会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Multi-processor control device and method
    • 多处理器控制装置及方法
    • US08069357B2
    • 2011-11-29
    • US12122267
    • 2008-05-16
    • Hiroshi NakamuraMasaaki KondoTakashi NanyaRyo Watanabe
    • Hiroshi NakamuraMasaaki KondoTakashi NanyaRyo Watanabe
    • G06F1/26
    • G06F1/32
    • A multi-processor control device according to an example of the invention comprises a cooperative control unit which determines priorities of requests issued from processors to a shared resource which are used to suppress a total power consumption of the processors within a range in which performance constraints of programs executed by the processors are satisfied, and determines a frequency of each of the processors so as to suppress the total power consumption within the range in which the performance constraint of the each program is satisfied, a first control unit which issues requests from the processors to the shared resource in accordance with priorities determined by the cooperative control unit, and a second control unit which controls the frequency of each of the processors in accordance with the frequency determined by the cooperative control unit.
    • 根据本发明的示例的多处理器控制设备包括协作控制单元,其确定从处理器向共享资源发出的请求的优先级,所述共享资源用于在所述处理器的性能约束的范围内抑制所述处理器的总功耗 满足处理器执行的程序,并且确定每个处理器的频率,以便抑制在满足每个节目的性能约束的范围内的总功耗;发出来自处理器的请求的第一控制单元 根据由协作控制单元确定的优先级来分配给共享资源;以及第二控制单元,其根据由协作控制单元确定的频率来控制每个处理器的频率。
    • 2. 发明申请
    • MULTI-PROCESSOR CONTROL DEVICE AND METHOD
    • 多处理器控制装置和方法
    • US20080288796A1
    • 2008-11-20
    • US12122267
    • 2008-05-16
    • Hiroshi NakamuraMasaaki KondoTakashi NanyaRyo Watanabe
    • Hiroshi NakamuraMasaaki KondoTakashi NanyaRyo Watanabe
    • G06F1/32G06F9/46
    • G06F1/32
    • A multi-processor control device according to an example of the invention comprises a cooperative control unit which determines priorities of requests issued from processors to a shared resource which are used to suppress a total power consumption of the processors within a range in which performance constraints of programs executed by the processors are satisfied, and determines a frequency of each of the processors so as to suppress the total power consumption within the range in which the performance constraint of the each program is satisfied, a first control unit which issues requests from the processors to the shared resource in accordance with priorities determined by the cooperative control unit, and a second control unit which controls the frequency of each of the processors in accordance with the frequency determined by the cooperative control unit.
    • 根据本发明的示例的多处理器控制设备包括协作控制单元,其确定从处理器向共享资源发出的请求的优先级,所述共享资源用于在所述处理器的性能约束的范围内抑制处理器的总功耗 满足处理器执行的程序,并且确定每个处理器的频率,以便抑制在满足每个节目的性能约束的范围内的总功耗;发出来自处理器的请求的第一控制单元 根据由协作控制单元确定的优先级来分配给共享资源;以及第二控制单元,其根据由协作控制单元确定的频率来控制每个处理器的频率。
    • 7. 发明申请
    • FUEL CELL SEPARATOR AND FUEL CELL
    • 燃料电池分离器和燃料电池
    • US20100035121A1
    • 2010-02-11
    • US12531086
    • 2008-03-14
    • Kazunori ShibataMasaaki KondoSyo Usami
    • Kazunori ShibataMasaaki KondoSyo Usami
    • H01M2/02
    • H01M8/0258H01M8/0247H01M8/0267H01M8/0273H01M8/0297H01M8/04119H01M8/242H01M8/2457H01M8/2483H01M2008/1095
    • This separator is equipped with a first plate 33 and a second plate 32. The first plate 33 has a first hole 3341 through which reaction gas flows. The second plate 32 is to be stacked with the first plate 33, and has a second hole 3241 through which the reaction gas flows. The second hole 3241 overlaps with the first hole 3341 at the first part 3231, and is in fluid communication with the first hole 3341. The second plate 32 has a partition part 323 that divides the part 3247 of the second part which does not overlap the first hole 3341 among the second holes 3241 into a plurality of flow path parts 56. The separator 30 is further equipped with an oscillating portion 325. The oscillating portion 325 is connected to the partition part 323. The oscillating portion 325 is arranged at a position such that part of the oscillating portion 325 overlaps with the first hole 3341 of the first plate 33. The oscillating portion 325 is provided so as to be shaken by the reaction gas that flows inside the first hole 3341.
    • 该隔板配备有第一板33和第二板32.第一板33具有第一孔3341,反应气体通过该第一孔3341流动。 第二板32与第一板33堆叠,并且具有第二孔3241,反应气体通过该第二孔3241流动。 第二孔3241在第一部分3231处与第一孔3341重叠,并且与第一孔3341流体连通。第二板32具有分隔部分323,其将第二部分的部分3247与第一部分3241不重叠 第二孔3241中的第一孔3341形成多个流路部56.隔板30还具有摆动部325.振动部325与分隔部323连接。振动部325配置在位置 使得振荡部分325的一部分与第一板33的第一孔3341重叠。摆动部分325被设置成被在第一孔3341内流动的反应气体摇动。
    • 9. 发明授权
    • Light diffuser for point light source and direct type point light source backlight device
    • 点光源的光扩散器和直接型点光源背光装置
    • US09341754B2
    • 2016-05-17
    • US13394383
    • 2010-06-11
    • Tomofumi MaekawaMasaaki Kondo
    • Tomofumi MaekawaMasaaki Kondo
    • G02B5/04G02B5/02
    • G02B5/0231G02B5/0278
    • In a direct type point light source backlight using point light sources, a light diffuser is provided that can achieve coexistence of superior luminance, luminance uniformity (front and oblique views), and a color unevenness characteristic even with a desired backlight thickness and a few number of point light sources without using a number of optical films together.Specifically, provided is a light diffuser for point light sources, the light diffuser having a plurality of convex portions formed on a surface thereof, wherein the convex portion has a substantially triangular pyramid shape whose bottom surface is a triangle, and an inclined angle θ with respect to a bottom surface of a side surface of the substantially triangular pyramid shape and a refractive index A of a material forming the convex portion satisfy the following equations (1) and (2). θ≧−40A°+115.2°  (1) θ≦25A°+22.25°  (2)
    • 在使用点光源的直接型点光源背光中,提供了即使具有期望的背光厚度和数量也可以实现优异亮度,亮度均匀性(前视图和斜视图)以及颜色不均匀性的共存的光漫射器 的点光源,而不使用多个光学膜。 具体地,提供了一种用于点光源的光漫射器,所述光漫射体具有形成在其表面上的多个凸部,其中所述凸部具有底面为三角形的大致三角锥形,并具有倾斜角度; 相对于大致三角锥形状的侧面的底面和形成凸部的材料的折射率A满足下述式(1)和(2)。 & t;≧-40A°+ 115.2°(1)&thetas;≦̸ 25A°+ 22.25°(2)