Relevant subject matter is disclosed in the copending U.S. patent application; and the copending U.S. patent application filed on the same date and having a same title with the present application, which are assigned to the same assignee with this patent application.
FIELD OF THE INVENTION
The present invention relates to latch mechanisms, and particularly to a latch mechanism which can easily secure a battery module in an electronic device.
DESCRIPTION OF RELATED ART
Generally, a potable electronic device, such as a notebook computer, has a battery pack as a power supply for driving source since such a computer is frequently used at a location where no commercial power supply is obtained. The battery pack is detachably contained in a battery receptacle, which is formed in the housing of the notebook computer. Referring to
What is desired, therefore, is a latch mechanism easily securing a battery module in an electronic device.
In one preferred embodiment, a latch mechanism for securing a battery module includes a bracket, and a pair latch members. The bracket is a part of a housing a notebook computer. The bracket includes a recess, a back plate defining a pair of cutouts, and a pair of fixing frame disposed besides the cutouts. Each the fixing frame includes a side panel defining a pair of grooves. Each latch member is movably received in the corresponding fixing frames and includes a block, and a resilient wall with a protrusion selectively located in the grooves. The battery module is slidably moved into the recess and includes a pair of hooks extending through the cutouts of the bracket to engaging with the blocks of the latch member.
Other advantages and novel features will become more apparent from the following detailed description of preferred embodiments when taken in conjunction with the accompanying drawings, in which:
Referring to
The battery module 70 includes a pair of railways 72 defined in two sidewalls thereof, a pair of hooks 74 extending perpendicularly from an inner wall thereof, and an interface 76 arranged between the hooks 74.
The bracket 10 includes a base plate 12, a pair of side plates 14, and a back plate 16. The side plates 14 and the back plate 16 are separately perpendicular to the base plate 12 and cooperatively define a recess 18 for receiving the battery module 70 therein. A pair of sliding bars 142 extrudes from the side plates 12, corresponding to the slideways 72 of the battery module 70. A pair of cutouts 162 is defined in the back plate 16, for the hooks 74 of the battery module 70 extending therethrough. A slot 164 is defined in the back plate 16 between the cutouts 162, for the interface 76 of the battery module 70 extending therethrough.
The back plate 16 further includes a pair of fixing frames 30 disposed besides the cutouts 162, for receiving the latch members 50. The fixing frames 30 stand perpendicularly on the base plate 12. Each of the fixing frames 30 includes a first side panel 32, a second side panel 34, an end panel 36, and a flange 38. The first panels 32 align with the back plate 16. In this preferred embodiment, the first side panels 32 integrate with the back plate 16. The first and second side panels 32, 34 are separately perpendicular to the base plate 12. The first side panels 32 are parallel to the corresponding second side panels 32. The flanges 38 extend perpendicularly from side edge of the second side panels 34. A pair of grooves 322, 324 is defined in the back plate 16 and extends to the first side panel 32 of each of the fixing frames 30. The grooves 322 are near the corresponding slots 162 of the bracket 10. The grooves 324 are far away to the corresponding slots 162 of the bracket 10. A pair of catches 35 extends from top edges of the first and second side panel 32, 34 of each of the fixing frames 30. A notch 122 is defined in the base plate 12 surrounding by each of the fixing frames 30.
Referring to
In assembly, the latch members 50 are separately inserted into the corresponding fixing frames 30. The posts 542 of the latch members 50 engage in the through holes 362 of the fixing frames 30. The grip portions 59 extend into the notches 122 of the base plate 12 of the bracket 10. The catches 35 of the fixing frames 30 engage top edges of the sidewalls 52 and the resilient walls 58 of the latch members 50. The locating protrusions 582 of the latch members 50 are located in the grooves 324.
In use, the battery module 70 is moved into the recess 18 of the bracket 10, with the sliding bars 142 sliding in the railways 72. The interface 76 of the battery module 70 extends into the slot 164 of the back plate 16. The hooks 74 of the battery module engage the blocks 562 of the latching members 50 to move the corresponding latch members 50 further into the corresponding fixing frames 30, with the resilient walls 58 deformed and the protrusions 582 moving from the grooves 324 to the grooves 322. When the hooks 74 ride over the blocks 562, the resilient walls 58 rebound, the protrusions 582 move back to the grooves 324. The hooks 74 engage with the block to secure the battery module 70 in the bracket 10.
To detach the battery module 70 from the bracket 10, the grip portions 59 of the latch members 50 are operated to move the blocks 562 away from the hooks 74 of the battery module 70 to easily slide the battery module 70 out of the bracket 10. The resilient wall 58 is deformed and the protrusions 582 move from the grooves 324 to the grooves 322.
It is believed that the present embodiment and its advantages will be understood from the foregoing description, and it will be apparent that various changes may be made thereto without departing from the spirit and scope of the invention or sacrificing all of its material advantages, the example hereinbefore described merely being a preferred or exemplary embodiment.
Number | Date | Country | Kind |
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200520065720.2 | Oct 2005 | CN | national |