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    • 4. 发明授权
    • Information display system
    • US06634125B2
    • 2003-10-21
    • US09789807
    • 2001-02-22
    • Brian AbramsonSteven Ferguson
    • Brian AbramsonSteven Ferguson
    • G09F318
    • G09F3/204
    • An information display system in retail stores is used to display, hold and protect product information display cards, and comprises a shelf contacting panel, a front presentation face, a pair of stiffening ribs, two side panels and at least one display pocket, all formed as an integral structure to which at least one display pocket is hingedly attached. The display pocket is openable so that an information display card may be inserted. Prospective customers may read the information contained on the front and back of the information display cards by simply turning the display pocket on its hinge. Retail store personnel may also easily replace or rearrange the information display cards within the information display system. When the information display system comprises at least two display pockets, they are arranged in such a manner that one display pocket overlies a substantial portion of another display pocket. Thus, more information can be displayed in a small area.
    • 6. 发明申请
    • SYSTEM AND METHOD FOR TESTING FUNCTIONAL BOUNDARY LOGIC AT ASYNCHRONOUS CLOCK BOUNDARIES OF AN INTEGRATED CIRCUIT DEVICE
    • 用于测试集成电路设备的异步时钟边界功能边界逻辑的系统和方法
    • US20070266284A1
    • 2007-11-15
    • US11380677
    • 2006-04-28
    • Nathan ChelstromSteven FergusonMack Riley
    • Nathan ChelstromSteven FergusonMack Riley
    • G01R31/28
    • G01R31/318594G01R31/318558
    • A system and method for testing functional boundary logic at an asynchronous clock boundary of an integrated circuit device. With the system and method, each clock domain has its own scan paths that do not cross domain boundaries. By eliminating the scanning across the boundaries, the requirement to have two clock grids in the asynchronously clocked domains may be eliminated. As a result, circuit area and design time with regard to the clock distribution design are reduced. In addition, removing the second clock grid, i.e. the high speed core or system clock, in the asynchronously clocked domains removes the requirement to have a multiplexing scheme for selection of clocking signals in the asynchronous domain. In addition to the above, the system and method provide boundary built-in-self-test logic for testing the functional crossing logic of boundaries between the clock domains in a functional mode of operation.
    • 一种用于在集成电路设备的异步时钟边界处测试功能边界逻辑的系统和方法。 使用系统和方法,每个时钟域都有自己的扫描路径,不会跨域的边界。 通过消除跨越边界的扫描,可以消除在异步计时域中具有两个时钟网格的要求。 结果,电路面积和时钟分配设计的设计时间缩短了。 此外,在异步计时域中去除第二时钟网格,即高速核心或系统时钟,消除了在异步域中选择时钟信号的复用方案的要求。 除了上述之外,系统和方法还提供了边界内置的自检逻辑,用于在功能操作模式下测试时钟域之间边界的功能交叉逻辑。
    • 7. 发明授权
    • Broadcast spreading top dresser
    • 广播传播顶部梳妆台
    • US06817552B2
    • 2004-11-16
    • US10068775
    • 2002-02-06
    • Scott KinkeadThomas E. IsamanDonavon D. KotulaSteven Ferguson
    • Scott KinkeadThomas E. IsamanDonavon D. KotulaSteven Ferguson
    • A01C1700
    • E01C19/203A01C17/001A01C19/00E01C2019/2075
    • A broadcast spreading top dresser (10) includes a diverter (200) which can be positioned in an upper position for light applications and a lower position for heavy applications, with the diverter (200) extending through a slot (210) in an upper sheet (58) of the spinner assembly (40) and beyond and below the upper sheet (58) in the lower position. The leading edges (204) of the diverter (200) are spaced from the circular disks (154) of the spinners (54) intermediate the radial position that the material is dispensed unto the spinners (54) and the maximum rearward extent of the circular disks (154). The lower edges of the diverter (200) extend at differing distances into the thickness of the propelled top dressing material. The metering gate (72) is prevented from being inadvertently manually pivoted between first and second ranges of spacings from the conveyor (140) by a stop (180) having a spring based plunger (182), with the free end of the plunger (182) sliding on the face of the side plate (174) of the metering gate (72) in the second range while the plunger (182) abuts with an edge of the side plate (174) in the first range.
    • 广播散布顶部修整器(10)包括转向器(200),该转向器(200)可以定位在上部位置以用于轻型应用,并且用于重型应用的下部位置,其中转向器(200)延伸穿过上部片中的狭槽(210) (60)的下表面(58),并且位于下部位置的上部片(58)的上方和下方。 转向器(200)的前缘(204)与旋转器(54)的圆盘(154)间隔开,该材料被分配到旋转器(54)的径向位置和圆形的最大向后范围 磁盘(154)。 分流器(200)的下边缘以不同的距离延伸到推进顶部敷料材料的厚度。 通过具有弹簧的柱塞(182)的止动件(180),阻止计量门(72)不经意地从第一和第二间隔范围内从输送机(140)枢转,柱塞的自由端(182) )在第二范围内在计量门(72)的侧板(174)的表面上滑动,同时柱塞(182)在第一范围内与侧板(174)的边缘抵接。
    • 9. 发明授权
    • Flexible plastic hinge having tear resistance
    • 柔性塑料铰链具有抗撕裂性
    • US06630094B2
    • 2003-10-07
    • US09811774
    • 2001-03-20
    • Brian AbramsonSteven Ferguson
    • Brian AbramsonSteven Ferguson
    • B29C6700
    • E05D1/02E05D9/005Y10T16/304Y10T16/525Y10T16/548Y10T29/24Y10T156/1039
    • A tear-resistant flexible hinge structure is placed between a pair of substantially rigid panels so as to permit the panels to be hinged one with respect to the other, where the flexible hinge is formed from a plastics material such as polyvinyl chloride. The hinge structure is formed under heat and pressure so as to comprise at least three parallel rows of alternating flat and raised portions, in staggered relationship. This causes a structure whereby any rip or tear which starts in the formed flexible hinge cannot continue because it will encounter a discontinuity in the configuration and thickness of the material, which precludes further propagation of the rip or tear. Typically, after the hinge structure has been formed, it is configured in a semi-circular cross section, re-heated and cooled, so as to set and have a memory in its closed configuration as opposed to the originally pre-formed flat, open configuration.
    • 抗撕裂的柔性铰链结构被放置在一对基本上刚性的面板之间,以便允许面板相对于另一个铰接在一起,其中柔性铰链由塑料材料如聚氯乙烯形成。 铰链结构在热和压力下形成,以便以交错的关系包括至少三个平行的交替的平坦和凸起部分的行。 这导致了一种结构,其中在形成的柔性铰链中开始的任何裂缝或撕裂不能继续,因为其将在材料的构造和厚度中遇到不连续性,这妨碍了撕裂或撕裂的进一步传播。 通常,在铰链结构已经形成之后,它被构造成半圆形横截面,被重新加热和冷却,以便设置并且具有处于闭合构型的记忆体,而不是原来预先形成的平面,开口 组态。