This non-provisional application claims priority under 35 U.S.C. ยง119(a) on Patent Application No(s). 105126903 filed in Taiwan, R.O.C. on Aug. 23, 2016, the entire contents of which are hereby incorporated by reference.
The present invention relates to the field of photoelectric source circuit device, and more particularly to a micro dimming module of a Tri-Electrode Alternate Current (TRIAC) switch to linearly adjust the illumination of a Light Emitting Diode (LED).
At present, a dimming control circuit is applied in various applications of lighting equipments to cope with the requirements of changing the illumination in different occasions for places such as stages, cinemas, or conference rooms or comply with the requirements of power saving and environmental protection, so as to achieve the effect of automatically adjusting the amount and distribution of lighting in a multilayer manner. For instance, an LED lamp generally adopts a constant current circuit design and uses a phase control component such as a Silicon Controlled Rectifier (SCR) or a TRIAC to change the voltage phase of an input power. The magnitude of output current is changed by switching the conduction angle of an input signal, so that the amount of driving current flowing into the LED can be adjusted to achieve a dimming effect. Although such dimming circuit has the advantages of simple control and easy and convenient installation, yet the voltage waveform of the input power is distorted to give rise to the issues of low PF and high voltage harmonics. According to the current/voltage (I/V) curve of the LED, LED is a nonlinear component. In other words, the ratio of voltage to current is not directly proportional. Therefore, the aforementioned dimming method has an imprecise dimming effect since the changes of driving voltage and driving current are inconsistent. As a result, power is wasted. With the influence by the characteristic of the TRIAC component, if the operating voltage flowing into the control circuit is too low, the current flowing through the TRIAC will be insufficient for operation, so that the operation modes of the TRIAC will be switched repeatedly, and the driving current will be discontinuous, and the LED will blink, and the lighting quality will be affected adversely. On the other hand, if the operating voltage flowing into the control circuit is too high, the high/low level voltage change of a Pulse Width Modulation (PWM) signal will be too fast, and noises and interferences will be formed, and the LED will be operated abnormally, and the applicability of the LED will be reduced.
To overcome the aforementioned drawbacks, a conventional LED lamp 1 having a TRIAC dimmer 10 as shown in
Based on the aforementioned drawbacks of the prior art, it is a main subject of the present invention to make the rectifier 11 or the controller 12 to have the TRIAC current support function for a high dimming stability while reducing the total volume of the circuit without requiring the use of the holder 13, so as to facilitate the miniaturization of electronic products and comply with the requirements of industrial applications.
Therefore, it is a primary objective of the present invention to provide a micro dimming module capable of stabilizing the operation of the TRIAC without requiring a RC circuit, so as to prevent the issues of a strobe or a noise caused by a too low or too high dimming frequency.
To achieve the aforementioned and other objectives, the present invention provides a micro dimming module for driving at least one LED and supporting a TRIAC dimmer to linearly adjust the illumination of the LED, comprising: a light board, being a circuit board with a diameter less than or equal to 3 cm or a side length less than or equal to 3 cm; a rectifier, installed on the light board, and electrically coupled to an external power supply through the TRIAC dimmer, for outputting a rectified voltage after receiving an AC voltage, and the TRIAC dimmer requiring no electrically coupled RC circuit; and a controller, installed on the light board, and electrically coupled to the rectifier and the LED, and having a controller chip and a holding resistor, such that while the controller is receiving the rectified voltage to output a driving voltage to the LED, the controller chip uses the holding resistor to output a hold current to the rectifier to ensure the working stability of the TRIAC dimmer.
Wherein, the controller chip has a built-in metal oxide semiconductor field effect transistor (MOSFET), and when the controller receives the rectified voltage, the controller chip uses the MOSFET and the holding resistor to output the hold current.
In addition, the controller further has a sensing resistor and an output capacitor electrically coupled to the LED, and the output capacitor is a multilayer ceramic capacitor. The controller chip has a plurality of pins including a drain pin, a source pin, and a compensation pin, and the source pin is electrically coupled to the sensing resistor, and the drain pin is electrically coupled to the output capacitor, and the compensation pin is electrically coupled to the rectifier through the holding resistor, so that after the controller chip detects the magnitude of the driving voltage through the source pin and the drain pin, the magnitude of the hold current is adjusted and outputted through the compensation pin.
In summation, the present invention simply uses the field effect transistor to provide the required operating current of the TRIAC dimmer and prevent the whole circuit from having abnormal current surge of voltage imbalance during the dimming process to improve the quality and stability of the operation. Even more unusual is that no RC circuit is used for supplying the hold current. With reference to
The above and other objects, features and advantages of this disclosure will become apparent from the following detailed description taken with the accompanying drawings.
With reference to
The output capacitor 323 is a multilayer ceramic capacitor, and the light board 30 is a circuit board with a diameter less than or equal to 3 cm or a side length less than or equal to 3 cm, such as a circular circuit board with a diameter of 2.8 cm, 2.6 cm, 2.2 cm, 1.8 cm, 1.5 cm or 1 cm as shown in
When the full-wave bridge rectifier 311 receives an AC voltage of the external power supply through the protective resistor 310, the rectifier 31 rectifies and outputs a rectified voltage to the controller 32. The controller 32 uses the rectified voltage to form a driving voltage, and then outputs the driving voltage to the LED, while the controller chip 320 detects the magnitude of the driving voltage through the source pin and the drain pin, and then adjusts the MOSFET 3200, and outputs a compensation voltage through the compensation pin to the holding resistor 321, so that the holding resistor 321 forms a hold current by receiving a voltage drop, and outputs the hold current to the rectifier 31 to ensure the stability of operation of the TRIAC dimmer. With a very small volume, the lamp still has high operation quality and dimming stability and will not have abnormal current surge or voltage imbalance during the dimming process. Therefore, the invention improves the adaptability and applicability of the micro dimming module 3 and even the lamp significantly.
Number | Date | Country | Kind |
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105126903 | Aug 2016 | TW | national |