LED Indicator Such as LED Ring for a Mechatronic Lock System
20170306648 ยท 2017-10-26
Assignee
Inventors
Cpc classification
E05B1/0092
FIXED CONSTRUCTIONS
E05B17/10
FIXED CONSTRUCTIONS
E05B17/22
FIXED CONSTRUCTIONS
International classification
E05B17/10
FIXED CONSTRUCTIONS
Abstract
An LED ring or light guide for a mechanical or mechatronic closure system that includes an actuating means, such as socket wrench receptacle or swivel handle, which is rotatably supported in a housing or tray. The LED ring or light guide also includes a retaining nut or bearing piece that can be screwed on with the housing or with the tray with the intermediary of a thin wall such as door panel of a sheet-metal cabinet or sheet-metal housing. A light ring surrounds a flange of the housing or of the tray, and a flexible foil is arranged between light ring and thin wall. The flexible foil carries light emitting diodes (LEDs) and relays the light thereof. A closure indicator integrated in the actuating means is achieved in this way.
Claims
1: A mechanical or mechatronic closure system comprising: a housing or tray; an actuating means configured to be rotatably supported in the housing or tray; a retaining nut or bearing piece configured to be screwed on to the housing or to the tray with a thin wall being arranged therebetween; a light ring configured to surround a flange of the housing or of the tray; and a flexible foil configured to be arranged between the light ring and thin wall, the flexible foil carrying light emitting diodes (LEDs) and relaying the light thereof.
2: The mechanical or mechatronic closure system according to claim 1, further comprising: an electronics module, or a base plate with a printed circuit board; wherein the electronics module or base plate is configured to be screwed to the tray or to the housing with the flexible foil and LEDs being arranged therebetween.
3: The mechanical or mechatronic closure system according to claim 2; wherein the mechanical or mechatronic closure system further comprises the electronics module; and wherein the electronics module has in integrated heat sink.
4: The mechanical or mechatronic closure system according to claim 2; wherein the mechanical or mechatronic closure system further comprises the base plate; and wherein the base plate supports a contact sensor that cooperates with a sensor adaptor configured to be moved by a movement of a latch.
5: The mechanical or mechatronic closure system according to claim 2; wherein the mechanical or mechatronic closure system further comprises the base plate; and wherein the base plate has at least part of a door sensor at one longitudinal end for determining the presence of door frame.
6: The mechanical or mechatronic closure system according to claim 5; wherein the base plate supports a contact sensor that cooperates with a sensor adaptor configured to be moved by a movement of a latch; and wherein the contact sensor is part of the printed circuit board.
7: The mechanical or mechatronic closure system according to claim 1; wherein the LED ring is made of glass or transparent plastic, optionally with integrated optical waveguides.
8: The mechanical or mechatronic closure system according to claim 5; wherein the door sensor comprises a second part that is a reed sensor, Hall sensor, reflection-type photo-switch, light barrier, mechanical feeler, pressure sensor, light sensor, proximity sensor, temperature sensor, or rotational angle sensor, and wherein the second part of the door sensor is configured to be placed by the customer on the door frame.
9: The mechanical or mechatronic closure system according to claim 1, further comprising: a closing sensor configured to detect a closing state of the closure system, the closing sensor comprising: a fork light barrier, light barrier, reflection-type photo-switch, mechanical feeler, pressure sensor, potentiometer, proximity sensor, rotational angle sensor, reed sensor, Hall sensor.
10: The mechanical or mechatronic closure system according to claim 1; wherein the mechanical or mechatronic closure system comprises the tray; and wherein a first part of a wall of the tray comprises a translucent plastic and is arranged and shaped in such a way that the tray wall lights up at a first desired location during operation of the light emitting diode.
11: The mechanical or mechatronic closure system according to claim 10; wherein the first part of the wall is removable and is configured to be replaced by a part of a different color.
12: The mechanical or mechatronic closure system according to claim 11; wherein a second part of the tray wall comprises a translucent plastic and is arranged and shaped in such a way that the tray wall lights up at a second desired location during operation of the light emitting diode; and wherein the second part of the tray wall is connected to the first part of the tray wall by a carrier plate.
13: The mechanical or mechatronic closure system according to claim 12; wherein the carrier plate also forms a receptacle for a button cell battery.
14: The mechanical or mechatronic closure system according to claim 1; wherein the mechanical or mechatronic closure system comprises the tray; and wherein a light emitting diode is arranged in a vicinity of a shaft on an underside of the tray and has light contact with parts of a wall of the tray.
15: The mechanical or mechatronic closure system according to claim 1; wherein the mechanical or mechatronic closure system comprises the tray; and wherein a light emitting diode is arranged in a vicinity of a shaft and has light contact with wall of a hand lever.
16: The mechanical or mechatronic closure system according to claim 9, further comprising: a rotary latch; wherein the closing sensor separate from the rotary latch, with the closing sensor being configured to be linked to the rotary latch.
17: The mechanical or mechatronic closure system according to claim 9, further comprising: a rotary latch; wherein the closing sensor is integrated in the rotary latch.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0023] The invention will be described in more detail in the following with reference to embodiment examples which are shown in the drawings.
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DETAILED DESCRIPTION OF EMBODIMENTS
[0052] It is to be understood that the figures and descriptions of the present invention have been simplified to illustrate elements that are relevant for a clear understanding of the present invention, while eliminating, for purposes of clarity, many other elements which are conventional in this art. Those of ordinary skill in the art will recognize that other elements are desirable for implementing the present invention. However, because such elements are well known in the art, and because they do not facilitate a better understanding of the present invention, a discussion of such elements is not provided herein.
[0053] The present invention will now be described in detail on the basis of exemplary embodiments.
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[0055] The bearing piece 16 is screwed by means of screws 18 to the tray 10 with the intermediary of a thin wall 42, 142 (shown in
[0056] In
[0057] Thin wall 42 is shown in
[0058] With respect to the power required, this power can be supplied to the module 36 via a cable line 44. This power can originate from the electrical grid or from a battery.
[0059] The swivel handle 12 can be locked by means of a cylinder closure 46 and the closing cam 48 extends into the electronics module 36. The position of the closing cam can be sensed by the electronics module 36.
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[0061] According to
[0062] Power supply 144 is provided at the door 142 between door leaf 142 and tongue 148.
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[0064] Further views and the manner of functioning are shown in
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[0066] Other similar materials can also be used for the printed circuit board, e.g., CM1, CM3, FR2, FR3, FR4, FR5, FR5BT, polyamide, Teflon (PTFE), or ceramic. The electronics module 136 for detecting the state of the door can comprise a reed sensor, a Hall sensor, a reflection-type photo-switch, a light barrier, mechanical feeler, pressure sensors, light sensors, proximity sensors which can operate inductively, capacitively or by ultrasound, temperature sensors, or rotational angle sensors. The placement of the sensor can be carried out by the customer (in case of an existing sensor) or on the door frame, on the hinge, provided for a minimum quantity of a sensor in the system and at least one externally switchable sensor.
[0067] Sensors can also be provided for detecting the actual state of the lock 146, for example, a fork light barrier, a light barrier, a reflection-type photo-switch, a mechanical feeler, a pressure sensor, a potentiometer, a proximity sensor which can operate inductively, capacitively or by ultrasound, a rotational angle sensor, a reed sensor, and a Hall sensor.
[0068] The sensor placement for detecting the closing state, i.e., the position of the rotary latch 148, can be carried out by an extension or an adaptor 152 outside of the rotary latch, for example, with the arrangement of the extension according to reference numeral 152,154 or also integrated in the rotary latch.
[0069] Depending on external factors, a network device or battery operation can be provided for power supply, see power cable 156 in
[0070] In an alternative not according to the invention, a light guide 258 is part of the wall of the tray 210 and is made of a translucent plastic and arranged and shaped in such a way that the wall 260 is illuminated at the desired location during operation of the light emitting diode 262. The light guide 258 can be removed as part of the wall 260 and may be replaced by a part of another color.
[0071] Two parts 260 of this kind can be provided and connected by a carrier plate 264. The carrier plate 264 can also form a receptacle for a button cell 266.
[0072] According to another further development, the light guide can be characterized in that a light emitting diode 262 is arranged in the vicinity of the shaft on the underside of the tray and has light contact with parts of the wall 268 of the tray 210.
[0073] On the other hand, the light guide can be characterized in that a light emitting diode 262 is arranged in the vicinity of the shaft 214 and has light contact with the wall 261 of the hand lever 214.
INDUSTRIAL APPLICABILITY
[0074] The invention is commercially applicable in a switch cabinet construction.
[0075] While this invention has been described in conjunction with the specific embodiments outlined above, it is evident that many alternatives, modifications, and variations will be apparent to those skilled in the art. Accordingly, the preferred embodiments of the invention as set forth above are intended to be illustrative, not limiting. Various changes may be made without departing from the spirit and scope of the inventions as defined in the following claims.
LIST OF REFERENCE NUMERALS
[0076] 10, 110, 210 tray, housing [0077] 12, 112 swivel handle, actuating means, rod drive with stop [0078] 13 rod drive [0079] 14, 114, 214 joint pin, actuating means, shaft [0080] 16, 116 bearing piece, retaining nut [0081] 18 screw [0082] 20, 120 hexagon nut with clamping part, self-locking screw [0083] 21 clamping part [0084] 22 washer [0085] 24 spring washer [0086] 26, 126 flange [0087] 28, 128 light ring [0088] 30, 130 LED [0089] 32, 132 flexible foil [0090] 34, 134 foil conductor [0091] 36, 136 electronics module, printed circuit board [0092] 38,138 heat sink, base plate [0093] 139 door frame [0094] 40 fastening screws [0095] 42, 142 thin wall [0096] 44, 144 power supply electronics [0097] 46, 146 cylinder closure [0098] 48, 148 closing cam, tongue [0099] 50, 150 power supply LED [0100] 152 sensor adaptor [0101] 154 closing sensor [0102] 156 cable connection [0103] 258 light guide [0104] 260 wall [0105] 261 wall [0106] 262 light emitting diode [0107] 264 carrier plate [0108] 266 button cell [0109] 268 wall