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    • 35. 发明申请
    • ADDRESS DISTRIBUTING METHOD AND DEVICE
    • 地址分配方法和设备
    • US20120023206A1
    • 2012-01-26
    • US13083252
    • 2011-04-08
    • Katsumi KusamaAtsushi TakahashiTaro TakahashiShinsuke Watanabe
    • Katsumi KusamaAtsushi TakahashiTaro TakahashiShinsuke Watanabe
    • G06F15/177
    • H04L61/2038H04L12/40032H04L29/12028H04L29/12254H04L61/103H04L2012/40293
    • A system is disclosed that includes a plurality of node devices arranged in sequence; a first node device operable to generate a device count frame with a device count number and transmit the device count frame to the next node device in the sequence; a control device in communication with at least the first node device; wherein each node device is operable to increase the device count number of the device count frame upon receipt of the device count frame and transmit the device count frame to the next node device in sequence; and wherein the control device operable to receive the device count frame to the first node device after each node device has increased the device count number of the device count frame and assign an IP address for each node device, the number of IP addresses determined by the device count number.
    • 公开了包括依次排列的多个节点装置的系统; 第一节点设备,可操作以生成具有设备计数号的设备计数帧,并以该顺序将设备计数帧发送到下一个节点设备; 至少与所述第一节点设备通信的控制设备; 其中每个节点设备可操作以在接收到所述设备计数帧时增加所述设备计数帧的设备计数数,并且将所述设备计数帧依次发送到所述下一个节点设备; 并且其中所述控制设备可操作以在每个节点设备增加了所述设备计数帧的设备计数号并为每个节点设备分配IP地址之后,向所述第一节点设备接收所述设备计数帧,由所述第一节点设备确定的IP地址数量 设备数量。
    • 36. 发明授权
    • Battery case
    • 电池盒
    • US08039142B2
    • 2011-10-18
    • US11722417
    • 2005-11-04
    • Atsushi TakahashiToshio TakeshitaYoichi Miyajima
    • Atsushi TakahashiToshio TakeshitaYoichi Miyajima
    • H01M2/10H01M2/22
    • H01M2/204H01M2/1061H01M2/30H01M6/42H01M10/0436
    • The present invention provides a battery including a case, a connector, the holding member, and a resilient conductive plate. In the case, two battery cells each in the form of a flattened rectangular plate are accommodated. The connector is exposed from the case. The holding member is for holding the two battery cells in the case. The holding member is made of a nonconductive resilient material and has a first battery accommodating section and a second battery accommodating section in which the battery cells each in the form of a flattened rectangular plate are accommodated in a juxtaposed relationship so as to form a rectangular shape as viewed in plan. The resilient conductive plate extends on the holding member for electrically connecting the two battery cells accommodated in the first and second battery accommodating sections and the connector to each other.
    • 本发明提供一种电池,包括壳体,连接器,保持构件和弹性导电板。 在这种情况下,容纳有扁平矩形板的形式的两个电池单元。 连接器从外壳露出。 保持构件用于将两个电池单元保持在壳体中。 保持构件由不导电的弹性材料制成,并且具有第一电池容纳部分和第二电池容纳部分,其中每个呈扁平矩形板的形式的电池单元以并置关系容纳以形成矩形形状 如计划中所示。 弹性导电板在保持构件上延伸,用于将容纳在第一和第二电池容纳部分中的两个电池单元和连接器彼此电连接。
    • 38. 发明申请
    • OPTICAL WAVEGUIDE AND METHOD FOR MANUFACTURING THE SAME
    • 光波导及其制造方法
    • US20110188827A1
    • 2011-08-04
    • US12808537
    • 2008-12-11
    • Masatoshi YamaguchiTomoaki ShibataTakeshi OohashiAtsushi Takahashi
    • Masatoshi YamaguchiTomoaki ShibataTakeshi OohashiAtsushi Takahashi
    • G02B6/12B05D3/00B32B37/02B32B37/06B32B37/10B32B37/14
    • G02B6/138G02B6/1221
    • The invention provides an optical waveguide including a resin substrate containing an inorganic filler, and at least a UV-absorbing layer, a lower cladding layer, a patterned core layer, and an upper cladding layer laminated above the resin substrate in this order, wherein the core layer has been patterned through light exposure and development, and the UV-absorbing layer has a thickness of 10 to 50 μm, and a method for producing an optical waveguide, including a step of forming a UV-absorbing layer on a resin substrate containing an inorganic filler; a step of forming a lower cladding layer on the UV-absorbing layer; a step of forming a core layer on the lower cladding layer; a step of subjecting the core layer to light exposure to thereby transfer a pattern having a given shape to the core layer; a step of developing the core layer to thereby form a core pattern; and a step of forming an upper cladding layer on the patterned core layer. According to the present invention, an optical waveguide having a high-resolution core pattern can be produced.
    • 本发明提供了一种光波导,其包括含有无机填料的树脂基材,以及至少层叠在树脂基板上方的UV吸收层,下包层,图案化芯层和上包层,其中, 芯层通过曝光和显影进行图案化,并且UV吸收层具有10至50μm的厚度,以及制造光波导的方法,包括在树脂基板上形成UV吸收层的步骤,该树脂基板含有 无机填料; 在UV吸收层上形成下包层的步骤; 在下包层上形成芯层的步骤; 对芯层进行曝光的步骤,从而将具有给定形状的图案转印到芯层; 显影核心层从而形成芯图案的步骤; 以及在图案化芯层上形成上包层的步骤。 根据本发明,可以制造具有高分辨率芯图案的光波导。
    • 40. 发明申请
    • COMPOSITION FOR ORGANIC ELECTROLUMINESCENCE ELEMENT, ORGANIC THIN FILM, ORGANIC ELECTROLUMINESCENCE ELEMENT, ORGANIC EL DISPLAY DEVICE AND ORGANIC EL LIGHTING
    • 有机电致发光元件,有机薄膜,有机电致发光元件,有机EL显示器件和有机EL照明的组合物
    • US20110127503A1
    • 2011-06-02
    • US12935230
    • 2009-07-30
    • Atsushi TakahashiHideaki Okamoto
    • Atsushi TakahashiHideaki Okamoto
    • H01L51/54C09K11/06
    • H01L51/0007C09B57/00C09B57/001H01L51/0039H01L51/0058H01L51/0059H01L51/006H01L51/008H01L51/0085H01L51/0087H01L51/5012H05B33/10
    • An organic electroluminescence element comprising a luminescent layer formed by a wet film-forming method, which is a long-life organic electroluminescence element is provided. A composition for an organic electroluminescence element, which comprises: two or more kinds of organic electroluminescence element materials including a luminescent material; and a solvent, wherein the composition satisfies the following formula (1): [ Math .  1 ] ( Saturated   solubility   of   E   L   material   S ) ( Weight   ratio   of   E   L   material   S ) × ( Weight   ratio   of   E   L   material   N ) ( Saturated   solubility   of   E   L   material   N ) ≥ 2.0 ( 1 ) (wherein the EL material S is an organic electroluminescence element material having a smallest weight in the composition, the EL material N is an organic electroluminescence element material having a largest weight in the composition, the weight ratio is the weight ratio between the EL material S and the EL material N, and the saturated solubility is the saturated solubility of the material at 20° C. and 1 atm for the solvent in the composition).
    • 提供一种有机电致发光元件,其包含通过湿法成膜法形成的发光层,该发光层是长寿命的有机电致发光元件。 一种有机电致发光元件用组合物,其含有2种以上的包含发光材料的有机电致发光元件材料; 和溶剂,其中所述组合物满足下式(1):[ (1)(饱和度)的比较(参见图4)(重量比) 比较技术参考文献:N)(饱和溶解度)N(≥0.0)(1)(其中EL材料S为 在组成中重量最小的有机电致发光元件材料,EL材料N是组成中重量最大的有机电致发光元件材料,重量比是EL材料S和EL材料N之间的重量比,以及 饱和溶解度是材料在20℃和组合物中溶剂的1atm的饱和溶解度)。