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    • 5. 发明授权
    • Craniotomy drill
    • 开颅手术
    • US09295480B2
    • 2016-03-29
    • US13823077
    • 2011-08-24
    • Lei YeJian ZhouHua FengFei LiHengyang ZhuCongxiao Li
    • Lei YeJian ZhouHua FengFei LiHengyang ZhuCongxiao Li
    • A61B17/16
    • A61B17/1695A61B17/162A61B17/1626A61B17/1628
    • A craniotomy drill includes a main machine, a retarder and a locking seat. A drill transmission rod connected to the output shaft of the retarder is inserted in the locking seat. The main machine comprises a handle at the lower portion and an accommodating part at the upper portion, with a stator and a rotor of a DC electric motor being provided inside the accommodating part and a wall of the accommodating part being the stator housing of the DC electric motor. This craniotomy drill has a simple structure with the wall of the accommodating part as the stator housing of the electric motor, such that the volume and the weight are reduced. It is safe in use without the risk of the electric motor sliding out. By utilizing materials and processes of water resistant technology and an integrative design, a relatively good water resistant performance is achieved.
    • 开颅钻头包括主机,延迟器和锁定座。 连接到延迟器的输出轴的钻杆传动杆插入到锁定座中。 主机包括在下部的手柄和在上部的容纳部分,定子和DC电动机的转子设置在容纳部分的内部,容纳部分的壁是DC的定子壳体 电动马达。 这种开颅钻具具有简单的结构,其中容纳部分的壁作为电动机的定子壳体,使得体积和重量减小。 使用安全,没有电动机滑出的危险。 通过利用防水技术的材料和工艺以及综合设计,实现了相对良好的防水性能。
    • 6. 发明授权
    • Surgical milling cutter bracket
    • 外科铣刀支架
    • US09282982B2
    • 2016-03-15
    • US13823021
    • 2011-08-24
    • Lei YeJian ZhouHua FengFei LiHengyang ZhuCongxiao Li
    • Lei YeJian ZhouHua FengFei LiHengyang ZhuCongxiao Li
    • A61B17/32A61B17/17A61B17/16
    • A61B17/17A61B17/1613A61B17/1633A61B17/32002
    • A surgical milling cutter bracket includes a retaining base having a through hole. The upper part of the retaining base is provided with a finger guide having an L-shaped support frame on the top of the finger guide. A downward protrusion is provided at the end of the short side of the L-shaped support frame. The lowest point of the protrusion is lower than the lowest point of the cylindrical head of the milling cutter during normal operation of the milling cutter. A bolt having a through hole at the center is fixed within the cavity of the finger guide. A depressor is provided on the upper part of the retaining base. The bolt passes through a hole of the depressor and is connected to a nut. The protrusion is able to prevent an object from contacting the cylindrical head, thus avoiding cutting the object unevenly.
    • 外科铣刀支架包括具有通孔的保持基座。 保持基座的上部设置有在手指引导件的顶部具有L形支撑框架的手指引导件。 在L形支撑框架的短边的端部处设置向下突出部。 在铣刀的正常操作期间,突起的最低点低于铣刀的圆柱形头部的最低点。 在中心具有通孔的螺栓固定在手指引导件的空腔内。 在保持基座的上部设有抑制器。 螺栓通过压力机的孔并连接到螺母。 突起能够防止物体接触圆柱形头部,从而避免不均匀地切割物体。
    • 8. 发明申请
    • METHOD OF VALIDATING TIMING ISSUES IN GATE-LEVEL SIMULATION
    • 在门级模拟中验证时序问题的方法
    • US20150135153A1
    • 2015-05-14
    • US14488313
    • 2014-09-17
    • Jian ZhouChao LIANGGeng ZHONG
    • Jian ZhouChao LIANGGeng ZHONG
    • G06F17/50
    • G06F17/5068G06F17/5031G06F2217/84
    • A method of validating timing issues in a gate-level simulation (GLS) of an integrated circuit design including multiple cells includes running a simulation routine of a behavioral model of the design and obtaining a first simulation result. If there is a possible timing violation at a cell corresponding to a forcing indeterminate value, the simulated output of the cell is forced to a first value and a second simulation result obtained. If this result is negative, a report of apparent timing violations at the cell is generated. If the second simulation result is positive, the output of the cell is then forced to a second value and a third simulation result is obtained. If this result is negative, a report of apparent timing violations at the cell is generated but, if it is positive, a report of no apparent timing violation is generated.
    • 在包括多个单元的集成电路设计的门级仿真(GLS)中验证定时问题的方法包括运行设计的行为模型的仿真程序并获得第一仿真结果。 如果在对应于强制不确定值的单元处存在可能的定时违反,则将单元的模拟输出强制为第一值并获得第二仿真结果。 如果这个结果是否定的,就会产生一个在单元格处的表观时序违规的报告。 如果第二模拟结果为正,则将单元的输出强制为第二值,并获得第三模拟结果。 如果这个结果是否定的,就会产生一个在单元格处的表观时序违规的报告,但是如果它是肯定的,就会产生没有明显的定时违规的报告。