CN109149178A - Kato component, electronic equipment and Kato assembly control method - Google Patents
Kato component, electronic equipment and Kato assembly control method Download PDFInfo
- Publication number
- CN109149178A CN109149178A CN201810905204.8A CN201810905204A CN109149178A CN 109149178 A CN109149178 A CN 109149178A CN 201810905204 A CN201810905204 A CN 201810905204A CN 109149178 A CN109149178 A CN 109149178A
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- CN
- China
- Prior art keywords
- kato
- electronic equipment
- component
- ejection
- shell
- Prior art date
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Classifications
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R12/00—Structural associations of a plurality of mutually-insulated electrical connecting elements, specially adapted for printed circuits, e.g. printed circuit boards [PCB], flat or ribbon cables, or like generally planar structures, e.g. terminal strips, terminal blocks; Coupling devices specially adapted for printed circuits, flat or ribbon cables, or like generally planar structures; Terminals specially adapted for contact with, or insertion into, printed circuits, flat or ribbon cables, or like generally planar structures
- H01R12/70—Coupling devices
- H01R12/71—Coupling devices for rigid printing circuits or like structures
- H01R12/712—Coupling devices for rigid printing circuits or like structures co-operating with the surface of the printed circuit or with a coupling device exclusively provided on the surface of the printed circuit
- H01R12/716—Coupling device provided on the PCB
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/62—Means for facilitating engagement or disengagement of coupling parts or for holding them in engagement
- H01R13/629—Additional means for facilitating engagement or disengagement of coupling parts, e.g. aligning or guiding means, levers, gas pressure electrical locking indicators, manufacturing tolerances
- H01R13/631—Additional means for facilitating engagement or disengagement of coupling parts, e.g. aligning or guiding means, levers, gas pressure electrical locking indicators, manufacturing tolerances for engagement only
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/62—Means for facilitating engagement or disengagement of coupling parts or for holding them in engagement
- H01R13/629—Additional means for facilitating engagement or disengagement of coupling parts, e.g. aligning or guiding means, levers, gas pressure electrical locking indicators, manufacturing tolerances
- H01R13/633—Additional means for facilitating engagement or disengagement of coupling parts, e.g. aligning or guiding means, levers, gas pressure electrical locking indicators, manufacturing tolerances for disengagement only
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B1/00—Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
- H04B1/38—Transceivers, i.e. devices in which transmitter and receiver form a structural unit and in which at least one part is used for functions of transmitting and receiving
- H04B1/3816—Mechanical arrangements for accommodating identification devices, e.g. cards or chips; with connectors for programming identification devices
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B1/00—Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
- H04B1/38—Transceivers, i.e. devices in which transmitter and receiver form a structural unit and in which at least one part is used for functions of transmitting and receiving
- H04B1/3816—Mechanical arrangements for accommodating identification devices, e.g. cards or chips; with connectors for programming identification devices
- H04B1/3818—Arrangements for facilitating insertion or removal of identification devices
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/02—Constructional features of telephone sets
- H04M1/0202—Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
- H04M1/026—Details of the structure or mounting of specific components
Abstract
The application provides a kind of Kato component, electronic equipment and Kato assembly control method.The Kato component is applied to electronic equipment, the electronic equipment includes shell, the shell offers ejection hole, the Kato component includes Kato and the first ejecting mechanism, first ejecting mechanism includes first motor and the first ejection piece, first ejection piece is fixedly connected between the first output shaft of the first motor and the Kato, first output shaft is moved in a straight line along first direction to drive first ejection piece to move in a straight line in a second direction, the Kato to be stretched out to or be retracted the ejection hole, wherein, first direction is identical as the second direction or first direction and the second direction between the angle that is formed be less than predetermined angle.The technical solution of the application helps to improve the convenience of Kato component operation.
Description
Technical field
This application involves technical field of electronic products more particularly to a kind of Kato components, electronic equipment and Kato component control
Method processed.
Background technique
With advances in technology and the diversity of people's demand, electronic equipment type currently on the market is more and more, example
Such as mobile phone, palm PC.These electronic equipments need to carry smart card, such as SIM (Subscriber
Identification Module client identification module) card, storage card etc..These smart cards are generally arranged at electronic equipment
On Kato component, user can realize the installation and removal of smart card by operation Kato component during use.Currently,
The Kato component of electronic equipment mainly includes Kato, deck, the first push rod and the second push rod, and Kato blocks for accommodating smart card
Seat is installed on the inside of the shell of electronic equipment, and Kato can be slidably arranged on deck.Ejection is opened up on Kato or shell
Hole, the first push rod are slidably mounted on the inside of shell, and the second push rod is rotatablely installed in the inside of shell.When needing card taking, user
Holding thimble protrudes into thimble in ejection hole, and thimble applies active force to the first push rod, so that the first push rod pushes the second push rod
One end, the second push rod can rotate, and the other end of the second push rod can apply active force to Kato at this time, so that card
Support pop-up.It follows that, in order to realize the ejection operation of Kato, need additionally to configure thimble when using traditional Kato component,
The thimble would generally be separated with electronic equipment, causes to implement to be not easily found thimble when Kato ejection operation, causes Kato
Ejection operation is inconvenient.
Summary of the invention
The application provides a kind of Kato component, is applied to electronic equipment, the electronic equipment includes shell, and the shell is opened
Equipped with ejection hole, the Kato component includes Kato and the first ejecting mechanism, first ejecting mechanism include first motor and
First ejection piece, first ejection piece are fixedly connected between the first output shaft of the first motor and the Kato, institute
The first output shaft is stated to be moved in a straight line along first direction to drive first ejection piece to move in a straight line in a second direction, it will
The Kato stretches out or retracts the ejection hole, wherein first direction is identical with the second direction or first direction and
The angle formed between the second direction is less than predetermined angle.
Kato component provided by the present application is applied to electronic equipment, and the electronic equipment includes shell, and the shell opens up
There is ejection hole, the Kato component includes Kato and the first ejecting mechanism, and first ejecting mechanism includes first motor and
One ejection piece, first ejection piece are fixedly connected between the first output shaft of the first motor and the Kato, work as institute
When stating the first output shaft and moving in a straight line along first direction, first ejection piece can be driven to do straight line fortune in a second direction
It is dynamic, the Kato is stretched out to or is retracted the ejection hole, wherein first direction is identical as the second direction or first
The angle formed between direction and the second direction is less than predetermined angle.Mode of the application by using motor control, phase
Compared with traditional by the way of thimble, without having to worry about the carrying problem of thimble, the operational convenience of Kato component is improved.
The application also provides a kind of electronic equipment, and the electronic equipment includes shell and Kato component as described above.
The application also provides a kind of Kato assembly control method, and the Kato component is applied to electronic equipment, the electronics
Equipment includes shell, and the shell offers ejection hole, and the Kato component includes Kato and the first ejecting mechanism, and described first
Ejecting mechanism includes first motor and the first ejection piece, and it is first defeated to be fixedly connected on the first motor for first ejection piece
Between shaft and the Kato, the Kato assembly control method includes:
When the first motor provides First Driving Force to first output shaft, first output shaft does rotation fortune
It moves to drive first ejection piece to move along a straight line, the Kato is stretched out into the ejection hole;
When the first motor provides the second driving force to first output shaft, first output shaft does rotation fortune
It moves to drive first ejection piece to move along a straight line, the Kato is retracted into the ejection hole.
Detailed description of the invention
It, below will be to use required in embodiment in order to illustrate more clearly of the technical solution of the application embodiment
Attached drawing be briefly described, it should be apparent that, the accompanying drawings in the following description is some embodiments of the application, for this field
For those of ordinary skill, without creative efforts, it is also possible to obtain other drawings based on these drawings.
Fig. 1 (a) is the structural schematic diagram for the electronic equipment that the embodiment of the present application one provides.
Fig. 1 (b) is the structural schematic diagram for the Kato component that the embodiment of the present application one provides.
Fig. 2 is the structural schematic diagram for the Kato component that the embodiment of the present application two provides.
Fig. 3 is the structural schematic diagram for the Kato component that the embodiment of the present application three provides.
Fig. 4 is the structural schematic diagram for the Kato component that the embodiment of the present application four provides.
Fig. 5 is the structural schematic diagram of the first electronic equipment provided by the embodiments of the present application.
Fig. 6 is the structural schematic diagram of second of electronic equipment provided by the embodiments of the present application.
Fig. 7 is the structural schematic diagram of the third electronic equipment provided by the embodiments of the present application.
Fig. 8 is the flow chart of the first Kato assembly control method provided by the embodiments of the present application.
Fig. 9 is the flow chart of second of Kato assembly control method provided by the embodiments of the present application.
Specific embodiment
Below in conjunction with the attached drawing in the application embodiment, the technical solution in the application embodiment is carried out clear
Chu is fully described by, it is clear that described embodiment is only a part of embodiment of the application, rather than whole realities
Apply mode.Based on the embodiment in the application, those of ordinary skill in the art institute under that premise of not paying creative labor
The every other embodiment obtained, shall fall in the protection scope of this application.
Show also referring to the structure that Fig. 1 (a) and Fig. 1 (b), Fig. 1 (a) are the electronic equipments that the embodiment of the present application one provides
It is intended to.Fig. 1 (b) is the structural schematic diagram for the Kato component that the embodiment of the present application one provides.In the present embodiment, the Kato group
Part 10 is applied to electronic equipment 1, and the electronic equipment 1 includes shell 20, and the shell 20 offers ejection hole 20a, the card
Holding in the palm component 10 includes Kato 100 and the first ejecting mechanism 200, and first ejecting mechanism 200 includes first motor 210 and first
Ejection piece 230, first ejection piece 230 are fixedly connected on the first output shaft 220 and the Kato of the first motor 210
Between 100, first output shaft 220 is moved in a straight line along first direction to drive first ejection piece 230 along second party
To moving in a straight line, the Kato 100 is stretched out or is retracted the ejection hole 20a, wherein first direction and described second
Direction is identical or first direction and the second direction between the angle that is formed be less than predetermined angle.
Optionally, the electronic equipment 1 can be any equipment for having communication and store function.Such as: tablet computer,
Mobile phone, electronic reader, remote controler, personal computer (Personal Computer, PC), laptop, mobile unit,
Web TV, wearable device etc. have the smart machine of network function.
Wherein, shell 20 can be the center of the electronic equipment 1.Kato 100 is for installing client identification module card
(Subscriber Identification Module, SIM), storage card etc..First motor 210 can be linear motor, when
When first output shaft 220 of first motor 210 makes rotating motion, the first ejection piece 230 being sheathed on the first output shaft 220 is done
Linear motion, since the first ejection piece 230 is fixedly connected with Kato 100, the first ejection piece 230 drives Kato 100 to do directly
Line movement, Kato 100 is stretched out and either retracts the ejection hole 20a opened up on the shell 20.
Optionally, in a better embodiment, the first direction is identical as the second direction.I.e. described first is defeated
The direction of motion of shaft 220 and the direction of motion of first ejection piece 230 are consistent, to pass through the first output shaft of control
220 direction of motion, so that it may the direction of motion of the first ejection piece of accuracy controlling 230, and then drive the Kato 100 along pre-
Set direction movement either retracts the ejection hole 20a to stretch out, at this point, helping to reduce the Kato 100 and the electronics
Frictional force between the shell 20 of equipment 1, and then reduce the degree of wear of the Kato 100, facilitate to 100 shape of Kato
At protection.It should be understood that in view of mismachining tolerance and the permitted range of size of ejection hole 20a, when the first party
When to the angle formed between the second direction within a preset range, also think Kato 100 can smoothly stretch out or
It is to retract the ejection hole 20a, it is believed that the first direction and the second direction to the extent permitted by the error, keep one
It causes.For example, predetermined angle range is [- 5.,5.], when the difference of the angle between the first direction and the second direction
Value is located at [- 5.,5.] between when, it is believed that the first direction and the second direction keep one to the extent permitted by the error
It causes, at this point, helping to reduce the frictional force between the Kato 100 and the shell 20 of the electronic equipment 1, and then described in reduction
The degree of wear of Kato 100 helps to form the Kato 100 and protect.
Optionally, in one embodiment, the Kato 100 includes the first end 110 and second end 120 being oppositely arranged
And all side walls 130 between the first end 110 and the second end 120, the first end 110 is extended or contracts
The ejection hole 20a is returned, first ejecting mechanism 200 is located at the side of neighbouring all side walls 130, first ejection piece
230 are connected between first output shaft 220 and all side walls 130.When the Kato 100 is located at neighbouring all side walls
When 130 side, helps to reduce occupied space of the Kato 100 on the longitudinal direction of electronic equipment 1, electricity can be made
Arrangement more crypto set between the electronic component of sub- equipment 1, facilitates the light-weight design of electronic equipment 1.
Further, first ejection piece 230 includes several first connecting rods 231 in array distribution, and described first
Connecting rod 231 is connected between first output shaft 220 and the Kato 100.Optionally, between several first connecting rods 231
Distance be consistent, help to ensure that the Kato 100 is more uniformly stressed, can make more smart to the Kato 100
True regulation, and then reduce the frictional force between the Kato 100 and the shell 20 of electronic equipment 1, help to reduce the card
The degree of wear of support 100 extends the service life of Kato 100.
Further, first ejection piece 230 is telescopic rod, to adjust the Kato 100 compared to the top
Portal the angle of 20a, so that ejection hole 20a described in 100 face of the Kato is stretched out and either retracted.Due to the first ejection piece
230 be telescopic bar, so as to Kato 100 and eject hole 20a according to the face degree of Kato 100 and ejection hole 20a
Relative position carry out adaptability adjusting so that Kato 100 can with face eject hole 20a stretch out either retract, and then reduce
Frictional force between Kato 100 and the shell 20 of electronic equipment 1, facilitate the degree of wear for reducing the Kato 100, extends
The service life of Kato 100.
Optionally, in another embodiment, first ejection piece 230 is elastic component, can produce plastic deformation.By
There is certain elasticity in first ejection piece 230, during Kato 100 stretches out and either retracts ejection hole 20a, such as
There is the case where Kato 100 is stuck in fruit, at this point, the first ejection piece 230 can play the effect of buffering, avoids to Kato component
10 structure damages.
The Kato component 10 that the technical program provides, is applied to electronic equipment 1, and the electronic equipment 1 includes shell 20, institute
It states shell 20 and offers ejection hole 20a, the Kato component 10 includes Kato 100 and the first ejecting mechanism 200, first top
Mechanism 200 includes first motor 210 and the first ejection piece 230 out, and first ejection piece 230 is fixedly connected on first electricity
Between the first output shaft 220 and the Kato 100 of machine 210, when first output shaft 220 is moved in a straight line along first direction
When, first ejection piece 230 can be driven to move in a straight line in a second direction, the Kato 100 is stretched out or retracted
The ejection hole 20a, wherein first direction is identical as the second direction or first direction and the second direction between shape
At angle be less than predetermined angle.The technical program by using motor control mode, compared to traditional using thimble
Mode improves the operational convenience of Kato component 10 without having to worry about the carrying problem of thimble.
It is the structure for the Kato component that the embodiment of the present application two provides also referring to Fig. 1 (a), Fig. 1 (b) and Fig. 2, Fig. 2
Schematic diagram.The structure of embodiment two and the structure of embodiment one are essentially identical, the difference is that, it is in the present embodiment, described
Kato 100 includes the first end 110 and second end 120 being oppositely arranged, and the first end 110 is extended or retracts the ejection
Hole 20a, first ejecting mechanism 200 are located at the second end 120, the center line and the card of first output shaft 220
One center line of support 100 is consistent.
Optionally, second connecting rods 232 of first ejection piece 230 including two bendings being oppositely arranged, described second
Connecting rod 232 is fixed on the outer wall of first output shaft 220, and the second connecting rod 232 is fixedly connected on the Kato 100
Second end 120.When first output shaft 220 towards the direction of the ejection hole 20a along moving, the second company can be driven
The direction of bar 232 towards the ejection hole 20a move, and then the direction for driving Kato 100 towards the ejection hole 20a moves,
The ejection hole 20a is either retracted to stretch out the Kato 100.
Further, the second connecting rod 232 is symmetrical about first output shaft 220, so that the first output shaft
220 power for being transferred to second connecting rod 232 keep in the same size, so that the power that second connecting rod 232 is transferred to Kato 100 is kept
It is in the same size, when 100 uniform force of Kato, the more accurate regulation of Kato 100 may be implemented, help to reduce Kato
Frictional force between 100 and the shell 20 of electronic equipment 1 reduces the degree of wear of Kato 100, helps to extend Kato 100
Service life.
Further, when the center line of the first output shaft 220 and a center line of the Kato 100 are consistent
When, it is believed that the power of the first output shaft 220 can be on totally tansitive to Kato 100, and will not generate torque.Assuming that the first output shaft
The center line of 220 center line and the Kato 100 not point-blank, then, the power of the first output shaft 220 is transferred to card
In support 100, eccentric moment will be generated, at this point, Kato 100 will generate eccentric motion due to the effect of torque, is unfavorable for pair
The accurate control of Kato 100.
It is the structure for the Kato component that the embodiment of the present application three provides also referring to Fig. 1 (a), Fig. 1 (b) and Fig. 3, Fig. 3
Schematic diagram.The structure of embodiment three and the structure of embodiment one are essentially identical, the difference is that, it is in the present embodiment, described
Kato component 10 further includes deck 300, and the deck 300 forms container 300a, and the container 300a is described for accommodating
Kato 100, the deck 300 have opening 300b, ejection hole 20a described in the opening 300b face.
Optionally, in one embodiment, the Kato 100 and the deck 300 are gap-matched, the Kato
Lubrication part 310 is provided between 100 and the deck 300, the lubrication part 310 is for reducing the Kato 100 and the card
Frictional force between seat 300.
Wherein, the lubrication part 310 can be lubricating oil, to reduce rubbing between the Kato 100 and the deck 300
Power is wiped, helps to reduce the abrasion between the Kato 100 and the deck 300, the Kato 100 is formed and is protected, is helped
In the service life for extending the Kato 100.
It is the structure for the Kato component that the embodiment of the present application four provides also referring to Fig. 1 (a), Fig. 1 (b) and Fig. 4, Fig. 4
Schematic diagram.The structure of example IV and the structure of embodiment three are essentially identical, the difference is that, it is in the present embodiment, described
It is provided with sliding rail 320 between deck 300 and the Kato 100, the Kato 100 can be by the sliding rail 320 compared to described
Deck 300 moves, and either retracts the ejection hole 20a to stretch out.
Optionally, in a better embodiment, it is provided with sliding rail 320 between the Kato 100 and the deck 300,
The Kato 100 is slided by the sliding rail 320 compared to the deck 300, and the Kato 100 is stretched out and is either retracted
The ejection hole 20a.And finite place piece is set on the sliding rail 320, the locating part is used to the Kato 100 being fixed on institute
On the predeterminated position for stating deck 300, the Kato 100 is avoided to generate uncontrollable displacement.
Further, can according to Kato 100 need stretch out apart from size, Kato 100 is limited using locating part
Position.In one embodiment, several grooves are provided on the lateral wall of the Kato 100, the locating part is protrusion knot
Structure, the bulge-structure and the groove cooperate, can block the Kato 100, by Kato 100 be fixed on compared to
Eject the predeterminated position of hole 20a.
It is the first electronic equipment provided by the embodiments of the present application also referring to Fig. 1 (a), Fig. 1 (b) and Fig. 5, Fig. 5
Structural schematic diagram.The electronic equipment 1 includes shell 20 and the Kato component 10 that any embodiment as above provides.
Optionally, the electronic equipment 1 can be any equipment for having communication and store function.Such as: tablet computer,
Mobile phone, electronic reader, remote controler, personal computer (Personal Computer, PC), laptop, mobile unit,
Web TV, wearable device etc. have the smart machine of network function.
Wherein, the shell 20 is the center of the electronic equipment 1.The material of the shell 20 can for plastic cement, glass,
Ceramics, metal either timber.
Wherein, the Kato component 10 is applied to electronic equipment 1, and the electronic equipment 1 includes shell 20, the shell 20
Ejection hole 20a is offered, the Kato component 10 includes Kato 100 and the first ejecting mechanism 200, first ejecting mechanism
200 include first motor 210 and the first ejection piece 230, and first ejection piece 230 is fixedly connected on the first motor 210
The first output shaft 220 and the Kato 100 between, first output shaft 220 along first direction move in a straight line with drive
First ejection piece 230 moves in a straight line in a second direction, stretches out or retract the ejection hole for the Kato 100
20a, wherein first direction is identical as the second direction or first direction and the second direction between the angle that is formed it is small
In predetermined angle.
Optionally, in one embodiment, the shell 20 forms accommodating chamber 20b, and the accommodating chamber 20b is for accommodating
The Kato component 10, the shell 20 offer ejection hole 20a, the Kato 100 can by the ejection hole 20a stretching or
Person is to retract the accommodating chamber 20b.
Further, the electronic equipment 1 further includes sealing ring 400, and the sealing ring 400 is located at the ejection hole 20a
It is interior, and seal protection is formed to the Kato component 10.
Wherein, the sealing ring 400 can be rubber ring, and the sealing ring 400 has elasticity.The sealing ring 400 with
The shape of the ejection hole 20a is adapted, and is located on the 20a inner wall of the ejection hole, when the Kato 100 is contained in the top
Portal 20a when, the sealing ring 400 is bonded the Kato 100 and is arranged, to form seal protection to the Kato component 10.
The electronic equipment 1 that the technical program provides includes Kato component 10, and the electronic equipment 1 includes shell 20, described
Shell 20 offers ejection hole 20a, and the Kato component 10 includes Kato 100 and the first ejecting mechanism 200, first ejection
Mechanism 200 includes first motor 210 and the first ejection piece 230, and first ejection piece 230 is fixedly connected on the first motor
Between 210 the first output shaft 220 and the Kato 100, when first output shaft 220 is moved in a straight line along first direction
When, first ejection piece 230 can be driven to move in a straight line in a second direction, the Kato 100 is stretched out or retracted
The ejection hole 20a, wherein first direction is identical as the second direction or first direction and the second direction between shape
At angle be less than predetermined angle.The technical program by using motor control mode, compared to traditional using thimble
Mode improves the operational convenience of Kato component 10 without having to worry about the carrying problem of thimble.
It is second of electronic equipment provided by the embodiments of the present application also referring to Fig. 1 (a), Fig. 1 (b) and Fig. 6, Fig. 6
Structural schematic diagram.The structural schematic diagram of second of electronic equipment and the structural schematic diagram of the first electronic equipment are essentially identical, no
It is with place, the electronic equipment 1 further includes gravity sensor 500 and controller 600, when the gravity sensor 500 is examined
When measuring the Kato component 10 and being in state of weightlessness, the gravity sensor 500 issues the first signal, the controller 600
First signal is received, and the Kato component 10 is controlled according to first signal and retracts the accommodating chamber 20b.
Wherein, gravity sensor 500 is that cantilevered shifter is made using elastic sensing element, elastic sensitive first with using
Energy-stored spring made of part drives electric contact, completes the conversion from Gravity changer to electric signal, is widely used in middle and high end intelligence
In energy mobile phone peace plate computer, gravity sensor 500 can be passed through and measure the acceleration due to caused by gravity.
Wherein, controller 600 or central processing unit (Central Processing Unit, CPU), are one piece
Ultra-large integrated circuit is the arithmetic core (Core) and control core (Control Unit) of an electronic equipment.It
Function be mainly execute electronic equipment in computer instruction and the data in processing software.
When gravity sensor 500 detects that the acceleration of Kato 100 is acceleration of gravity, it is believed that Kato component at this time
10 in weightless state, at this point, gravity sensor 500 issues the first signal, the controller 600 receives the first signal,
And the Kato component 10 is controlled according to the first signal and retracts the accommodating chamber 20b, to realize to the Kato component 10
Dropproof protection avoids Kato component 10 from damaging due to falling.
Wherein, " weightlessness " refers to that object has quality lesser without showing weight or weight in gravitational field when free movement
A kind of state, also known as zero-g.Weightlessness refers to zero-g and microgravity environment sometimes.Specifically, when acceleration straight down
When be state of weightlessness.
It should be understood that in other embodiments, the electronic equipment 1 can also include other kinds of sensor,
When the sensor detects that the Kato component 10 has a unexpected acceleration, that is, send distress signal, the control
Device 600 processed receives the danger signal, and controls the Kato component 10 according to the danger signal and retract the accommodating chamber
20b avoids Kato component 10 since sudden surge damages.
It is the third electronic equipment provided by the embodiments of the present application also referring to Fig. 1 (a), Fig. 1 (b) and Fig. 7, Fig. 7
Structural schematic diagram.The structural schematic diagram of the third electronic equipment and the structural schematic diagram of the first electronic equipment are essentially identical, no
It is with place, the electronic equipment 1 further includes gear shifting mechanism 700, and the gear shifting mechanism 700 is used for the first motor
210 carry out gear adjusting, when the gear shifting mechanism 700, which adjusts the first motor 210, is in the first gear, the Kato
100 stretch out first distance compared to the shell 20;Second is in when the gear shifting mechanism 700 adjusts the first motor 210
When gear, the Kato 100 compared to the shell 20 stretch out second distance, wherein the first distance with described second away from
From differ.
Optionally, the gear shifting mechanism 700 can be realized by controlling the opening time of the first motor 210, be passed through
The duration of the first motor 210 is opened in control, to realize the adjusting for the distance for stretching out the shell 20 to the Kato 100.
For example, when the gear shifting mechanism 700 control 210 opening time of first motor is 0.3s, the Kato 100 can be compared to
The shell 20 stretches out 15cm, at this point, the first motor 210 is in the first gear, when the Kato 100 is outer compared to described
When shell 20 stretches out 15cm, the SIM card installed in the Kato 100 can be replaced;When the gear shifting mechanism 700 control the
When 210 opening time of one motor is 0.6s, the Kato 100 can stretch out 30cm compared to the shell 20, at this point, described first
Motor 210 is in the second gear, can be to the Kato 100 when the Kato 100 stretches out 30cm compared to the shell 20
The SIM card and RAM card of interior installation are replaced.
It should be understood that in other embodiments, the implementation of the gear shifting mechanism 700 is not limited solely to pass through
The opening time for adjusting first motor 210 realizes, can also by the speed of service of first motor 210 to preset duration into
Row regulation.The application is not construed as limiting the specific implementation form of gear shifting mechanism 700, any gear shifting mechanism 700 of can be realized
The form of function all this application claims in the range of.
It is the first Kato component control provided by the embodiments of the present application also referring to Fig. 1 (a), Fig. 1 (b) and Fig. 8, Fig. 8
The flow chart of method processed.In the present embodiment, the Kato component 10 is applied to electronic equipment 1, and the electronic equipment 1 includes outer
Shell 20, the shell 20 offer ejection hole 20a, and the Kato component 10 includes Kato 100 and the first ejecting mechanism 200, institute
Stating the first ejecting mechanism 200 includes first motor 210 and the first ejection piece 230, and first ejection piece 230 is fixedly connected on institute
It states between the first output shaft 220 of first motor 210 and the Kato 100, the Kato assembly control method includes but unlimited
In step S100 and S200, about being described in detail as follows for step S100 and S200.
S100: when the first motor 210 provides First Driving Force to first output shaft 220, described first is defeated
Shaft 220 makes rotating motion to drive first ejection piece 230 to move along a straight line, and the Kato 100 is stretched out the top
Portal 20a.
S200: when the first motor 210 provides the second driving force to first output shaft 220, described first is defeated
Shaft 220 makes rotating motion to drive first ejection piece 230 to move along a straight line, and the Kato 100 is retracted the top
Portal 20a.
Optionally, in a better embodiment, the size of the First Driving Force F1 and the second driving force F2 are permanent
It is fixed constant, and equal in magnitude, the First Driving Force F1 of the size of the First Driving Force F1 and the second driving force F2
Direction described in the second driving force F2 it is contrary.
Optionally, in another embodiment, nonlinear change is presented in the First Driving Force F1, and first increases and subtract afterwards
It is small, first increase First Driving Force F1, the speed that the Kato 100 stretches out the ejection hole 20a can be improved, shorten the Kato
100 stretch out the time of the ejection hole 20a;Reduce First Driving Force F1 afterwards, helps to provide buffering to the Kato 100, keep away
Exempt from the Kato 100 to be damaged by unexpected acceleration.Similarly, non-linear change can also be presented in the second driving force F2
Change, i.e. first increases and then decreases, helps to improve the Kato 100 and retract the efficiency of the ejection hole 20a, and facilitate to described
Kato 100 forms buffer protection.
It is second of Kato component control provided by the embodiments of the present application also referring to Fig. 1 (a), Fig. 1 (b) and Fig. 9, Fig. 9
The flow chart of method processed.Second of Kato assembly control method and the first Kato assembly control method are essentially identical, difference
It is in in the present embodiment, first ejecting mechanism 200 includes angle demodulator 800, the Kato assembly control method
Further include but be not limited to step S300 and S400, about being described in detail as follows for step S300 and S400.
S300: when the first motor 210 drives first ejection piece 230 to move, the Kato 100 and institute are detected
Shell 20 is stated adjacent to the extruding force size at the ejection position hole 20a.
S400: extruding force is preset when the extruding force that the Kato 100 is located at the first side wall of the shell 20 is greater than, and is held
When continuous preset duration, the angle demodulator 800 adjust the first motor 210 towards the shell 20 second sidewall side
To deflection, so that ejection hole 20a described in 100 face of the Kato is stretched out and is either retracted, wherein the first side wall and institute
It states second sidewall and encloses the both ends for setting to form the ejection hole 20a, and opposite positioned at the ejection hole 20a.
Wherein, the size for detecting extruding force can be realized by pressure sensor.By the way that the is arranged at the first side wall
Second pressure sensor is arranged in one pressure sensor at second sidewall, by detecting the first side wall and described second side
Pressure size at wall to judge the offset direction of the Kato 100, and then fits the direction of motion of the Kato 100
Answering property adjusts, so that ejection hole 20a described in 100 face of the Kato is stretched out and either retracted, to reduce the Kato 100 and institute
The frictional force between the shell 20 of electronic equipment 1 is stated, helps to form the Kato 100 and protect, extend the Kato 100
Service life.
Optionally, in one embodiment, the angle demodulator 800 is mounted in the first motor 210, described
The rotation angle of the first motor 210 is adjusted in angle demodulator 800, and then realizes the court to first output shaft 220
To adjusting.When the centerline parallel of the center line of first output shaft 220 and the Kato 100 or described first
When angle between the center line of output shaft 220 and the center line of the Kato 100 is located within the scope of predetermined angle, at this point, can
So that ejection hole 20a described in 100 face of Kato is stretched out and either retracted, help to reduce the Kato 100 and described
Frictional force between the shell 20 of electronic equipment 1 improves the smoothness that the Kato component 10 moves.And avoid the Kato
100 by biggish abrasion, helps to form Kato 100 and protect.
Optionally, in another embodiment, the angle demodulator 800 is used to adjust the rotation of the Kato 100
Angle.The angle demodulator 800 includes resonator, and the resonator is used to carry out micro-displacement adjusting to the Kato 100.It can
Choosing, the resonator be mounted on the Kato 100 adjacent to it is described ejection hole 20a side wall on, for the Kato 100 into
Row adjustment in real time helps to reduce the card so that ejection hole 20a described in 100 face of the Kato is stretched out and either retracted
Frictional force between support 100 and the shell 20 of the electronic equipment 1 improves the smoothness that the Kato component 10 moves.And it keeps away
Exempt from the Kato 100 by biggish abrasion, helps to form Kato 100 and protect.
The embodiment of the present application is described in detail above, specific case used herein to the principle of the application and
Embodiment is expounded, the description of the example is only used to help understand the method for the present application and its core ideas;
At the same time, for those skilled in the art can in specific embodiments and applications according to the thought of the application
There is change place, in conclusion the contents of this specification should not be construed as limiting the present application.
Claims (15)
1. a kind of Kato component is applied to electronic equipment, the electronic equipment includes shell, and the shell offers ejection hole,
It is characterized in that, the Kato component includes Kato and the first ejecting mechanism, first ejecting mechanism include first motor and
First ejection piece, first ejection piece are fixedly connected between the first output shaft of the first motor and the Kato, institute
The first output shaft is stated to be moved in a straight line along first direction to drive first ejection piece to move in a straight line in a second direction, it will
The Kato stretches out or retracts the ejection hole, wherein first direction is identical with the second direction or first direction and
The angle formed between the second direction is less than predetermined angle.
2. Kato component as described in claim 1, which is characterized in that the Kato includes the first end being oppositely arranged and second
End, the first end is extended or retracts the ejection hole, and first ejecting mechanism is located at the second end, and described first
The center line of output shaft and a center line of the Kato are consistent.
3. Kato component as described in claim 1, which is characterized in that the Kato includes the first end being oppositely arranged and second
End and all side walls between the first end and the second end, the first end is extended or retracts the ejection
Hole, first ejecting mechanism are located at the side of neighbouring all side walls, and first ejection piece is connected to first output
Between axis and all side walls.
4. Kato component as claimed in claim 3, which is characterized in that first ejection piece includes in the several of array distribution
A first connecting rod, the first connecting rod are connected between first output shaft and the Kato.
5. Kato component as claimed in claim 3, which is characterized in that first ejection piece is telescopic rod, to adjust
Angle of the Kato compared to the ejection hole is stated, so that ejection hole described in the Kato face is stretched out and either retracted.
6. Kato component as claimed in claim 3, which is characterized in that first ejection piece is elastic component, can produce plasticity
Deformation.
7. Kato component as described in claim 1, which is characterized in that the Kato component further includes deck, the deck shape
At container, the container has opening, ejects hole described in the opening face for accommodating the Kato, the deck.
8. Kato component as claimed in claim 7, which is characterized in that it is provided with sliding rail between the deck and the Kato,
The Kato can be moved by the sliding rail compared to the deck, either retract the ejection hole to stretch out.
9. a kind of electronic equipment, which is characterized in that the electronic equipment includes shell and such as claim 1-8 described in any item
Kato component.
10. electronic equipment as claimed in claim 9, which is characterized in that the shell forms accommodating chamber, and the accommodating chamber is used for
The Kato component is accommodated, the shell offers ejection hole, and the Kato can be stretched out by the ejection hole either to be retracted
The accommodating chamber.
11. electronic equipment as claimed in claim 10, which is characterized in that the electronic equipment further includes sealing ring, described close
Seal is located in the ejection hole, and forms seal protection to the Kato component.
12. electronic equipment as claimed in claim 10, which is characterized in that the electronic equipment further includes gravity sensor and control
Device processed, when the gravity sensor detects that the Kato component is in state of weightlessness, the gravity sensor issues first
Signal, the controller receives first signal, and controls the Kato component according to first signal and retract the receipts
Cavity.
13. electronic equipment as claimed in claim 10, which is characterized in that the electronic equipment further includes gear shifting mechanism, described
Gear shifting mechanism is used to carry out gear adjusting to the first motor, is in first when the gear shifting mechanism adjusts the first motor
When gear, the Kato stretches out first distance compared to the shell;It is in when the gear shifting mechanism adjusts the first motor
When the second gear, the Kato stretches out second distance compared to the shell, wherein the first distance and the second distance
Differ.
14. a kind of Kato assembly control method, the Kato component is applied to electronic equipment, and the electronic equipment includes shell,
The shell offers ejection hole, and the Kato component includes Kato and the first ejecting mechanism, and first ejecting mechanism includes
First motor and the first ejection piece, first ejection piece are fixedly connected on the first output shaft and the card of the first motor
Between support, which is characterized in that the Kato assembly control method includes:
When the first motor to first output shaft provide First Driving Force when, first output shaft make rotating motion with
It drives first ejection piece to move along a straight line, the Kato is stretched out into the ejection hole;
When the first motor to first output shaft provide the second driving force when, first output shaft make rotating motion with
It drives first ejection piece to move along a straight line, the Kato is retracted into the ejection hole.
15. Kato assembly control method as claimed in claim 14, which is characterized in that first ejecting mechanism includes angle
Adjuster, the Kato assembly control method further include:
When the first motor drives first ejection piece movement, the Kato and the shell are detected adjacent to the ejection
The extruding force size at hole position;
When the extruding force that the Kato is located at the first side wall of the shell is greater than default extruding force, and continues preset duration,
The direction that the angle demodulator adjusts the first motor towards the second sidewall of the shell deflects, so that the Kato
Ejection hole, which is stretched out, described in face either retracts, wherein the first side wall and the second sidewall enclose and set to form the ejection
Hole, and it is located at the opposite both ends in the ejection hole.
Priority Applications (2)
Application Number | Priority Date | Filing Date | Title |
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CN201810905204.8A CN109149178B (en) | 2018-08-09 | 2018-08-09 | Card holder assembly, electronic equipment and card holder assembly control method |
PCT/CN2019/093654 WO2020029710A1 (en) | 2018-08-09 | 2019-06-28 | Card tray component, electronic device, and card tray component control method |
Applications Claiming Priority (1)
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CN201810905204.8A CN109149178B (en) | 2018-08-09 | 2018-08-09 | Card holder assembly, electronic equipment and card holder assembly control method |
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CN109149178A true CN109149178A (en) | 2019-01-04 |
CN109149178B CN109149178B (en) | 2021-03-12 |
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CN201810905204.8A Active CN109149178B (en) | 2018-08-09 | 2018-08-09 | Card holder assembly, electronic equipment and card holder assembly control method |
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WO (1) | WO2020029710A1 (en) |
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WO2020029710A1 (en) * | 2018-08-09 | 2020-02-13 | Oppo广东移动通信有限公司 | Card tray component, electronic device, and card tray component control method |
CN113494997A (en) * | 2020-04-08 | 2021-10-12 | Oppo(重庆)智能科技有限公司 | Card holder detection device and method |
CN114421987A (en) * | 2022-03-29 | 2022-04-29 | 深圳传音控股股份有限公司 | Card support, card seat assembly and mobile terminal |
WO2023286997A1 (en) * | 2021-07-15 | 2023-01-19 | 삼성전자주식회사 | Electronic device including tray |
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Also Published As
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CN109149178B (en) | 2021-03-12 |
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