EP2702834B1 - Dispositif de fonctionnement pour moyen d'éclairage et adaptateur pour alimenter ledit dispositif de fonctionnement en énergie - Google Patents
Dispositif de fonctionnement pour moyen d'éclairage et adaptateur pour alimenter ledit dispositif de fonctionnement en énergie Download PDFInfo
- Publication number
- EP2702834B1 EP2702834B1 EP12722689.2A EP12722689A EP2702834B1 EP 2702834 B1 EP2702834 B1 EP 2702834B1 EP 12722689 A EP12722689 A EP 12722689A EP 2702834 B1 EP2702834 B1 EP 2702834B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- operating device
- adapter
- operating
- address
- connecting elements
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
Links
- 238000004891 communication Methods 0.000 claims description 8
- 230000005540 biological transmission Effects 0.000 claims description 4
- 238000009434 installation Methods 0.000 description 8
- 230000006399 behavior Effects 0.000 description 4
- 238000000034 method Methods 0.000 description 4
- 230000003287 optical effect Effects 0.000 description 4
- 238000001514 detection method Methods 0.000 description 2
- 230000006870 function Effects 0.000 description 2
- 230000006978 adaptation Effects 0.000 description 1
- 230000007547 defect Effects 0.000 description 1
- 230000001419 dependent effect Effects 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 230000008054 signal transmission Effects 0.000 description 1
Images
Classifications
-
- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B47/00—Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
- H05B47/10—Controlling the light source
- H05B47/175—Controlling the light source by remote control
- H05B47/18—Controlling the light source by remote control via data-bus transmission
Definitions
- Operating devices for light sources in particular electronic ballasts, are usually mounted in lights together with the bulbs on the ceiling of the rooms to be illuminated. After attaching these lights, it is usually still necessary to configure the usually integrated therein operating devices.
- An example of the configuration of the operating devices after installation is in the EP 0433 527 A1 described. It describes how several distributively arranged operating devices are to be controlled by a control center via a data bus at a specific operating address. For this purpose, an original address given to the operating devices is replaced after installation by an appropriate configuration against an operating address.
- the configuration can be done in a mechanical way via a provided on the operating device rotary switch, DIP-Swich or the like.
- a mechanical configuration is difficult. This on the one hand, because the operating devices in lights on the ceilings of the rooms to be illuminated only with tools (ladders and the like.) Can be reached, and on the other hand, because the operating devices are usually installed in the lights, which have a closed housing and the Therefore, to be configured components are not accessible or only after opening the lamp housing.
- the DE 103 29 090 A1 discloses a possibility that in operating devices for lighting means having an input for connection of a light sensor, this input can be used to insert a resistor for address coding of the operating device.
- this input can be used to insert a resistor for address coding of the operating device.
- the opening of the lamp housing is required to perform such addressing or change.
- such a solution increases the space requirement in the luminaire housing, since the resistor must be arranged inside a plug, which then has to be connected to the connection for the light sensor.
- WO 2011/012417 A1 a method for assigning an operating address to a lighting device is described, which also operates according to the method described above.
- the light detector is located here on a plug (plug), which is connected to an interface of the operating device.
- the plug has a controller and is supplied with voltage via the interface by the operating device.
- the assignment of an operating address is made either by a user transmitting optical digital signals to the light detector with a handheld device or by the user using a computer is programmed.
- the source address may be stored in the controller. This means that the configuration must be done either remotely using optical aids or directly at the installation site of the control gear.
- the invention has for its object to provide a way to configure an operating device after installation of the lamp without optical aids and not necessarily on site.
- the invention consists in a control device for a lighting means, with an adapter, which is designed as an external device part, preferably as a plug, and which can be configured manually or by the supply of actuating signals, wherein the connection elements for the power supply of the operating device are located on the external device part, and wherein the external device part is connected to the operating device by current and / or signal conducting means.
- the external device part is hereinafter referred to as "adapter" in this embodiment.
- the invention is based on the consideration that the operating device must be connected via a power supply line to a power source, which is usually the power grid.
- connection elements for the power supply are routed from the operating device to the external device part, ie an adapter (which also contains the configuration means), then the adapter can be located remotely from the operating device, in a location located either directly next to it is located on the power supply lines, or anywhere between this location and the control gear. In this way one wins - as far as the positioning of the configuration means is concerned - in freedom and is no longer forced to make the configuration of the operating device at its installation site or using optical aids.
- the adapter is designed as a plug and takes on both the function of an electrical contact as well as an extension of the functionality of the operating device.
- the operating device may include storage means for an originating address and an operating address.
- the operating address can be configured by adjusting means located in or on the adapter.
- the adjusting means may be formed, for example, by a rotary switch, a programming resistor or the like.
- the operating device is provided with a memory for the source address, and that the adapter has a memory for the operating address.
- the adapter can be provided with additional connecting elements for the connection to the data bus.
- a possible alternative to the practical implementation of such an adapter may be that it is provided with resilient contact arms, which form the connection elements for the power supply.
- adapter is designed as a two-part plug with male part and female part, and wherein this two-part plug is inserted into the power and / or signal conducting means, such that one of the two parts with the operating device and the other is connected to the associated line of the power grid.
- At least the components serving the configuration can be combined in a configuration module which can be snapped into a recess of the adapter with resilient contact terminals.
- the invention also relates to a lighting unit / light having a light source and an operating device according to the invention.
- the invention also relates to a lighting system, comprising a plurality of lights, wherein the lights are each connected via control lines and at least one lamp has an adapter according to the invention.
- FIG. 1 a lighting means 12 is shown, which is operated by means of an operating device 1a.
- the operating device 1a generates the operating voltage necessary for the operation of the luminous means 12 and for this purpose contains a voltage generator GE.
- the voltage generator GE is an electrical circuit for influencing the operation of the luminous means 12.
- the operating device 1a is connected via power conducting means 13, 16 and / or signal conducting means 14, 15 to an adapter 1b, which can form an active external device part of the operating device 1a.
- the adapter is preferably formed as a plug and includes connection elements 8 and 9, with which the adapter 1 b can be connected to the wires 2, 3 of the power grid.
- the mains current is forwarded from the adapter 1b to the operating device via the current conducting means 13, 16.
- the adapter 1b can feed itself from the mains or via the control lines 4, 5, if it contains active components.
- the operating device 1a and the associated light source 12 can be arranged inside a luminaire (not shown here).
- the adapter 1b can also be arranged inside the luminaire or outside the luminaire.
- the adapter is accessible to the user without having to open the light.
- the adapter 1b can be controlled via control lines 4, 5 from a control center (not shown).
- the control panel can be a push-button or rotary switch or an operating device such as a touch panel.
- the control lines 4, 5 can be designed as wired or non-wired transmission means in addition to the wires 2, 3 of the power grid. Alternatively, however, the lead wires 2, 3 of the power network can additionally assume the function of the control lines 4, 5.
- the operating device 1a contains a memory UA for the source address and also a controller CT, which controls the voltage generator GE and is also responsible for the address management.
- the operating device 1a can be assigned an operating address, which replaces after installation a stored in a memory UA of the operating device 1a source address.
- the operating address identifies that Operating device in connection with the installation site.
- the operating address can, however, naturally be awarded only when the operating device and the lamp operated by it have been mounted in a specific location. For this purpose, a configuration of the operating device 1a is required.
- the components to be configured or the configuration or adjustment means are located in or on the adapter 1b. They consist of a (rotary) switch 20 and / or a configuration module KB. With the switch 20 can be written to be deposited in a memory BA of the adapter 1b operating address in the adapter 1b. The configuration can also be made by replacing the mentioned configuration block KB.
- the adapter 1b is also provided with additional connection elements 6, 7, via which a connection with the control lines 4, 5, e.g. a data bus can be made.
- the adapter 1b transmits the data transmitted to the adapter 1b to the operating device 1a, via signal line means 14, 15 or in modulated form via the power conducting means 13, 16, which is intended for the transmission of the operating energy.
- both in the adapter 1b and in the operating device 1a communication means KMa, KMb are provided, which can receive or also send the data.
- the data transmitted from a control center to the operating device 1a can, for example, be looped through the adapter 1b from the control lines 4, 5 to the signal conducting means 14, 15, and optionalally, the adapter 1b via its communication means KMb additional data via the signal line 14, 15 send to the operating device 1a.
- the operating device 1a can also send data via the adapter 1b to the control lines 4, 5.
- the data transmitted via the signal line means 14, 15 are not forwarded to the control lines 4, 5, so that in addition to the communication with the center through the adapter 1 b (via the control lines 4, 5), a communication separated therefrom takes place between the adapter 1b and the operating device 1a.
- the adapter can forward this configuration information directly or indirectly via the signal line means 14, 15 or the control of the operating device 1a via the signal line means 14, 15 according to the configuration information adapt.
- the adapter 1b can be assigned an operating address via the (rotary) switch 20 and / or the configuration module KB. Depending on this, the adapter 1b can then evaluate the data transmitted via the control lines 4, 5. If he recognizes on the basis of the transmitted with the data operating address information that the data are directed to him, he can forward corresponding control signals to the operating device 1a or also influence the forwarding of the mains current via the power line means 13, 16. So it may also be possible that the Operating device 1a no operating address is assigned, and the control of the operating device 1a is carried out only by the forwarding of all relevant for this operating device 1a data, the adapter 1b only forwards the data associated with the operating address associated with the adapter 1b. Thus, in this case, the adapter 1b is addressed, wherein the operating device 1a does not have to have an operating address.
- no signal-conducting means 14, 15 need be present, but the operating device 1a is designed without separate communication means KMa.
- the latter in the case of a corresponding switch-off command to the operating address of the adapter 1b, the latter can interrupt the power supply to the power line means 13, 16 and thus switch off the operating device 1a.
- the adapter 1b forwards the configuration information given via the switch 20 and / or the configuration module KB to the operating device 1a via the signal line means 14, 15 (for example, an operating address).
- the operating device 1a receives this configuration information and puts it down.
- a transmitted operating address can be stored in the memory UA of the operating device 1a.
- the received configuration information can also be stored in the controller CT.
- the operating device 1a can subsequently adapt its communication and / or its behavior in accordance with the received configuration information. For example, it may be based on the data transmitted via the signal conducting means 14, 15 Operating address information recognizes that the data are directed to the operating device and process it accordingly (ie receive and adapt its behavior).
- a configuration can mean not only the operating address but also an adaptation of the behavior of the operating device. For example, via the configuration upon receipt of a corresponding control signal or else by detection by a sensor (eg brightness threshold or presence detection), a brightness value predetermined by such a configuration can be assumed and / or set or a given execution behavior (eg a passage of a sequence of brightness changes and / or the start of a fluorescent lamp at the end of a predetermined preheating time).
- a sensor eg brightness threshold or presence detection
- the adapter 1b can also read out a configuration stored in the operating device 1a (for example in the controller CT) so that when the operating device 1a is replaced (for example in the case of a defect), the previous configuration of the operating device to be replaced is transferred to the newly connected operating device can be. In this way, the user can be made a substantial compatibility in a device replacement.
- the configuration module KB is positioned in a designated recess 13 of the adapter 1b and is held there by spring contacts 12a, via which it is also supplied with voltage, and over which he continues to exchange signals and data.
- the connecting elements 6 to 9 are designed as contact spring arms and allow a very simple and fast connection of the adapter with the corresponding lines 2 to 5.
- the adapter 1b is formed here as a plug.
- the adapter 1b is connected to the operating device via the current-conducting means 13, 16 and optionally also via the signal-conducting means 14, 15.
- the adapter 1b can be designed as a plug so that the customer can make contact with the operating device via the adapter 1b without danger, especially if the adapter 1b is designed as a safety plug, such as a so-called 'Wieland' plug.
- plug includes both the design as a mother part or a male part, thus the execution of the plug is included as a socket.
- the adapter is designed as a two-part plug and consists of a male part 100b and a female part 100b.
- the male part 11b is connected to the operating device 1a via an electric wire 111b.
- the female part 100c is connected via an electrical line 111c to the associated line of the power network.
- the two lines 111b and 111c not only serve to supply power to the operating device 1a and the Configuration blocks KB on the adapter, but also for the transmission of signals and data.
- the configuration information is transmitted from the adapter to the operating device 1a via the electric wire 111b.
- the male part 100b has male pins 108b, 109b, 110b corresponding to corresponding male recesses 108c, 109c, 110c in the female part 100c.
- the male part 100b has a recess 113 for receiving a configuration module KB, which can be snapped into spring contacts 112.
- a configuration can here as well as in the FIGS. 2a and 2b shown adapter 1b by replacement of the configuration module or by actuation of (not shown here) adjustment made on the same.
Landscapes
- Circuit Arrangement For Electric Light Sources In General (AREA)
Claims (18)
- Dispositif de commande (1a, 1b ; 100b, 100c) pour un moyen d'éclairage (12), avec un adaptateur, qui est conçu comme une partie d'appareil externe (1b ; 100b, 100c), de préférence comme un connecteur, le dispositif de commande pouvant être configuré au moyen d'un composant de configuration (KB) se trouvant dans 1a partie externe de l'appareil pour le dispositif de commande (1a, 1b) manuellement ou par l'introduction de signaux de réglage, des éléments de raccordement (8, 9 ; 108b à 110b, 109a à 109c) se trouvant sur la partie externe de l'appareil (1b ; 100b, 100c) pour l'alimentation en énergie du dispositif de commande (1a),
et la partie externe de l'appareil (1b) étant reliée avec le dispositif de commande (1a) par des conducteurs de courant (13, 16) et des conducteurs de signaux (14, 15 ; 111b) pour une prolongation d'une liaison de courant et de signaux par les éléments de raccordement (8, 9 ; 108a à 108c, 109a à 109c) au dispositif de commande (1a). - Dispositif de commande (1a, 1b ; 100b, 100c) selon la revendication 1, le dispositif de commande comprenant des mémoires (UA, UB) pour une adresse d'origine et une adresse de commande et
la partie externe de l'appareil (1b ; 100b, 100c) comprenant des moyens de réglage (10) pour une adresse de commande. - Dispositif de commande (1a, 1b ; 100b, 100c) selon la revendication 2, le dispositif de commande étant muni d'une mémoire (UA) pour l'adresse d'origine,
et dans lequel la partie externe de l'appareil (1b ; 100b, 100c) comprenant une mémoire (BA) pour l'adresse de commande. - Dispositif de commande (1a, 1b ; 100b, 100c) selon la revendication 2 ou 3,
dans lequel les moyens de réglage (20) sont constitués par un commutateur rotatif ou une résistance programmable. - Dispositif de commande (1a, 1b ; 100b, 100c) selon l'une des revendications précédentes,
dans lequel la partie externe de l'appareil (1b ; 100b, 100c) comprend des éléments de raccordements supplémentaires (6, 7) pour la liaison avec des lignes de commande (4, 5). - Dispositif de commande (1a, 1b ; 100b, 100c) selon l'une des revendications précédentes,
la partie externe de l'appareil (1b ; 100b, 100c) comprenant le composant de configuration (KB) qui peut être encliqueté dans des contacts à ressorts (12a ; 112). - Dispositif de commande (1a, 1b) selon l'une des revendications 1 à 5,
la partie externe de l'appareil (1b) comprenant des bornes de contact élastiques qui constituent les éléments de raccordement (8, 9) pour l'alimentation en énergie. - Dispositif de commande selon l'une des revendications 1 à 5,
la partie externe de l'appareil (100b, 100c) étant un connecteur en deux parties avec une partie mâle (100b) et une partie femelle (100c) et
le connecteur en deux parties (100b, 100c) étant inséré dans les conducteurs de courant (16, 13) et/ou les conducteurs de signaux (14, 15 ; 111b), de façon à ce qu'une des deux parties (100b) soit reliée avec le dispositif de commande (1a) et l'autre partie avec la ligne correspondante du réseau électrique. - Adaptateur (1b ; 100b, 100c) pour l'alimentation en énergie d'un dispositif de commande (1a) pour un moyen d'éclairage (12), comprenant
des éléments de raccordement (8, 9; 108a à 108c, 109a à 109c) pour l'alimentation en énergie du dispositif de commande (1a, 1b),
un composant de configuration (KB) pour le dispositif de commande (1a, 1b) ainsi que
des conducteurs de courant (13, 16) et des conducteurs de signaux (14, 15 ; 111b) pour une prolongation d'une liaison de courant et de signaux par les éléments de raccordement (8, 9 ; 108a à 108c, 109a à 109c) au dispositif de commande (1a). - Adaptateur (1b ; 100b, 100c) selon la revendication 9,
comprenant des moyens de communication (Kma, Kmb), les moyens de communication (Kma, Kmb) comprenant d'autres éléments de raccordement pour une ligne de liaison électrique, par l'intermédiaire de laquelle l'adaptateur (1b) peut être relié avec le dispositif de commande (1a). - Adaptateur (1b ; 100b, 100c) selon la revendication 9 ou 10,
celui-ci comprenant des moyens de réglage (20) pour une adresse de commande. - Adaptateur (1b ; 100b, 100c) selon la revendication 10,
les moyens de réglage (20) étant constitués d'un commutateur rotatif ou d'une résistance programmable. - Adaptateur (1b ; 100b, 100c) selon l'une des revendications 9 à 12,
celui-ci comprenant une mémoire (BA) pour une adresse de commande, qui correspond au dispositif de commande (1a). - Adaptateur (1b ; 100b, 100c) selon l'une des revendications 9 à 13,
celui-ci comprenant des éléments de raccordement supplémentaires (6, 7) pour la liaison avec des lignes de commande (4, 5). - Adaptateur (1b) selon l'une des revendications 9 à 14,
celui-ci comprenant des bornes de contact élastiques qui constituent les éléments de raccordement (8, 9) pour l'alimentation en énergie et
le composant de configuration (KB) peut en outre être encliqueté dans des contacts à ressorts (12a). - Adaptateur (100b, 100c) selon l'une des revendications 9 à 14,
l'adaptateur étant un connecteur en deux parties avec une partie mâle (100b) et une partie femelle (100c) et
le connecteur en deux parties (100b, 100c) étant inséré dans les conducteurs de courant (13, 16) et/ou les conducteurs de signaux (14, 15 ; 111b, 111c), de façon à ce qu'une des deux parties (100b) soit reliée avec le dispositif de commande (1a) et l'autre partie soit reliée avec la ligne correspondante du réseau électrique. - Unité d'éclairage comprenant un moyen d'éclairage (12) et un dispositif de commande (1a, 1b ; 100b, 100c) selon l'une des revendications 1 à 8.
- Système d'éclairage comprenant plusieurs luminaires, les luminaires étant reliés chacun par l'intermédiaire de lignes de commande (4, 5) et au moins un luminaire comprenant un adaptateur selon l'une des revendications 9 à 16.
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE102011017676A DE102011017676A1 (de) | 2011-04-28 | 2011-04-28 | Betriebsgerät für ein Leuchtmittel und Adapter zur Energieversorgung desselben |
PCT/EP2012/057773 WO2012146719A1 (fr) | 2011-04-28 | 2012-04-27 | Dispositif de fonctionnement pour moyen d'éclairage et adaptateur pour alimenter ledit dispositif de fonctionnement en énergie |
Publications (2)
Publication Number | Publication Date |
---|---|
EP2702834A1 EP2702834A1 (fr) | 2014-03-05 |
EP2702834B1 true EP2702834B1 (fr) | 2018-06-06 |
Family
ID=46147415
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP12722689.2A Active EP2702834B1 (fr) | 2011-04-28 | 2012-04-27 | Dispositif de fonctionnement pour moyen d'éclairage et adaptateur pour alimenter ledit dispositif de fonctionnement en énergie |
Country Status (3)
Country | Link |
---|---|
EP (1) | EP2702834B1 (fr) |
DE (1) | DE102011017676A1 (fr) |
WO (1) | WO2012146719A1 (fr) |
Families Citing this family (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE102017130561A1 (de) | 2017-12-19 | 2019-06-19 | Schott Ag | Beleuchtungsvorrichtung |
DE102020105692B4 (de) * | 2020-03-03 | 2024-06-06 | Ledvance Gmbh | Elektronische Vorrichtung mit erweiterbarer Funktionalität |
Family Cites Families (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE3818601A1 (de) * | 1988-06-01 | 1989-12-14 | Merten Gmbh & Co Kg Geb | Digitales signaluebertragungssystem fuer die hausleittechnik |
ES2045571T3 (es) | 1989-12-21 | 1994-01-16 | Zumtobel Ag | Dispositivo de control para varios consumidores. |
DE4422215A1 (de) | 1994-06-24 | 1996-01-04 | Zumtobel Licht | Steuersystem für mehrere verteilt anzuordnende Verbraucher, sowie Verfahren zum In-Betrieb-Setzen eines solchen Steuersystems |
DE19544027C2 (de) * | 1995-11-25 | 1999-01-07 | Bernward Dr Zimmermann | Bussystem, insbesondere zur elektrischen Installation |
DE10329090B4 (de) | 2003-06-27 | 2016-06-02 | Tridonic Gmbh & Co Kg | Adressierung von Vorschaltgeräten über einen Sensor-Eingang |
US8323513B2 (en) | 2009-07-28 | 2012-12-04 | Cp Kelco Aps | Dewatering biomass material comprising polysaccharide, method for extracting polysaccharide from biomass material, and dewatered biomass material |
-
2011
- 2011-04-28 DE DE102011017676A patent/DE102011017676A1/de not_active Withdrawn
-
2012
- 2012-04-27 WO PCT/EP2012/057773 patent/WO2012146719A1/fr active Application Filing
- 2012-04-27 EP EP12722689.2A patent/EP2702834B1/fr active Active
Non-Patent Citations (1)
Title |
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None * |
Also Published As
Publication number | Publication date |
---|---|
WO2012146719A1 (fr) | 2012-11-01 |
EP2702834A1 (fr) | 2014-03-05 |
DE102011017676A1 (de) | 2012-10-31 |
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