CN201628889U - Laptop - Google Patents

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Publication number
CN201628889U
CN201628889U CN2010201489351U CN201020148935U CN201628889U CN 201628889 U CN201628889 U CN 201628889U CN 2010201489351 U CN2010201489351 U CN 2010201489351U CN 201020148935 U CN201020148935 U CN 201020148935U CN 201628889 U CN201628889 U CN 201628889U
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CN
China
Prior art keywords
display
main frame
supporting construction
notebook computer
rotation supporting
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.)
Expired - Lifetime
Application number
CN2010201489351U
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Chinese (zh)
Inventor
田平
辛志峰
李向阳
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Lenovo Beijing Ltd
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Lenovo Beijing Ltd
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Publication date
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Priority to CN2010201489351U priority Critical patent/CN201628889U/en
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Publication of CN201628889U publication Critical patent/CN201628889U/en
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Abstract

The utility model provides a laptop, which comprises a display, a mainframe and a rotary support structure connected between the mainframe and the display. A rotating shaft allowing the mainframe to rotate with respect to the display is arranged at the first part of the rotary support structure, the display rotates with respect to the mainframe, the rotary support structure rotates around the rotating shaft, and after the display is opened with respect to the mainframe, the second part of the rotary support structure for supporting the display and the mainframe is positioned below the mainframe and the display. Through the improved structure of the laptop, the overall structure of the opened laptop is raised to provide more reasonable man-machine relative positions.

Description

A kind of notebook computer
Technical field
The utility model relates to the computer equipment technical field, refers in particular to a kind of notebook computer.
Background technology
Current, notebook computer extensively is used with advantages such as its volume are little, in light weight and be easy to carry.Based on the characteristics of existing notebook computer structure, notebook computer is placed on notebook computer on the desk in use usually, the main frame horizontal positioned, and the user is according to sitting posture and use habit, and the regulator solution crystal display is with respect to the anglec of rotation of main frame.
Yet, though the user can be according to the anglec of rotation of sitting posture and use habit regulator solution crystal display, but because LCD is connected with main frame, distance between the two is very near, and main frame can only horizontal positioned, the position is lower, the user need bow usually and see screen when beaing keyboard, and keeps the arm horizontal positioned, therefore can cause arm and musculi colli to ache for a long time, the harm user's is healthy.
Now, people have come to realise the above-mentioned defective that notebook computer exists aspect ergonomics, and some solutions have been worked out, as adopting a underbed product below notebook computer, and design special methods such as notebook computer bracket, in the hope of adjusting the height of notebook computer, increase the comfort in the notebook computer use.Yet above-mentioned the whole bag of tricks can not fundamentally solve the defective that exists on the notebook computer structure, and also needs article such as subsidiary support when going out to carry notebook computer, has had a strong impact on the portable advantage of notebook computer.
The utility model content
The purpose of technical solutions of the utility model provides a kind of notebook computer, by improving the structure of notebook computer, the one-piece construction of the notebook computer after opening is raised, so that more rational man-machine relative position to be provided.
For achieving the above object, the utility model provides a kind of notebook computer, and described notebook computer comprises:
Display;
Main frame;
The rotation supporting construction, be connected between described main frame and the described display, described main frame is arranged at the first of described rotation supporting construction with respect to the turning axle of described display upset, described display overturns with respect to described main frame, described rotation supporting construction is rotated around described turning axle, and described display with respect to described main frame in opened condition after, the second portion that is used to support the described rotation supporting construction of described display and described main frame is positioned at described main frame and described display below.
Preferably, described notebook computer, the surface, longitudinal section of described second portion is globoidal structure, and described display is different open angles with respect to described main frame, and when being positioned on the stayed surface, the different segmental arcs of described globoidal structure contact with described stayed surface as supporting surface.
Preferably, described notebook computer, described rotation supporting construction and described display integrative-structure are provided with, and the surface of described second portion is connected to the backside surface of described display.
Preferably, described notebook computer, described first comprises a planar structure, first edge of described planar structure is connected with the demonstration front surface of described display, second edge of described planar structure is connected with the surface of described second portion, described first edge is parallel with described second edge, and described turning axle is arranged at described second edge.
Preferably, the width between the described notebook computer, described first edge and described second edge is identical with the height of described main frame.
Preferably, described notebook computer, the surface, two sides of described rotation supporting construction is positioned at same plane with the surface, left and right side of described display respectively, and described rotation supporting construction two ends along its length respectively are provided with a described turning axle, and each described turning axle is connected with an axle sleeve respectively.
Preferably, described notebook computer, described rotation supporting construction also comprises the gearing mesh assembly, described display is connected with described gearing mesh assembly, does to overturn and move up and down with respect to described main frame by described gearing mesh assembly.
Preferably, described notebook computer, described gearing mesh assembly comprises:
First gear is fixedly set on the described main frame;
Second gear, fixed cover are located at first stationary shaft, and described first stationary shaft is arranged on the described rotation supporting construction, and described second gear is connected with described first gearing mesh;
The 3rd gear, fixed cover are located on described first stationary shaft;
The 4th gear is sheathed on second stationary shaft rotationally, and described second stationary shaft is arranged on the described rotation supporting construction, and described the 4th gear is connected with described the 3rd gearing mesh;
Tooth bar is fixedly set on the described display, and described tooth bar is connected with described the 4th gearing mesh.
Preferably, described notebook computer, first side of described main frame parallels setting with described rotation supporting construction, and the two ends of described first side are provided with described first gear respectively, and the coupling shaft of each described first gear and described first parallel sided.
Preferably, described notebook computer, the length of described rotation supporting construction is corresponding identical with the length of described first side, and described rotation supporting construction both sides along its length are provided with a described gearing mesh assembly respectively, and each described gearing mesh assembly is corresponding respectively to be connected with described first gear matched.
In the utility model specific embodiment technique scheme at least one has following beneficial effect:
Described notebook computer is by being provided with the rotation supporting construction between main frame and display, when display is opened with respect to main frame, utilize the bottom supporting notebook computer of rotation supporting construction, main frame is upwards lifted, again by on the rotation supporting construction, the gearing mesh assembly being set, display can be moved up when opening with respect to the main frame upset, make the relative position of display also raise, by upwards promoting the position of main frame and display, in order to satisfy different users of service are provided with height to notebook computer requirement, more rational man-machine relative position is provided, and the increase user uses the comfort in the notebook computer process;
The support section of described rotation supporting construction is designed to crooked globoidal structure, display is different open angles with respect to described main frame, and when being positioned on the stayed surface, the different segmental arcs of crooked globoidal structure contact with stayed surface as supporting surface, have kept the display of original notebook computer structure can be the architectural characteristic of different open angles with respect to main frame.
Description of drawings
Fig. 1 is the side structure synoptic diagram of the described notebook computer of the utility model first embodiment;
Fig. 2 is the perspective view of the described notebook computer of the utility model first embodiment;
Fig. 3 is the side structure synoptic diagram of the described notebook computer of the utility model second embodiment;
Fig. 4 is the partial structurtes synoptic diagram of the described notebook computer of the utility model second embodiment;
Fig. 5 is in the described notebook computer of the utility model second embodiment, the structural representation of main frame;
Fig. 6 is in the described notebook computer of the utility model second embodiment, the Facad structure synoptic diagram of gearing mesh assembly;
Fig. 7 is in the described notebook computer of the utility model second embodiment, the structure synoptic diagram of gearing mesh assembly;
Fig. 8 is in the structural representation that closes the state that closes for the described notebook computer of the utility model second embodiment.
Embodiment
For making the purpose of this utility model, technical scheme and advantage clearer, below in conjunction with the accompanying drawings and the specific embodiments the utility model is described in detail.
The described notebook computer of the utility model specific embodiment, the rotation supporting construction is set between main frame and display, when display is opened with respect to main frame, this rotation supporting construction is overturn thereupon, utilize the bottom supporting notebook computer of rotation supporting construction, main frame and display are upwards lifted,, satisfy different users of service are provided with height to notebook computer requirement in order to more rational man-machine relative position to be provided.
The described notebook computer of the utility model specific embodiment, except that comprising main frame and display, also comprise a rotation supporting construction, this rotation supporting construction is connected between main frame and the display, main frame is arranged at the first of rotation supporting construction with respect to the turning axle of display upset, when display overturns with respect to main frame, the rotation supporting construction is rotated around turning axle, and display is with respect to main frame in opened condition the time, and the second portion that this rotation supporting construction is used for support displays and main frame rotates to and is positioned at main frame and display below.
Fig. 1 and Fig. 2 are the structural representation of the described notebook computer of the utility model first embodiment.Consult Fig. 1 and Fig. 2, the rotation supporting construction 10 of notebook computer is positioned at the link position of main frame 20 and display 30, and should rotate supporting construction 10 and display 30 integrative-structure settings, extends downwards from display 30 bottoms.
As Fig. 1 and Fig. 2, in the utility model first embodiment, rotation supporting construction 10 the width that length equals display 30 is set, also promptly as Fig. 2, the surface, two sides that rotates supporting construction 10 is positioned at same plane with the surface, left and right side of display 30 respectively.Wherein this rotation supporting construction 10 comprises the first 11 that is used to connect turning axle 40 and is used for passive second portion 12.This first 11 comprises a planar structure 111, and this planar structure 111 is connected with the demonstration front surface 31 of display 30.The longitudinal section of this second portion 12 is globoidal structure, and the surface of second portion 12 crooked cambered surfaces is connected directly to the backside surface 32 of display 30.When display 30 is different open angles with respect to main frame 20, and when being positioned on the stayed surface, different segmental arcs by second portion 12 crooked globoidal structures are connected with the stayed surface contact as supporting surface, make display 30 keep certain open angle constant, to satisfy user's different demands with respect to main frame 20.
As Fig. 1 and Fig. 2, at the edge of described planar structure 111 with second portion 12 curved surfaces intersections, two ends are respectively arranged with a boss 112, boss 112 is used to install axle sleeve 113, two turning axles 40 that main frame 20 is connected with display 30 are installed on respectively in the axle sleeve 113 that is provided with on two boss 112, display 30 is opened with respect to main frame 20 upset or when closed, turning axle rotates with respect to axle sleeve 113, those skilled in the art should be able to understand the turning axle that is provided with between laptop computer displays and the main frame and the fit structure of axle sleeve, no longer describe in detail at this structure at this.
In the utility model first embodiment, described display 30 is opened with respect to described main frame 20 upsets, when display 30 rotates, rotation supporting construction 10 is rotated around the center that is provided with of turning axle (also being the center of axle sleeve 113), make in the process that display 30 upset opens, the second portion 12 of rotation supporting construction 10 rotates to the below that is positioned at main frame 20 and display 30, like this when notebook computer is positioned on the stayed surface, second portion 12 by rotation supporting construction 10 supports main frame 20 and display 30, make main frame 20 upwards lift certain altitude, make the keyboard that is provided with on the main frame 20 tilt to place with respect to the staff, the keyboard of having avoided staff's usage level to place, the problem that the arm muscles that the long-term horizontal positioned of arm causes is ached.
In addition, the set rotation supporting construction 10 of the utility model first embodiment, display 30 is during with respect to main frame 20 Unscrews, not only can support and raise main frame 20 by second portion 12, and the crooked curved surfaces by second portion 12, make display 30 keep different open angles be placed on the stayed surface, kept the display 30 of original notebook computer structure can be the architectural characteristic of different open angles with respect to main frame 20 with respect to main frame 20.
In the utility model first embodiment, as Fig. 1 and Fig. 2, the width of the planar structure 111 of rotation supporting construction 10 is identical with the height of main frame 20, it is fashionable that display 30 is closed with respect to main frame 20, demonstration front surface 31 surface of keyboard lucky and main frame 20 of display 30 are fitted and connected together, meet the surface structure designing requirement of common notebook computer.
The utility model also provides the notebook computer of another kind of structure, is the structural representation of notebook computer as described in the utility model second embodiment as Fig. 3, is the partial structurtes synoptic diagram of notebook computer as described in second embodiment as Fig. 4.Consult Fig. 3 and Fig. 4, rotation supporting construction 100 is arranged between main frame 20 and the display 30 independently, and the first of rotation supporting construction 100 (as the upper part of rotation supporting construction among Fig. 3 and Fig. 4) is connected the fit structure (not shown) that common turning axle and axle sleeve are set, in order to be connected with main frame 20, can rotate relatively between the also connected mode of promptly utilizing turning axle to cooperate, rotation supporting construction 100 and main frame 20 with axle sleeve.
When display 30 was opened with respect to main frame 20 upsets, the second portion (end portion) of rotation supporting construction 100 turn to the below that is positioned at display 30 and main frame 20, is used for support displays 30 and main frame 20.In addition, identical with the second portion structure of first embodiment, the longitudinal section of the second portion of the described rotation supporting construction 100 of second embodiment also is globoidal structure, when display 30 is different open angles with respect to main frame 20, and when being positioned on the stayed surface, different segmental arcs by the crooked globoidal structure of second portion are connected with the stayed surface contact as supporting surface, make display 30 keep certain open angle constant with respect to main frame 20, to satisfy user's different demands.
In addition, in the utility model second embodiment, consult Fig. 3 and Fig. 4, between described main frame 20 and the described rotation supporting construction 100 a gearing mesh assembly is set also, display 30 is connected with this gearing mesh assembly, makes display 30 do to overturn and move up and down with respect to main frame 20 by this gearing mesh assembly.
Fig. 5 is the structural representation of described main frame 20, and Fig. 6 is the Facad structure synoptic diagram of described gearing mesh assembly, and Fig. 7 is the structure synoptic diagram of described gearing mesh assembly.Consult Fig. 5 and in conjunction with Fig. 3, main frame 20 is connected with rotation supporting construction 100 at 21 places, first side, and the two ends of this first side 21 are provided with one first gear 51 respectively, and this first gear 51 is fixedly set on the main frame 20 by stationary shaft 58.The length of rotation supporting construction 100 is corresponding identical with the length of first side 21, and this rotation supporting construction both sides along its length are provided with a described gearing mesh assembly respectively, and each gearing mesh assembly correspondence and one first gear 51 respectively is connected.
Consult Fig. 6, Fig. 7 also in conjunction with consulting Fig. 3 and Fig. 4, described rotation supporting construction 100 comprises:
Second gear 52 and the 3rd gear 53, this second gear 52 and the 53 coaxial settings of the 3rd gear, be fixedly set on first stationary shaft 54, and this first stationary shaft 54 be fixedly set in the rotation supporting construction 100 on, this first stationary shaft 54 is fixed with respect to main frame 20; Wherein this second gear 52 and first gear 51 are connected with a joggle, and when relatively rotating between main frame 20 and the rotation supporting construction 100, second gear 52 rotates with respect to first gear 51.
The 4th gear 55, the 4th gear 55 is sheathed on one second stationary shaft 56 rotationally, this second stationary shaft 56 is fixedly set on the rotation supporting construction 100, and the 4th gear 55 and the 3rd gear 53 are connected with a joggle, when relatively rotating between described main frame 20 and the rotation supporting construction 100, the 4th gear 55 rotates around second stationary shaft 56, relatively rotates between the 3rd gear 53 and the 4th gear 55.
Tooth bar 57, this tooth bar 57 is fixedly set on the display 30, and this tooth bar 57 and the 4th gear 55 be connected with a joggle, and when display 30 moves up or down, utilizes cooperating between tooth bar 57 and the 4th gear 55, and the 4th gear 55 is rotated around second stationary shaft 56.
Gearing mesh assembly by the utility model second embodiment said structure, when display 30 is opened with respect to main frame 20 upsets, produce relative motion between tooth bar 57 and the 4th gear 55, the 4th gear 55 rotates counterclockwise, drive second gear 52 simultaneously and the 3rd gear 53 clockwise rotates, whole rotation supporting construction 100 is clockwise rotated around the stationary shaft 58 of first gear 51, and upset is opened.Therefore, with opening of display 30, rotation supporting construction 100 turn to the below of main frame 20, and the rear end of main frame 20 is lifted, and main frame 20 rear ends are upwards raise.In addition, when display 30 is opened with respect to main frame 20 upset, along with the relative motion between the 4th gear 55 and the tooth bar 57, the 4th gear 55 promote to be fixed on the display 3 tooth bar 57 forward (or upwards) mobile, make display 3 rise that can make progress automatically.
Otherwise, when with respect to the closed display 3 of main frame 20, each parts manner of execution of gearing mesh assembly is not described in detail in this with above opposite, last display 3 closes to form as Fig. 8 with respect to main frame 2, and Fig. 8 is the structural representation after the described notebook computer of second embodiment folds.
In a second embodiment, when described display 30 overturns with respect to main frame 20, can driven rotary supporting construction 100 overturn, make the second portion of rotation supporting construction 100 be positioned at main frame 20 and display 30 belows, be used to support main frame 20 and display 30, upwards raise main frame 20, and utilize the fit system of rack and pinion group, display 30 can move up, and makes the relative position of display 30 raise.
In addition, consult Fig. 8, by the gearing mesh assembly of said structure, when closing notebook computer, the demonstration front surface of display 30 and the surface of keyboard of main frame 20 are fitted, and rotation supporting construction 100 turns to second side 22 of main frame 20 and fits, and be arranged in parallel with second side 22.
More than comprehensive, by having the rotation supporting construction of said structure, when described display 30 is opened with respect to main frame 20 upsets, the second portion of rotation supporting construction 100 turns to the below of main frame 20 rear ends, be used for supporting and upwards raising main frame 20, and utilize the gearing mesh assembly, display 30 can be moved up when opening with respect to main frame 20 upsets, make the relative position of display 30 raise, by upwards promoting the position of main frame and display, in order to satisfy different users of service notebook computer is provided with requirement highly, more rational man-machine relative position is provided, the increase user uses the comfort in the notebook computer process.
The above only is a preferred implementation of the present utility model; should be pointed out that for those skilled in the art, under the prerequisite that does not break away from the utility model principle; can also make some improvements and modifications, these improvements and modifications also should be considered as protection domain of the present utility model.

Claims (10)

1. a notebook computer is characterized in that, described notebook computer comprises:
Display;
Main frame;
The rotation supporting construction, be connected between described main frame and the described display, described main frame is arranged at the first of described rotation supporting construction with respect to the turning axle of described display upset, described display overturns with respect to described main frame, described rotation supporting construction is rotated around described turning axle, and described display with respect to described main frame in opened condition after, the second portion that is used to support the described rotation supporting construction of described display and described main frame is positioned at described main frame and described display below.
2. notebook computer as claimed in claim 1, it is characterized in that, the surface, longitudinal section of described second portion is globoidal structure, described display is different open angles with respect to described main frame, and when being positioned on the stayed surface, the different segmental arcs of described globoidal structure contact with described stayed surface as supporting surface.
3. notebook computer as claimed in claim 2 is characterized in that, described rotation supporting construction and described display integrative-structure are provided with, and the surface of described second portion is connected to the backside surface of described display.
4. notebook computer as claimed in claim 3, it is characterized in that, described first comprises a planar structure, first edge of described planar structure is connected with the demonstration front surface of described display, second edge of described planar structure is connected with the surface of described second portion, described first edge is parallel with described second edge, and described turning axle is arranged at described second edge.
5. notebook computer as claimed in claim 4 is characterized in that, the width between described first edge and described second edge is identical with the height of described main frame.
6. as each described notebook computer of claim 1 to 5, it is characterized in that, the surface, two sides of described rotation supporting construction is positioned at same plane with the surface, left and right side of described display respectively, and described rotation supporting construction two ends along its length respectively are provided with a described turning axle, and each described turning axle is connected with an axle sleeve respectively.
7. notebook computer as claimed in claim 2, it is characterized in that, described rotation supporting construction also comprises the gearing mesh assembly, and described display is connected with described gearing mesh assembly, does to overturn and move up and down with respect to described main frame by described gearing mesh assembly.
8. notebook computer as claimed in claim 7 is characterized in that, described gearing mesh assembly comprises:
First gear is fixedly set on the described main frame;
Second gear, fixed cover are located at first stationary shaft, and described first stationary shaft is arranged on the described rotation supporting construction, and described second gear is connected with described first gearing mesh;
The 3rd gear, fixed cover are located on described first stationary shaft;
The 4th gear is sheathed on second stationary shaft rotationally, and described second stationary shaft is arranged on the described rotation supporting construction, and described the 4th gear is connected with described the 3rd gearing mesh;
Tooth bar is fixedly set on the described display, and described tooth bar is connected with described the 4th gearing mesh.
9. notebook computer as claimed in claim 8, it is characterized in that, first side of described main frame parallels setting with described rotation supporting construction, and the two ends of described first side are provided with described first gear respectively, and the coupling shaft of each described first gear and described first parallel sided.
10. notebook computer as claimed in claim 9, it is characterized in that, the length of described rotation supporting construction is corresponding identical with the length of described first side, and described rotation supporting construction both sides along its length are provided with a described gearing mesh assembly respectively, and each described gearing mesh assembly is corresponding respectively to be connected with described first gear matched.
CN2010201489351U 2010-03-31 2010-03-31 Laptop Expired - Lifetime CN201628889U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010201489351U CN201628889U (en) 2010-03-31 2010-03-31 Laptop

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Application Number Priority Date Filing Date Title
CN2010201489351U CN201628889U (en) 2010-03-31 2010-03-31 Laptop

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Publication Number Publication Date
CN201628889U true CN201628889U (en) 2010-11-10

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107740919A (en) * 2017-11-09 2018-02-27 合肥联宝信息技术有限公司 A kind of flexible foot pad and electronic equipment
CN109542169A (en) * 2018-11-26 2019-03-29 英业达科技有限公司 Laptop
US11360522B2 (en) 2013-12-11 2022-06-14 Hewlett-Packard Development Comany, L.P. Retractable structure for a computing device

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11360522B2 (en) 2013-12-11 2022-06-14 Hewlett-Packard Development Comany, L.P. Retractable structure for a computing device
CN107740919A (en) * 2017-11-09 2018-02-27 合肥联宝信息技术有限公司 A kind of flexible foot pad and electronic equipment
CN107740919B (en) * 2017-11-09 2024-05-17 合肥联宝信息技术有限公司 Telescopic foot pad and electronic equipment
CN109542169A (en) * 2018-11-26 2019-03-29 英业达科技有限公司 Laptop

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Granted publication date: 20101110