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    • 1. 发明专利
    • Device and system for collecting of solar light
    • 用于收集太阳能灯的装置和系统
    • JP2013045640A
    • 2013-03-04
    • JP2011182825
    • 2011-08-24
    • Technol Network Inc株式会社テクネット
    • HANE TADASHI
    • F21S11/00F21V7/05F21V7/09
    • PROBLEM TO BE SOLVED: To achieve solar light collection in a big capacity with a simple structure and miniaturization of the device as well.SOLUTION: The solar light collecting device 1A is provided with tiltable azimuth mirrors 2 and elevation angle mirrors 3 arranged overlapped in two steps. The azimuth mirrors 2 and the elevation angle mirrors 3 are arranged in plurality and a first rotation axis O1 of the azimuth mirror 2 and a second rotation axis O2 of the elevation angle mirror 3 are arranged in a direction mutually crossing at right angles. While the azimuth mirror 2 is arranged on an incident side of the sunshine, an azimuth mirror angle and an elevation angle mirror angle are computed based on a position of the sun so that the azimuth mirror 2 and the elevation mirror 3 can be respectively controlled in separation.
    • 要解决的问题:为了实现具有简单结构的大容量的太阳能光收集,以及装置的小型化。 解决方案:太阳光收集装置1A设置有可倾斜的方位镜2和以两个台阶重叠布置的仰角镜3。 方位镜2和仰角反射镜3被配置成多个,方位镜2的第一旋转轴线O1和仰角反射镜3的第二旋转轴线O2以直角相互交叉的方向排列。 当方位镜2设置在阳光的入射侧时,基于太阳的位置来计算方位镜角度和仰角镜角度,从而可以分别控制方位镜2和仰视镜3 分离 版权所有(C)2013,JPO&INPIT
    • 2. 发明专利
    • Patient transportation device
    • 患者运输装置
    • JP2011147544A
    • 2011-08-04
    • JP2010010267
    • 2010-01-20
    • Shimizu CorpTechnol Network Inc株式会社テクネット清水建設株式会社
    • YAMAGUCHI HAJIMEIZAWA KOICHIKAJIMA TOMOAKITANAKA ISAOTSUJI YUJIMIURA YASUHIROKAMAISHI HIROMITSU
    • A61G5/00A61G1/02
    • PROBLEM TO BE SOLVED: To transport infected patients or the like in a state of being isolated with a simple structure which does not occupy much space.
      SOLUTION: The patient transportation device includes: a device body 5 which holds a chair 2 and is provided with an exhaust mechanism 4 for cleansing the air inside an isolated space S around the chair 2 and exhausting it; and an isolation sheet 6 for covering the isolated space S. The exhaustion mechanism 4 includes: an exhaust flow path 43 having an intake port 41 exposed in the isolated space S and an exhaust port 42 exposed outside; a fan 7 for causing the air inside the isolated space S to flow from the intake port 41 to the exhaust port 42 through the exhaust flow path 43; and a filter 44 provided inside the exhaust flow path 43. Thus, a patient M sitting down on the chair 2 is transported in a state of being isolated from outside.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:以不占据太多空间的简单结构被隔离的状态运送被感染的患者等。 患者运送装置包括:装置主体5,其保持椅子2,并且设置有用于清洁椅子2周围的隔离空间S内的空气的排气机构4并将其排出; 以及用于覆盖隔离空间S的隔离片6.排气机构4包括:排气流路43,其具有暴露在隔离空间S中的进气口41和暴露在外部的排气口42; 用于使隔离空间S内的空气通过排气流路43从进气口41流到排气口42的风扇7; 以及设置在排气流路43内的过滤器44.因此,坐在椅子2上的患者M以与外部隔离的状态被输送。 版权所有(C)2011,JPO&INPIT
    • 6. 发明专利
    • EXTERNAL FACING TYPE ELECTROMAGNETIC WAVE SHIELDING BUILDING AND ELECTROMAGNETIC WAVE SHIELDING PRESTRESSED CONCRETE SLAB USED THEREFOR
    • JP2000045416A
    • 2000-02-15
    • JP21380498
    • 1998-07-29
    • MAEKAWA MASAKOTECHNOL NETWORK INC
    • MAEKAWA MASAKOSATO MITSUO
    • E04B1/92H05K9/00
    • PROBLEM TO BE SOLVED: To provide an external facing type electromagnetic wave shielding building and electromagnetic wave shielding prestressed concrete slabs used therefor that can reduce cost, facilitate workability and shorten a construction period because of dispensing with interior finish work for electromagnetic wave shielding. SOLUTION: In a newly-built external facing type electromagnetic wave shielding building 1, a roof floor, exterior walls and windows 5 of the building are formed of electromagnetic wave shielding material, and the exterior walls are formed of electromagnetic wave shielding prestressed concrete slabs jointed to each other by conductive joint members. The electromagnetic wave shielding prestressed concrete slab is composed of a prestressed concrete slab body and a conductive external facing member jointed by the conductive joint member or composed by sticking conductive material to the inner surface of the prestressed concrete slab body. In an external facing type electromagnetic wave shielding building 3 constructed by covering an existing building in an electromagnetic wave shielding state and executing specified external facing work thereon, an electromagnetic wave shielding unit is laid on a roof floor, or a conductor is directly laid with a protective concrete layer, or electromagnetic wave shielding material is stuck under the roof of the roof floor or under roof slabs, and electromagnetic wave shielding material is externally stuck to the exterior walls to cover the existing building. Electromagnetic wave shielding glass is arranged at each window opening and connected to each other in a conductive state.
    • 7. 发明专利
    • ELECTRODE DEVICE FOR DISCHARGE TUBE
    • JPH1131475A
    • 1999-02-02
    • JP18374997
    • 1997-07-09
    • TOKYO DENSOKU KKTECHNOL NETWORK INC
    • NITODA YORIYUKI
    • H01J61/067H01J61/10
    • PROBLEM TO BE SOLVED: To provide an electrode device for a discharge tube which consists of an arc discharge electrode and a glow discharge electrode and has a long life without a blackening phenomenon by receiving electron emission material particles scattered from the arc discharge electrode to all direction by the glow discharge electrode and preventing the particles from scattering to the external. SOLUTION: The long body 100a of a tubular glow discharge electrode 100b shows an almost one-round swirl shape in a sectional view perpendicular to the axial direction. The long body 100a has wall parts 12a, 12b overlapping each other in the radial direction and an electron emission slit 12 defined between these wall parts 12a, 12b. Electrons emitted from a filament coil electrode 3 can flow through the slit 12 to the outside, but electron emission material particles scattered from the filament coil electrode 3 are not emitted to the outside because of the existence of the overlapped wall parts 12a, 12b and accepted into the tubular glow discharge electrode 100b.
    • 8. 发明专利
    • 庇構造
    • EAVES结构
    • JP2015059361A
    • 2015-03-30
    • JP2013194425
    • 2013-09-19
    • 株式会社テクネットTechnol Network Inc
    • NOSE KAZUO
    • E04F10/00
    • 【課題】庇に照射される太陽光線を電気エネルギーに変換するともに、その変換された電気エネルギーを利用して、表示部や照明灯に利用することができる。【解決手段】建築物Bの外壁に取り付けられる庇本体2と、その庇本体2の上面に設けられるソーラーパネル3と、庇本体2の下面に設けられるとともに、ソーラーパネル3で発電された電気エネルギーで駆動される表示部4とを有し、庇本体2が建築物Bの外壁に取り付けられる位置を中心にして回動自在に設けられた構成の庇構造1を提供する。【選択図】図1
    • 要解决的问题:将辐射到屋顶的太阳能光转换成电能,并且利用已经转换为显示部分的电能和照明灯。解决方案:屋檐结构1包括檐体2,檐体2 附着在建筑物B的外壁上,设置在屋檐体2的上表面上的太阳能电池板3和设置在檐体2的下表面上并由该檐体2驱动的显示部4 通过太阳能电池板3产生的电能。檐体2可旋转地设置在附接到建筑物B的外壁的位置周围。
    • 9. 发明专利
    • ソーラーパネルの支持構造
    • 太阳能面板支撑结构
    • JP2015059360A
    • 2015-03-30
    • JP2013194424
    • 2013-09-19
    • 株式会社テクネットTechnol Network Inc
    • NOSE KAZUO
    • E04D13/18E04D13/00H01L31/042
    • F24J2/5241F24J2/5245Y02B10/12Y02E10/50
    • 【課題】ビルディング等の構造物の屋上の防水性を損なわず、しかも、架台形態を大型化することなく、ソーラーパネルを確実に、かつ強固に支持することのできるソーラーパネルの支持構造を提供する。【解決手段】ソーラーパネル1を設置しているビルディングBの屋上B1の床面を除いた非床面箇所で、かつ、そのソーラーパネル1を中間にした両側にそれぞれ設けられる取付ボルト11a,11bと、ソーラーパネル1の上面に当接されるとともに、両端側が前記取付ボルト11a,11bにそれぞれ取り付けられるワイヤ12とからなる。【選択図】図1
    • 要解决的问题:提供一种用于太阳能电池板的支撑结构,其能够可靠且牢固地支撑太阳能电池板,而不会降低诸如建筑物的结构的屋顶的防水性并且增大框架形状。解决方案:用于 太阳能电池板包括设置在非地板表面位置的除了安装太阳能电池板1的建筑物B的屋顶楼B1的地板表面之外的附接螺栓11a和11b以及太阳能电池板1的两侧 以及分别与太阳能电池板1的上表面抵接并且两端分别与安装螺栓11a,11b连接的电线12。
    • 10. 发明专利
    • Ventilation floor unit and ventilation floor
    • 通风地板单元和通风地板
    • JP2013083105A
    • 2013-05-09
    • JP2011224182
    • 2011-10-11
    • Towa Screw Co Ltd株式会社トーワスクリューTechnol Network Inc株式会社テクネット
    • HOMITSU TAKAHITOMASUKO SHOJIKANEKO YUKIO
    • E04F15/18
    • PROBLEM TO BE SOLVED: To improve conveyance/construction properties and reduce costs by making an upper floor more lightweight than a conventional metallic upper floor, and to reduce nonuniformity in blowing air for conditioning out of the upper floor.SOLUTION: A ventilation floor unit comprises a rectangular upper floor plate and legs protruded downward in at least four corners of a lower surface of the upper floor plate, and gaps between the legs become air courses which are communicated in two directions orthogonal to a horizontal direction. Within the air course of the ventilation floor unit, a tunnel member in an inverted gutter shape is inserted and the tunnel member restricts air that flows in the air courses, from flowing in any other direction than the air courses.
    • 要解决的问题:通过使上层比常规金属上层更轻的方式来改善输送/施工性能并降低成本,并且减少用于在上层楼板中进行空调的吹风的不均匀性。 解决方案:通风地板单元包括矩形上部地板板和在上部地板的下表面的至少四个角落中向下突出的腿部,并且腿部之间的间隙变成气流路径,其在两个方向上正交连通 水平方向。 在通风地板单元的空气路径内,插入倒置的沟槽形状的隧道构件,并且隧道构件限制在空气路径中流动的空气,而不是以比气道的任何其它方向流动。 版权所有(C)2013,JPO&INPIT