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    • 1. 发明专利
    • エレベータデバイスのための測定テープ
    • 电梯装置的测量带
    • JP2015051876A
    • 2015-03-19
    • JP2014176205
    • 2014-08-29
    • セデス アーゲーCedes Agセデス アーゲー
    • DE COI BEATCHRISTIAN E THOENZLEUTENEGGER TOBIASGIGER JAN
    • B66B3/02
    • H04B3/54B66B1/3492B66B7/064B66B13/22G01D5/34746H04B3/60
    • 【課題】位置検出と通信ができるテープを提供する。【解決手段】エレベータシャフトSにおけるかご室Kの位置を決定するための測定テープ4は、エレベータシャフトSに垂直に配置され、測定テープ4が少なくとも2つのフロアにわたって延在するように設計され、マーキングユニットを含み、測定テープ4の長さに沿って延在している。点検を改善するために、測定テープ4は、キャリアテープを含み、情報を送信するための送信デバイスを有し情報信号を送信するための通信ライン/供給ラインは、測定テープ4の長さに沿って延在し、電気信号を送信するための電気ライン又は光信号を送信するためのファイバグラスラインとして設計されている。【選択図】図1
    • 要解决的问题:提供一种使位置检测和通信成为可能的带。解决方案:用于确定轿厢K在电梯井S上的位置的测量带4垂直于电梯井S布置,测量带4是 被设计为延伸至少两层,并且包含标记单元,并且标记单元沿着测量带4的长度延伸。为了改进检查,测量带4包含载带,具有用于 发送信息,并且用于发送信息信号的传输线/供给线沿测量带4的长度延伸,并且被设计为用于发送用于发送光信号的电信号或玻璃纤维线的电线。
    • 2. 发明专利
    • Elevator installation, measurement apparatus, marking device and guide element
    • 电梯安装,测量装置,标记装置和指导元件
    • JP2013230936A
    • 2013-11-14
    • JP2013092312
    • 2013-04-25
    • Cedes Agセデス アーゲー
    • DE COI BEATFREEDMAN STEVENGIGER JANLEUTENEGGER TOBIAS
    • B66B3/02G01B11/00G01D5/347
    • B66B1/3492
    • PROBLEM TO BE SOLVED: To allow the position of cab to be easily determined in an elevator installation that captures the position of a cab.SOLUTION: An elevator installation 1 with an elevator cab 4 in an elevator shaft 2 and a measurement tape 5 for determining the position of the elevator cab 4 within the elevator shaft 2, which measurement tape 5 is arranged vertically in the elevator shaft 2 and has a code along the measurement tape 5, and at least one marking element 7 which is attached in the elevator shaft 2 and has a reference marking, and a sensor apparatus which is attached to the elevator cab 4 and comprises an illumination source and a sensor, which form a detection field for detecting the measurement tape 5 and with an evaluation apparatus. The reference marking is arranged such that it can be captured by the detection field and the sensor apparatus is also provided for detecting the reference marking and the evaluation apparatus aligns the position determined by the measurement tape 5 with the reference marking.
    • 要解决的问题:允许在捕获驾驶室位置的电梯设备中容易地确定驾驶室的位置。解决方案:具有电梯轿厢4在电梯井2中的电梯设备1和用于确定的测量带5 电梯轿厢4在电梯井2内的位置,该测量带5垂直设置在电梯井2中并具有沿着测量带5的代码,以及安装在电梯井2中的至少一个标记元件7 并具有参考标记,以及附接到电梯轿厢4并包括照明源和传感器的传感器装置,其形成用于检测测量带5的检测区域和评估装置。 参考标记被布置为使得其可以被检测区域捕获,并且还提供传感器装置用于检测参考标记,并且评估装置将由测量带5确定的位置与参考标记对准。
    • 3. 发明专利
    • Method of aligning light curtain member, light curtain or light gate
    • 对准光幕会员,光幕或光门的方法
    • JP2009117370A
    • 2009-05-28
    • JP2008319389
    • 2008-12-16
    • Cedes Agセデス・アーゲー
    • DE COI BEAT
    • H01H35/00F16P3/14G01J1/02G01V8/20G08B13/183H03K17/78
    • F16P3/144G01V8/20
    • PROBLEM TO BE SOLVED: To provide a method of properly carrying out alignment of a supporting member of a light curtain formed by a beam transmitted between a transmitter and a receiver of the supporting member. SOLUTION: A pair of alignment radiation beams (33, 33') in the opposite direction respectively are projected between a supporting member (17) and a supporting member (19). As for one of the beams in the opposite direction, a radiation emission function and a radiation receiving function of the supporting members are made to be opposite respectively. In order that the optical alignment of the supporting members with each other may become optimum, the radiation beam that is directly emitted and the alignment radiation beam in the opposite direction are detected by radiation alignment detectors disposed at the supporting member (17) and the supporting member (19) respectively, and the third alignment radiation beam (33") is projected. At least one alignment radiation beam (33') is in the opposite direction against the other two alignment radiation beam (33, 33"), and the third alignment radiation beam (33") is coaxially formed with either one (33') of the other alignment beams (33, 33'). COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种适当地执行由在支撑构件的发射器和接收器之间传输的光束形成的光幕的支撑构件的对准的方法。 解决方案:相反方向上的一对对准辐射束(33,33')分别突出在支撑构件(17)和支撑构件(19)之间。 对于相反方向上的一个光束,支撑部件的辐射发射功能和辐射接收功能分别相反。 为了使支撑构件彼此的光学对准可能变得最佳,通过设置在支撑构件(17)和支撑构件(17)处的辐射对准检测器来检测直接发射的辐射束和相反方向上的对准辐射束 构件(19),并且第三对准辐射束(33“)被投影,至少一个对准辐射束(33')相对于另外两个对准辐射束(33,33”)处于相反方向,并且 第三对准辐射束(33“)与其他对准光束(33,33')中的一个(33')同轴地形成。版权所有(C)2009,JPO&INPIT
    • 4. 发明专利
    • METHOD FOR ALIGNING LIGHT CURTAIN MEMBER AND LIGHT CURTAIN OR LIGHT GATE
    • JPH1184023A
    • 1999-03-26
    • JP18539898
    • 1998-06-30
    • CEDES AG
    • DE COI BEAT
    • F16P3/14G01J1/02G01V8/20G08B13/183H01S3/00
    • PROBLEM TO BE SOLVED: To implement a method for relatively, geometrically, and mutually aligning two bars of a transmitter and a receiver facing each other by projecting alignment radiation beams in opposite directions between the supporting bars of the transmitter and the receiver. SOLUTION: Alignment radiation sources 29 and 29' each incorporated in a transmitter bar 17 and a receiver bar 19 project a beam 33 and a beam 33' in an opposite direction to the surface 31 of each of the bars 17 and 19 facing each other. The light beams 33 and 33' are in parallel with the optical axis of a beam forming a light curtain. Reference points 35 and 35' are provided at places of the bars 17 and 19 on which the alignment radiation beams 33 and 33' impinge. The bars 17 and 19 are normally provided with the same size and reference point. The alignment light source 29 and the reference point 35 are arranged at the upper end of the bars 17 and 19, and the alignment light source 29' and the reference point 35' are at the lower end of the bars 17 and 19, respectively. By this constitution, it is possible to align the bars 17 and 19 correctly by the projection of the two alignment radiation beams 33 and 33' in opposite directions.
    • 5. 发明申请
    • METHOD FOR THE CONTACTLESS MEASUREMENT OF AN OBJECT
    • 方法用于对对象进行非接触式测量
    • WO2004074769A3
    • 2004-11-04
    • PCT/CH2004000003
    • 2004-01-07
    • CEDES AGDE COI BEAT
    • DE COI BEAT
    • G01B11/02G01B11/10G01B11/24G01B11/245G01B11/04
    • G01B11/245G01B11/024G01B11/105G01B11/2433
    • The invention relates to a method for the contactless measurement of an object (6) in at least one dimension. According to said method, the object (6) is scanned in a spatially restricted effective zone of a scanning beam field (1) and the size of the object (6) in terms of the measured dimension is deduced by the detection of one or more interruptions in the scanning beams (L). The scanning beam field (1) is constructed from a number of directly addressable individual beams (L). The beam-assisted scanning of the spatially restricted effective zone of the scanning beam field (1) is carried out according to a predefinable pattern of steps, using a non-linear sorting method. A preferred method uses binary location.
    • 这是建议在至少一个维度上的物体(6),其中所述对象(6)在一个扫描光束的效果的空间有限的区域进行扫描的非接触式测量的方法(1)和从检测到扫描光束的一个或多个中断的(L) 在物体的大小(6)在所测得的尺寸关闭。 扫描光束(1)是由一些可直接寻址的单独的光束(L)被构造的。 空间受限的有效范围的扫描光束(1)的所述的辐射周期性扫描以使用非线性分类处理的预定步骤的图案进行。 一种优选的方法是使用二进制搜索方法。
    • 6. 发明申请
    • SAFETY SYSTEM FOR SAFEGUARDING A MOVING, GUIDED MOTION ELEMENT AGAINST UNWANTED COLLISIONS
    • 保护系统防止移动的导向运动电流对抗不希望的碰撞
    • WO2009090097A3
    • 2009-12-17
    • PCT/EP2009000276
    • 2009-01-16
    • CEDES AGDE COI BEATSIGNER CHRISTIANMENZI MARKUSHUG RENE
    • DE COI BEATSIGNER CHRISTIANMENZI MARKUSHUG RENE
    • E06B9/88
    • E06B9/88E05F15/43E05F15/74E05F2015/436E05Y2800/21E05Y2800/242E05Y2900/00E05Y2900/106E06B2009/6836
    • A safety system (1) for safeguarding a moving, guided motion element (4) against unwanted collisions with an object lying on a motion path in the direction of motion (11) of the motion element (4) is proposed, which comprises an object-detection mechanism for locating an object in a region of the motion element (4), wherein said mechanism can be blocked for object recognition by a motion of the motion element (4), and an electronic unit by which the motion of the motion element (4) can be controlled and which is designed to associate a blocked state with the object-detection mechanism when the motion element (4) approaches, an object or motion element triggering no safety mode in said blocked state, wherein shut-off means are provided which transfer at least part of the object-detection mechanism to the blocked state on detection of a shut-off signal coming from the motion element (4). According to the invention, the shut-off means comprise a transmission element for a shut-off signal, which either sits directly on the motion element or which is attuned to a separate optical reflector on the motion element (4) such that a signal of the transmission element can be received by a receiver of the shut-off means only in a pre-defined area of motion of the reflector on the motion element (4).
    • 所以建议躺在对象的锁定系统(1),用于维护移动,导向运动元件(4)相对于与一个移动的路径上在移动部件的移动(11)的方向的无意碰撞(4)具有对象检测装置用于在一个区域检测对象 包括移动部件(4)由所述移动部件(4)的移动是可锁定的用于物体检测,以及具有电子单元与所述移动元件的运动(4)是可控制的,并在靠近移动构件适于(对象检测装置 4)分配给在其中一个对象或移动构件不会触发安全模式的锁定状态时,所述设置有切断装置,它导致检测到(在移动子4的)脱落信号的至少一个装置到阻断状态的物体检测的部分。 根据本发明的切断装置包括用于关断的传输构件,或者直接移动构件上或者在所述运动元件(4)以这样的方式被调谐,仅在所述反射器的运动(截止的接收器中的预定范围的运动元件上意味着在一个单独的光学反射坐 4)可以接收传输部件的信号。