Referring to
The casing 1 defines an accommodation open chamber 13. First pivot means 11 and second pivot means 12 are provided inside the accommodation open chamber 13. According to this embodiment, a carrier 14 is provided inside the accommodation open chamber 13 of the casing 1. The first pivot means 11 and second pivot means 12 are formed on the carrier 14 respectively.
Further, two pairs of first sliding members 131 are provided at two sides inside the accommodation open chamber 13, and two pairs of second sliding members 142 are provided at two sides of the carrier 13 corresponding to the first sliding members 131 respectively. According to this embodiment, the first sliding members 131 are vertical sliding grooves 133, the second sliding members 142 are vertical sliding rails 143. The vertical sliding rails 143 are respectively coupled to the vertical sliding grooves 133 so that the carrier 14 can be slid vertically up and down in the accommodation open chamber 13 inside the casing 1.
Further, a press button 132 is mounted on a circuit board 16 inside the accommodation open chamber 13 below the carrier 14. The carrier 14 has a stop face 144. When the carrier 14 is slid downwards by the first sliding members 131 and the second sliding members 142, the stop face 144 is pressed on the press button 132, thereby providing the so-called third mouse button function.
The first wheel 2 is accommodated in the carrier 14 inside the accommodation open chamber 13 of the casing 1 and pivotally coupled to the first pivot means 11. The second wheel 3 is accommodated in the carrier 14 inside the accommodation open chamber 13 of the casing 1 and pivotally coupled to the second pivot means 12.
According to this embodiment, the carrier 14 has a trough 141. The first wheel 2 is accommodated in the trough 141 of the carrier 14 and pivotally coupled to the first pivot means 11. The second wheel 3 is accommodated in the trough 141 of the carrier 14 and pivotally coupled to the second pivot means 12.
The first pivot means 11 according to this embodiment comprises two pivot holes 111 on the peripheral wall of the carrier 14 at two sides of the trough 141. The first wheel 2 has a fixed wheel axle 21, which has two distal ends respectively pivotally coupled to the pivot holes 111 of the first pivot means 11. The second pivot means 12 according to this embodiment comprises two pivot holes 121 on the peripheral wall of the carrier 14 at two sides of the trough 141. The second wheel 3 has a fixed wheel axle 31, which has two distal ends respectively pivotally coupled to the pivot holes 121 of the second pivot means 12. Therefore, the first wheel 2 and the second wheel 3 can be rotated in the carrier 14.
The encoder 4 is axially mounted on the second wheel 3 and rotatable with the second wheel 3 to detect the number of rotations when the second wheel 3 is rotated. Further, the caterpillar track 5 is surrounded on the first wheel 2 and the second wheel 3. The top cover shell 6 is fastened to the top side of the casing 1 to close the accommodation open chamber 13, having an opening 61 corresponding to the caterpillar track 5 so that a part of the caterpillar track 5 is exposed to the outside of the top cover shell 6.
According to this embodiment, the caterpillar track 5 is made out of rubber. The top cover shell 6 has an outer surface 62. The caterpillar track 5 is partially exposed to the outside of the opening 61 of the top cover shell 6 and kept in flush with the outer surface 62, maintaining the sense of beauty. Of course, the caterpillar track 5 can be made having a part exposed to the outside of the opening 61 above the elevation of the outer surface 62 of the top cover shell 6.
Further, the caterpillar track 5 has a plurality of ribs 51 over its outer surface. The ribs 51 increase the friction force when the user moves the caterpillar track 5 with the finger. Therefore, the user can move the caterpillar track 5 with the finger positively.
Therefore, by means of the structural design of the caterpillar track 5 on the first wheel 2 and the second wheel 3, the caterpillar track 5 is rotatable about two axle centers. Therefore, the caterpillar track 5 provides a substantially flat operation surface for operation by the user. This design eliminates the drawback of the upwardly protruding operation surface of the prior art design. Further, by means of the aforesaid structural design, the route of movement of the caterpillar track 5 is relatively smoother than the prior art design. This design fits human factor engineering, and smoothens the operation, eliminating the problem of the prior art design to move the finger from the bottom side toward the top side or from the top side toward the bottom side. Therefore, the user can operate the mouse comfortably, preventing ache or injury of the hand.
Although the present invention has been explained in relation to its preferred embodiments, 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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095119017 | May 2006 | TW | national |