1. Field of the Invention
The invention relates generally to an AC LED device and, more particularly, to an AC LED device for eliminating harmonic current.
2. Description of Related Art
As the increasing popularity of LED, an AC LED has been developed for being directly connected to an AC power supply terminal, so as to allow LED to be powered by the utility power for illuminating.
However, the overall forward on voltage would be too high due to the series connection of AC LED blocks. According to the measurement of an AC LED application, high overall forward on voltage would lead to harmonic current. To solve this problem, in the prior art, the AC LED is connected to a converter for lowering down the over high voltage. However, the current AC LED typically does not have a converter owing to cost saving concern. Therefore, the solution to eliminate harmonic current is shifted into the LED optical mask design, semiconductor manufacturing process or packaging process.
The object of the present invention is to provide an AC LED device for eliminating harmonic current, so as to eliminate harmonic current in LED optical mask design, semiconductor manufacturing process or packaging process.
To achieve this object, there is provided an AC LED device for eliminating harmonic current, which comprises: a first AC LED group; a second AC LED group; and a resistor including a first connection terminal and a second connection terminal. The first connection terminal is electrically connected to the first AC LED group and the second AC LED group. The second connection terminal is electrically connected to an AC power supply terminal. Each of the first AC LED group and the second AC LED group has an overall forward on voltage. The first AC LED group and the second AC LED group are connected in parallel to the first connection terminal of the resistor.
With reference to
In this embodiment, the first AC LED group 11 has a first AC LED block 111 and a second AC LED block 112, and the second AC LED group 12 has a third AC LED block 121 and a forth AC LED block 122. The resistor 2 has a first connection terminal 21 and a second connection terminal 22. The first connection terminal 21 is electrically connected to the first AC LED group 11 and the second AC LED group 12. The second connection terminal 22 is electrically connected to an AC power supply terminal 10. In the present invention, the AC-power supply terminal 10 is an utility power for providing a voltage to the AC-LED device 1.
Taking this embodiment as an example, each of the AC LED blocks 111-112,121-122 in
In the present invention, the resistance of the resistor 2 is designed to be equal to that of the first AC LED group 11 and the second AC LED group 12, such that the voltage across the resistor 2 is equal to the voltage across the first AC LED group 11 and the second AC LED group 12. Therefore, the forward on voltage across the first AC LED group 11 and the second AC LED group 12 has a root mean square value of 55V and a peak value of 78V. The voltage across the resistor 2 also has a root mean square value of 55V and a peak value of 78V. Owing to that the root mean square value of 55V and the peak value of 78V are higher than the forward on voltage of 48V in the first AC LED group 11 and the second AC LED group 12, the first AC LED group 11 and the second AC LED group 12 are efficiently turned on for illuminating.
Although the present invention has been explained in relation to its preferred embodiment, it is to be understood that many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed.
Number | Date | Country | Kind |
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098213712 | Jul 2009 | TW | national |