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    • 72. 发明授权
    • Ceramic powder and use thereof
    • 陶瓷粉及其用途
    • US08273807B2
    • 2012-09-25
    • US13156721
    • 2011-06-09
    • Yasuhisa NishiTakashi Fukuda
    • Yasuhisa NishiTakashi Fukuda
    • C08K7/00
    • C08K3/36C01B33/126C04B35/14C04B2235/5436C04B2235/5472H01L23/295H01L2924/0002H01L2924/3011Y10T428/2982H01L2924/00
    • The present invention herein provides ceramic powder which is to be incorporated into rubber or a resin and which can be used as, for instance, a semiconductor-sealing material and for the preparation of a composition excellent in the narrow interstice-filling up property and moldability. The ceramic powder has a multiple peak-frequency type particle size distribution which has at least two peaks, as determined according to the laser diffraction-scattering type particle size distribution analyzer, wherein the maximum particle size observed for the first peak falls within the range of from 12 to 30 μm; that observed for the second peak falls within the range of from 2 to 7 μm; the content of the particles having a particle size of greater than 7 μm and less than 12 μm is not more than 18% (including 0%); and wherein the ratio (F2/F1) of the frequency value F2 of the maximum particle size for the second peak to that F1 of the maximum particle size for the first peak ranges from 0.5 to 1.3.
    • 本发明提供陶瓷粉末,该陶瓷粉末被掺入到橡胶或树脂中,并且可以用作例如半导体密封材料,并且用于制备狭缝间填充性和成型性优异的组合物 。 陶瓷粉末具有多峰值频率型粒度分布,其具有根据激光衍射 - 散射型粒度分布分析仪确定的至少两个峰,其中,对于第一峰观察到的最大粒径落在 12〜30μm; 观察到的第二峰落在2至7μm的范围内; 粒径大于7μm且小于12μm的颗粒的含量不超过18%(包括0%); 并且其中第二峰的最大粒径的频率值F2与第一峰的最大粒径的F1的比率(F2 / F1)为0.5〜1.3。
    • 75. 发明授权
    • Ceramic powder and use thereof
    • 陶瓷粉及其用途
    • US08063120B2
    • 2011-11-22
    • US12300528
    • 2007-05-11
    • Yasuhisa NishiTakashi Fukuda
    • Yasuhisa NishiTakashi Fukuda
    • C08K7/00
    • C08K3/36C01B33/126C04B35/14C04B2235/5436C04B2235/5472H01L23/295H01L2924/0002H01L2924/3011Y10T428/2982H01L2924/00
    • The present invention herein provides ceramic powder which is to be incorporated into rubber or a resin and which can be used as, for instance, a semiconductor-sealing material and for the preparation of a composition excellent in the narrow interstice-filling up property and moldability. The ceramic powder has a multiple peak-frequency type particle size distribution which has at least two peaks, as determined according to the laser diffraction-scattering type particle size distribution analyzer, wherein the maximum particle size observed for the first peak falls within the range of from 12 to 30 μm; that observed for the second peak falls within the range of from 2 to 7 μm; the content of the particles having a particle size of greater than 7 μm and less than 12 μm is not more than 18% (including 0%); and wherein the ratio (F2/F1) of the frequency value F2 of the maximum particle size for the second peak to that F1 of the maximum particle size for the first peak ranges from 0.5 to 1.3.
    • 本发明提供陶瓷粉末,该陶瓷粉末被掺入到橡胶或树脂中,并且可以用作例如半导体密封材料,并且用于制备狭缝间填充性和成型性优异的组合物 。 陶瓷粉末具有多峰值频率型粒度分布,其具有根据激光衍射 - 散射型粒度分布分析仪确定的至少两个峰,其中,对于第一峰观察到的最大粒径落在 12〜30μm; 观察到的第二峰落在2至7μm的范围内; 粒径大于7μm且小于12μm的颗粒的含量不超过18%(包括0%); 并且其中第二峰的最大粒径的频率值F2与第一峰的最大粒径的F1的比率(F2 / F1)为0.5〜1.3。
    • 78. 发明申请
    • ELECTRONIC APPARATUS AND CONNECTOR MODULE USED FOR THIS ELECTRONIC APPARATUS
    • 用于该电子设备的电子设备和连接器模块
    • US20100311270A1
    • 2010-12-09
    • US12858873
    • 2010-08-18
    • Takashi Fukuda
    • Takashi Fukuda
    • H01R3/00
    • H01R13/641
    • An electronic apparatus wherein at least one detachable module is inserted into a rack and the module is connected with the rack by male/female connector, wherein it is made possible to detect any bending of pins of the male connector before the module is mounted in the rack and therefore incomplete mounting of the module to the rack can be prevented. A light source with high linearity is provided at each of the pins at the male connector side, while conversely a light receiving unit of light is provided at each of the receptacles at the female connector side. Before connection of the connectors, if all receiving units receive light, normality of the pins is detected. Instead of providing the light receiving units at the female connector side, providing a reflecting part at the female connector side and providing a light receiving unit at the male connector side is possible.
    • 一种电子设备,其中至少一个可拆卸模块被插入到机架中,并且模块通过公/母连接器与机架连接,其中在模块安装在其中之前可以检测到公连接器的销的任何弯曲 因此可以防止机架,因此不完全地将模块安装到机架上。 在阳连接器侧的每个销处提供具有高线性度的光源,而相反,在阴连接器侧的每个插座处提供光接收单元。 在连接器连接之前,如果所有接收单元都接收到光,则检测到引脚的正常性。 在阴连接器侧设置光接收单元而不是在阴连接器侧提供反射部分并且在阳连接器侧提供光接收单元是可能的。
    • 79. 发明申请
    • CERAMIC POWDER AND METHOD OF USING THE SAME
    • 陶瓷粉及其使用方法
    • US20090306272A1
    • 2009-12-10
    • US12300528
    • 2007-05-11
    • Yasuhisa NishiTakashi Fukuda
    • Yasuhisa NishiTakashi Fukuda
    • C08K3/36B32B5/16
    • C08K3/36C01B33/126C04B35/14C04B2235/5436C04B2235/5472H01L23/295H01L2924/0002H01L2924/3011Y10T428/2982H01L2924/00
    • The present invention herein provides ceramic powder which is to be incorporated into rubber or a resin and which can be used as, for instance, a semiconductor-sealing material and for the preparation of a composition excellent in the narrow interstice-filling up property and moldability. The ceramic powder has a multiple peak-frequency type particle size distribution which has at least two peaks, as determined according to the laser diffraction-scattering type particle size distribution analyzer, wherein the maximum particle size observed for the first peak falls within the range of from 12 to 30 μm; that observed for the second peak falls within the range of from 2 to 7 μm; the content of the particles having a particle size of greater than 7 μm and less than 12 μm is not more than 18% (including 0%); and wherein the ratio (F2/F1) of the frequency value F2 of the maximum particle size for the second peak to that F1 of the maximum particle size for the first peak ranges from 0.5 to 1.3.
    • 本发明提供陶瓷粉末,该陶瓷粉末被掺入到橡胶或树脂中,并且可以用作例如半导体密封材料,并且用于制备狭缝间填充性和成型性优异的组合物 。 陶瓷粉末具有多峰值频率型粒度分布,其具有根据激光衍射 - 散射型粒度分布分析仪确定的至少两个峰,其中,对于第一峰观察到的最大粒径落在 12至30岁 观察到的第二峰值在2至7μm的范围内; 粒径大于7μm且小于12μm的颗粒的含量不超过18%(包括0%); 并且其中第二峰的最大粒径的频率值F2与第一峰的最大粒径的F1的比率(F2 / F1)为0.5〜1.3。