This application claims priority of Chinese Application No. 201120080135.5, filed on Mar. 24, 2011.
1. Field of the Invention
This invention relates to an office machine, and more particularly to a transmission device for a scanner.
2. Description of the Related Art
Referring to
Although such a transmission device can achieve its intended purposes, position of the driving member 2 relative to the transmission wheel unit 5 results in a substantial increase in the total volume of the scanner and difficulties during transporting the scanner. Furthermore, power is transmitted from the driving member 2 to the second roller 4 via a relatively long transmission line including the worm 501, the driving gear 502, the first gear 503, and the idle wheel 505, which leads to an increase in the number of the components of the transmission device and a reduction in the transmission efficiency.
The object of this invention is to provide a transmission device for a scanner, which is reduced in the number of the components and the total volume of the transmission device, which is convenient to transport, and which has high transmission efficiency.
Accordingly, a transmission device of this invention is used in a scanner, and includes a driving member, two worms, two rollers, and two worm wheels. The driving member is disposed on a housing base, and includes a main body and an output shaft. The output shaft has two ends disposed respectively at two opposite sides of the main body. The worms are connected respectively and fixedly to the two ends of the output shaft. The rollers are disposed rotatably on the housing base. The worm wheels are connected respectively and fixedly to the rollers, and mesh respectively with the worms.
Since the driving member is disposed between the worm wheels, the total volume of the transmission device is reduced significantly, thereby resulting in convenience during transportation and storage of the scanner. Furthermore, the number of the components of the transmission device is relatively small, and the powder transmission path is short, so that the transmission efficiency is increased.
These and other features and advantages of this invention will become apparent in the following detailed description of a preferred embodiment of this invention, with reference to the accompanying drawings, in which:
Referring to
The driving member 10 is configured as a servomotor, and includes a main body 11 disposed on a housing base 100 of the scanner, and an output shaft 12 extending through the main body 11 and having a central axis (L1), and two ends 121, 122 disposed respectively at two opposite sides of the main body 11. The output shaft 12 is rotatable relative to the housing base 100 about the central axis (L1) thereof.
The worms 20 are connected respectively and fixedly to the two ends 121, 122 of the output shaft 12, and are located respectively to two sides of the main body 11.
Each of the rollers 30 has a central axis (L2) perpendicular to the central axis (L1) of the output shaft 12, and is rotatable relative to the housing base 100 about the central axis (L2) thereof.
The worm wheels 40 are connected respectively and fixedly to the rollers 30, and mesh respectively with the worms 20. Preferably, the worm wheels 40 are located at the same side of the output shaft 12.
When the driving member 10 is started to output power from the output shaft 12, the worm wheels 40 are rotated by the worms 20, respectively, for driving rotation of the rollers 30, respectively.
The advantages of the transmission device of this invention can be summarized as follows:
With this invention thus explained, it is apparent that numerous modifications and variations can be made without departing from the scope and spirit of this invention. It is therefore intended that this invention be limited only as indicated by the appended claims.
Number | Date | Country | Kind |
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201120080135.5 | Mar 2011 | CN | national |