheng Lin , Cheng-Chun Huang , Ming-Yueh Liu , Jauh-Jung Yang , Chuan-Kang Mu , Ya-Ru Huang
发明人: Yuh-Sheng Lin , Cheng-Chun Huang , Ming-Yueh Liu , Jauh-Jung Yang , Chuan-Kang Mu , Ya-Ru Huang
IPC分类号: G02B626
摘要: An optical fiber alignment element using integrated micro ball lens includes a substrate and a plurality of V-shaped grooves or waveguides formed on the substrate by lithography and etching. The substrate surface is coated with a first polymer layer and a high transparency second polymer layer, then is processed through a lithography process and heating process to form at least a base pad and a spherical micro ball lens between the V-shaped grooves or waveguides. Then dispose optical fibers in the V-shaped grooves. And encase an upper cap over the micro ball lens, grooves, and optical fibers or waveguides. Through suitable configuration and positioning of the micro ball lens, grooves or waveguides, the micro ball lens may be aligned precisely between two sides of the optical fibers or waveguides. The process is simpler, more accurate, and may produce the optical fiber alignment element in an integrated and batch fashion.
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公开(公告)号:US07114941B2
公开(公告)日:2006-10-03
申请号:US10393891
申请日:2003-03-20
申请人: Jung Yan Huang , Chu Shu Tsai , Choung-Lii Chao , Chuan Kang Mu , Jauh Jung Yang , Cheng-Chun Huang , Ming Yueh Liu
发明人: Jung Yan Huang , Chu Shu Tsai , Choung-Lii Chao , Chuan Kang Mu , Jauh Jung Yang , Cheng-Chun Huang , Ming Yueh Liu
IPC分类号: B29C59/02
CPC分类号: B44B5/00 , B29C59/002 , B29C59/02
摘要: A hot embossing auto-leveling apparatus which has an air-floating spherical bearing between a lower mold and a base, placed in a depression on the base, with the base housing an air inlet and an air outlet. A hot embossing auto-leveling method, comprising the steps of (1) performing an upward and downward coupling movement of the lower and upper molds; (2) adjusting the lower mold against the upper mold using the air-floating spherical bearing; (3) fixing the lower mold by under pressure in an orientation parallel to the upper mold; (4) placing a molded part on the lower mold; (5) evacuating, heating and pressurizing a working chamber; (6) cooling; and (7) opening.
摘要翻译: 一种热压花自动调平装置,其在下模和基座之间具有空气浮动的球面轴承,放置在基座上的凹陷中,基座容纳空气入口和空气出口。 一种热压花自动调平方法,包括以下步骤:(1)执行下模和上模的向上和向下的联接运动; (2)使用空气浮动的球面轴承将下模调整到上模上; (3)在与上模平行的方向上的压力下固定下模; (4)将模制部件放置在下模具上; (5)对工作室进行抽真空,加热和加压; (6)冷却; 和(7)开放。
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8.
公开(公告)号:US07033059B2
公开(公告)日:2006-04-25
申请号:US10810666
申请日:2004-03-29
申请人: Jauh-Jung Yang , Jian-Shian Lin , Po-Hung Yao , Jyh-Chun Chang
发明人: Jauh-Jung Yang , Jian-Shian Lin , Po-Hung Yao , Jyh-Chun Chang
CPC分类号: G02B6/0021 , G02B6/0038
摘要: A light guide apparatus for enhancing light source utilization efficiency includes a light guide sheet, a light coupling structure and a light emerging structure. The light coupling structure is arranged on a surface of the light guide sheet and opposite to a light source. The light emerging structure is disposed on a surface of light guide sheet. Lights emitted by the light source enters into the light guide sheet via the light coupling structure and evenly emitted to outer environment via said light emerging structure, thereby enhancing light source utilization efficiency.
摘要翻译: 用于提高光源利用效率的导光装置包括导光片,光耦合结构和光出射结构。 光耦合结构布置在导光片的表面上并与光源相对。 光出射结构设置在导光片的表面上。 由光源发出的光通过光耦合结构进入导光板,并通过所述出光结构均匀地发射到外部环境,从而提高光源利用效率。
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公开(公告)号:US20100265588A1
公开(公告)日:2010-10-21
申请号:US12423979
申请日:2009-04-15
申请人: Jauh-jung Yang , Chi-feng Chen
发明人: Jauh-jung Yang , Chi-feng Chen
IPC分类号: G02B27/12
CPC分类号: G02B5/0263 , G02B5/045
摘要: An optical adjusting apparatus having a composite pattern structure is described. The optical adjusting apparatus include a substrate layer, at least one first pattern module and at least one second pattern module. The substrate has a first optical surface and a second optical surface opposite to the first optical surface. The first pattern module positioned on the first optical surface, wherein the first pattern module has a first structure unit along a first arrangement direction. The second pattern module which is adjacent to the first pattern module and positioned on the first optical surface. The second pattern module has the second structure unit along a second arrangement direction. The first structure unit of the first pattern module is connected to the second structure unit of the second pattern module. Therefore, the convergent angle of a light module is adjusted and the brightness of the light module is increased along specific direction.
摘要翻译: 描述具有复合图案结构的光学调节装置。 光学调节装置包括基底层,至少一个第一图案模块和至少一个第二图案模块。 基板具有与第一光学表面相对的第一光学表面和第二光学表面。 位于第一光学表面上的第一图案模块,其中第一图案模块具有沿第一布置方向的第一结构单元。 第二图案模块,其与第一图案模块相邻并且位于第一光学表面上。 第二图案模块沿着第二排列方向具有第二结构单元。 第一图案模块的第一结构单元连接到第二图案模块的第二结构单元。 因此,调整光模块的收敛角度,使光模块的亮度沿特定方向增大。
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公开(公告)号:US20070242191A1
公开(公告)日:2007-10-18
申请号:US11398031
申请日:2006-04-04
申请人: Po-Hung Yau , Yu-Nan Pao , Jauh-Jung Yang
发明人: Po-Hung Yau , Yu-Nan Pao , Jauh-Jung Yang
IPC分类号: G02F1/1335
CPC分类号: G02F1/133606 , G02F1/133621 , G02F2001/133607 , G02F2203/01 , G02F2203/22
摘要: A color image display element having a color wavelength division device. The color wavelength division device contains a light transmitting three-dimensional microstructure formed on a two-dimensional surface, said two-dimensional surface being a surface of a transparent substrate. The three-dimensional microstructure is made to have a localized light-diffractive profile such that white light of an incident backlight source will be divided into wavelengths of red, green, and blue, and these red, green, blue wavelengths will be respective focused at a target projected plane. In a preferred embodiment, the localized light-diffractive profile of the three-dimensional microstructure is calculated using an iterative approach in conjunction with the following equation: U 2 ( x , y ) = ⅇ ⅈ kz i λ z ⅇ ⅈ π λ z ( x 2 + y 2 ) ∫ ∫ - ∞ + ∞ U 1 ( ξ , η ) ⅇ - ⅈ 2 π λ z ( z ξ + y η ) ⅆ ξ ⅆ η .
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