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    • 4. 发明申请
    • Gyroscopic system for boresighting equipment
    • 陀螺设备陀螺仪系统
    • US20050150121A1
    • 2005-07-14
    • US10756383
    • 2004-01-14
    • James JaklitschAdam EhartDoug JonesJay MarkeyGary Landsberg
    • James JaklitschAdam EhartDoug JonesJay MarkeyGary Landsberg
    • F41G3/32G01C15/00
    • F41G3/326
    • A gyroscopic system for translating parallel and non-parallel lines between a reference line and a device to be aligned with respect to the reference line is provided. The system includes a first inertial sensor configured to be substantially stationary, the first inertial sensor comprising a first three-axis gyroscopic sensor configured to produce an output signal and a reflector. A second inertial sensor is configured to be portable so as to be positionable adjacent to the first inertial sensor and comprises a gimbal restricted to two physical axes, a gimbal drive system, an electromagnetic energy beam generator, a second three-axis gyroscopic sensor configured to generate an output signal, and a collimator. The collimator is operable to determine an angle between a beam projected by the beam generator and a beam reflected from the reflector and to generate an output signal indicative of the determined angle. A control circuit is operable to process output signals generated by the collimator and the first and second three-axis gyroscopic sensors and determine relative orientations of the first and second inertial sensors with respect to each other.
    • 提供了一种用于在参考线和要相对于参考线对准的装置之间平行和非平行线平移的陀螺仪系统。 该系统包括被配置为基本上静止的第一惯性传感器,第一惯性传感器包括构造成产生输出信号和反射器的第一三轴陀螺仪传感器。 第二惯性传感器被配置为便携式,以便能够靠近第一惯性传感器定位,并且包括限于两个物理轴的万向节,万向驱动系统,电磁能量束发生器,第二三轴陀螺仪传感器,其被配置为 产生输出信号和准直仪。 准直器可操作以确定由光束发生器投射的光束与从反射器反射的光束之间的角度,并产生指示所确定的角度的输出信号。 控制电路可操作以处理由准直仪和第一和第三三轴陀螺仪传感器产生的输出信号,并且确定第一和第二惯性传感器相对于彼此的相对取向。
    • 6. 发明授权
    • Two-surfaced grill with computer controlled two stage upper platen
positioning mechanism
    • 双面烤架配电脑控制两台上压板定位机构
    • US5934182A
    • 1999-08-10
    • US862932
    • 1997-05-29
    • Dave HarterDoug JonesJeffrey R. Cook
    • Dave HarterDoug JonesJeffrey R. Cook
    • A47J27/62A47J37/06A47J37/00
    • A47J27/62A47J37/0611A47J2037/0617
    • A microprocessor controlled grill apparatus for simultaneous two-sided cooking of food items. The grill apparatus includes a stationary lower cooking platen, and an upper cooking platen which is raised and lowered by a unique linear actuator. This actuator provides for two distinct types and phases of movement. The upper platen is lowered from its uppermost, angled open position first by an arcing movement which rotates the rear edge of the upper platen about a slide or thrust bearing and arcs the front edge of the upper platen downward until the upper platen is substantially parallel to but raised, or floating, above the lower platen and uncooked food. Next, the linear actuator lowers the upper platen toward the food, while keeping the upper platen horizontal and parallel to the lower platen. The microprocessor control of this apparatus allows the gap between the upper and lower platens to be calibrated to an extremely fine degree, which may be fixed or varied for preset cooking cycles for various standardized menu items, stored and accessed automatically.
    • 一种微处理器控制的烧烤设备,用于同时双面烹饪食物。 烤架装置包括固定的下部烹饪台板和由独特的线性致动器升高和降低的上部烹调台板。 该致动器提供两种不同类型和运动阶段。 上压板从其最上方的倾斜打开位置首先通过电弧运动降低,该电弧运动使上压板的后边缘围绕滑动或推力轴承旋转,并使上压板的前边缘向下圆弧,直到上压板基本上平行于 但升高或漂浮在下压板和未煮过的食物之上。 接下来,线性致动器将上压板朝向食品下降,同时保持上压板水平并平行于下压板。 该装置的微处理器控制允许上压板和下压板之间的间隙被精确地校准,其可以被固定或变化,用于各种标准化菜单项的预设烹饪周期,其被自动存储和访问。