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    • 72. 发明申请
    • Mounting assembly for cover of computer enclosure
    • 电脑外壳盖的安装组件
    • US20060092603A1
    • 2006-05-04
    • US11193900
    • 2005-07-29
    • Yun-Lung ChenJun TangShao-Bin ZhangZhou Xu
    • Yun-Lung ChenJun TangShao-Bin ZhangZhou Xu
    • G06F1/16
    • G06F1/181
    • A mounting assembly for a cover of a computer enclosure includes a chassis (40) having a side panel, at least one locking member (20) securely attached to the chassis (40), a cover (10) adapted to be slidably mounted to the chassis (40) and at least one jacking member (30) movably mounted to the chassis (40). A projecting tab (122) extends from a side panel (12) of the cover (10) and a stopping tab (123) extends from an inner side of the side panel (12) thereof. The jacking member (30) has a jacking portion (32) and a pressed portion (34). The jacking portion (32) is inserted between the locking member (20) and the side panel (41) of the chassis (40) for keeping the locking member (20) disengaging from the stopping tab (123). The pressed portion (34) is pressed by the projecting tab (122) for retracting the jacking portion (32).
    • 一种用于计算机外壳的盖的安装组件,包括具有侧板的底盘(40),至少一个牢固地附接到底盘(40)的锁定构件(20),适于可滑动地安装在底座 底盘(40)和可移动地安装到底架(40)的至少一个起重构件(30)。 突出片(122)从盖(10)的侧板(12)延伸并且止动片(123)从其侧板(12)的内侧延伸。 顶起构件(30)具有顶起部(32)和按压部(34)。 顶起部分(32)插入到锁定构件(20)和底盘(40)的侧面板(41)之间,用于保持锁定构件(20)与止动片(123)脱离。 按压部分(34)被突出突片(122)按压以缩回顶起部分(32)。
    • 73. 发明申请
    • Reactor head with integral nozzles
    • 具有整体喷嘴的反应器头
    • US20050117684A1
    • 2005-06-02
    • US10792931
    • 2004-03-04
    • Richard KlarnerJun Tang
    • Richard KlarnerJun Tang
    • G21C7/14G21C7/10G21C13/00G21C13/02G21C13/036G21D1/00G21C19/00
    • G21C13/036G21C7/10G21C13/02Y02E30/39
    • A reactor closure head assembly has guide tube nozzles which are integral with the reactor closure head. A dome-shaped forging having a concave surface is prepared with extra thickness equal to or greater than the desired nozzle height. Nozzles having bores therethrough are machined opposite the concave surface. Weld buttering is applied to the ends of the nozzles, the concave surface is clad with a corrosion resistant layer, and the forging is then heat treated. A guide tube flange is attached to the ends of the nozzles. The surfaces of the nozzle bores are covered with a protective layer which is preferably applied without heating, for example by electrochemical deposition, thereby avoiding the need for subsequent post weld heat treatment.
    • 反应器闭合头组件具有与反应器封闭头成一体的导管喷嘴。 准备具有等于或大于所需喷嘴高度的额外厚度的具有凹面的圆顶形锻造。 具有穿过其中的孔的喷嘴被加工成与凹面相对。 在喷嘴的端部施加焊膏,将凹面包覆有耐腐蚀层,然后对锻造进行热处理。 引导管法兰连接到喷嘴的端部。 喷嘴孔的表面被保护层覆盖,保护层优选在不加热的情况下进行加热,例如通过电化学沉积,从而避免了后续的后焊接热处理的需要。
    • 76. 发明授权
    • Computer operating process allocating tasks between first and second processors at run time based upon current processor load
    • 计算机操作过程基于当前处理器负载在运行时在第一和第二处理器之间分配任务
    • US06298370B1
    • 2001-10-02
    • US08833152
    • 1997-04-04
    • Jun TangJohn Ling Wing So
    • Jun TangJohn Ling Wing So
    • G06F900
    • G06F9/505G06F9/5044
    • A process of operating a computer system (100). The computer system (100) has a storage (HDD, 110) holding an operating system (OS) and an application program (APP.exe), a first processor (106) having an instruction set, and a second processor (1730) having a different instruction set. The process includes steps of 1) running (2424) at least some of the operating system (OS) on the first processor (106) so that the first processor (106) sets up for at least part of the application program at run time at least one second processor object (VSP OBJECT 1); and 2) concurrently running the second processor (3310) to access the second processor object (VSP OBJECT1) and thereby determine operations for the second processor (1730) to access second processor instructions for said part of the application program (APP.exe) and data to be processed according to said second processor instructions, and running (2436) the second processor (1730) to process the data according to said second processor instructions. Other processes, systems, devices and methods are also disclosed.
    • 一种操作计算机系统(100)的过程。 计算机系统(100)具有保持操作系统(OS)和应用程序(APP.exe)的存储器(HDD,110),具有指令集的第一处理器(106)和具有指令集的第二处理器(1730) 一个不同的指令集。 该过程包括以下步骤:1)在第一处理器(106)上运行(2424)操作系统(OS)中的至少一些,使得第一处理器(106)在运行时设置应用程序的至少一部分, 至少一秒处理器对象(VSP OBJECT 1); 以及2)同时运行所述第二处理器(3310)以访问所述第二处理器对象(VSP OBJECT1),从而确定所述第二处理器(1730)对所述应用程序(APP.exe)的所述部分访问第二处理器指令的操作,以及 根据所述第二处理器指令处理的数据,以及运行(2436)所述第二处理器(1730)以根据所述第二处理器指令处理所述数据。 还公开了其它过程,系统,设备和方法。
    • 77. 发明授权
    • Centrifuge bowl with improved core structure
    • 具有改进的核心结构的离心碗
    • US5882289A
    • 1999-03-16
    • US828745
    • 1997-03-26
    • Koichiro SakotaToshiyasu OhashiJun Tang
    • Koichiro SakotaToshiyasu OhashiJun Tang
    • A61M1/02B04B5/04B04B7/08B04B7/12
    • B04B7/08A61M1/3693B04B5/0442B04B2005/0464
    • A centrifuge bowl suitable for separating blood components, in particular concentrated red blood cells. A centrifuge bowl 10 comprises a core 14 having an annular portion 50A and a cylindrical outer wall 50. Annular portion 50A has a thick wall for minimizing the holdup volume of blood components within a collection chamber CC and the radially inner wall of the annular portion is disposed radially closely adjacent to the opening defined by skirts 24a, 25a. The outer wall 50 defines a separation chamber SC with bowl body 12 and its upper tapered portion defines a separation region S. Three slit-like openings 52 are formed at the junction between outer wall 50 and annular portion 50A, thereby prevent back flow while permitting flow of blood components from separation chamber SC to collection chamber CC. The upper end of outer wall 50 is formed with a cylindrical hub 50B extending toward the skirt member, which hub 50B serves to prevent fluid in collection chamber CC from flowing to the interior of bowl body 12 through central opening 56.
    • 适合分离血液成分的离心机碗,特别是浓缩的红细胞。 离心机碗10包括具有环形部分50A和圆柱形外壁50的芯部14.环形部分50A具有用于使收集室CC内的血液成分的滞留体积最小化的厚壁,并且环形部分的径向内壁是 径向地靠近由裙部24a,25a限定的开口。 外壁50限定具有碗体12的分离室SC,其上锥形部分限定分离区域S.在外壁50和环形部分50A之间的接合处形成三个狭缝状开口52,从而防止反向流动,同时允许 血液成分从分离室SC流向收集室CC。 外壁50的上端形成有朝向裙部件延伸的圆柱形轮毂50B,轮毂50B用于防止收集室CC中的流体通过中心开口56流到碗体12的内部。