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| en:tech:tradfri [2021/01/19 04:33] – bullar | en:tech:tradfri [2026/08/12 12:15] (current) – external edit 127.0.0.1 | ||
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| - | At a price of 6.99 € for the [[http:// | + | At a price of 7.99 € for the [[https:// |
| ==== Dismantle of the Zigbee controller ==== | ==== Dismantle of the Zigbee controller ==== | ||
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| The LED lamp with GU10 connection can be easily opened by levering out the cover with a screwdriver. | The LED lamp with GU10 connection can be easily opened by levering out the cover with a screwdriver. | ||
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| The circuit board with the 5 LEDs mounted on an aluminum carrier for heat dissipation appears. The LED carrier is held by 2 screws and the soldered connection for the electrical connection to the control module. | The circuit board with the 5 LEDs mounted on an aluminum carrier for heat dissipation appears. The LED carrier is held by 2 screws and the soldered connection for the electrical connection to the control module. | ||
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| Then remove the LED circuit board with a bit of desoldering braid and the control module with the transverse Zigbee controller appears. | Then remove the LED circuit board with a bit of desoldering braid and the control module with the transverse Zigbee controller appears. | ||
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| The whole unit can be easily pulled out as it is only connected to the GU10 socket via contact springs. | The whole unit can be easily pulled out as it is only connected to the GU10 socket via contact springs. | ||
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| The Zigbee controller can now be freed from the control module again with the help of desoldering braid. It is now available for your own projects. | The Zigbee controller can now be freed from the control module again with the help of desoldering braid. It is now available for your own projects. | ||
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| The supply voltage for the module is 3.3V as usual. By the way, all lamps have the same module. For lamps without a white spectrum, only one PWM output is used and mode pins 1 + 2 are open. With the White-Spectrum lamps, Mode1 is clamped to 3.3V. I have not yet determined the function of Mode2. \\ | The supply voltage for the module is 3.3V as usual. By the way, all lamps have the same module. For lamps without a white spectrum, only one PWM output is used and mode pins 1 + 2 are open. With the White-Spectrum lamps, Mode1 is clamped to 3.3V. I have not yet determined the function of Mode2. \\ | ||
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| ^ LED Lamp | E27 1000lm \\ (warm white) | E27 980lm \\ (white spectrum) | GU10 400lm \\ (warm white) | GU10 400lm \\ (white spectrum) | | ^ LED Lamp | E27 1000lm \\ (warm white) | E27 980lm \\ (white spectrum) | GU10 400lm \\ (warm white) | GU10 400lm \\ (white spectrum) | | ||
| ^ LED Type| 18x LED3030 (2700K) | 12x LED3030 (2200K) \\ 12x LED3030 (4000K) | 5x LED2835 (3000K) | 4x LED3030 (2200K) \\ 4x LED3030 (4000K) | | ^ LED Type| 18x LED3030 (2700K) | 12x LED3030 (2200K) \\ 12x LED3030 (4000K) | 5x LED2835 (3000K) | 4x LED3030 (2200K) \\ 4x LED3030 (4000K) | | ||
| - | ^ LED Anordnung | + | ^ LED cluster |
| ^ I< | ^ I< | ||
| ^ V< | ^ V< | ||
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| Depending on the existing third-party LED lamp, you may even be able to reuse the entire controller. The E27 (1000lm) module can only be removed with great difficulty because it is completely encapsulated. With the E27 (980lm) lamp it is a little easier because the module is also cast in here, but internally encapsulated again. It is therefore easier to pull out. | Depending on the existing third-party LED lamp, you may even be able to reuse the entire controller. The E27 (1000lm) module can only be removed with great difficulty because it is completely encapsulated. With the E27 (980lm) lamp it is a little easier because the module is also cast in here, but internally encapsulated again. It is therefore easier to pull out. | ||
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| - | The rear connection cables are either connected directly to luster terminals or, as shown in the picture, a soldered connection extends the connection range. For the other side I also lasered a protective cap so that only the LED connections and the Zigbee antenna protrude outside {{: | + | The rear connection cables are either connected directly to luster terminals or, as shown in the picture, a soldered connection extends the connection range. For the other side I also lasered a protective cap so that only the LED connections and the Zigbee antenna protrude outside {{:media:tech:tradfri: |
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| ==== Own projects with the Trådfri controller ==== | ==== Own projects with the Trådfri controller ==== | ||
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| If you want to convert your own LED lights to Trådfri, you first have to look at the existing LED driver. The type of control is almost as diverse as the lights themselves. Here are two examples: | If you want to convert your own LED lights to Trådfri, you first have to look at the existing LED driver. The type of control is almost as diverse as the lights themselves. Here are two examples: | ||
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| The right lamp fits pretty well into the control range of the original Trådfri module with white spectrum. Therefore the module from the E27 980lm lamp can be used completely. But be careful, we are handling mains voltage here. When installed, the control looks very compact. | The right lamp fits pretty well into the control range of the original Trådfri module with white spectrum. Therefore the module from the E27 980lm lamp can be used completely. But be careful, we are handling mains voltage here. When installed, the control looks very compact. | ||
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| The Zigbee communication even through the metal housing of the lamp works surprisingly well. | The Zigbee communication even through the metal housing of the lamp works surprisingly well. | ||
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| which when connected together result in the new Trådfri compatible LED driver. Glued into a lasered housing for encapsulation. The ' | which when connected together result in the new Trådfri compatible LED driver. Glued into a lasered housing for encapsulation. The ' | ||
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| If you want to use the constant current source in the lamp, the circuit can be simplified somewhat. The PWM signal of the TRÅDFRI module is then sent to a Power MOSFET (e.g. IRLZ34N). The whole thing can then look like this as a module: | If you want to use the constant current source in the lamp, the circuit can be simplified somewhat. The PWM signal of the TRÅDFRI module is then sent to a Power MOSFET (e.g. IRLZ34N). The whole thing can then look like this as a module: | ||
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| ==== Modification OMLOPP/ | ==== Modification OMLOPP/ | ||
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| The OMLOPP / ANSLUTA LED Power Supply contain the receiver that can be coupled with the ANSULTA remote control. It works as a constant voltage source with 24V. | The OMLOPP / ANSLUTA LED Power Supply contain the receiver that can be coupled with the ANSULTA remote control. It works as a constant voltage source with 24V. | ||
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| Switching and dimming is done by a Power MOSFET (FDD8880) which can be seen at the top right. The receiver board is approx. 40 x 27 mm. There is enough space there to install the TRÅDFRI control instead. | Switching and dimming is done by a Power MOSFET (FDD8880) which can be seen at the top right. The receiver board is approx. 40 x 27 mm. There is enough space there to install the TRÅDFRI control instead. | ||
| The matching circuit looks like this: | The matching circuit looks like this: | ||
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| With the help of a breadboard, the three components are wired and clipped in place of the ANSLUTA receiver. But be careful, the components must not protrude more than 8mm from the PCB. So that the housing cover fits on it again, it helps to remove the pin in the middle beforehand. | With the help of a breadboard, the three components are wired and clipped in place of the ANSLUTA receiver. But be careful, the components must not protrude more than 8mm from the PCB. So that the housing cover fits on it again, it helps to remove the pin in the middle beforehand. | ||
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| After assembly, only the lamp needs to be taught in and the light in shelves or kitchens can be continuously controlled and dimmed with TRÅDFRI. | After assembly, only the lamp needs to be taught in and the light in shelves or kitchens can be continuously controlled and dimmed with TRÅDFRI. | ||