FREE STANDING JOYSTICK
    23.
    发明申请
    FREE STANDING JOYSTICK 审中-公开
    免费待机玩具

    公开(公告)号:US20070242042A1

    公开(公告)日:2007-10-18

    申请号:US11279493

    申请日:2006-04-12

    申请人: Michael Kelly

    发明人: Michael Kelly

    IPC分类号: G09G5/08

    CPC分类号: G06F3/0346

    摘要: A free standing joystick that is unrestricted in terms of its DOF of movement is disclosed, which can detect and represent all of the linear and rotational movements that can be made with a user's hand. As one example, a free standing joystick is disclosed, which includes a hand-held fixture and eight accelerometers attached to the fixture. The accelerometers are mounted on the fixture so as to detect and distinguish the six freedoms of movement, linear motion along the X, Y, and Z axes, and rotations about those axes. The fixture is unencumbered by mechanical attachment and can be moved freely by the user. The accelerometers detect acceleration on the six degrees of freedom and can provide those movements to other entities such as a computer for use in games, space, and any application that may require input in multiple axes of freedom. The result is a computer input device that is more intuitive, more flexible, and can be produced at a lower cost than heretofore possible.

    摘要翻译: 公开了一种在其运动自由度方面不受限制的独立操纵杆,其可以检测和表示可以用用户手进行的所有线性和旋转运动。 作为一个示例,公开了一种独立的操纵杆,其包括手持固定装置和附接到固定装置的八个加速度计。 加速度计安装在固定装置上,以便检测和区分六种运动自由度,沿着X,Y和Z轴的直线运动,以及围绕这些轴线的旋转。 夹具不受机械附件的妨碍,使用者可以自由移动。 加速度计检测六个自由度的加速度,并且可以将这些运动提供给其他实体,例如用于游戏,空间以及可能需要在多个自由轴上输入的任何应用的计算机。 其结果是更直观,更灵活并且可以以比迄今为止更低的成本生产的计算机输入装置。

    Orthogonal microwave imaging probe
    26.
    发明授权
    Orthogonal microwave imaging probe 有权
    正交微波成像探头

    公开(公告)号:US07190175B1

    公开(公告)日:2007-03-13

    申请号:US11139759

    申请日:2005-05-27

    IPC分类号: G01R27/04 G01R31/02 G01N23/00

    CPC分类号: G01Q60/48 G01R1/06772

    摘要: A microwave imaging microscope and associated probe, or a read head. The probe or the read head includes a sensor unit with three fixed electrodes, preferably a stimulating electrode surrounding a sensing electrode and isolated by a grounded electrode. Circuitry couples the stimulating electrode to the probe signal variably selected in the range of 100 MHz to 100 GHz and couples the sensing electrode to a signal processor detecting in-phase and out-of-phase components of the current or voltage across the sensing electrode and the grounded electrode. A mechanical positioner moves the probe vertically towards the sample and scans it across the sample. The probe may be formed by semiconductor processing methods on a silicon chip.

    摘要翻译: 微波成像显微镜和相关探头,或读头。 探头或读头包括具有三个固定电极的传感器单元,优选地是围绕感测电极并由接地电极隔离的刺激电极。 电路将刺激电极耦合到在100MHz至100GHz的范围内可变地选择的探测信号,并将感测电极耦合到信号处理器,该信号处理器检测跨越感测电极的电流或电压的同相和异相分量, 接地电极。 机械定位器将探针垂直移动到样品并扫描样品。 探针可以通过硅芯片上的半导体处理方法形成。

    Method of moulding contact lenses and moulding apparatus for use in the method
    30.
    发明申请
    Method of moulding contact lenses and moulding apparatus for use in the method 审中-公开
    模制隐形眼镜的方法和用于该方法的成型装置

    公开(公告)号:US20070001328A1

    公开(公告)日:2007-01-04

    申请号:US10569558

    申请日:2004-08-27

    申请人: Michael Kelly

    发明人: Michael Kelly

    IPC分类号: B29D11/00

    CPC分类号: B29D11/00134 B29D11/00057

    摘要: The present application relates to a method of moulding a contact lens using a male mould (3) and a female mould (5). The method comprises the steps of introducing lens-forming material in a liquid state into the female mould. The male mould is then inserted into the female mould to a first relative position to form an assembly of the male and female moulds in which the moulds together define a moulding cavity (11) and a reservoir (21) for lens-forming material. During the insertion of the male mould to the first position thereof, part of the liquid state lens-forming material is expelled from the moulding cavity to the reservoir. Curing of the lens-forming material is then initiated in the moulding cavity whilst keeping open a pathway between the moulding cavity and the reservoir so as to allow lens forming material to flow from the reservoir into the moulding cavity to compensate for shrinkage of the lensforming material during curing. An external force is applied on the assembly of moulds to insert the male mould further into the female mould to thereby close the moulding cavity and to seal off the moulding cavity from the reservoir. The lens-forming material is allowed to complete the transformation to a final, glassy solid state within the sealed moulding cavity. The formed contact lens is removed from the assembly of male and female moulds after the lens forming material has reached the final glassy solid state thereof. The invention also relates to apparatus for moulding a contact lens.

    摘要翻译: 本申请涉及使用阳模(3)和阴模(5)模制隐形眼镜的方法。 该方法包括以下步骤:将透镜形成材料以液态引入到阴模中。 然后将阳模插入阴模中至第一相对位置,以形成阴模和阴模的组件,其中模具一起限定了用于透镜形成材料的模制腔(11)和储存器(21)。 在将阳模插入其第一位置期间,部分液状透镜形成材料从模腔排出到储存器。 透镜形成材料的固化然后在模制腔中启动,同时保持在模制腔和储存器之间打开通路,以允许透镜形成材料从储存器流入模制腔以补偿透镜成型材料的收缩 在固化期间。 在模具组件上施加外力以将阳模进一步插入阴模中,从而封闭模制腔并将模腔从储存器密封。 允许透镜形成材料在密封模制腔内完成转化为最终的玻璃状固体状态。 在镜片形成材料已经达到其最终的玻璃状固体状态之后,将形成的隐形眼镜从阳模和阴模的组件上移除。 本发明还涉及用于模制隐形眼镜的装置。