The present invention relates to a flash unit, and, particularly, to a flash unit for an image capturing device.
Image capturing devices, such as film cameras, digital cameras, or mobile phones equipped with a camera module, typically employ a flash unit to illuminate a subject in low light.
Referring to
The flash tube 110 includes a cylindrical tube 101 and two electrical terminals 102, respectively protruding outwards from opposite ends of the cylindrical tube 101, to which voltage is applied.
The flash unit 110 has many components such as the reflector 120, the rubber 130, the flash tube 110, and the shield 140, and therefore is bulky and inconvenient to assemble (this also increases its cost).
Therefore, it is desirable to provide a flash unit, which can overcome the above-mentioned problems.
A flash unit for an image capturing device is disclosed. The flash unit includes a noble gas-filled flash tube and two electrical terminals. The outer surface of the flash tube includes a light-transmissive portion and a light-reflective portion. The two electrical terminals protrude outward from opposite ends of the flash tube respectively for application of a high voltage pulse thereto cause flashing of the noble gas.
Many aspects of the present assembly of the flash unit can be better understood with reference to the following drawings. The components in the drawing are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present assembly of the flash unit.
Embodiments of the present invention will now be described in detail below, with reference to the drawings.
Referring to
The flash tube 210 is made of transparent material such as transparent glass or transparent plastic.
The flash tube 210 is filled with a noble gas 205, such as xenon gas, which is configured to create a bright flash when energized by the high voltage pulse. The outer surface of the flash tube 210 includes a planar portion 202 and a parabolic portion 203 connected with the planar portion 202. The planar portion 202 is configured for transmitting the flash of light created by the noble gas 205 out from the flash tube 210. The parabolic portion 203 is formed (e.g., coated) with a light-reflective film 204, and therefore is capable of collecting and reflecting the flash of light in a focused manner.
Understandably, the curvature of the parabolic portion 203 can be changed in different models to control the direction/distribution of light from the flash unit 200. It also should be understood that the planar portion 202 can be replaced by the parabolic portion 203, thereby efficiently controlling the degree of concentration of the flash of light.
The flash unit 200 is integrally formed (no assembly work is needed), and therefore is more amenable to miniaturization, and decreasing manufacturing costs.
While certain embodiments have been described and exemplified above, various other embodiments will be apparent to those skilled in the art from the foregoing disclosure. The present invention is not limited to the particular embodiments described and exemplified but is capable of considerable variation and modification without departure from the scope of the appended claims.
Number | Date | Country | Kind |
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200810300283.6 | Jan 2008 | CN | national |