Universal access port
    35.
    发明申请

    公开(公告)号:US20060026915A1

    公开(公告)日:2006-02-09

    申请号:US11248066

    申请日:2005-10-12

    IPC分类号: E06B3/00

    摘要: A universal access port includes a specific size opening that is formed through a wall of a conditioning enclosure and located at a specific distance from a floor or mounting surface. The opening is preferably rectangular in shape, but other shapes may also be used. When not in use, the universal access port is covered with a sealing panel. Insertable devices may be efficiently inserted and removed from the universal access port. A perimeter of the insertable device is sized to be sealable inserted into the universal access port. Each insertable device preferably seals with an exterior and interior wall of the conditioning enclosure. Some insertable devices include fixturing devices, windows, manual manipulation devices, junction devices, hinged access doors, wire access devices, temperature modifying devices or air circulation devices.

    Low profile acoustic flooring
    37.
    发明申请
    Low profile acoustic flooring 有权
    低调的地板

    公开(公告)号:US20050217928A1

    公开(公告)日:2005-10-06

    申请号:US10818933

    申请日:2004-04-06

    CPC分类号: E04F15/20 E04F15/02476

    摘要: The present invention provides a method for low profile acoustic floor isolation. An isolator is partially but substantially recessed in an acoustic floor and a leveling mechanism at least partially recessed in the acoustic floor is connected to the acoustic isolator to adjust the height of the acoustic floor when the floor is in place.

    摘要翻译: 本发明提供了一种用于低剖面声学层隔离的方法。 隔音器部分地但基本上凹陷在声学地板中,并且至少部分地凹陷在声学地板中的调平机构连接到隔音器,以在地板就位时调节声学底板的高度。

    Valve stem puller and valve stem core tool
    39.
    发明申请
    Valve stem puller and valve stem core tool 失效
    阀杆拉杆和阀杆芯棒工具

    公开(公告)号:US20050011062A1

    公开(公告)日:2005-01-20

    申请号:US10619211

    申请日:2003-07-15

    申请人: Robert Hayes

    发明人: Robert Hayes

    IPC分类号: B25B27/24 B23P19/04

    CPC分类号: B25B27/24 Y10T29/53591

    摘要: A tool for pulling a valve stem and removing the valve core of a Schrader-type pneumatic valve includes an elongate flexible shaft having opposite end portions and a handle affixed to one end portion and a valve-core engaging member including a threaded rear portion and an unthreaded forked front portion for cooperating with a flat member of a Schrader-type valve core for rotating the core to remove it from the valve. The threaded rear portion is threadable into interior threads of the valve when the core has been removed for allowing a user of the tool to pull the valve through a wheel rim opening. The front forked portion of the valve-core engaging member includes a recess formed therein for accommodating a plunger of a Schrader-type valve therein to allow the forked portion to be positioned over the plunger in the valve to provide for engagement of the cooperating forked portion of the valve core.

    摘要翻译: 用于拉动阀杆并移除Schrader型气动阀的阀芯的工具包括具有相对端部的细长柔性轴和固定到一个端部的手柄和包括螺纹后部的阀芯接合构件 用于与Schrader型阀芯的平坦部件配合的无螺纹的前叉部分,用于旋转芯部以将其从阀门移除。 当芯已经被移除以允许工具的使用者通过轮缘开口拉动阀时,螺纹后部可以螺纹连接到阀的内螺纹中。 阀芯接合构件的前叉部分包括形成在其中的凹部,用于在其中容纳施拉德式阀的柱塞,以允许叉形部分位于阀的柱塞上方,以提供配合的叉形部分 的阀芯。

    Staffing-based percentage-allocation routing using real-time data
    40.
    发明授权
    Staffing-based percentage-allocation routing using real-time data 有权
    基于人员配置的百分比路由使用实时数据

    公开(公告)号:US06584191B1

    公开(公告)日:2003-06-24

    申请号:US09384789

    申请日:1999-08-27

    IPC分类号: H04M300

    CPC分类号: H04M3/5232 H04M3/5238

    摘要: A method and apparatus are provided for performing staffing-based percentage-allocation routing using real-time data. According to one aspect of the present invention, transaction allocation is determined using both scheduled and actual handling resources. Actual handling resources associated with each of several transaction processing systems, such as automatic call distributors (ACDs), are measured at times t and t+n. Scheduled handling resources associated with each of the transaction processing systems for times t and t+n are also identified. Then, estimated handling resources are calculated for each of the transaction processing systems for time t+n based upon the actual handling resources and the scheduled handling resources. Finally, based upon the estimated handling resources, transaction allocations for each of the transaction processing systems are determined. According to another aspect of the present invention, a virtual call center is provided. The virtual call center includes a wide area network (WAN), multiple call centers coupled to the WAN, and an allocation controller coupled to the WAN. Each of the call centers includes a transaction processing system. The allocation controller is configured to calculate allocation sets for one or more forecast periods based upon scheduled staffing levels and actual staffing level information received from the transaction processing systems. The allocation sets include percent allocations for each of the transaction processing systems. The allocation controller is additionally configured to balance call distribution among the transaction processing systems by uploading the allocation sets to an inter-exchange carrier interface.

    摘要翻译: 提供一种用于使用实时数据执行基于人员配置的百分比分配路由的方法和装置。 根据本发明的一个方面,使用预定和实际处理资源来确定事务分配。 在时间t和t + n处测量与诸如自动呼叫分配器(ACD)的几个交易处理系统中的每一个相关联的实际处理资源。 还识别与时间t和t + n的每个事务处理系统相关联的计划处理资源。 然后,基于实际的处理资源和调度的处理资源,针对时间t + n的每个事务处理系统计算估计的处理资源。 最后,基于估计的处理资源,确定每个交易处理系统的交易分配。 根据本发明的另一方面,提供一种虚拟呼叫中心。 虚拟呼叫中心包括广域网(WAN),耦合到WAN的多个呼叫中心以及耦合到WAN的分配控制器。 每个呼叫中​​心包括交易处理系统。 分配控制器被配置为基于从事务处理系统接收到的预定人员配置级别和实际人员配置级别信息来计算一个或多个预测周期的分配集。 分配集包括每个事务处理系统的百分比分配。 分配控制器还被配置为通过将分配集上传到交换机之间的载体接口来平衡事务处理系统中的呼叫分配。