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    • 3. 发明申请
    • SYSTEM AND METHOD FOR CONTROL REGISTERS ACCESSED VIA PRIVATE OPERATIONS
    • 控制通过私人操作访问的寄存器的系统和方法
    • WO2006069364A3
    • 2006-10-05
    • PCT/US2005046989
    • 2005-12-21
    • INTEL CORPGILBERT JEFFREYJOYCE HARRIS
    • GILBERT JEFFREYJOYCE HARRIS
    • G06F9/30
    • G06F9/30101G06F9/30043G06F11/3648G06F11/3656
    • A system and method for accessing control registers in a computer system is described. In one embodiment, a control register is given an address which is outside the normal input/output addressable range. Additionally, this control register may be physically located in system circuits separate from the processor functional circuitry. Such a control register may not be accessible via normal user input/output instructions. Special microcode may be used to access these control registers. The special microcode may be executed by special system events. These special events may include loading a microcode patch, or by entering a special debug mode, or by test access using a test access port.
    • 描述了用于访问计算机系统中的控制寄存器的系统和方法。 在一个实施例中,给控制寄存器一个在正常输入/输出可寻址范围之外的地址。 另外,该控制寄存器可以物理地位于与处理器功能电路分离的系统电路中。 这种控制寄存器可能不能通过普通的用户输入/输出指令访问。 特殊的微码可用于访问这些控制寄存器。 特殊的微码可以由特殊的系统事件执行。 这些特殊事件可能包括加载微码补丁,或通过进入特殊的调试模式,或通过使用测试访问端口进行测试访问。
    • 4. 发明申请
    • LASER WELDED DOOR HARDWARE AND METHOD OF MANUFACTURE
    • 激光焊接门硬件及其制造方法
    • WO0112937A2
    • 2001-02-22
    • PCT/US0022004
    • 2000-08-11
    • EMHART INCHILDEBRANDT JOHNGILBERT JEFFREY
    • HILDEBRANDT JOHNGILBERT JEFFREY
    • E05B1/00E05B17/00E06B
    • E05B17/0004E05B1/00
    • A thin-walled, laser-welded multi-piece door knob assembly (20) is disclosed in which two halves (22, 24) of a knob assembly (20) are formed by standard stamping or forming processes and an interface edge is formed thereon. The stampings are placed in abutting alignment and joined together in a welding process, which fuses the two halves together with no filler material. During the welding process, each of the knob halves (22, 24) are constrained to their nominal shape as they are held in appropriate position and rotated together on a common axis. During the welding process, the welder (52) is radially manipulated with respect to the interface edges (30, 34) to maintain a fixed distance between the welder and the knob assembly (20) regardless of the circumferential configuration of the knob assembly. Sizing fixtures (40) may be utilized to constrain the knob halves (22, 24) and facilitate loading thereof through the use of articulated holders. Upon completion of the welding process, the welded knob assembly (20) is further finished utilizing sanding and polishing steps to remove any visible weld joints. Subsequent plating, physical vapor deposition or powdered coating is used to provide the desired surface finish.
    • 公开了一种薄壁激光焊接的多件式门把手组件(20),其中通过标准冲压或成型工艺形成旋钮组件(20)的两个半部(22,24),并且在其上形成界面边缘 。 冲压件以接合对准的方式放置在焊接过程中并且将两个半部分融合在一起而不填充材料。 在焊接过程中,每个旋钮半部(22,24)被限制在它们的标称形状,因为它们被保持在合适的位置并且在公共轴上一起旋转。 在焊接过程中,焊接器(52)相对于界面边缘(30,34)被径向地操纵,以保持焊接机和旋钮组件(20)之间的固定距离,而与旋钮组件的圆周形状无关。 尺寸固定装置(40)可用于约束半部(22,24),并且便于通过使用铰接的支架装载。 在完成焊接过程之后,通过砂磨和抛光步骤进一步完成焊接旋钮组件(20),以去除任何可见的焊接接头。 随后的电镀,物理气相沉积或粉末涂层用于提供所需的表面光洁度。