ELEVATOR CONTROL BUTTON ASSEMBLY
20190315591 ยท 2019-10-17
Inventors
Cpc classification
H01H3/122
ELECTRICITY
B66B2201/463
PERFORMING OPERATIONS; TRANSPORTING
H01H3/14
ELECTRICITY
B66B1/16
PERFORMING OPERATIONS; TRANSPORTING
B66B1/462
PERFORMING OPERATIONS; TRANSPORTING
International classification
B66B1/16
PERFORMING OPERATIONS; TRANSPORTING
B66B9/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An elevator control button assembly (7), in particular an elevator hall call button (7a), to be employed in an elevator system (2) comprises a stationary reference element (22); an activation element (26), which is movable with respect to the reference element (22); and at least two rods (24a-24d). The at least two rods (24a-24d) are arranged non-parallel to each other between the reference element (22) and the activation element (26). Each of the rods (24a-24d) contacts the reference element (22) and the activation element (26), respectively. The at least two rods (24a-24d) are configured for moving when the activation element (26) is moved with respect to the reference element (22).
Claims
1. Elevator control button (7), in particular an elevator hall call button (7a) or an elevator car control button (7b), comprising: a stationary reference element (22); an activation element (26), which is movable with respect to the reference element (22); and at least two rods (24a-24d) extending non-parallel to each other between the reference element (22) and the activation element (26), each of the rods (24a-24d) contacting the reference element (22) and the activation element (26), respectively; wherein the at least two rods (24a-24d) are configured to move when the activation element (26) is moved with respect to the reference element (22).
2. Elevator control button (7) according to claim 1, wherein the reference element (22) and the activation element (26) are planar elements extending parallel to each other.
3. Elevator control button (7) according to claim 2, wherein the planar activation element (26) has an extension of at least 5 cm5 cm in length and width directions, in particular an extension of at least 8 cm8 cm, more particularly an extension of at least 10 cm10 cm.
4. Elevator control button (7) according to claim 1, further comprising at least one electrical switch (30) configured to be activated by the movement of the activation element (26).
5. Elevator control button (7) according to claim 4, wherein the at least two rods (24a-24d) are configured for pushing the activation element (26) into a released position, in which the electrical switch (30) is not activated, when no external force is applied to the activation element (26).
6. Elevator control button (7) according to claim 1, wherein at least one of the rods (24a-24d) comprises a main portion (25a-25d) and at least one end portion (23a-23d) which is bent or cranked with respect to the main portion (25a-25d), wherein the at least one rod (24a-24d) in particular comprises two bent or cranked end portions (23a-23d).
7. Elevator control button (7) according to claim 6, wherein the at least one end portion (23a-23d) is bent or cranked at an angle between 85 and 95, in particular at an angle of 88 to 92, more particularly at an angle of 90 with respect to the main portion (25a-25d).
8. Elevator control button (7) according to claim 1, wherein at least one of the reference element (22) and the activation element (26) comprises at least one fixing portion (32) configured for fixing one of the rods (24a-24d), in particular an end portion (23a-23d) of the one of the rods (24a-24d), to the respective element (22, 26), wherein the at least one fixing portion (32) in particular is configured for elastically fixing the one of the rods (24a-24d).
9. Elevator control button (7) according to claim 1, wherein at least one of the reference element (22) and the activation element (26) comprises at least one guiding portion (34) configured for guiding one of the rods (24a-24d), in particular an end portion (23a-23d) of the one of the rods (24a-24d).
10. Elevator control button (7) according to claim 1, comprising three or four rods (24a-24d), wherein the three rods (24a-24d) in particular are arranged in a triangular configuration, and wherein the four rods (24a-24d) in particular are arranged in a rectangular configuration, more particularly in a quadratic configuration.
11. Elevator control button (7) according to claim 1, wherein at least two of the rods (24a-24d) are arranged in an L-shaped configuration or in an X-shaped configuration.
12. Elevator control button (7) according to claim 1, wherein projections of at least two rods (24a-24d) onto the reference element (22) intersect with each other.
13. Elevator control button (7) according to claim 1, wherein projections of the rods (24a-24d) onto the reference element (22) do not intersect with each other.
14. Elevator control button (7) according to claim 1, wherein the activation element (26) is at least partially transparent and the elevator control button assembly (7) further comprises at least one light source (40) configured for illuminating the activation element (26).
15. Elevator system (2) comprising an elevator car (6) traveling along a hoistway (14) and at least one elevator control button (7) according to claim 1.
Description
[0031] In the following an exemplary embodiment of the invention is described with reference to the enclosed figures.
[0032]
[0033]
[0034]
[0035]
[0036]
[0037]
[0038]
[0039]
[0040]
[0041]
[0042] The elevator system 2 comprises a hoistway 4 extending in a longitudinal direction between a plurality of landings 8 located on different floors.
[0043] The elevator car 6 comprises a floor 16, a ceiling 18 and sidewalls 17 extending between the floor 16 and the ceiling 18 defining an interior space of the elevator car 6. Only one sidewall 17 is depicted in the schematic illustration of
[0044] The elevator car 6 is movably suspended within the hoistway 4 by means of a tension member 3. The tension member 3, for example a rope or belt, is connected to a drive 5, which is configured for driving the tension member 3 in order to move the elevator car 6 along the longitudinal direction/height of the hoistway 4 between the plurality of landings 8.
[0045] Each landing 8 is provided with a landing door (elevator hoistway door) 10, and the elevator car 6 is provided with a corresponding elevator car door 11 allowing passengers to transfer between a landing 8 and the interior space of the elevator car 6 when the elevator car 6 is positioned at the respective landing 8.
[0046] The exemplary embodiment of the elevator system 2 shown in
[0047] The drive 5 is controlled by an elevator control 15 for moving the elevator car 6 along the hoistway 4 between the different landings 8.
[0048] Input to the elevator control 15 may be provided via elevator hall call buttons 7a, which are provided on each landing 8 close to the elevator landing doors 10, and/or via elevator car control buttons 7b provided inside the elevator car 6.
[0049] The elevator hall call buttons 7a and the elevator car control buttons 7b may be connected to the elevator control 15 by means of electrical lines, which are not shown in
[0050] In order to determine the current position of the elevator car 6, the elevator car 6 is provided with a position sensor 19. The position sensor 19 may be arranged at the top of the elevator car 6 as shown in
[0051]
[0052] An elevator hall call button 7a according to an exemplary embodiment of the invention is provided at the landing door frame 9.
[0053] The skilled person will understand that more than one elevator hall call button 7a may be provided at each landing 8. In particular, a first elevator hall call button 7a for traveling upwards and a similar second elevator hall call button (not shown in
[0054]
[0055] The elevator control button assembly 7 comprises a base (housing) 20, which may be mounted to the frame 9 of a landing door 10, to a wall 14 next to a landing door 10, to a separate elevator control unit, or to a sidewall 17 of an elevator car 6 (cf.
[0056] At least one electrical switch 30 is provided at the base 20.
[0057] A stationary reference element 22, in particular a planar (plate-shaped) reference element 22, is non-movably arranged within the base 20. An opening 31 is formed in a central portion of the stationary reference element 22 opposite to the at least one electrical switch 30.
[0058] The reference element 22 is equipped with a plurality of fixing portions 32 and guiding portions 34, respectively protruding from the side of the reference element 22 facing away from the base 20. The fixing portions 32 and the guiding portions 34 may be formed integrally with the reference element 22. Alternatively, the fixing portions 32 and the guiding portions 34 may be attached or mounted to the reference element 22.
[0059] The fixing portions 32 and the guiding portions 34 are configured for fixing and guiding two rods 24a, 24b provided on the side of the reference element 22 facing away from the base 20.
[0060] Each of the rods 24a, 24b comprises a straight central main portion 25a, 25b, and two end portions 23a, 23b, which are bent/cranked with respect to the main portions 25a, 25b. The end portions 23a, 23b in particular are bent/cranked at an angle of 85 to 95 with respect to the main portions 25a, 25b, in particular at an angle of 88 to 92, more particularly at an angle of 90.
[0061] The two rods 24a, 24b are attached to the reference element 22 via the fixing portions 32. Each fixing portion 32 comprises two legs extending parallel to each other orthogonally from the surface of the reference element 22. An end portion 23a, 23b of one of the rods 24a, 24b is clamped between each pair of legs, respectively. Next to at least some of the fixing portions 32, apertures 36 are formed within the reference element 22.
[0062] The two rods 24a, 24b extend non-parallel to each other parallel to the reference element 22. In the configuration illustrated in
[0063] A movable activation element 26, in particular a planar (plate-shaped) activation element 26 extending parallel to the reference element 22, is provided next to the rods 24a, 24b opposite to the reference element 22.
[0064] The reference element 22 and the activation element 26 are arranged so that the rods 24a, 24b are arranged in a gap 29 (cf.
[0065] The activation element 26 comprises protrusions 25 protruding towards the reference element 22. The protrusions 25 are formed at positions corresponding to the apertures 36 formed within the reference element 22 allowing the protrusions 25 to extend through the apertures 36 formed within the reference element 22. The activation element 26 further comprises openings 27 formed at positions corresponding to the positions of at least some of the fixing elements 32 allowing said fixing elements 32 to pass through the openings 27 when the activation element 26 is moved towards the reference element 22.
[0066] A cover plate 28 is provided on the side of the activation element 26 facing away from the rods 24a, 24b. In an assembled state, the outer periphery of the cover plate 28 is fixed to the periphery of the base 20. The cover plate 28 delimits the movement of the activation element 26. The cover plate 28 is at least partially flexible in order to allow moving the activation element 26 towards the reference element 22 by pressing onto the cover plate 28 deforming the cover plate 28 towards the reference element 22.
[0067] The base 20, the reference element 22, the activation element 26 and the cover plate 28 may be made of a plastic material or a metallic material. The rods 24a, 24b may be made of a metal such as (stainless) steel.
[0068] The activation element 26 and the cover plate 28 may be at least partially transparent allowing light emitted by at least one light source 40 provided at the base 20 to pass through for establishing a background illumination of the cover plate 28.
[0069] In an alternative configuration, which is not shown in the figures, at least some of the fixing elements 32 and/or of the guiding elements 34 may be provided at the activation element 26 instead of the reference element 22 for allowing at least one of the rods 24a, 24b to be attached to the activation element 26.
[0070] Operation of the exemplary elevator control button assembly 7 depicted in
[0071]
[0072]
[0073] For clarity of illustration, only the reference element 22, the activation element 26, the electrical switch 30 and the two rods 24a, 24b are depicted in
[0074] The bent/cranked ends 23a, 23b of the rods 24a, 24b are attached to the reference element 22 by the fixing portions 32 in a manner generating an elastic tension pressing the outer periphery of the main portions 25a, 25b of the rods 24a, 24b against the activation element 26. In consequence, the activation element 26 is pushed away from the reference element 22 and the activation element 26 does not contact the electrical switch 30, which therefore is not activated.
[0075] The movement of the activation element 26 away from the reference element 22 is delimited by the cover plate 28 attached to the base 20
[0076] For activating the electrical switch 30, a force F is applied to the cover plate 28 deforming at least a portion of the cover element 28 and pushing the activation element 26 towards the reference element 22 (see
[0077] Due to the force F applied to the activation element 26, the bent/cranked end portions 23a, 23b of the rods 24a, 24b are elastically deformed and/or moved within the fixing portions 32 allowing the main portions 25a, 25b of the rods 24a, 24b to move. The main portions 25a, 25b of the rods 24a, 24b in particular may pivot with respect to the fixing portions 32. As a result, the width of the gap 29 formed between the reference element 22 and the activation element 26 is reduced and the activation element 26 moves towards the reference element 22. When the activation element 26 has moved a certain distance towards the reference element 22, it contacts and activates the electrical switch 30.
[0078] As soon as the activation element 26 is released, i.e. when no actuating force F is applied to the activation element 26 anymore, the elastic forces of the rods 24a, 24b push the rods 24a, 24b, and in consequence also the activation element 26, back into the released position depicted in
[0079] The skilled person understands that the configuration of the rods 24a, 24b depicted in
[0080] Non-limiting examples of such configurations are schematically illustrated in
[0081]
[0082]
[0083]
[0084] In the configurations shown in
[0085] In the configuration shown in
[0086] In the configuration depicted in
[0087] In the configuration depicted in
[0088] Embodiments of the present invention are not limited to the configurations illustrated in the figures. The skilled person will understand that the rods 24a-24d may be arranged in alternative geometrical configurations not shown in the figures and that configurations comprising more than four rods 24a-24d may be used.
[0089] In the configurations illustrated in
[0090] The rods 24a-24d employed in an elevator control button assembly 7 according to exemplary embodiments of the invention prevent an undesirable tilting and/or jamming of the activation element 26 enhancing the reliability of the elevator control button assembly 7. As a result, a reliable elevator control button assembly 7 having a comparatively large activation surface may be provided.
[0091] While the invention has been described with reference to exemplary embodiments, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the scope of the invention. In addition, many modifications may be made to adopt a particular situation or material to the teachings of the invention without departing from the essential scope thereof. Therefore, it is intended that the invention is not limited to the particular embodiments disclosed, but that the invention includes all embodiments falling within the scope of the claims.
REFERENCES
[0092] 2 elevator system
[0093] 3 tension member
[0094] 4 hoistway
[0095] 5 drive
[0096] 6 elevator car
[0097] 7 elevator control button assembly
[0098] 7a elevator hall call button
[0099] 7b elevator cat control button
[0100] 8 landing
[0101] 9 landing door frame
[0102] 10 landing door
[0103] 11 elevator car door
[0104] 12a, 12b landing door panes
[0105] 14 wall
[0106] 15 elevator control
[0107] 16 floor of the elevator car
[0108] 17 sidewall of the elevator car
[0109] 18 ceiling of the elevator car
[0110] 19 position sensor
[0111] 20 base
[0112] 22 reference element
[0113] 23a-23d end portions of the rods
[0114] 24a-24d rods
[0115] 25a-25d main portions of the rods
[0116] 26 activation elements
[0117] 27 opening
[0118] 28 cover
[0119] 29 gap
[0120] 30 electrical switch
[0121] 32 fixing portion
[0122] 34 guiding portion
[0123] 36 apertures
[0124] 38 central rectangle
[0125] 40 light source