The present invention relates to portable electronic apparatuses, and particularly to a portable electronic apparatus employing a numeric keypad.
Portable electronic apparatuses such as notebook computers and laptop computers are constructed as compact as possible for portable purposes. In order to reduce the computers to compact sizes, parts of input modules generally associated with desktop computers are removed. For example, numeric keypads usually found on full size keyboards are eliminated from compact keyboards employed in the notebook computers in order to save space. When users input numbers with the compact keyboards, alphanumeric keys of the compact keyboards are used. Number entries can thus be inconvenient and time consuming for the users.
A kind of stand-alone numeric keypad is regarded as a solution to eliminate shortcomings of the above mentioned compact keyboards. The stand-alone numeric keypad is electrically connected to an electronic apparatus via an electronic cable. However, a combination of the stand-alone numeric keypad and the electronic apparatus may greatly increase a volume of the electronic apparatus. Furthermore, the stand-alone numeric keypad needs to be carried along with the electronic apparatus when location of use is changed. Therefore, portability of the electronic apparatus is greatly reduced.
What is needed, therefore, is a portable electronic apparatus employing a numeric keypad with space-saving and portable properties.
A portable electronic apparatus includes a case defining a space therein and an opening communicating with the space, and an input module received in the space of the case and configured for inputting data to the electronic apparatus. The input module includes a chassis detachably attached to the case, and a numeric keypad movably attached to the chassis through the opening. The numeric keypad is capable of being exposed from the case when data entry is desired. The space is suitable to receive a data storage device of the electronic apparatus when the input module is removed from the case.
Other advantages and novel features will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings, in which:
In the following embodiment, a portable electronic apparatus with an input module including a numeric keypad is used as an example for illustration. It is noted that the portable electronic apparatus in the embodiment may be a notebook computer or a laptop computer, and the numeric keypad in the embodiment may be also a slim type mouse or any other input module.
Referring to
The case 20 includes a floor 22 for locating the input module 30 thereon and a first sidewall 24 substantially perpendicularly extending from a periphery of the floor 22. An opening 26 is defined in the first sidewall 24 for the input module 30 to insert therethrough.
Referring also to
The chassis 40 includes a first base 402, a second sidewall 404, a pair of guiding portions 406, a supporting portion 408, a first bearing portion 410, a pair of second bearing portions 411, a pair of first limiting portions 412, a second limiting portion 414, and a third limiting portion 416. The second sidewall 404 substantially perpendicularly protrudes from a side of the first base 402 and is elongated along the first directions D11 or D12. The pair of guiding portions 406 and the supporting portion 408 may be an elongated board extending along the first directions D11 or D12. The guiding portions 406 are positioned on the first base 402 for engagably supporting and guiding the numeric keypad 50. The supporting portion 408 is substantially perpendicularly positioned on the first base 402 and between the pair of guiding portions 406 for supporting the numeric keypad 50. A deformation of the numeric keypad 50 due to its weight can thus be avoided. The first bearing portion 410 defines a first bearing hole 417 therethrough. Each second bearing portion 411 defines a second bearing hole 418 therethrough. The pair of first limiting portions 412 and the second limiting portion 414 may be boards. Two opposite second directions D21 and D22 are defined perpendicular to the first directions D11 and D12. The first limiting portions 412 perpendicularly protrude into the chassis 40 from the second sidewall 404 along the second direction D22 and are spaced from each other. The second limiting portion 414 protrudes from the first base 402 and extends along the first direction D11. The second limiting portion 414 is substantially perpendicular to and spaced from the pair of first limiting portions 412. The third limiting portion 416 may be a projection positioned on the first base 402 and opposite to the second limiting portion 414.
Referring also to
The operating member 60 includes a first wedge portion 602, a first connecting portion 604, and a button portion 606 for a user to press. The first connecting portion 604 may be a shaft and interconnects the first wedge portion 602 and the button portion 606, and is movably supported by the first bearing portion 410 next to the opening 26.
The retaining member 70 includes a second wedge portion 702 engaging with the first wedge portion 602, a first blocking portion 704, a second blocking portion 706, a second connecting portion 708, and a first resilient portion 710. The first blocking portion 704 and the second blocking portion 706 may be clasps and are longitudinally arranged at two opposite ends of the second connecting portion 708. The second connecting portion 708 may be a rod or an elongated board with a positioning pin 712 protruding therefrom. The second wedge portion 702 connects to the first blocking portion 704. The first resilient portion 710 may be a spring which surrounds the positioning pin 712 and is positioned between the second connecting portion 708 and the second sidewall 404 for resiliently restricting a movement of the retaining member 70 towards the second sidewall 404.
The ejecting member 80 includes a third blocking portion 802, a pushing portion 804, and a second resilient portion 806. The pushing portion 804 protrudes out from two opposite sides of the third blocking portion 802 and is capable of traversing along the opposite directions D11 and D12. The pushing portion 804 has a first end 804a and an opposite second end 804b. The first and second ends 804a, 804b are respectively slidably supported by the pair of second bearing portions 411. The second resilient portion 806 surrounds the pushing portion 804 at one side of the third blocking portion 802 and is restricted between one of the two second bearing portions 411 and the third blocking portion 802.
Referring also to FIGS. 5 to 7, in assembly, the chassis 40 is accommodated in the case 20 and secured on the floor 22. The first connecting portion 604 is inserted through the first bearing hole 417 of the first bearing portion 410. The first wedge portion 602 and the button portion 606 of the operating member 60 are arranged at two opposite sides of the first bearing portion 410. The first wedge portion 602 is guided by the second limiting portion 414 and movable along the opposite first directions D11 and D12. A deviation of the first wedge portion 602 along the second direction D21 is avoided. The second wedge portion 702 of the retaining member 70 is received between the pair of the first limiting portions 412 and is movable along the opposite second directions D21 and D22. The first blocking portion 704 partially overlaps the second limiting portion 414. The second blocking portion 706 is restricted and slidably guided by the third limiting portion 416. The retaining member 70 can thus be movable along the opposite second directions D21 and D22. The first end 804a and the second end 804b of the pushing portion 804 are inserted through the corresponding second bearing holes 418 and supported by the pair of second bearing portions 411. The pushing portion 804 is movable along the opposite second directions D21 and D22. The second resilient portion 806 surrounds on the pushing portion 804 and is restricted between the third blocking portion 802 and one of the second bearing portions 411. The numeric keypad 50 is inserted into the case 20 and movably covers the chassis 40. The pair of complementary guiding portions 508, which protrude from the backside 516 of the second base 502, movably engage with and are supported by the pair of the guiding portion 406. The protrusion 514 aligns with the pushing portion 804. An interaction is generated between the protrusion 514 and the pushing portion 804 so that the second resilient member 806 may be compressed for storing energy. The third blocking portion 802 detachably engages with the second blocking portion 706. The first blocking portion 704 thus engages with the complementary blocking portion 510 so that the numeric keypad 50 is locked in the case 20. The button portion 606 is detachably inserted into the cutout 518 but remains exposed for use.
To use the numeric keypad 50, the user presses the button portion 606 to push the operating member 60 to move into the chassis 40 along the first direction D11. The first wedge portion 602 engages with the second wedge portion 702. A pressure is thus applied to the second wedge portion 702 via the first wedge portion 602. The second wedge portion 702 is driven to move close to the second sidewall 404 along the second direction D22. The first resilient portion 710 is compressed. The first blocking portion 704 separates from the complementary blocking portion 510 while the second blocking portion 706 separates from the third blocking portion 802. The stored energy in the second resilient portion 806 is released and the second resilient portion 806 urges the third blocking portion 802 to move along the first direction D12 to cause the first end 804a of the pushing portion 804 to thereby push the protrusion 514 of the numeric keypad 50 out of the case 20 along the first direction D12. When pushing of the operating member 60 ceases, the energy in the first resilient portion 710 is also released to drive the first blocking portion 704 to deviate from the second sidewall 404. Another complementary blocking portion 512 is stopped by the first blocking portion 704 returned by the first resilient portion 710 when the numeric keypad 50 is almost completely exposed from the case 20. The keys 504 arranged on the second base 502 are now exposed for data entry by the user.
When the portable electronic apparatus 10 is in motion, the numeric keypad 50 is stored within the case 20 in a retracted state. The user presses the button portion 606 again to push the retaining member 70 to move towards the second sidewall 404. The first blocking portion 704 is separated from the complementary blocking portion 512 to unblock the numeric keypad 50. The numeric keypad 50 can thus be pushed into the case 20. The protrusion 514 is in contact with and causes the first end 804a of the pushing portion 804 to withdraw. The first blocking portion 704 engages with the complementary blocking portion 510 to block the numeric keypad 50 when the numeric keypad 50 is substantially retracted into the case 20.
In alternative embodiments, the ejecting member 80 may be canceled. The numeric keypad 50 may be pulled out from the case 20 by fingers of the user instead of the ejecting member 80. The first base 402 and even the chassis 40 may be omitted. The operating member 60, the retaining member 70, and the ejecting member 80 may be directly mounted on the floor 22 of the case 20. The pair of guiding portions 406 and supporting portion 408 may be omitted or directly located on the floor 22. The pair of first limiting portions 412 may extend from the first base 402 or directly protrude from the floor 22.
It is believed that the present invention 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 examples hereinbefore described merely being preferred or exemplary embodiments of the invention.
Number | Date | Country | Kind |
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200520065323.5 | Sep 2005 | CN | national |