CN104597975B - A kind of electronic equipment - Google Patents

A kind of electronic equipment Download PDF

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Publication number
CN104597975B
CN104597975B CN201510010103.0A CN201510010103A CN104597975B CN 104597975 B CN104597975 B CN 104597975B CN 201510010103 A CN201510010103 A CN 201510010103A CN 104597975 B CN104597975 B CN 104597975B
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frame
electronic device
main body
angle
state
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CN104597975A (en
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杨庆志
耿运栋
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Lenovo Beijing Ltd
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Lenovo Beijing Ltd
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/18Packaging or power distribution
    • G06F1/181Enclosures

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  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Computer Hardware Design (AREA)
  • Power Engineering (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Casings For Electric Apparatus (AREA)
  • Telephone Set Structure (AREA)

Abstract

The invention discloses a kind of electronic equipment, including:Main body, the first connector and frame;Wherein, first connector includes first side sub- connecting member and second side sub- connecting member;First connector of the frame is connect using the first side sub- connecting member as rotary shaft with the first side of the main body;Second connector of the frame is connect using the second side sub- connecting member as rotary shaft with the second side of the main body;Wherein, the first side of the main body and the second side of the main body are two sides being mutually parallel;The frame can rotate first angle using first connector as rotary shaft around the main body, and the first angle is less than or equal to 180 degree.

Description

Electronic equipment
Technical Field
The present invention relates to a terminal device, and more particularly, to an electronic device.
Background
At present, electronic equipment, especially all-in-one machines, are widely used in daily life due to the fact that occupied areas are small and placement is convenient. Generally, the all-in-one machine is moved by carrying grooves in radiating holes of a rear shell of the all-in-one machine. However, lifting the integrated machine by using the groove is not stable enough, and fingers can not completely extend into the groove and can not exert force, so that the integrated machine is moved with more labor.
Disclosure of Invention
It is therefore an object of the present invention to provide an electronic device, which can solve at least the above problems in the prior art.
In order to achieve the purpose, the technical scheme of the invention is realized as follows:
an embodiment of the present invention provides an electronic device, including: the frame comprises a main body, a first connecting piece and a frame; wherein,
the first connecting piece comprises a first side sub-connecting piece and a second side sub-connecting piece;
the first joint of the frame is connected with the first side of the main body by taking the first side sub-connecting piece as a rotating shaft; the second joint of the frame is connected with the second side edge of the main body by taking the second side edge sub-connecting piece as a rotating shaft; wherein the first side edge of the main body and the second side edge of the main body are two side edges which are parallel to each other;
the frame can rotate around the main body by a first angle by taking the first connecting piece as a rotating shaft, and the first angle is less than or equal to 180 degrees.
In the above scheme, when the first angle meets a first preset condition, the electronic device is controlled to be in a first state; wherein the first preset condition represents that the first angle is 180 degrees;
when the first angle meets a second preset condition, controlling the electronic equipment to be in a second state; the second preset condition characterizes that the first angle is smaller than 90 degrees and larger than 0 degree.
In the above scheme, when the first angle is smaller than the first preset angle, the electronic device is in a first support mode in a second state;
and when the first angle is not smaller than the first preset angle, the electronic equipment is in a second supporting mode in a second state.
In the above solution, when the electronic device is in the second supporting mode in the second state, the first edge of the frame and the first edge of the main body both form a supporting point, and are supported on a supporting surface.
In the foregoing solution, when the electronic device is in the second supporting mode in the second state, the first side, the second side, and the third side of the frame are supported on the supporting surface together.
In the foregoing solution, when the electronic device is in the second state, the first connecting element provides a friction force so that a first angle that satisfies a second preset condition is maintained between the main body and the frame.
In the scheme, a first part is arranged on a first edge of the frame; when the electronic device is in the first state, the first part of the frame is used as a handle.
In the above scheme, the second side of the frame is composed of a second accommodating space and a second connecting rod capable of movably sliding in the second accommodating space; the third edge of the frame consists of a third accommodating space and a third connecting rod which can movably slide in the third accommodating space;
when the electronic device is in the first state, the second connecting rod and the third connecting rod in the second edge and the third edge of the frame slide into the second accommodating space and the third accommodating space respectively.
In the above scheme, the first side of the frame is connected with the first component through the second connecting piece;
when the electronic equipment is in a first state, the first part of the frame is used as a handle;
when the electronic device is in a first support mode in a second state, the first component rotates to a second angle towards the back of the main body through the second connecting piece, and the first component is used for supporting the main body.
In the above solution, the electronic device further includes: a detection unit for obtaining first detection information;
the processing unit is used for controlling the electronic equipment to be in a first interaction mode when the electronic equipment is determined to be in a first state according to the first detection information; and when the electronic equipment is determined to be in the second state according to the first detection information, controlling the electronic equipment to be in the second interaction mode.
According to the electronic equipment provided by the embodiment of the invention, the frame can be connected with the main body through the connecting piece, so that the frame rotates by taking the connecting piece as a rotating shaft, the frame can be conveniently rotated to be used as a handle, the portability of the electronic equipment is improved, and the use experience of a user is improved.
Drawings
FIG. 1 is a first schematic structural diagram of an electronic device according to the present invention;
FIG. 2 is a first schematic diagram of a first connecting element of the electronic device according to the present invention;
FIG. 3 is a second schematic diagram of a first connecting element of the electronic device according to the present invention;
FIG. 4 is a schematic diagram of a second or third side structure of a bezel of an electronic device according to the present invention;
FIG. 5 is a schematic view of an annular groove of a first connector of the electronic device according to the present invention;
FIG. 6 is a schematic structural diagram of an electronic device according to an embodiment of the invention;
FIG. 7 is a first view of an electronic device according to the present invention;
FIG. 8 is a diagram illustrating a second scenario in which the electronic device of the present invention is used;
FIG. 9 is a third view of a scenario in which the electronic device of the present invention is used;
FIG. 10 is a first schematic diagram of a frame structure of an electronic device according to the present invention;
FIG. 11 is a schematic diagram of a second frame structure of the electronic device according to the present invention;
FIG. 12 is a third schematic diagram of a frame structure of the electronic device according to the present invention;
FIG. 13 is a fourth schematic diagram of a frame structure of the electronic device according to the present invention;
FIG. 14 is a third schematic view of an electronic device according to the present invention;
FIG. 15 is a diagram illustrating a fourth exemplary usage scenario of the electronic device of the present invention;
FIG. 16 is a schematic diagram of an electronic device according to the present invention.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
The first embodiment,
An embodiment of the present invention provides an electronic device, as shown in fig. 1, the electronic device includes: a main body 11, a first connecting member 12 and a frame 13; wherein,
the first connecting element 12 comprises a first side sub-connecting element 121 and a second side sub-connecting element 122;
the first joint 131 of the frame 13 is connected to the first side 111 of the main body 11 by using the first side sub-connecting member 121 as a rotation axis; the second joint 132 of the frame 13 is connected to the second side 112 of the main body 11 by using the second side sub-connecting member 122 as a rotation axis; wherein, the first side 111 of the main body 11 and the second side 112 of the main body 11 are two sides parallel to each other;
the frame 13 can rotate around the main body by a first angle with the first connecting piece 12 as a rotating shaft, and the first angle is less than or equal to 180 degrees.
Here, the main body may include a frame of a unitary or flat plate; furthermore, the device also comprises a plurality of processing devices arranged in the frame of the integrated machine or the flat plate.
The first connecting piece can be two cylindrical fittings or one cylindrical fitting;
when the first connecting member is two cylindrical fittings, as shown in fig. 2, the two cylindrical fittings are a first side sub-connecting member 21 and a second side sub-connecting member 22, which are respectively disposed at the bottom of the main body, and a part of each of the two sub-connecting members is fixed in the bottom of the main body.
When the first connector is a cylindrical fitting penetrating from the bottom of the body, as shown in fig. 3, the two ends of the first connector exposed to the outside of the bottom of the body are a first side sub-connector 31 and a second side sub-connector 32, respectively.
The first joint and the second joint of the frame may be circular hollow respectively, as shown in fig. 4, which is one side of the frame, and if the side is provided with the first side sub-connecting member, the connecting member is connected to the frame by inserting the circular hollow 41 shown in the figure.
An annular groove may be formed on the first side sub-connector and the second side sub-connector, and fig. 5 is a cross-sectional view of the annular groove 51; the first joint and the second joint of the frame are connected with the connecting pieces through annular grooves corresponding to the first side sub-connecting pieces and the second side sub-connecting pieces. It will be appreciated that the thickness of the cylindrical cutouts in the first joint of the frame are approximately equal to the thickness of the annular groove of the first side sub-connecting member, and correspondingly, the thickness of the cylindrical cutouts in the second joint of the frame are approximately equal to the thickness of the annular groove of the second side sub-connecting member.
The implementation scenario provided by this embodiment can be as shown in fig. 6, wherein the frame can be flexibly rotated by 180 degrees, so that the frame can be directly used as a handle.
It is thus clear that, adopt above-mentioned scheme, can pass through the connecting piece with the main part is connected for the frame uses the connecting piece to rotate as the rotation axis, thereby convenient through using the frame rotation as the handle, promotes electronic equipment's portability, has promoted user's use and has experienced.
Example II,
An embodiment of the present invention provides an electronic device, as shown in fig. 1, the electronic device includes: a main body 11, a first connecting member 12 and a frame 13; wherein,
the first connecting element 12 comprises a first side sub-connecting element 121 and a second side sub-connecting element 122;
the first joint 131 of the frame 13 is connected to the first side 111 of the main body 11 by using the first side sub-connecting member 121 as a rotation axis; the second joint 132 of the frame 13 is connected to the second side 112 of the main body 11 by using the second side sub-connecting member 122 as a rotation axis; wherein, the first side 111 of the main body 11 and the second side 112 of the main body 11 are two sides parallel to each other;
the frame 13 can rotate around the main body by a first angle with the first connecting piece 12 as a rotating shaft, and the first angle is less than or equal to 180 degrees.
Preferably, when the first angle meets a first preset condition, the electronic device is controlled to be in a first state; wherein the first preset condition represents that the first angle is 180 degrees; as shown in fig. 6, when the frame is rotated to an angle of 180 degrees from a state of being close to and attached to the edge of the main body, the electronic device is in a first state, which may be a portable state in which the frame serves as a handle;
when the first angle meets a second preset condition, controlling the electronic equipment to be in a second state; the second preset condition represents that the first angle is smaller than 90 degrees and larger than 0 degree; as shown in fig. 7, when the bezel rotates from a state of close fitting with the edge of the main body to less than 90 degrees and greater than 0 degree, the bezel serves as a stand to enable the electronic device to be in a standing state.
Here, the main body may include a frame of a unitary or flat plate; furthermore, the device also comprises a plurality of processing devices arranged in the frame of the integrated machine or the flat plate.
The first connecting piece can be two cylindrical fittings or one cylindrical fitting;
when the first connecting member is two cylindrical fittings, as shown in fig. 2, the two cylindrical fittings are a first side sub-connecting member 21 and a second side sub-connecting member 22, which are respectively disposed at the bottom of the main body, and a part of each of the two sub-connecting members is fixed in the bottom of the main body.
When the first connector is a cylindrical fitting penetrating from the bottom of the body, as shown in fig. 3, the two ends of the first connector exposed to the outside of the bottom of the body are a first side sub-connector 31 and a second side sub-connector 32, respectively.
The first joint and the second joint of the frame may be circular hollow respectively, as shown in fig. 4, which is one side of the frame, and if the side is provided with the first side sub-connecting member, the connecting member is connected to the frame by inserting the circular hollow 41 shown in the figure.
An annular groove may be formed on the first side sub-connector and the second side sub-connector, and fig. 5 is a cross-sectional view of the annular groove 51; the first joint and the second joint of the frame are connected with the connecting pieces through annular grooves corresponding to the first side sub-connecting pieces and the second side sub-connecting pieces. It will be appreciated that the thickness of the cylindrical cutouts in the first joint of the frame are approximately equal to the thickness of the annular groove of the first side sub-connecting member, and correspondingly, the thickness of the cylindrical cutouts in the second joint of the frame are approximately equal to the thickness of the annular groove of the second side sub-connecting member.
The implementation scenario provided by this embodiment can be as shown in fig. 6, wherein the frame can be flexibly rotated by 180 degrees, so that the frame can be directly used as a handle.
Preferably, when the first angle is smaller than a first preset angle, the electronic device is in a first support mode in a second state;
the first preset angle may be 30 degrees or 45 degrees, and the first support manner may be a support manner close to lying down. For example, as shown in fig. 7, the first angle 72 is 25 degrees, that is, smaller than the first preset angle, and the electronic device is in a support mode close to lying down.
Further, as shown in fig. 7, when the electronic device is in the second supporting mode in the second state, the first side 711, the second side 712, and the third side 713 of the frame are supported on the supporting surface together.
The first angle in this embodiment is an included angle between the second edge 712 or the third edge 713 of the frame and the back surface of the main body; the main body is provided with a back surface and a front surface, wherein the back surface can be the surface without the display screen, and correspondingly, the front surface is the surface with the display screen.
When the first angle is not smaller than a first preset angle, the electronic equipment is in a second supporting mode in a second state; the first preset angle may be 45 degrees or 70 degrees, and the second support manner may be a support manner of approaching to stand; for example, as shown in fig. 8, the first angle 81 is 75 degrees, that is, not less than the first preset angle, and the electronic device is in a support mode close to standing.
Further, as shown in fig. 9, when the electronic device is in the second supporting mode in the second state, the first edge of the frame 91 and the first edge of the main body 92 both form a supporting point, and are supported on a supporting surface.
Therefore, the frame can be used as a support besides a handle, so that the portable electronic equipment can be conveniently carried, and the frame can be used as a support to be supported on a supporting surface along with the needs of a user, and the use experience of the user is further improved.
Preferably, as shown in fig. 10, the second side 1002 of the frame is composed of a second accommodating space 10021 and a second connecting rod 10022 capable of movably sliding in the second accommodating space; the third edge 1003 of the frame is composed of a third accommodating space 10031 and a third connecting rod 10032 capable of movably sliding in the third accommodating space; when the electronic device is in the first state, the second connecting rod 10022 and the third connecting rod 10032 of the second side 1002 and the third side 1003 of the frame slide into the second accommodating space 10021 and the third accommodating space 10031, respectively.
Further, the second connecting rod and the third connecting rod need not to be separated from the second accommodating space and the third accommodating space, and therefore, the second connecting rod and the third connecting rod need to have a fixing component, such as: fixing parts can be arranged at the ends of the two connecting rods, as shown in fig. 10, a fixing part 10024 can be arranged on the end 10023 of the second connecting rod, and a fixing part 10034 is arranged on the end 10033 of the third connecting rod, so that when a user pulls the two connecting rods of the frame in the direction shown by the arrow in the figure, the connecting rods can be prevented from being pulled out of the accommodating space.
The scene shown in fig. 11 is a scene in which the frame is pushed into the corresponding accommodating space along the arrow direction by the two connecting rods of the frame, so that the occupied space of the frame as a handle can be reduced.
It is thus clear that, adopt above-mentioned scheme, can pass through the connecting piece with the main part is connected for the frame uses the connecting piece to rotate as the rotation axis, thereby convenient through using the frame rotation as the handle, promotes electronic equipment's portability, has promoted user's use and has experienced.
Example III,
An embodiment of the present invention provides an electronic device, as shown in fig. 1, the electronic device includes: a main body 11, a first connecting member 12 and a frame 13; wherein,
the first connecting element 12 comprises a first side sub-connecting element 121 and a second side sub-connecting element 122;
the first joint 131 of the frame 13 is connected to the first side 111 of the main body 11 by using the first side sub-connecting member 121 as a rotation axis; the second joint 132 of the frame 13 is connected to the second side 112 of the main body 11 by using the second side sub-connecting member 122 as a rotation axis; wherein, the first side 111 of the main body 11 and the second side 112 of the main body 11 are two sides parallel to each other;
the frame 13 can rotate around the main body by a first angle with the first connecting piece 12 as a rotating shaft, and the first angle is less than or equal to 180 degrees.
Preferably, when the first angle meets a first preset condition, the electronic device is controlled to be in a first state; wherein the first preset condition represents that the first angle is 180 degrees; as shown in fig. 6, when the frame is rotated to an angle of 180 degrees from a state of being close to and attached to the edge of the main body, the electronic device is in a first state, which may be a portable state in which the frame serves as a handle;
when the first angle meets a second preset condition, controlling the electronic equipment to be in a second state; the second preset condition represents that the first angle is smaller than 90 degrees and larger than 0 degree; as shown in fig. 7, when the bezel rotates from a state of close fitting with the edge of the main body to less than 90 degrees and greater than 0 degree, the bezel serves as a stand to enable the electronic device to be in a standing state.
Here, the main body may include a frame of a unitary or flat plate; furthermore, the device also comprises a plurality of processing devices arranged in the frame of the integrated machine or the flat plate.
The first connecting piece can be two cylindrical fittings or one cylindrical fitting;
when the first connecting member is two cylindrical fittings, as shown in fig. 2, the two cylindrical fittings are a first side sub-connecting member 21 and a second side sub-connecting member 22, which are respectively disposed at the bottom of the main body, and a part of each of the two sub-connecting members is fixed in the bottom of the main body.
When the first connector is a cylindrical fitting penetrating from the bottom of the body, as shown in fig. 3, the two ends of the first connector exposed to the outside of the bottom of the body are a first side sub-connector 31 and a second side sub-connector 32, respectively.
The first joint and the second joint of the frame may be circular hollow respectively, as shown in fig. 4, which is one side of the frame, and if the side is provided with the first side sub-connecting member, the connecting member is connected to the frame by inserting the circular hollow 41 shown in the figure.
An annular groove may be formed on the first side sub-connector and the second side sub-connector, and fig. 5 is a cross-sectional view of the annular groove 51; the first joint and the second joint of the frame are connected with the connecting pieces through annular grooves corresponding to the first side sub-connecting pieces and the second side sub-connecting pieces. It will be appreciated that the thickness of the cylindrical cutouts in the first joint of the frame are approximately equal to the thickness of the annular groove of the first side sub-connecting member, and correspondingly, the thickness of the cylindrical cutouts in the second joint of the frame are approximately equal to the thickness of the annular groove of the second side sub-connecting member.
Preferably, when the first angle is smaller than a first preset angle, the electronic device is in a first support mode in a second state; the first preset angle may be 30 degrees or 45 degrees, and the first supporting manner may be a supporting manner close to lying, for example, as shown in fig. 7, if the first angle in the drawing is 25 degrees, that is, the first angle is smaller than the first preset angle, the electronic device is in the supporting manner close to lying.
When the first angle is not smaller than a first preset angle, the electronic equipment is in a second supporting mode in a second state; the first preset angle may be 45 degrees or 70 degrees, and the second support manner may be a support manner of approaching to stand; for example, as shown in fig. 8, the first angle in the drawing is 75 degrees, that is, not smaller than the first preset angle, the electronic device is in a support mode close to standing. Therefore, the frame can be used as a support besides a handle, so that the portable electronic equipment can be conveniently carried, and the frame can be used as a support to be supported on a supporting surface along with the needs of a user, and the use experience of the user is further improved.
When the electronic device is in the second state, the main body provides friction force through the first connecting piece, so that the first angle between the main body and the frame is maintained at an angle meeting a second preset condition.
It is thus clear that, adopt above-mentioned scheme, can pass through the connecting piece with the main part is connected for the frame uses the connecting piece to rotate as the rotation axis, thereby convenient through using the frame rotation as the handle, promotes electronic equipment's portability, has promoted user's use and has experienced.
Example four,
An embodiment of the present invention provides an electronic device, as shown in fig. 1, the electronic device includes: a main body 11, a first connecting member 12 and a frame 13; wherein,
the first connecting element 12 comprises a first side sub-connecting element 121 and a second side sub-connecting element 122;
the first joint 131 of the frame 13 is connected to the first side 111 of the main body 11 by using the first side sub-connecting member 121 as a rotation axis; the second joint 132 of the frame 13 is connected to the second side 112 of the main body 11 by using the second side sub-connecting member 122 as a rotation axis; wherein, the first side 111 of the main body 11 and the second side 112 of the main body 11 are two sides parallel to each other;
the frame 13 can rotate around the main body by a first angle with the first connecting piece 12 as a rotating shaft, and the first angle is less than or equal to 180 degrees.
Preferably, when the first angle meets a first preset condition, the electronic device is controlled to be in a first state; wherein the first preset condition represents that the first angle is 180 degrees; as shown in fig. 6, when the frame is rotated to an angle of 180 degrees from a state of being close to and attached to the edge of the main body, the electronic device is in a first state, which may be a portable state in which the frame serves as a handle;
when the first angle meets a second preset condition, controlling the electronic equipment to be in a second state; the second preset condition represents that the first angle is smaller than 90 degrees and larger than 0 degree; as shown in fig. 7, when the bezel rotates from a state of close fitting with the edge of the main body to less than 90 degrees and greater than 0 degree, the bezel serves as a stand to enable the electronic device to be in a standing state.
Here, the main body may include a frame of a unitary or flat plate; furthermore, the device also comprises a plurality of processing devices arranged in the frame of the integrated machine or the flat plate.
The first connecting piece can be two cylindrical fittings or one cylindrical fitting;
when the first connecting member is two cylindrical fittings, as shown in fig. 2, the two cylindrical fittings are a first side sub-connecting member 21 and a second side sub-connecting member 22, which are respectively disposed at the bottom of the main body, and a part of each of the two sub-connecting members is fixed in the bottom of the main body.
When the first connector is a cylindrical fitting penetrating from the bottom of the body, as shown in fig. 3, the two ends of the first connector exposed to the outside of the bottom of the body are a first side sub-connector 31 and a second side sub-connector 32, respectively.
The first joint and the second joint of the frame may be circular hollow respectively, as shown in fig. 4, which is one side of the frame, and if the side is provided with the first side sub-connecting member, the connecting member is connected to the frame by inserting the circular hollow 41 shown in the figure.
An annular groove may be formed on the first side sub-connector and the second side sub-connector, and fig. 5 is a cross-sectional view of the annular groove 51; the first joint and the second joint of the frame are connected with the connecting pieces through annular grooves corresponding to the first side sub-connecting pieces and the second side sub-connecting pieces. It will be appreciated that the thickness of the cylindrical cutouts in the first joint of the frame are approximately equal to the thickness of the annular groove of the first side sub-connecting member, and correspondingly, the thickness of the cylindrical cutouts in the second joint of the frame are approximately equal to the thickness of the annular groove of the second side sub-connecting member.
Preferably, as shown in fig. 12, a first side 1201 of the frame is provided with a first part 12011; when the electronic device is in the first state, the first section 12011 acts as a handle. In this case, the first member may be fixedly coupled to the first side 1201 of the bezel. Thus, by providing a special handle member, the user can lift the electronic device more conveniently.
As shown in fig. 12, the second side 1202 of the frame is composed of a second accommodating space 12021 and a second connecting rod 12022 capable of movably sliding in the second accommodating space; the third side 1203 of the frame is composed of a third accommodating space 12031 and a third connecting rod 12032 which can movably slide in the third accommodating space; when the electronic device is in the first state, the second connecting bar 12022 and the third connecting bar 12032 on the second side 1202 and the third side 1203 of the bezel slide into the second accommodating space 12021 and the third accommodating space 12031, respectively.
Further, the second connecting rod and the third connecting rod need not to be separated from the second accommodating space and the third accommodating space, and therefore, the second connecting rod and the third connecting rod need to have a fixing component, such as: fixing parts may be disposed at the ends of the two connecting rods, as shown in fig. 12, a fixing part 12024 may be disposed on the end 12023 of the second connecting rod, and a fixing part 12034 may be disposed on the end 12033 of the third connecting rod, so that when a user pulls the two connecting rods of the frame in a direction indicated by an arrow in the figure, the connecting rods are prevented from being pulled out of the accommodating space.
The scene shown in fig. 13 is a scene in which the frame is pushed into the corresponding accommodating space along the arrow direction by the two connecting rods of the frame, so that the occupied space of the frame as a handle can be reduced.
It is thus clear that, adopt above-mentioned scheme, can pass through the connecting piece with the main part is connected for the frame uses the connecting piece to rotate as the rotation axis, thereby convenient through using the frame rotation as the handle, promotes electronic equipment's portability, has promoted user's use and has experienced.
Example V,
An embodiment of the present invention provides an electronic device, as shown in fig. 1, the electronic device includes: a main body 11, a first connecting member 12 and a frame 13; wherein,
the first connecting element 12 comprises a first side sub-connecting element 121 and a second side sub-connecting element 122;
the first joint 131 of the frame 13 is connected to the first side 111 of the main body 11 by using the first side sub-connecting member 121 as a rotation axis; the second joint 132 of the frame 13 is connected to the second side 112 of the main body 11 by using the second side sub-connecting member 122 as a rotation axis; wherein, the first side 111 of the main body 11 and the second side 112 of the main body 11 are two sides parallel to each other;
the frame 13 can rotate around the main body by a first angle with the first connecting piece 12 as a rotating shaft, and the first angle is less than or equal to 180 degrees.
Preferably, when the first angle meets a first preset condition, the electronic device is controlled to be in a first state; wherein the first preset condition represents that the first angle is 180 degrees; as shown in fig. 6, when the frame is rotated to an angle of 180 degrees from a state of being close to and attached to the edge of the main body, the electronic device is in a first state, which may be a portable state in which the frame serves as a handle;
when the first angle meets a second preset condition, controlling the electronic equipment to be in a second state; the second preset condition represents that the first angle is smaller than 90 degrees and larger than 0 degree; as shown in fig. 7, when the bezel rotates from a state of close fitting with the edge of the main body to less than 90 degrees and greater than 0 degree, the bezel serves as a stand to enable the electronic device to be in a standing state.
Here, the main body may include a frame of a unitary or flat plate; furthermore, the device also comprises a plurality of processing devices arranged in the frame of the integrated machine or the flat plate.
The first connecting piece can be two cylindrical fittings or one cylindrical fitting;
when the first connecting member is two cylindrical fittings, as shown in fig. 2, the two cylindrical fittings are a first side sub-connecting member 21 and a second side sub-connecting member 22, which are respectively disposed at the bottom of the main body, and a part of each of the two sub-connecting members is fixed in the bottom of the main body.
When the first connector is a cylindrical fitting penetrating from the bottom of the body, as shown in fig. 3, the two ends of the first connector exposed to the outside of the bottom of the body are a first side sub-connector 31 and a second side sub-connector 32, respectively.
The first joint and the second joint of the frame may be circular hollow respectively, as shown in fig. 4, which is one side of the frame, and if the side is provided with the first side sub-connecting member, the connecting member is connected to the frame by inserting the circular hollow 41 shown in the figure.
An annular groove may be formed on the first side sub-connector and the second side sub-connector, and fig. 5 is a cross-sectional view of the annular groove 51; the first joint and the second joint of the frame are connected with the connecting pieces through annular grooves corresponding to the first side sub-connecting pieces and the second side sub-connecting pieces. It will be appreciated that the thickness of the cylindrical cutouts in the first joint of the frame are approximately equal to the thickness of the annular groove of the first side sub-connecting member, and correspondingly, the thickness of the cylindrical cutouts in the second joint of the frame are approximately equal to the thickness of the annular groove of the second side sub-connecting member.
Preferably, as shown in fig. 12, a first side of the frame is provided with a first part 12011; when the electronic device is in the first state, the first section 12011 acts as a handle.
As shown in fig. 14, the first edge 14011 of the rim is connected to the first member 1402 by a second connection member 1403;
when the electronic device is in the first state, the first section 1402 of the bezel acts as a handle;
when the electronic device is in the first supporting mode in the second state, as shown in fig. 15, the first member 1501 is rotated to a second angle toward the back of the main body 1503 by using the second connecting member 1502 as a rotating shaft, and the first member is used for supporting the main body. Wherein the second angle may be an angle enabling the first member to stably support the body. Therefore, the main body can keep a certain angle through the supporting force of the second part, and the user can be provided with a stable experience of using the electronic equipment.
It is thus clear that, adopt above-mentioned scheme, can pass through the connecting piece with the main part is connected for the frame uses the connecting piece to rotate as the rotation axis, thereby convenient through using the frame rotation as the handle, promotes electronic equipment's portability, has promoted user's use and has experienced.
Example six,
An embodiment of the present invention provides an electronic device, as shown in fig. 1, the electronic device includes: a main body 11, a first connecting member 12 and a frame 13; wherein,
the first connecting element 12 comprises a first side sub-connecting element 121 and a second side sub-connecting element 122;
the first joint 131 of the frame 13 is connected to the first side 111 of the main body 11 by using the first side sub-connecting member 121 as a rotation axis; the second joint 132 of the frame 13 is connected to the second side 112 of the main body 11 by using the second side sub-connecting member 122 as a rotation axis; wherein, the first side 111 of the main body 11 and the second side 112 of the main body 11 are two sides parallel to each other;
the frame 13 can rotate around the main body by a first angle by the first connecting piece 12 as a rotating shaft, and the first angle is less than or equal to 180 degrees.
Preferably, when the first angle meets a first preset condition, the electronic device is controlled to be in a first state; wherein the first preset condition represents that the first angle is 180 degrees; as shown in fig. 6, when the frame is rotated to an angle of 180 degrees from a state of being close to and attached to the edge of the main body, the electronic device is in a first state, which may be a portable state in which the frame serves as a handle;
when the first angle meets a second preset condition, controlling the electronic equipment to be in a second state; the second preset condition represents that the first angle is smaller than 90 degrees and larger than 0 degree; as shown in fig. 7, when the bezel rotates from a state of close fitting with the edge of the main body to less than 90 degrees and greater than 0 degree, the bezel serves as a stand to enable the electronic device to be in a standing state.
Here, the main body may include a frame of a unitary or flat plate; furthermore, the device also comprises a plurality of processing devices arranged in the frame of the integrated machine or the flat plate.
The first connecting piece can be two cylindrical fittings or one cylindrical fitting;
when the first connecting member is two cylindrical fittings, as shown in fig. 2, the two cylindrical fittings are a first side sub-connecting member 21 and a second side sub-connecting member 22, which are respectively disposed at the bottom of the main body, and a part of each of the two sub-connecting members is fixed in the bottom of the main body.
When the first connector is a cylindrical fitting penetrating from the bottom of the body, as shown in fig. 3, the two ends of the first connector exposed to the outside of the bottom of the body are a first side sub-connector 31 and a second side sub-connector 32, respectively.
The first joint and the second joint of the frame may be circular hollow respectively, as shown in fig. 4, which is one side of the frame, and if the side is provided with the first side sub-connecting member, the connecting member is connected to the frame by inserting the circular hollow 41 shown in the figure.
An annular groove may be formed on the first side sub-connector and the second side sub-connector, and fig. 5 is a cross-sectional view of the annular groove 51; the first joint and the second joint of the frame are connected with the connecting pieces through annular grooves corresponding to the first side sub-connecting pieces and the second side sub-connecting pieces. It will be appreciated that the thickness of the cylindrical cutouts in the first joint of the frame are approximately equal to the thickness of the annular groove of the first side sub-connecting member, and correspondingly, the thickness of the cylindrical cutouts in the second joint of the frame are approximately equal to the thickness of the annular groove of the second side sub-connecting member.
Preferably, as shown in fig. 12, the second side 1202 of the frame is composed of a second accommodating space 12021 and a second connecting rod 12022 capable of movably sliding in the second accommodating space; the third side 1203 of the frame is composed of a third accommodating space 12031 and a third connecting rod 12032 which can movably slide in the third accommodating space; when the electronic device is in the first state, the second connecting bar 12022 and the third connecting bar 12032 on the second side 1202 and the third side 1203 of the bezel slide into the second accommodating space 12021 and the third accommodating space 12031, respectively.
Further, the second connecting rod and the third connecting rod need not to be separated from the second accommodating space and the third accommodating space, and therefore, the second connecting rod and the third connecting rod need to have a fixing component, such as: fixing parts may be disposed at the ends of the two connecting rods, as shown in fig. 12, a fixing part 12024 may be disposed on the end 12023 of the second connecting rod, and a fixing part 12034 may be disposed on the end 12033 of the third connecting rod, so that when a user pulls the two connecting rods of the frame in a direction indicated by an arrow in the figure, the connecting rods are prevented from being pulled out of the accommodating space.
The scene shown in fig. 13 is a scene in which the frame is pushed into the corresponding accommodating space along the arrow direction by the two connecting rods of the frame, so that the occupied space of the frame as a handle can be reduced.
Preferably, this embodiment may also provide a connection state as shown in fig. 14, where the first side of the frame is connected to the first member by the second connecting member;
when the electronic equipment is in a first state, the first part of the frame is used as a handle;
when the electronic device is in a first support mode in a second state, the first component rotates to a second angle towards the back of the main body through the second connecting piece, and the first component is used for supporting the main body. Therefore, the main body can keep a certain angle through the supporting force of the second part, and the user can be provided with a stable experience of using the electronic equipment.
The second connecting pieces are arranged on the two annular grooves on the first edge of the frame. In this way, the second connecting member is connected to the first member through the cylindrical through-holes at both ends of the first member as a rotation shaft of the first member.
Alternatively, the second connecting member may be disposed at both ends of the first member, may be two rings, or may be two cylinders, and may be connected to the first edge of the frame through the second connecting member.
Further, as shown in fig. 16, the electronic device further includes: a detection unit 1601 configured to obtain first detection information; a processing unit 1602, configured to control the electronic device to be in a first interaction mode when it is determined that the electronic device is in a first state according to the first detection information; and when the electronic equipment is determined to be in the second state according to the first detection information, controlling the electronic equipment to be in the second interaction mode.
The detection unit may be a touch display screen, and correspondingly, the touch display screen is specifically configured to display a selection menu of an interaction mode for a user according to a selection of the user, take a selection result of the user as first detection information, and determine that the electronic device is in a first state according to the first detection information if the selection result of the user is in the first state, and control the electronic device to be in the first interaction mode; and when the electronic equipment is determined to be in the second state according to the first detection information, controlling the electronic equipment to be in a second interaction mode.
Alternatively, the detection unit can also be a contact sensor; the method comprises the steps that a first angle of frame rotation is detected by a contact sensor on a first connecting piece, when the first angle meets a first preset condition, the electronic equipment is determined to be in a first state, and the electronic equipment is controlled to be in a first interaction mode; and when the first angle meets a second preset condition, determining that the electronic equipment is in a second state, and controlling the electronic equipment to be in a second interaction mode.
The first interaction mode may be that the touch display screen is set to be a black screen, that is, when the electronic device is in the first state, the user usually does not use the electronic device for operation, and then the touch display screen is set to be the black screen state, so that power consumption of the electronic device is reduced;
the second interaction mode may be a mode for controlling the touch display screen to display an operation interface for the user, that is, when the electronic device is in the second state, the user must use the electronic device, and at this time, the operation interface is provided for the user, so that the use efficiency of the user is further improved.
It is thus clear that, adopt above-mentioned scheme, can pass through the connecting piece with the main part is connected for the frame uses the connecting piece to rotate as the rotation axis, thereby convenient through using the frame rotation as the handle, promotes electronic equipment's portability, has promoted user's use and has experienced.
In the several embodiments provided in the present application, it should be understood that the disclosed apparatus may be implemented in other ways. The above-described embodiments of the apparatus are merely illustrative, and in actual implementation, there may be other ways of dividing the apparatus, for example, some features may be omitted. In addition, the coupling, direct coupling or communication connection between the components shown or discussed may be through some interfaces, and the indirect coupling or communication connection between the devices or units may be electrical, mechanical or other forms.
The units described as separate parts may or may not be physically separate, and parts displayed as units may or may not be physical units; some or all of the units can be selected according to actual needs to achieve the purpose of the solution of the embodiment.
The above description is only for the specific embodiments of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art can easily conceive of the changes or substitutions within the technical scope of the present invention, and all the changes or substitutions should be covered within the scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the appended claims.

Claims (9)

1. An electronic device, characterized in that the electronic device comprises: the frame comprises a main body, a first connecting piece and a frame; wherein,
the first connecting piece comprises a first side sub-connecting piece and a second side sub-connecting piece;
the first joint of the frame is connected with the first side of the main body by taking the first side sub-connecting piece as a rotating shaft; the second joint of the frame is connected with the second side edge of the main body by taking the second side edge sub-connecting piece as a rotating shaft; wherein the first side edge of the main body and the second side edge of the main body are two side edges which are parallel to each other;
the frame can rotate around the main body by a first angle by taking the first connecting piece as a rotating shaft, and the first angle is less than or equal to 180 degrees;
the first edge of the frame is connected with the first part through a second connecting piece;
when the electronic equipment is in a first state, the first part of the frame is used as a handle;
when the electronic device is in a first support mode in a second state, the first component rotates to a second angle towards the back of the main body through the second connecting piece, and the first component is used for supporting the main body.
2. The electronic device of claim 1,
when the first angle meets a first preset condition, controlling the electronic equipment to be in a first state; wherein the first preset condition represents that the first angle is 180 degrees;
when the first angle meets a second preset condition, controlling the electronic equipment to be in a second state; the second preset condition characterizes that the first angle is smaller than 90 degrees and larger than 0 degree.
3. The electronic device of claim 2,
when the first angle is smaller than a first preset angle, the electronic equipment is in a first support mode in a second state;
and when the first angle is not smaller than the first preset angle, the electronic equipment is in a second supporting mode in a second state.
4. The electronic device of claim 3,
when the electronic device is in the second supporting mode in the second state, the first edge of the frame and the first edge of the main body both form a supporting point and are supported on a supporting surface.
5. The electronic device of claim 3,
when the electronic device is in a second supporting mode in a second state, the first edge, the second edge and the third edge of the frame are supported on a supporting surface together.
6. The electronic device of claim 2 or 5,
when the electronic equipment is in a second state, the first connecting piece provides friction force so that a first angle meeting a second preset condition is maintained between the main body and the frame.
7. The electronic device of claim 2,
a first part is arranged on the first edge of the frame;
when the electronic device is in the first state, the first part of the frame is used as a handle.
8. The electronic device of claim 2 or 7,
the second side of the frame consists of a second accommodating space and a second connecting rod which can movably slide in the second accommodating space; the third edge of the frame consists of a third accommodating space and a third connecting rod which can movably slide in the third accommodating space;
when the electronic device is in the first state, the second connecting rod and the third connecting rod in the second edge and the third edge of the frame slide into the second accommodating space and the third accommodating space respectively.
9. The electronic device of claim 1, 2, 3, 4, 5, or 7, further comprising: a detection unit for obtaining first detection information;
the processing unit is used for controlling the electronic equipment to be in a first interaction mode when the electronic equipment is determined to be in a first state according to the first detection information; and when the electronic equipment is determined to be in the second state according to the first detection information, controlling the electronic equipment to be in a second interaction mode.
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