EP2030484A1 - Dimmbares betriebsgerät mit interner dimmkennlinie - Google Patents
Dimmbares betriebsgerät mit interner dimmkennlinieInfo
- Publication number
- EP2030484A1 EP2030484A1 EP07764640A EP07764640A EP2030484A1 EP 2030484 A1 EP2030484 A1 EP 2030484A1 EP 07764640 A EP07764640 A EP 07764640A EP 07764640 A EP07764640 A EP 07764640A EP 2030484 A1 EP2030484 A1 EP 2030484A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- operating device
- dimming
- values
- internal
- external
- 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.)
- Granted
Links
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
- H05B45/00—Circuit arrangements for operating light-emitting diodes [LED]
- H05B45/10—Controlling the intensity of the light
- H05B45/14—Controlling the intensity of the light using electrical feedback from LEDs or from LED modules
-
- 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
- H05B45/00—Circuit arrangements for operating light-emitting diodes [LED]
- H05B45/10—Controlling the intensity of the light
-
- 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
-
- 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
- H05B45/00—Circuit arrangements for operating light-emitting diodes [LED]
- H05B45/10—Controlling the intensity of the light
- H05B45/12—Controlling the intensity of the light using optical feedback
-
- 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
- H05B47/198—Grouping of control procedures or address assignation to light sources
Definitions
- the present invention relates to a dimmable control gear for light means, which may be, for example, light emitting diodes or gas discharge lamps.
- dimming values For the instruction of control commands to dimmable operating devices of a lighting system, many of the lighting systems used today use a bspw.
- DALI or DSI standard standardized bus system by the u.a. external dimming values can be transmitted.
- the control units required for driving the individual lamps internally convert these values into dimming values, for example using conversion tables, which represent the actual stages of the brightness control of the connected lamps and the possibly higher-resolution control values (eg 16-bit quantized control values) than the external ones Dimming values represent.
- An operating device with a constant current source as a driver circuit for driving a multi LED light emitting diode module is disclosed in DE 20 2004 006 292 Ul.
- the driver circuit is connected to the LED module via a total of three channels, two of which serve to supply voltage to the LED module with a pulse width-modulated supply voltage in dimming mode and a third channel ("module recognition channel") designed as a digital interface to the uni or bidirectional transmission of digital operating parameters and / or calibration data between LED module and driver circuit is used, so that the driver circuit can adjust to this. This allows the operation of different types of LED modules with the same driver circuit under the same operating conditions.
- EP 1 135 005 A2 describes a circuit controllable via a digital data interface for dimming light sources of a lighting system, which has suitable means for generating a control signal dependent on a predefinable setpoint for controlling the brightness of the light sources and means for adapting the control signal to different light source types ,
- the present invention is the object of proposing a flexible design of a dimmable control device for lighting.
- the task defined in the previous section is achieved by means of an operating device for illuminants, which has an interface via which external dimming values can be fed to the operating device.
- the operating device converts these supplied external dimming values into internal dimming values on the basis of which the connected lamps are controlled.
- the internal dimming values are at least as high and optionally higher than the external dimming values.
- the operating device is designed so that the conversion of the external dimming values into the internal dimming values is programmable.
- the operating device can in particular also be designed so that the aforementioned implementation is programmable with regard to its dynamics. It may be provided that it is possible to program by which temporal transition behavior (linear, logarithmic or exponential time curve, etc.) an internal dimming value assigned to an external dimming value is achieved.
- mapping of an internal dimming value to be controlled in the stationary state to an external dimming value may also be programmable
- the resolution of the internal dimming values need not be higher than that of the external dimming values.
- the light-emitting means can be, for example, a single light-emitting diode or an LED module comprising a plurality of light-emitting diodes, wherein the stationary assignment of an internal dimming value to an external dimming value results in production tolerances of the LED (s) compensated.
- the operating device may have a flash memory in which the programmable conversion of the external dimming values is stored in internal dimming values.
- a maximum dimming value limitation below 100% can be selectively defined, which can be selectively switched on and / or canceled by an external command.
- the internal dimming values can be divided between the range 0% and the dimming value limitation so that there is a maximum resolution of dimming values in this range.
- the operating device can have several outputs for controlling lamps, with the internal dimming characteristics being individually programmable for each of these outputs.
- the outputs can thereby illuminate bulbs, for example. LEDs, different colors.
- the present invention also relates to a method for compensating manufacturer-specific tolerances of driven by an operating device LEDs, the external dimming values are supplied.
- the method according to the invention comprises the step of programming the aforementioned dimming value conversion.
- the invention further relates to a method for configuring an operating device for lighting means to which external dimming values are supplied, the supplied external dimming values being converted into internal dimming values on the basis of which the control of the connected lighting means takes place.
- the internal dimming values are higher as the external dimming values. After measuring the light characteristic of the lamp, it is recalibrated by subsequent programming of conversion of the external dimming values to internal dimming values.
- the implementation can be programmed in terms of their dynamics, i. E. It can be programmed by which temporal transition behavior an internal dimming value assigned to an external dimming value is achieved.
- the invention can provide for the operating device to provide value assignment tables for converting external dimming values into internal dimming values via a bus system with the aid of a communication protocol based on the DALI standard, in order to optimally trim the control unit to the light source or to adapt the shape of the dimming characteristic individually.
- this method allows manufacturers of LED modules to take into account and compensate for device-specific tolerances of different LED modules when calibrating the dimming characteristic to a new LED module, thereby providing a simple and cost-effective way of delivering LED modules with uniform dimming behavior.
- FIG. 1 is a schematic representation of a dimming circuit with a dimmable operating device according to the present invention
- FIG. 2a is a schematic diagram of a lighting system according to an embodiment of the present invention, comprising a control device and a controlled via an operating device LED module, which are connected to a bus line, which serves for the transmission of operating parameters and programming data between the control device and the operating device, and
- FIG. 2b shows a variant of the lighting system sketched in FIG. 2a with a brightness control loop for automatically setting a dimming level which can be preset via a setpoint value.
- the light-emitting means can be, for example, a gas discharge lamp, an LED or an LED module consisting of an array of several series-connected LEDs, individually or group-by-group LEDs LEDi connected in parallel to LED N.
- the invention can be used in conjunction with any dimmable illuminant.
- the power actuator TB which is supplied via a control input connected to the control unit BG a dimming of the lamp LM required control signal may, for example, a Phasenanterrorismsimmer, a controllable constant current source, an adjustable supply voltage, an inverter with adjustable clock frequency f ⁇ or a pulse width modulator PWM include via which the duty cycle d of a generated by the operating device BG, the lighting means LM in the form of a pulse width modulated control signal supplied periodic rectangular current is Varied.
- the frequency Jf 1 ⁇ of an alternating current required to operate the luminous means LM the current intensity of an alternating or direct current J LM serving to supply the luminous means LM or the voltage level U can therefore be used as the output manipulated variable StG ' LM are used for supplying the power supply of the lamp LM supply voltage.
- the operating device BG has an interface via which the operating device BG can be supplied with an external reference variable FG (indicated in FIG Data converter LMK in the operating device BG in internal Dimming values of a control variable StG implemented on the basis of the control of the power actuator TB.
- the operating device BG accesses, for example, a value assignment table stored in a memory unit of the data converter LMK (referred to as "adjustment table" in FIG. 1), from the intermediate, linear, logarithmic, exponential or otherwise interpolated intermediate values for dimming the illuminant LM required dimming characteristic can be removed.
- the range of values of these support values is given e.g. is delimited by two straight lines running parallel to the time axis of a dimming level-time diagram, wherein the lower limit of the value range is formed by the current actual value of a preset dimming level and the upper limit of the value range can be predetermined by a programming signal PS supplied to the data converter LMK (or vice versa).
- the data converter LMK calculates interpolated intermediate values for the time characteristic of the dimming characteristic with respect to the aforementioned reference values and activates the power actuator TB with the values obtained in this case.
- the supporting values stored in the non-volatile memory of the data converter LMK can be recalibrated via the above-mentioned programming signal PS.
- the programming signal is transmitted separately to a bus interface and / or via the same bus interface, via which, after programming, the external dimming values are transmitted to the operating device.
- the circuit described above, as outlined in FIG. 1, may further comprise an optional feedback loop.
- tion line 1 via which the operating device BG at least one of the power of the light emitting power parameter of the light source LM is supplied as the actual value of the controlled variable RG, and another optional return line 2, via which the power control variable StG 'is supplied to the operating device BG,
- the operating device BG via the power actuator TB, depends on the controlled variable RG formed by the detected power parameter and the command variable FG which can be predetermined by the operating device BG for the dimming operation to be generated by the lighting device LM Radiation power, expressed by the setpoint ⁇ IM , the of the lamp LM to be emitted in the dimming operation luminous flux ⁇ un the above-mentioned power control value StG 'a.
- a suitable power control variable StG ' is generated, by which the aforementioned control deviation is at least approximately compensated.
- FIG. 2 a shows a schematic diagram of a lighting system which comprises a control device StE and a lighting device controlled via an operating device BG, in which it is e.g. around a gas discharge lamp or, as outlined in Fig. 2a, can act to an LED module.
- the control device StE and the operating device BG are connected via digital interfaces IFi and IF 2 to a bus line BL, which is used for the transmission of operating parameters and possibly also programming data between the control unit. serving StE and the operating device BG.
- the power supply of the LED module via the connected to a power supply U e operating device BG.
- a supply voltage of the LED module can serve a DC voltage, which is provided via a storage capacitor C and the bus line BL is connected via an output DC_OUT of the operating device BG as a bus voltage U bus .
- the control device StE has, in addition to an input DC_IN serving for the voltage supply with U BUs, a programming data output PROG_OUT via which a programming signal U Prog , which is used to set a dimming level that can be preset by the user or to select a specific dimming characteristic curve (eg linear, logarithmic, exponential, etc.) can be transmitted in digitized form via the digital bus interface IF 2 of the control device StE.
- a programming signal U Prog which is used to set a dimming level that can be preset by the user or to select a specific dimming characteristic curve (eg linear, logarithmic, exponential, etc.) can be transmitted in digitized form via the digital bus interface IF 2 of the control device StE.
- the programming signal Up rOg is fed to the operating device BG via a control signal input PROG_IN, and passed to a data converter designated as "LED converter.”
- LED converter This calculates interpolated intermediate values for the time course of a Dimming the LEDs required dimming characteristic and controls with the resulting values a pulse width modulator PWM integrated in the operating device BG, via which the duty ratio d of a generated by the operating device BG, the LED driver circuit in the form of a pulse width modulated control signal U_ PWM supplied periodic rectangular current is varied.
- the dimming characteristic runs within a limited by two parallel to the time axis of a dimming level-time line straight lines whose lower limit is formed by the current actual value of a preset dimming and its upper limit by the programming signal U prog is specified (or vice versa).
- the interpolated intermediate values may also be obtained from e.g. are stored in a read-only memory of the LED converter, assigning the interpolation points located within the value range to previously calculated, linear, logarithmic, exponential or otherwise interpolated intermediate values, depending on the user's specification.
- the support values stored in the flash EEPROM can be recalibrated via the abovementioned programming signal U Prog of the control device StE, bpsw. to minimize or compensate for manufacturer-specific tolerances of the driven by the LED driver circuit LEDs LEDi to LED N of the LED module.
- FIG. 2 b shows a circuit variant of the lighting system sketched in FIG. 2 a with a brightness control circuit LRK for automatically setting a dimming level which can be preset via the output voltage U So ii of a setpoint generator SWG.
- the controlled system of this brightness control loop LRK is formed by reference to FIG.
- the digital bus interface IF 1 connected to the bus line BL operating device BG and controlled via the operating device BG illuminant, which in turn, for example, a Gas discharge lamp or, as outlined in Fig. 2b, to an LED module, consisting of an array of several series-connected light emitting diodes LEDi to LED W , is, which is controlled via a connected to the output of the operating device BG LED driver circuit ,
- a manipulated variable U prog is required, which of a Programming data output PROG_OUT a connected via a digital bus interface IF 2 (eg a DALI interface) to the bus line BL digital control and RSE delivered in digital form via their digital bus interface IF 2 switched to a data transmission channel of the bus line BL and then to the digital Bus interface IFi of the operating device BG is transmitted to the programming data input PROG_IN.
- a digital bus interface IF 2 eg a DALI interface
- the control and regulating device RSE is a sensor data input DATA_IN on by a controlled variable U Reg , for example, the current actual value of the illuminated on one of the light emitting diodes LEDi to LED N of the LED module or a subset of these LEDs effective area A caused by the incident luminous flux ⁇ m illuminance E, the is detected by a light-sensitive detector connected via a further digital bus interface IF 3 (eg a DALI interface) also connected to the bus line BL light sensor module LSM.
- a further digital bus interface IF 3 eg a DALI interface
- a phototransistor T Ph whose collector current (photocurrent) is proportional to the illuminance E caused by the emitted light radiation of the LEDs on the aforementioned effective area A and thus provides a measure of the brightness of this radiation, acts as the light sensor.
- the voltage supply of the light sensor module LSM takes place here, as well as the voltage supply of the control and regulating device RSE and the LED module via the intermediate circuit voltage U v of the operating device BG, which serves as bus voltage U bus.
- DC_IN designated bus voltage input is supplied.
- the output signal U Reg of the light sensor module LSM which is, for example, a voltage proportional to the photocurrent amplified by a measuring amplifier, is fed to the digital bus interface IF 3 via a sensor data output DATA_OUT the light sensor module LSM and transmitted in digitized form via the bus line BL and the digital bus interface IF 2 of the control and regulating device RSE to the sensor data input DATA_IN.
- the control and regulating device RSE provides then dependent on the voltage applied to the aforementioned sensor data input DATA_IN controlled variable U Reg and the set by means of the setpoint generator SWG via a trim resistor R v or a potentiometer and via a further data input of the control and regulation device RSE specifiable reference variable Usoll (setpoint) for the In the dimming mode, the radiant power to be generated by the LED module, expressed by the setpoint value ⁇ LM , is intended to be the luminous flux ⁇ LM to be emitted by the LED module in the dimming mode, the manipulated variable U prog mentioned above. If a control deviation between reference variable U So ii and control variable U Reg is detected , a suitable manipulated variable U Prog is generated, by which the aforementioned control deviation is at least approximately compensated.
- a dimming characteristic curve (eg linear, logarithmic, exponential, etc.) predefinable by the user can be selected from a menu displayed via an integrated display of the control device StE.
- the control signal required for this purpose is connected in digitized form via the digital bus interface IF 2 of the control device StE to a further data transmission channel of the bus line BL. After transmission via the bus line BL, the control signal is supplied to the operating device BG via the aforementioned programming signal input PROG_IN and directed to the LED converter.
- the latter calculates interpolated intermediate values for the time characteristic of a dimming characteristic curve required for dimming the LEDs, and controls with the values obtained in this way an interpolation value stored in the operating device BG.
- grated pulse width modulator PWM via which the duty cycle d of a generated by the operating device BG, the LED driver circuit in the form of a pulse width modulated control signal U_ PWM supplied periodic rectangular current is varied.
- the dimming characteristic runs within a range of values bounded by two straight lines running parallel to the time axis, the lower limit of which is formed by the current actual value of a preset dimming stage and whose upper limit can be predetermined by the reference variable U So ii (or vice versa).
- the interpolated intermediate values may alternatively be taken from a value assignment table stored, for example, in a read-only memory of the LED converter, which predicts the interpolation points lying within the value range according to the specification of the user, linear, logarithmic, exponential or otherwise assigns interpolated intermediate values.
- the supporting values stored in the flash EEPROM can be recalibrated via the control signal of the regulation and control device RSE to manufacturer-specific tolerances of the operating device BG LED driver circuit and / or minimized or compensated by the LED driver circuit driven light emitting diodes of the LED module.
- the control signal of the regulation and control device RSE to manufacturer-specific tolerances of the operating device BG LED driver circuit and / or minimized or compensated by the LED driver circuit driven light emitting diodes of the LED module.
- a outlined embodiment may be provided for this purpose in that the aforesaid support values from the flash EEPROM are read out and a data output READ_OUT of the operating device BG and its digital bus interface IF x, so that she is the Control and RSE device via the digital bus interface IF 2 and a data input READ_IN are accessible.
- the present invention is not limited to lighting systems whose system components are connected via a DALI interface to a serving for power supply channel of a bus line, but that according to the invention any other, suitable for transmitting digital control signals digital bus interface for this purpose can be used.
- the illuminant used is one or more LEDs
- the free programmability of the internal dimming characteristic can be used to match the color-specific sensitivity of the human eye. This is of particular importance when LEDs of different colors are driven in independent channels of an operating device or by several operating devices, since the human eye perceives the different colors (eg red, green, blue) differently.
- the internal dimming characteristic for driving LEDs (or other colored lamps) of different colors can be individual and thus differently programmable.
- an operating device with three independent outputs, for example an RGB color mixing module for LEDs or fluorescent lamps.
- the assignment of the colors and the individual adaptation of the internal dimming characteristic for each color can then only be done in the luminaire during the installation.
- an external command for example via a bus line
- an artificial maximum value for a performance parameter or combinations of performance parameters are set.
- This restriction can then be reversed from the outside and / or changed, so that, for example, later, the actually available maximum power can be released again.
- this artificial "throttling" can also be achieved by a manual setting on the ballast.
- the internal dimming curve can be adapted to the artificially limited maximum value: In order to continue to use finely distributed internal dimming values, all internally available dimming values are distributed to the range between 0% dimming and the artificial maximum value when the maximum value limit is set.
- a simple embodiment may provide for programming in advance at least two characteristic curves for the mapping of the external dimming values to the internal dimming values, namely for example a division between 0% and 100% and a further division between 0% and the maximum value limitation.
Landscapes
- Circuit Arrangement For Electric Light Sources In General (AREA)
Abstract
Description
Claims
Priority Applications (5)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PL11163203T PL2346305T3 (pl) | 2006-06-22 | 2007-06-13 | Ściemniane urządzenie robocze z wewnętrzną charakterystyką ściemniania |
| EP11163203.0A EP2346305B1 (de) | 2006-06-22 | 2007-06-13 | Dimmbares Betriebsgerät mit interner Dimmkennlinie |
| PL14164929T PL2765835T3 (pl) | 2006-06-22 | 2007-06-13 | Ściemniane urządzenie robocze z wewnętrzną krzywą charakterystyczną ściemniania |
| EP14164929.3A EP2765835B1 (de) | 2006-06-22 | 2007-06-13 | Dimmbares Betriebsgerät mit interner Dimmkennlinie |
| PL07764640.4T PL2030484T5 (pl) | 2006-06-22 | 2007-06-13 | Ściemniane urządzenie robocze z wewnętrzną krzywą charakterystyczną ściemniania |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE102006028670.7A DE102006028670B4 (de) | 2006-06-22 | 2006-06-22 | Dimmbares Betriebsgerät mit interner Dimmkennlinie, Verfahren zur Kompensation von Toleranzen von durch ein Betriebsgerät angesteuerten Leuchtdioden und Verfahren zur Konfiguration eines Betriebsgeräts für Leuchtmittel |
| PCT/EP2007/005216 WO2007147512A1 (de) | 2006-06-22 | 2007-06-13 | Dimmbares betriebsgerät mit interner dimmkennlinie |
Related Child Applications (4)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP14164929.3A Division EP2765835B1 (de) | 2006-06-22 | 2007-06-13 | Dimmbares Betriebsgerät mit interner Dimmkennlinie |
| EP14164929.3A Division-Into EP2765835B1 (de) | 2006-06-22 | 2007-06-13 | Dimmbares Betriebsgerät mit interner Dimmkennlinie |
| EP11163203.0A Division EP2346305B1 (de) | 2006-06-22 | 2007-06-13 | Dimmbares Betriebsgerät mit interner Dimmkennlinie |
| EP11163203.0A Division-Into EP2346305B1 (de) | 2006-06-22 | 2007-06-13 | Dimmbares Betriebsgerät mit interner Dimmkennlinie |
Publications (3)
| Publication Number | Publication Date |
|---|---|
| EP2030484A1 true EP2030484A1 (de) | 2009-03-04 |
| EP2030484B1 EP2030484B1 (de) | 2016-03-02 |
| EP2030484B2 EP2030484B2 (de) | 2022-06-22 |
Family
ID=37607150
Family Applications (3)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP11163203.0A Active EP2346305B1 (de) | 2006-06-22 | 2007-06-13 | Dimmbares Betriebsgerät mit interner Dimmkennlinie |
| EP07764640.4A Active EP2030484B2 (de) | 2006-06-22 | 2007-06-13 | Dimmbares betriebsgerät mit interner dimmkennlinie |
| EP14164929.3A Active EP2765835B1 (de) | 2006-06-22 | 2007-06-13 | Dimmbares Betriebsgerät mit interner Dimmkennlinie |
Family Applications Before (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP11163203.0A Active EP2346305B1 (de) | 2006-06-22 | 2007-06-13 | Dimmbares Betriebsgerät mit interner Dimmkennlinie |
Family Applications After (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP14164929.3A Active EP2765835B1 (de) | 2006-06-22 | 2007-06-13 | Dimmbares Betriebsgerät mit interner Dimmkennlinie |
Country Status (6)
| Country | Link |
|---|---|
| US (1) | US8111010B2 (de) |
| EP (3) | EP2346305B1 (de) |
| CN (2) | CN103561505B (de) |
| DE (2) | DE102006028670B4 (de) |
| PL (3) | PL2346305T3 (de) |
| WO (1) | WO2007147512A1 (de) |
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| DE102007055164B4 (de) * | 2007-11-19 | 2019-06-27 | Tridonic Gmbh & Co Kg | Leuchtmittel-Betriebsgerät zur Datenausgabe, System und elektronisches Vorschaltgerät mit einem derartigen Betriebsgerät |
| FR2931616B1 (fr) * | 2008-05-26 | 2010-08-20 | Ece | Dispositif d'alimentation d'un ensemble de dispositifs d'eclairage. |
| DE102008055862A1 (de) * | 2008-11-05 | 2010-05-06 | Tridonicatco Gmbh & Co. Kg | Leuchtmittel-Betriebsgerät mit Potentialtrennung |
| TWI492657B (zh) | 2008-11-17 | 2015-07-11 | 艾杜雷控股有限公司 | 安裝發光二極體驅動器的方法,發光二極體驅動器,發光二極體組合以及控制發光二極體組合之方法 |
| DE102009007505B4 (de) * | 2009-02-05 | 2017-01-19 | E:Cue Control Gmbh | Halbleiterbauteil und Beleuchtungsvorrichtung |
| WO2011002280A1 (en) | 2009-06-30 | 2011-01-06 | Eldolab Holding B.V. | Method of configuring an led driver, led driver, led assembly and method of controlling an led assembly |
| DE102009027484A1 (de) | 2009-07-06 | 2011-01-13 | Osa Opto Light Gmbh | Schaltungsanordnung zur Dimmung einer Leuchtquelle, die wengistens ein strahlungsemittierendes Halbleiterbauelement umfasst |
| US8466628B2 (en) | 2009-10-07 | 2013-06-18 | Lutron Electronics Co., Inc. | Closed-loop load control circuit having a wide output range |
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| US8680787B2 (en) | 2011-03-15 | 2014-03-25 | Lutron Electronics Co., Inc. | Load control device for a light-emitting diode light source |
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- 2007-06-13 CN CN201310389044.3A patent/CN103561505B/zh active Active
- 2007-06-13 US US12/305,539 patent/US8111010B2/en active Active
- 2007-06-13 EP EP11163203.0A patent/EP2346305B1/de active Active
- 2007-06-13 PL PL11163203T patent/PL2346305T3/pl unknown
- 2007-06-13 CN CN2007800233669A patent/CN101473701B/zh not_active Expired - Fee Related
- 2007-06-13 EP EP07764640.4A patent/EP2030484B2/de active Active
- 2007-06-13 PL PL14164929T patent/PL2765835T3/pl unknown
- 2007-06-13 PL PL07764640.4T patent/PL2030484T5/pl unknown
- 2007-06-13 EP EP14164929.3A patent/EP2765835B1/de active Active
- 2007-06-13 DE DE202007019402U patent/DE202007019402U1/de not_active Expired - Lifetime
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Also Published As
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|---|---|
| CN101473701B (zh) | 2013-09-18 |
| PL2030484T5 (pl) | 2023-02-20 |
| EP2346305A2 (de) | 2011-07-20 |
| CN101473701A (zh) | 2009-07-01 |
| PL2030484T3 (pl) | 2016-06-30 |
| EP2346305A3 (de) | 2012-06-06 |
| EP2765835A1 (de) | 2014-08-13 |
| EP2765835B1 (de) | 2017-09-13 |
| EP2346305B1 (de) | 2018-09-26 |
| US8111010B2 (en) | 2012-02-07 |
| DE202007019402U1 (de) | 2012-04-19 |
| EP2030484B1 (de) | 2016-03-02 |
| PL2346305T3 (pl) | 2019-03-29 |
| PL2765835T3 (pl) | 2018-06-29 |
| CN103561505A (zh) | 2014-02-05 |
| EP2030484B2 (de) | 2022-06-22 |
| DE102006028670A1 (de) | 2007-12-27 |
| WO2007147512A1 (de) | 2007-12-27 |
| US20090167207A1 (en) | 2009-07-02 |
| CN103561505B (zh) | 2016-06-22 |
| DE102006028670B4 (de) | 2018-10-25 |
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