Abstract:
A method in the management of data relating to an elevator structure is provided, wherein data is collected about the structures of the elevator, and the collected data is recorded in memory. In the method, a database is formed about a plurality of known devices of elevators, said database including device-specific information, the structures of an elevator are scanned with scanning apparatus, which collects scanning data relating to the shape of the structures being scanned and/or the surface patterning of the structures, the scanning data is compared to the data of the aforementioned database, the type and/or mark of the device of an elevator are deduced if a correspondence to the scanning data is found from the aforementioned database, the type and/or mark of the aforementioned device is linked to form at least a part of the data that is in the database and is linked to the elevator-identification of the elevator in question, which database comprises a plurality of elevator-identifications and the data of an identified elevator connected to each elevator-identification
Abstract:
El objeto de la presente es presentar la disposición de un ascensor, que conste, al menos, de una cabina de ascensor (1) configurada para desplazarse de manera ascendente y descendente dentro de un pozo de izamiento del ascensor y, al menos, dos cargas de compensación (2, 2a, 2b), los que a su vez están conectados para sostener a la cabina del ascensor (1) con la ayuda de sus propios dos medios de sustentación (3), como ser mediante cables o cintas y también, por ejemplo, con poleas de derivación (4 - 4c), y una máquina de izamiento (6) que consta, al menos, de una roldana de tracción (5) o, de manera conveniente, y, al menos, un medio de tracción (7, 7a, 7b) como ser, por ejemplo: una cinta o un cable, que está diseñado para transmitir el movimiento giratorio de la roldana de tracción (5) al interior de la cabina de ascensor (1) y a las cargas de compensación (2, 2a, 2b). Cada carga de compensación (2, 2a, 2b) está conectada a la misma máquina de elevación (6) mediante algún medio de tracción (7, 7a, 7b).
Abstract:
A control arrangement and to a method for supplying electrical power in an elevator system are disclosed. The control arrangement includes a sensor detecting movement of an elevator car and also a control of the lighting of the elevator car. The control of the lighting of the elevator car is configured to control the emergency lighting of the elevator car on the basis of movement data of the elevator car expressed by the sensor detecting movement of the elevator car.
Abstract:
The installation platform comprises two decks (100, 200) and a support frame (300) comprising horizontal support beams (310, 320) supporting a respective deck and vertical support beams (330, 340). The installation platform has a width (W1) in a first horizontal direction (X) between the guide rails, a depth (D1) in a second horizontal direction (Y) perpendicular to the first horizontal direction. The installation platform is guided movably via guide means (160) on the guide rails. At least one of the width and the depth of the installation is adjustable in order to adjust the horizontal dimensions of the installation platform according to the horizontal dimensions of the shaft.
Abstract:
The invention relates to a construction arrangement of an elevator, comprising a hoistway (2) formed in a building (1), the hoistway (2) comprising at least one hoistway opening (O) leading in horizontal direction out from the hoistway (2), the opening (O) being delimited by a lower edge structure (3) and an upper edge structure (4); and a load (9,10) in the hoistway (1) lower than said opening (O); and a hoisting arrangement (A;A';A'';A''';A'''') for hoisting said load (9,10), wherein said hoisting arrangement (11-13) comprises a support structure (11;11';11'';11''';11'''';11''''') mounted higher than said load (9,10); and a hoisting device (12); and at least one flexible tension member (13) connected or at least connectable to said load (9,10); wherein the at least one flexible tension member (13) is movable with said hoisting device (12) in particular for thereby transmitting a hoisting force to said load (9,10) to be hoisted. Said support structure (11) comprises an anchoring beam structure (110) comprising a lower end (111) engaging the lower edge structure (3), and an upper end (112) engaging the upper edge structure (4); and a support beam structure (113) connected to the anchoring beam structure (110) and protruding from the anchoring beam structure (110) into the hoistway (2); and wherein said at least one flexible tension member (13) hangs in the hoistway supported by the support beam structure (113). The invention also relates to a method implementing the construction arrangement.