Method and system for providing healthcare insurance
    82.
    发明申请
    Method and system for providing healthcare insurance 审中-公开
    提供医疗保险的方法和制度

    公开(公告)号:US20050251428A1

    公开(公告)日:2005-11-10

    申请号:US10911324

    申请日:2004-08-04

    CPC classification number: G06Q10/00 G06Q40/00 G06Q40/08

    Abstract: A method and system for providing healthcare benefits according to the present invention may include a proposed healthcare plan having a primary component, a supplemental component, and a procedure for optimizing services consumption which is presented and customized “on-the-fly” to benefits providers, such as employers, and administered in an efficient manner that reduces the claims processing burden on individuals or families covered under the proposed plan.

    Abstract translation: 根据本发明的用于提供医疗益处的方法和系统可以包括具有主要部件,补充部件和优化服务消耗的程序的提议的医疗保健计划,其被“动态地”呈现和定制以使受益者得到 ,如雇主,并以有效的方式进行管理,以减少对拟议计划所涵盖的个人或家庭的索赔处理负担。

    Method of determining relative Z-ordering in an image and method of using same
    83.
    发明申请
    Method of determining relative Z-ordering in an image and method of using same 有权
    确定图像中相对Z排序的方法及其使用方法

    公开(公告)号:US20050156926A1

    公开(公告)日:2005-07-21

    申请号:US11081320

    申请日:2005-03-16

    CPC classification number: G06T7/579

    Abstract: In one embodiment according to the present invention, relative z-ordering of segments in a digital image is determined. A method comprises forward and backward motion matching of image regions to determine overlap, followed by the creation of relationships (e.g., pairwise relationships) between regions and comparing the result with the original image to determine the relative z-ordering.

    Abstract translation: 在根据本发明的一个实施例中,确定数字图像中段的相对z-排列。 一种方法包括图像区域的向前和向后运动匹配以确定重叠,随后在区域之间建立关系(例如,成对关系),并将结果与​​原始图像进行比较以确定相对z排序。

    Composite electrode for a plasma arc torch
    84.
    发明申请
    Composite electrode for a plasma arc torch 审中-公开
    等离子弧焊炬复合电极

    公开(公告)号:US20050067387A1

    公开(公告)日:2005-03-31

    申请号:US10957478

    申请日:2004-09-30

    CPC classification number: H05H1/34 H05H2001/3436 H05H2001/3442

    Abstract: A plasma arc torch that includes a torch body having a nozzle mounted relative to a composite electrode in the body to define a plasma chamber. The torch body includes a plasma flow path for directing a plasma gas to the plasma chamber in which a plasma arc is formed. The nozzle includes a hollow, body portion and a substantially solid, head portion defining an exit orifice. The composite electrode can be made of a metallic material (e.g., silver) with high thermal conductivity in the forward portion electrode body adjacent the emitting surface, and the aft portion of the electrode body is made of a second low cost, metallic material with good thermal and electrical conductivity. This composite electrode configuration produces an electrode with reduced electrode wear or pitting comparable to a silver electrode, for a price comparable to that of a copper electrode.

    Abstract translation: 一种等离子弧焊炬,其包括具有相对于主体中的复合电极安装的喷嘴的炬体,以限定等离子体室。 手电筒包括用于将等离子体气体引导到形成等离子体电弧的等离子体室的等离子体流动路径。 喷嘴包括中空的主体部分和限定出口的基本上固体的头部。 复合电极可以由邻近发射表面的前部电极体中具有高导热性的金属材料(例如银)制成,并且电极体的后部由具有良好的第二低成本金属材料制成 导热和导电性。 这种复合电极配置产生与电极相当的电极磨损或点蚀的电极,其价格与铜电极相当。

    Method and system of calibrating air flow in a respirator system
    85.
    发明授权
    Method and system of calibrating air flow in a respirator system 有权
    校准呼吸器系统中气流的方法和系统

    公开(公告)号:US06666209B2

    公开(公告)日:2003-12-23

    申请号:US09788786

    申请日:2001-02-20

    CPC classification number: A62B18/006

    Abstract: A method and apparatus for calibrating the air flow in a respirator system is provided. The method provides for the establishment of control set points in a true calibration protocol through the simple triggering of the microprocessor of a controller. When the trigger is initiated, the microprocessor engages and provides the logic for the calibration cycle. The calibration cycle proceeds until a second trigger terminates the process and establishes the control set points. The calibration sequence of the method relies only on an initiation and termination trigger that is facilitated by components integral to the apparatus.

    Abstract translation: 提供了一种用于校准呼吸器系统中的气流的方法和装置。 该方法通过简单地触发控制器的微处理器来提供真正的校准协议中的控制设定点的建立。 当触发器启动时,微处理器接合并提供校准周期的逻辑。 校准循环进行到第二个触发器终止该过程并建立控制设定点。 该方法的校准序列仅依赖于由装置积分的组件促成的起始和终止触发。

    Material-handling vehicle
    87.
    发明授权
    Material-handling vehicle 有权
    物料搬运车

    公开(公告)号:US06382899B1

    公开(公告)日:2002-05-07

    申请号:US09661868

    申请日:2000-09-14

    Applicant: David Cook

    Inventor: David Cook

    CPC classification number: B66F9/0655 B60K5/02 B60K5/12 B60K17/00 B60K17/34

    Abstract: A material-handling vehicle includes a structure having ground engageable propulsion means, a loader arm mounted on the structure for up and down swinging movement and, on opposite sides of the loader arm, an operator's cab and an engine having an output to provide power for said movement of the loader arm and for propulsion of the vehicle and a drive to connect the output of the engine to the ground engageable propulsion means to propel the vehicle and wherein the drive includes an angle drive and a change speed gear train, the output of the engine is kinematically connected to an input of the angle drive and an output of the angle drive is kinematically connected to an input of the change speed gear train, and an output of the change speed gear train is kinematically connected to the ground engageable propulsion means wherein the output of the engine and the input of the angle drive are disposed longitudinally of the vehicle whilst the output of the angle drive is disposed transversely of the vehicle.

    Abstract translation: 材料处理车辆包括具有地面可接合推进装置的结构,安装在结构上用于上下摆动的装载臂,并且在装载臂的相对侧上具有驾驶室和具有输出功率的发动机, 所述装载臂的所述运动和用于车辆的推进的驱动器和将发动机的输出连接到地面的驱动器可接合的推进装置以推进车辆,并且其中所述驱动器包括角度驱动器和变速齿轮系, 发动机运动学地连接到角度驱动器的输入端,并且角度驱动器的输出运动地连接到变速齿轮系的输入端,并且变速齿轮系的输出运动地连接到地面可接合的推进装置 其中发动机的输出和角度驱动器的输入设置在车辆的纵向,而角度驱动器的输出横向设置 的车。

    Eye shield for a respiratory mask
    88.
    发明授权
    Eye shield for a respiratory mask 失效
    用于呼吸面罩的眼罩

    公开(公告)号:US5720281A

    公开(公告)日:1998-02-24

    申请号:US732087

    申请日:1996-10-15

    CPC classification number: A62B18/08 A62B18/084

    Abstract: A respiratory mask is provided with an eye shield having a body portion which is releasably-secured to the mask, and a shield portion which shields the eyes of the wearer. The shield portion is self-supporting on the body portion and, hence, on the mask, and includes a sheet of transparent, eye-shielding, material which can be replaced if it becomes marked or damaged. The shield portion can be pivoted forwards, relative to the mask, so that it is removed from the line of vision of the wearer without affecting the respiratory protection provided by the mask. A valve arrangement in the body portion of the eye shield can divert air from the mask into the shield portion, to remove contaminants from the region around the eyes of the wearer.

    Abstract translation: 呼吸面罩设置有具有可释放地固定到面罩的主体部分的护眼罩和屏蔽穿戴者的眼睛的屏蔽部分。 屏蔽部分在主体部分上自我支撑,并且因此在面罩上自支撑,并且包括一片透明的眼屏蔽材料,如果它被标记或损坏可以更换。 屏蔽部分可以相对于面罩向前枢转,使得其从穿戴者的视线中移除,而不会影响由面罩提供的呼吸保护。 眼罩的主体部分中的阀装置可以将空气从面罩转移到屏蔽部分中,以从佩戴者眼睛周围的区域去除污染物。

    APPARATUS AND METHOD FOR FRACKING OPTIMIZATION

    公开(公告)号:US20240183258A1

    公开(公告)日:2024-06-06

    申请号:US18436806

    申请日:2024-02-08

    Applicant: David Cook

    Inventor: David Cook

    CPC classification number: E21B43/26 E21B2200/20 E21B2200/22

    Abstract: An apparatus and method for fracking optimization, wherein the apparatus includes at least a processor, and a memory, wherein the memory containing instructions configuring the at least a processor to receive a reservoir datum from at least a sensing device, generate a production training data include a plurality of reservoir datums as input correlated to a plurality of optimal production parameters as output, train a fracking optimization machine-learning model using the production training data, determine an optimal production parameter as a function of the fracking optimization machine-learning model, and generating an optimal production plan as a function of the optimal production parameter.

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