CN1335546A - Bidirectional opened bayonet unit for notebook computer - Google Patents

Bidirectional opened bayonet unit for notebook computer Download PDF

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Publication number
CN1335546A
CN1335546A CN 00122453 CN00122453A CN1335546A CN 1335546 A CN1335546 A CN 1335546A CN 00122453 CN00122453 CN 00122453 CN 00122453 A CN00122453 A CN 00122453A CN 1335546 A CN1335546 A CN 1335546A
Authority
CN
China
Prior art keywords
notebook computer
plate body
push piece
liquid crystal
pushing part
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN 00122453
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Chinese (zh)
Other versions
CN1139860C (en
Inventor
李泉元
王希达
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Compal Electronics Inc
Original Assignee
Compal Electronics Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Compal Electronics Inc filed Critical Compal Electronics Inc
Priority to CNB001224530A priority Critical patent/CN1139860C/en
Publication of CN1335546A publication Critical patent/CN1335546A/en
Application granted granted Critical
Publication of CN1139860C publication Critical patent/CN1139860C/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The bidirectional opened bayonet unit for notebook computer has one bidirectional opening mechanism set in the LCD casing of the notebook computer and one embedding part set in the system unit casing of the notebook computer. The bidirectional opening mechanism consists of one pushing part and one clamping part, when the LCD casing is covered the system unit casing, they are in clamping state; and when the pushing part is pushed towards one side, the clamping part is pushed to the same direction with the pushing part to open the notebook computer.

Description

The bidirectional opened bayonet unit of notebook computer
The present invention relates to a kind of opened bayonet unit of notebook computer, particularly relate to a kind of can the left and right bidirectional opened bayonet unit of forward opening the notebook computer of notebook computer.
The liquid crystal screen display of unlatching notebook computer and the unlatching button of main frame generally can be divided into push type unlatching button or one-way fashion is opened two kinds of buttons, it is little with the custom difference of the left hand or the right hand for the user that push type is opened button, and one-way fashion is opened button no matter manufacturer is designed to the mode that dextrad is opened or left-hand is opened, and all exists to make the user feel not smoothly problem when opening.Figure 1 shows that a kind of notebook computer 1 with general unidirectional unlatching button 10, this unidirectional unlatching button 10 is that left-hand towards the user is to mobile opening ways, this unidirectional unlatching button 10 is for left-handed user, when opening notebook computer 1 and use quite smoothly, and for dexterous user, when opening this notebook computer 1 use, will produce not smoothly puzzlement of unlatching, and the unlatching button 10 as this notebook computer 1 is designed to the dextrad opening ways, then make the righthanded user comparatively convenient, and make the left hand user produce puzzlement.
A kind of left and right bidirectional opened bayonet unit of forward opening the notebook computer of notebook computer that provides is provided.
The bidirectional opened bayonet unit of notebook computer of the present invention comprises that one opens a unit and an embedding part, it is characterized in that: this unlatching unit is a two-way unlatching unit, this bidirectional opening unit is made up of a pushing part and a fastening part, one first push piece and one second push piece that this pushing part has a slide block and is connected with this slide block, one side of this pushing part is also joined with first flexible member that is installed in this notebook computer liquid crystal display housing, this fastening part has a groove corresponding to this first push piece, be provided with a linked component in a side corresponding to this second push piece, be located at yoke frame and at least one protruding outer fastener of this notebook computer liquid crystal display housing that is exposed to of this linked component one side, this fastening part and with the second flexible member winding that is installed in this notebook computer liquid crystal display housing; This embedding part is located in the notebook computer host shell, for this fastener inlay card.
When this slide block during to a side shifting of this first flexible member, this first push piece promptly pushes this groove and makes the side shifting of this fastening part with this slide block displacement, and this fastener can break away from the inlay card of this embedding part; When this slide block when this second push piece direction moves, this linked component promptly is subjected to pushing of this second push piece, this fastening part is with a side shifting of this slide block displacement, this fastener can break away from the inlay card of this embedding part and this notebook computer is raised, and the user can stir this slide block and open this notebook computer according to the service orientation of its custom.
The accompanying drawing simple declaration.
Fig. 1 is the notebook computer synoptic diagram with general unidirectional unlatching button.
Fig. 2 is the schematic perspective view of preferred embodiment of the present invention.
Fig. 3 is the amplification schematic perspective view of first opening in the preferred embodiment of the present invention.
Fig. 4 is the member schematic perspective view of the present invention's first alternate embodiment.
Fig. 5 is the part enlarged diagram of the present invention's first alternate embodiment member.
Fig. 6 is the action synoptic diagram of the present invention's first alternate embodiment.
Fig. 7 is another action synoptic diagram of the present invention's first alternate embodiment.
Fig. 8 is the member schematic perspective view of the present invention's second alternate embodiment.
Fig. 9 is the action synoptic diagram of the present invention's second alternate embodiment.
Figure 10 is another action synoptic diagram of the present invention's second alternate embodiment.
Below in conjunction with accompanying drawing preferred embodiment of the present invention is elaborated.
Fig. 2,3 are depicted as a notebook computer 2, it by a notebook computer host shell 20 and one and the notebook computer liquid crystal display housing 21 that articulates of this notebook computer host shell 20 form, one host computer (not shown) is housed in this notebook computer host shell 20, on the relative shell wall of this notebook computer host shell 20 and notebook computer liquid crystal display housing 21, offer two first openings 201, this notebook computer liquid crystal display housing 21 can supply a ccontaining LCDs, position corresponding to two first openings 201 on the relative shell wall of this notebook computer liquid crystal display housing 21 and notebook computer host shell 20 is provided with two second openings 210, and this notebook computer liquid crystal display housing 21 is provided with one the 3rd opening 211 in the face of on user's the shell wall when this notebook computer 2 covers.
Shown in Fig. 4~6, bidirectional opening of the present invention unit 3 is installed in this notebook computer liquid crystal display housing 21, this bidirectional opening unit 3 is made up of a pushing part 30 and a fastening part 31, this pushing part 30 has one and exposes to the slide block 301 of the 3rd opening 211 and one first push piece 302 and one second push piece 303 that is connected with this slide block 301, one side of this pushing part 30 is also joined with first flexible member 22 that is installed in these notebook computer liquid crystal display housing 21 inwalls, this first flexible member 22 is a spring in the present embodiment, because the elastic force of this first flexible member 22 makes pushing part 30 be pushed the postpone of offing normal and has an elastic-restoring force.
Shown in Fig. 2~5, this fastening part 31 is a long slab spare in the present embodiment, it is provided with a groove 310 corresponding to this first push piece 302, be provided with a linked component 311 in correspondence in a side of this second push piece 303, be located at yoke frame 312 and at least one protruding fastener 313 that exposes this second opening 210 of these groove 310 margo dexters, be to correspond respectively to two second openings 210 to be provided with two fasteners 313 equally in the present embodiment, and these fastening part 31 bottom sides and with second flexible member, 23 windings that are installed in the notebook computer liquid crystal display housing 21, in the present embodiment, this second flexible member 23 is a spring, because the elastic force of this second spring 23, no matter when making this fastening part 31 break away from the origin-location to the left or to the right, all have an elastic-restoring force.
Shown in Fig. 2,3, in first opening 201 that this notebook computer host shell 20 is offered, be provided with embedding part 4, can ccontaining this fastener 313 when covering on notebook computer host shell 20 and form the inlay card state for this notebook computer liquid crystal display housing 21, this embedding part 4 is the buckling bodies 204 that are provided with an inverted L shape in opening 201, and this buckling body 204 can fasten for the hook part 3130 with this fastener 313 and fasten state with formation.
When this notebook computer liquid crystal display housing 21 covers on notebook computer host shell 20, this fastener 313 promptly enters embedding part 4 and forms the buckle state from this first opening 201, as Fig. 6, shown in 9, stir power and when making slide block 301 (i.e. these first spring, 22 sides) are mobile to the left when applying one, this first push piece 302 promptly pushes the lateral margin of groove 310 and this fastening part 31 is moved to the left with slide block 301, then this fastener 313 can break away from embedding part 4 and be pulled out by first opening 201, then this notebook computer liquid crystal display housing 21 can be started by notebook computer host shell 20, as Fig. 7, shown in 10, stir power and when making this slide block 301 (i.e. these second push piece, 303 directions) are mobile to the right when applying one, this linked component 311 is pushed by second push piece 303 promptly, this fastening part 30 is moved with slide block 301 displacement sides (i.e. left side), then this fastener 313 can break away from embedding part 4 and be pulled out by first opening 201, thereby this notebook computer 3 is raised.
The alternate embodiment of bidirectional opening of the present invention unit 3 below is described, but it should be noted that bidirectional opening of the present invention unit 3 is not limited in following examples.
First alternate embodiment
Shown in Fig. 4~6, the linked component 311 of this bidirectional opening unit 3 can be by one first plate body 314, and second plate body 315 of these first plate body, 314 one adjacency and be installed in this first plate body 314 and this second plate body 315 between axostylus axostyle 316 constitute, and this axostylus axostyle 316 articulates the axle bed 24 on this linked component 311 and notebook computer liquid crystal display housing 21 inside top surface by a pivot 240, and be that the axle center pivots with this pivot 240, when this notebook computer liquid crystal display housing 21 covers on notebook computer host shell 20, this fastener 313 is promptly entered in the embedding part 4 by first opening 201 and forms the buckle state, as shown in Figure 7, when this slide block 301 is stressed when mobile to second push piece, 303 right directions, this second push piece 303 just pushes first plate body 314, make this first plate body 301 rotate and this second plate body 315 is rotated to yoke frame 312 directions around axostylus axostyle 316, and push against this yoke frame 312, and make this pushing part 30 stressed and produce displacement to the left, this fastener 313 and embedding part 4 can being broken away from and pull out, thereby this notebook computer liquid crystal display housing 21 is raised by notebook computer host shell 20 by first opening 201.Otherwise, as shown in Figure 4, stir power and make this slide block 301 to the left during first spring, 22 side shiftings when applying one, this first push piece 302 promptly pushes groove 310 lateral margins and makes this fastening part 31 with slide block 301 displacement to the left, then can make this fastener 313 break away from embedding parts 4 and pull out, thereby this notebook computer liquid crystal display housing 21 is started by notebook computer host shell 20 by first opening 201.
Second alternate embodiment
As shown in Figure 8, this second push piece 303 is being provided with a plurality of ratchets 304 in the face of fastening part 31 1 sides, and this linked component 311 is made up of a linked gear 317 and one group of rachet 318 in the present embodiment, and this linked gear 317 also articulates by the axle bed 24 of axostylus axostyle 240 with notebook computer liquid crystal display housing 21 inside top surface as mentioned above, and be that rotate in the axle center with this axostylus axostyle 240, this rachet 318 is located at pushing part 30 is provided with a plurality of ratchets 304 in the face of second push piece 303 a side, and the tooth of this linked gear 317 is meshing with each other with ratchet 304 and this rachet 318 of second push piece 303 respectively, as shown in Figure 9, when this slide block 301 is positioned at the centre position, the tooth of these a plurality of ratchet 304 least significant ends is positioned at this linked gear 317 left side sides, when this pushing part 30 stressed when mobile to the left, first push piece 302 of this pushing part 30 promptly promotes this fastening part 31 and is moved to the left, and these a plurality of ratchets 304 do not contact with this linked gear 317, so can make this fastener 313 break away from embedding part 4.As shown in figure 10, when this pushing part 30 stressed to the right the time, the tooth of the least significant end of these a plurality of ratchets 304 promptly meshes with this linked gear 317, and this linked gear 317 also closes with the rachet 318 that is meshed and this rachet 318 is moved to the left, thereby makes this fastener 313 break away from the buckle of embedding part 4.When notebook computer liquid crystal display housing 21 covered on notebook computer host shell 20, this fastener 313 was promptly entered in the embedding part 4 by this first opening 201 and makes this notebook computer 3 form the buckle state that covers.
Therefore, bidirectional opening of the present invention unit 3 can provide righthanded and left-handed different users to use, and the user can stir this pushing part 30 according to my use habit direction and turn right or turn left, and all can open notebook computer and use.

Claims (3)

1. the bidirectional opened bayonet unit of a notebook computer comprises one and opens a unit and an embedding part, it is characterized in that:
Described unlatching unit is a two-way unlatching unit, described bidirectional opening unit is made up of a pushing part and a fastening part, described pushing part has one and exposes to the slide block of described notebook computer liquid crystal display housing and one first push piece and one second push piece that is connected with described slide block, one side of described pushing part is also joined with first flexible member that is installed in the described notebook computer liquid crystal display housing, described fastening part has a groove corresponding to described first push piece, be provided with a linked component in a side corresponding to described second push piece, be located at yoke frame and at least one protruding outer fastener of described notebook computer liquid crystal display housing that is exposed to of described linked component one side, described fastening part and with the two flexible member windings that are installed in the described notebook computer liquid crystal display housing;
Described embedding part is located in the notebook computer host shell, for described fastener inlay card.
2. the bidirectional opened bayonet unit of notebook computer as claimed in claim 1 is characterized in that:
Described linked component by one first plate body, and second plate body of the described first plate body one adjacency and be installed in described first plate body and described second plate body between axostylus axostyle form, and to make described first plate body and described second plate body be that rotate at the center with described axostylus axostyle.
3. the bidirectional opened bayonet unit of notebook computer as claimed in claim 1, it is characterized in that: described linked component is installed in described pushing part by a linked gear and and forms in the face of the rachet that described second push piece is provided with a plurality of ratchet one sides, the tooth of described a plurality of ratchet least significant ends is positioned at described linked gear left side side when described slide block is static, when described pushing part stressed when mobile to the left, first push piece of described pushing part promptly promotes described fastening part and is moved to the left, and described a plurality of ratchet does not contact with described linked gear, makes described fastener break away from embedding part; When described pushing part is stressed when moving right, the tooth of described a plurality of ratchet least significant ends and the engagement of described linked gear, and described linked gear and the rachet engagement of bridle joint mutually, and described rachet is moved to the left, make the buckle of described fastener disengaging embedding part.
CNB001224530A 2000-07-26 2000-07-26 Bidirectional opened bayonet unit for notebook computer Expired - Fee Related CN1139860C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNB001224530A CN1139860C (en) 2000-07-26 2000-07-26 Bidirectional opened bayonet unit for notebook computer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNB001224530A CN1139860C (en) 2000-07-26 2000-07-26 Bidirectional opened bayonet unit for notebook computer

Publications (2)

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CN1335546A true CN1335546A (en) 2002-02-13
CN1139860C CN1139860C (en) 2004-02-25

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CNB001224530A Expired - Fee Related CN1139860C (en) 2000-07-26 2000-07-26 Bidirectional opened bayonet unit for notebook computer

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102445956A (en) * 2010-09-30 2012-05-09 联想(北京)有限公司 Docking station and mobile terminal employing same
CN102445957A (en) * 2010-09-30 2012-05-09 联想(北京)有限公司 Docking station and mobile terminal with same
CN103677114A (en) * 2012-09-17 2014-03-26 纬创资通股份有限公司 Bidirectional latch mechanism and related electronic device
CN104111696A (en) * 2013-04-17 2014-10-22 纬创资通股份有限公司 Fastening mechanism and portable electronic device
CN114077285A (en) * 2020-08-13 2022-02-22 和硕联合科技股份有限公司 Notebook computer

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102445956A (en) * 2010-09-30 2012-05-09 联想(北京)有限公司 Docking station and mobile terminal employing same
CN102445957A (en) * 2010-09-30 2012-05-09 联想(北京)有限公司 Docking station and mobile terminal with same
CN102445956B (en) * 2010-09-30 2014-07-02 联想(北京)有限公司 Docking station and mobile terminal employing same
CN102445957B (en) * 2010-09-30 2014-07-02 联想(北京)有限公司 Docking station and mobile terminal with same
CN103677114A (en) * 2012-09-17 2014-03-26 纬创资通股份有限公司 Bidirectional latch mechanism and related electronic device
CN103677114B (en) * 2012-09-17 2016-12-21 纬创资通股份有限公司 Bidirectional latch mechanism and related electronic device
CN104111696A (en) * 2013-04-17 2014-10-22 纬创资通股份有限公司 Fastening mechanism and portable electronic device
CN104111696B (en) * 2013-04-17 2017-05-10 纬创资通(昆山)有限公司 Fastening mechanism and portable electronic device
CN114077285A (en) * 2020-08-13 2022-02-22 和硕联合科技股份有限公司 Notebook computer
CN114077285B (en) * 2020-08-13 2024-04-12 和硕联合科技股份有限公司 Notebook computer

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