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    • 2. 发明授权
    • Double helical-S fiber tray
    • 双螺旋S纤维托盘
    • US06738554B2
    • 2004-05-18
    • US09850442
    • 2001-05-07
    • Bassel H. DaoudJason A. KayDavid S. KerrIvan PawlenkoLarry SamsonRonald Marchisin
    • Bassel H. DaoudJason A. KayDavid S. KerrIvan PawlenkoLarry SamsonRonald Marchisin
    • G02B600
    • G02B6/4447
    • A high-density, small fiber optic enclosure permits the cross-connection and interconnection of optical fibers, through the use of an open-faced compact layering technique. The optical fiber enters an aperture in the bottom of the enclosure which includes a first section attachable to a wall surface, and a second section connected to the first enclosure section by a hinge. The first enclosure section includes an optical fiber splice holder and a plurality of hooks and clips for holding the optical fibers. The second enclosure section includes a plurality of hooks and clips also. The fibers enter the first section, are connected to the hooks and clips, and cross over to the second section and return to the first section and ultimately pass through an exit aperture in such a fashion as to form a plurality of FIG. 8 layers. If the optical fibers are not shielded, it is possible to use two opposing S-shaped fiber tubes to protect them at the crossover between the first and second enclosure.
    • 高密度,小型光纤外壳通过使用开放式紧凑型分层技术,可以实现光纤的交叉连接和互连。 光纤进入外壳的底部的孔,其包括可连接到壁表面的第一部分,以及通过铰链连接到第一外壳部分的第二部分。 第一外壳部分包括光纤接头保持器和用于保持光纤的多个钩和夹子。 第二外壳部分还包括多个钩子和夹子。 纤维进入第一部分,连接到钩和夹子,并且交叉到第二部分并返回到第一部分,并且最终以形成多个图形的方式通过出口孔。 8层。 如果光纤不被屏蔽,则可以使用两个相对的S形光纤管来保护它们在第一和第二外壳之间的交叉处。
    • 9. 发明申请
    • Solar tracking system
    • 太阳能追踪系统
    • US20050284468A1
    • 2005-12-29
    • US10878822
    • 2004-06-28
    • Ivan PawlenkoLarry Samson
    • Ivan PawlenkoLarry Samson
    • F24J2/38F24J2/54
    • F24S30/452F24S25/10Y02E10/47
    • A solar tracking system has a first set of solar heat gain transducers (700) that produce respective first output signals to drive a reversible first motor (300) for changing a vertical angle of a solar collector (200); and a second set of solar heat gain transducers (700) that produce respective second output signals to drive a reversible second motor (608) for changing a horizontal angle of the solar collector (200); each of the transducers (700) having a thermistor (702) in thermal contact with a thermal mass (706); and a communications apparatus (900) receiving output voltage from solar cells (202) on the solar collector (200).
    • 太阳能跟踪系统具有第一组太阳能热增益换能器(700),其产生相应的第一输出信号以驱动用于改变太阳能收集器(200)的垂直角度的可逆第一马达(300); 以及第二组太阳能热增益换能器(700),其产生相应的第二输出信号以驱动用于改变太阳能收集器(200)的水平角的可逆第二电动机(608)。 每个换能器(700)具有与热质(706)热接触的热敏电阻(702)。 以及从太阳能收集器(200)上的太阳能电池(202)接收输出电压的通信装置(900)。
    • 10. 发明申请
    • Electromagnetic shield assembly with opposed hook flanges
    • 具有相对的钩形法兰的电磁屏蔽组件
    • US20050219832A1
    • 2005-10-06
    • US10816354
    • 2004-04-01
    • Ivan PawlenkoLarry Samson
    • Ivan PawlenkoLarry Samson
    • G01N27/82H05K5/00H05K9/00
    • H05K5/0013H05K9/0035H05K9/0073Y10T29/49126
    • An electromagnetic shield structure (100) has an elongated conductive wall (102) that continuously or discontinuously defines a shielding perimeter and has a flange (104) laying over laterally to form a J-shaped hook (106) in cross section. A conductive cover or lid (108) engages over the standing wall (102) and has a depending side wall skirt (110) that has a flange (112) and forms a J-shaped hook (114) facing opposite from the hook (106) of the elongated wall (102). The cover (108) is pressed onto the wall (102) for assembly, causing the flanges (104) and (112) to deflect and snap over one another in the space between the overlapping skirt (110) and wall (102). The shield enclosure (122) can be disassembled without damage by applying a tool (116) through an opening (118) in the outer one of either the skirt (110) or wall (102), to deflect and disengage the flanges (104) and (112) in the space between the overlapped skirt (110) and wall (102).
    • 电磁屏蔽结构(100)具有连续或不连续地限定屏蔽周长的细长导电壁(102),并且具有横向放置以形成截面为J形钩(106)的凸缘(104)。 导电盖或盖(108)接合在立壁(102)上方并且具有悬垂侧壁裙部(110),其具有凸缘(112)并形成面向钩(106)的相对的J形钩(114) )的细长壁(102)。 盖(108)被压在壁(102)上用于组装,导致凸缘(104)和(112)在重叠的裙部(110)和壁(102)之间的空间中彼此偏转和卡扣。 可以通过将工具(116)穿过裙部(110)或壁(102)的外部中的开口(118)而不损坏屏蔽外壳(122),以使凸缘(104)偏转和脱离 和(112)在重叠的裙部(110)和壁(102)之间的空间中。