This application claims the benefit of People's Republic of China application Serial No. 200910127998.0, filed Mar. 31, 2009, the subject matter of which is incorporated herein by reference.
1. Field of the Invention
The invention relates in general to a discharge lamp, and more particularly to a variable color discharge lamp.
2. Description of the Related Art
In daily life, there are a number of indispensable lamp sources such as incandescent lamp, fluorescent lamp, high pressure gas discharge lamp and so forth. Compared with the incandescent lamp that has very poor photoelectrical conversion efficiency (only about 10% of the electricity is converted to the light) and generates high temperature, the fluorescent lamp has much higher photoelectrical conversion efficiency (near 40%) and generates only one sixth of the heat generated by the incandescent lamp of the same luminance, therefore the fluorescent lamp has been used for replacing the incandescent lamp to save power consumption in many places where air conditioning is needed such as office buildings, shopping malls and super markets. The small-sized fluorescent lamp (also called energy saving bulb), which combines the fluorescent lamp and the activating electronic element and adopts the same interface of standard bulb, can replace the regular incandescent lamp.
Most of the lamp sources used for illumination only provide one single color light, and the commonest color light being provided is the white light. Normally, extra control elements are needed for fabricating a lamp source whose color light is controllable or providing another color light. Conventionally, the variable color discharge lamp employs at least three adjusting systems for changing the intensity of the rare-gas discharge lamps of the red/green/blue lights respectively, so that the structure of the lamp source is made even more complicated and incurs more manufacturing costs.
The invention is directed to a variable color discharge lamp. By changing the voltage, the luminescence efficiencies of the fluorescent powders disposed in the lamp tubes with different diameters vary so as to generate different light colors. Thus, the mixed light of the discharge lamp can switch among different light colors to meet the market demand without using any complicated structure.
According to a first aspect of the present invention, a variable color discharge lamp including a first lamp tube, a second lamp tube and a variable voltage system is provided. The first lamp tube with a first diameter has a first fluorescent powder disposed therein. The second lamp tube connected to the first lamp tube has a second diameter not equal to the first diameter. The second lamp tube has a second fluorescent powder disposed therein, wherein the second color temperature of the second fluorescent powder is not equal to the first color temperature of the first fluorescent powder. The variable voltage system provides and adjusts a common voltage of the first lamp tube and the second lamp tube. When the common voltage is adjusted, respective luminescence efficiencies of the first fluorescent powder and the second fluorescent powder vary with the common voltage, so as to adjust the mixed light color of the first lamp tube and the second lamp tube.
The invention will become apparent from the following detailed description of the preferred but non-limiting embodiments. The following description is made with reference to the accompanying drawings.
The variable color discharge lamp disclosed in the embodiments of the invention includes at least two lamp tubes being connected together. The lamp tubes have different diameters, and the fluorescent powders disposed in the lamp tubes have different color temperatures. Due to the different diameters and the different fluorescent powders, the luminescence efficiencies of the fluorescent powders in the lamp tubes are affected by the voltage level so as to generate various mixed light colors. The multiple structures exemplified below are for elaboration only, not for limiting the scope of protection of the invention.
Referring to
The single lamp tube formed by the first lamp tube 101, the second lamp tube 103 and the third lamp tube 105 is filled with low pressure argon or a mixed gas of argon and neon, and mercury vapor in addition to the fluorescent powders. The two ends of the single lamp tube have filament coils (or electrodes) for example. After the power source is conducted, the filament is heated by the current flowing through and releases electrons which converts the gas inside the lamp tubes to plasma and boosts the current in the lamp tubes. After the voltage between two sets of filaments exceeds a predetermined value, the fluorescent lamp tubes start to discharge, and the mercury vapor emits ultraviolet (UV) light next. After the fluorescent powders disposed in the fluorescent lamp tube are excited by UV light, a visible light with mixed color lights is emitted.
As indicated in
The structure of the variable voltage system 110 is elaborated. The variable voltage system 110 includes an adjustment unit 112, a voltage conversion unit 114 and a voltage output unit 116. The voltage conversion unit 114 is connected to an external power source 200 which provides a voltage to the voltage conversion unit 114, and further converts the voltage to the common voltage for the three lamp tubes. The adjustment unit 112 is used for providing multiple light color options such as the light color options 112A to 112D for the user to select the light color displayed by the variable color discharge lamp 100. Each of the light color options 112A to 112D corresponds to a predetermined voltage. After one of the light color options (such as the light color option 112A) is selected, the voltage conversion unit 114, according to the light color option 112A being selected, converts the common voltage to the predetermined voltage corresponding to the light color option 112A. Afterwards, the voltage output unit 116 outputs the predetermined voltage to the first lamp tube 101, the second lamp tube 103 and the third lamp tube 105.
For example, as indicated in
According to the results indicated in
In the present embodiment of the invention, the variable color discharge lamp 100 is exemplified by a compact fluorescent lamp, but the invention is not limited thereto. The variable color discharge lamp 100 can also be a hot cathode fluorescent lamp (HCFL) or a cold cathode fluorescent lamp (CCFL).
Moreover, the present embodiment of the invention does not limit to use three U-shaped tubes. Any structural designs of any number and any shapes of the lamp tubes incorporated with the fluorescent powders with different color temperatures are within the scope of protection of the invention. Referring to
As indicated in
According to the variable color discharge lamp of the above embodiments of the invention, the discharge lamp has lamp tubes with different diameters, and the fluorescent powders with different color temperatures are disposed in the lamp tubes. The lamp tubes are interconnected to form a single lamp tube, and are incorporated with a variable voltage system to control the common voltage of the lamp tubes, so that the luminescence efficiencies of the fluorescent powders disposed in the lamp tubes with different diameters are different. Thus, when the common voltage of the lamp tubes changes, the luminescence efficiencies of different fluorescent powder change accordingly, so that the mixed light color of the lamp tubes changes and generates the effect of changing light colors. Compared with the conventional variable color discharge lamp which employs at least three adjusting systems for changing the intensity of the rare-gas discharge lamps of the red/green/blue lights respectively, the variable color discharge lamp disclosed in the above embodiments of the invention has a much simpler structure. Besides, the variable color discharge lamp of the invention only employs a single variable voltage system and the light color is already adjustable by changing the voltage of the power supply. Moreover, the variable color discharge lamp of the invention has a wider range of color adjustment, and is more applicable to market products.
While the invention has been described by way of example and in terms of a preferred embodiment, it is to be understood that the invention is not limited thereto. On the contrary, it is intended to cover various modifications and similar arrangements and procedures, and the scope of the appended claims therefore should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements and procedures.
Number | Date | Country | Kind |
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200910127998.0 | Mar 2009 | CN | national |