Lighting device with expandable functionality
20210348741 ยท 2021-11-11
Inventors
Cpc classification
F21V23/003
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/0435
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/0442
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V17/002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/045
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2103/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21V15/01
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A main unit of a lighting device with expandable functionality. The main unit includes at least one light source, driver electronics, and a housing with an at least partially light-permeable housing wall. The main unit further includes a coupling element for forming a wireless coupling interface to an extension unit, wherein the coupling element is located within the housing and is designed such that the wireless coupling between the main unit and the extension unit through the partially light-permeable housing wall is carried out. Furthermore, an extension unit and a lighting device are provided.
Claims
1. A main unit of a lighting device with expandable functionality, comprising: at least one light source; a driver electronics; a housing with an at least partially light-permeable housing wall; and a coupling element for forming a wireless coupling interface to an extension unit, wherein the coupling element is located inside the housing and wherein the wireless coupling between the main unit and the extension unit can take place through the housing.
2. The main unit according to claim 1, wherein the coupling element is configured to provide a spatially extended coupling region such that the wireless coupling interface between the main unit and the extension unit can be formed at different housing locations of the main unit.
3. The main unit according to claim 2, wherein the housing is elongated and the coupling area extends along the elongated housing.
4. The main unit according to claim 1, wherein the at least partially light-permeable housing wall is formed in the shape of an elongated cylinder, and wherein the coupling element is formed in the shape of a cylinder segment coaxial with the elongated cylinder.
5. The main unit according to claim 1, wherein the coupling element is designed for wireless power transmission.
6. The main unit according to claim 1, wherein the coupling element is designed for wireless signal transmission between the main unit and the extension unit.
7. The main unit according to claim 6, wherein the main unit is adapted to receive control signals for controlling the driver electronics via the coupling element in order to change the operating state of the main unit.
8. The main unit according to claim 1 further comprising an extension unit for functionally extending the main unit, wherein the extension unit comprises a functional unit for providing a functional extension of the main unit and a counter-coupling element for forming a wireless coupling interface to the main unit such that the wireless coupling between the main unit and the extension unit can take place through the housing of the main unit.
9. The main unit according to claim 8, wherein the counter-coupling element is designed for wireless energy absorption for the energy supply of the extension unit.
10. The main unit according to claim 8, wherein the counter-coupling element is designed for wireless signal transmission between the main unit and the extension unit.
11. The main unit according to claim 10, wherein the extension unit is adapted to send control signals for controlling the driver electronics of the main unit via the counter-coupling element in order to change the operating state of the main unit.
12. The main unit according to claim 8, wherein the extension unit comprises a sensor system for providing at least one sensor signal.
13. The main unit according to claim 12, wherein the extension unit comprises a housing which is at least partially light-permeable in the infrared spectral range, and wherein the sensor system comprises an infrared sensor enclosed in the housing of the extension unit.
14. The main unit according to claim 10, wherein the extension unit comprises a communication interface for wireless communication.
15. A lighting device with extended functionality, wherein the lighting device comprises a main unit and an extension unit, and wherein the main unit and the extension unit are wirelessly coupled to each other via a coupling element of the main unit and a counter-coupling element of the extension unit through a partially light-permeable housing wall of the main unit.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0036] The present disclosure is now explained in more detail with the aid of the attached figures. The same reference numbers are used in the figures for identical or similarly acting parts.
[0037]
[0038]
DETAILED DESCRIPTION OF THE DRAWINGS
[0039]
[0040] The wireless coupling interface 6 may be designed to transmit electrical energy from the main unit 2 to the extension unit 3 for power supply of the extension unit 3 wirelessly or cable-free. The energy transmission via the coupling interface 6 is symbolically represented by the black arrows in
[0041] The wireless coupling interface 6 may further be adapted to transmit electrical signals from the extension unit 3 to the main unit 2 and/or from the main unit 2 to the extension unit 3. The extension unit 3 may include a controller and a memory for storing data and machine-readable instructions for the controller. The signal transmission via the coupling interface 6 is symbolically represented by white arrows in
[0042] The wireless coupling interface 6 may be designed to electrically couple the main unit 2 and the extension unit 3 to each other by inductive and/or capacitive coupling, wherein the type of coupling and the geometry of the wireless coupling interface 6 may depend on the specific application.
[0043]
[0044] In the embodiment of
[0045] A coupling element 7 may formed on the inside of the housing 4 to form the wireless coupling interface 6 of the main unit 2 with the extension unit 3. The coupling element 7 may be elongated and extend over a length of the LED tube which is larger than the dimensions of the extension unit 3.
[0046]
[0047] The lighting device 1 may further include fastening elements (not shown) for fastening the main unit 2 to the extension unit 3. The fastening elements may include magnetic and/or mechanical fastening elements and may be designed such that the extension unit 3 is freely displaceable along the housing wall 5 of the main unit 2. This allows the extension unit 3 to be freely positioned along this length section in accordance with the application.
[0048] The coupling element 7 or the counter-coupling element 8 may include inductive and/or capacitive coupling elements. These coupling types may be used for both energy and signal transmission. Depending on the choice of the coupling type, different constraints may arise with respect to the geometry and required accuracy of the positioning of the extension unit 3 with respect to the main unit 2 alignment. The type of coupling may be selected depending on the respective application.
[0049] The main unit 2 may be designed to receive control signals sent by the extension unit 3 via the coupling element 7 for controlling the driver electronics in order to change the operating state of the main unit 2. The main unit 2 may be configured to receive control signals from the extension unit 3 to switch on or off and/or dim the main unit 2. In some embodiments, the main unit 2 may be controlled by an expansion unit 3 such that the color or color temperature of the light or white light produced by the main unit may be influenced or changed.
[0050] Although at least one exemplary embodiment has been shown in the foregoing description, various changes and modifications may be made. The aforementioned embodiments are examples only and are not intended to limit the scope, applicability or configuration of the present disclosure in any way. Rather, the foregoing description provides the person skilled in the art with a plan for implementing at least one exemplary embodiment, wherein numerous changes in the function and arrangement of elements described in an exemplary embodiment may be made without departing from the scope of protection of the appended claims and their legal equivalents. Furthermore, according to the principles described herein, several modules or several products may also be connected with each other in order to obtain further functions.