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    • 75. 发明申请
    • LIGHT EMITTING MODULE AND ILLUMINATION APPARATUS
    • 发光模块和照明装置
    • US20110303927A1
    • 2011-12-15
    • US13202689
    • 2010-02-26
    • Tomohiro SanpeiKiyoshi OtaniMasahiro IzumiJunya MurataAkiko SaitoYumiko Hayashida
    • Tomohiro SanpeiKiyoshi OtaniMasahiro IzumiJunya MurataAkiko SaitoYumiko Hayashida
    • H01L33/60
    • F21V29/70F21K9/00F21V29/75F21V29/76F21Y2105/10F21Y2115/10H01L25/0753H01L33/62H01L2224/45144H01L2224/48091H01L2224/48137Y10S362/80H01L2924/00014H01L2924/00
    • A light emitting module (1) comprises a module substrate (2), a light emitting diode string (31), and a sealing member (48). The light emitting diode string (31) includes light emitting diode elements (32) and bonding wires (37) which connect the light emitting diode elements (32). The light emitting diode element (32) has a pair of element electrodes (33, 34) and has a rectangular shape extending in a direction along which the element electrodes (33, 34) are aligned. The sealing member (48) is laminated on the module substrate (2) to seal the light emitting diode string (31). The light emitting diode elements (32) are arranged at intervals in a direction crossing the direction along which the element electrodes (33, 34) are aligned, and the element electrodes (33, 34) with the same polarity are aligned to be adjacent to each other in an arrangement direction of the light emitting diode elements (32) between the light emitting diode elements (32) adjacent to each other. Each bonding wire (37) is obliquely wired with respect to the arrangement direction of the light emitting diode elements (32) to connect the element electrodes (33, 34) with different polarities of the light emitting diode elements (32) adjacent to each other.
    • 发光模块(1)包括模块基板(2),发光二极管串(31)和密封构件(48)。 发光二极管串(31)包括连接发光二极管元件(32)的发光二极管元件(32)和接合线(37)。 发光二极管元件(32)具有一对元件电极(33,34),并且具有在元件电极(33,34)对齐的方向上延伸的矩形形状。 密封构件(48)层压在模块基板(2)上以密封发光二极管串(31)。 发光二极管元件(32)沿与元件电极(33,34)对准的方向交叉的方向间隔配置,具有相同极性的元件电极(33,34) 在彼此相邻的发光二极管元件(32)之间的发光二极管元件(32)的布置方向上彼此相对。 每个接合线(37)相对于发光二极管元件(32)的布置方向倾斜地连接,以将彼此相邻的发光二极管元件(32)的不同极性的元件电极(33,34)连接 。
    • 80. 发明授权
    • Magnetic refrigeration material and method of manufacturing thereof
    • 磁性制冷材料及其制造方法
    • US07914628B2
    • 2011-03-29
    • US11365683
    • 2006-03-02
    • Hideyuki TsujiAkiko SaitoTadahiko Kobayashi
    • Hideyuki TsujiAkiko SaitoTadahiko Kobayashi
    • H01F1/053
    • H01F1/015C22C30/00C22C38/002C22C38/005C22C38/02
    • A magnetic material comprising a NaZn13 type crystal structure with uniform and fine microstructure exhibiting excellent characteristics as a magnetic refrigeration material, and a method of manufacturing the magnetic refrigeration material are provided. An alloy composition for forming magnetic material of the NaZn13 type crystal structure was melted comprising 0.5 atomic percent to 1.5 atomic percent of B to molten metal. The molten metal is rapidly cooled and solidified by a forced cooling process. Then, a rapidly cooled alloy having the NaZn13 type crystal structure was obtained. In this manner, magnetic materials comprising the NaZn13 type crystal structure phase, or the NaZn13 type crystal structure phase accompanied with other phases such as α-Fe phase having very small phase regions was manufactured without requiring heat treatment for a long time. As the result, productivity of manufacturing the magnetic refrigeration material is remarkably enhanced.
    • 本发明提供一种磁性材料,其特征在于,包括具有均匀且细微的显微组织的NaZn13型结晶结构,具有优异的磁性制冷材料的特性,以及磁性制冷材料的制造方法。 将用于形成NaZn13型晶体结构的磁性材料的合金组合物熔融包含0.5原子%至1.5原子%的B与熔融金属。 熔融金属通过强制冷却过程迅速冷却和固化。 然后,获得具有NaZn13型晶体结构的快速冷却的合金。 以这种方式制造包含NaZn13型晶体结构相的磁性材料或者伴随着具有非常小的相位区域的α-Fe相等其它相的NaZn13型晶体结构相,而不需要长时间的热处理。 结果,制造磁性制冷材料的生产率显着提高。