CN201314966Y - Lens module socket - Google Patents

Lens module socket Download PDF

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Publication number
CN201314966Y
CN201314966Y CNU2008202036281U CN200820203628U CN201314966Y CN 201314966 Y CN201314966 Y CN 201314966Y CN U2008202036281 U CNU2008202036281 U CN U2008202036281U CN 200820203628 U CN200820203628 U CN 200820203628U CN 201314966 Y CN201314966 Y CN 201314966Y
Authority
CN
China
Prior art keywords
shell fragment
lens module
thruster
side walls
camera lens
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CNU2008202036281U
Other languages
Chinese (zh)
Inventor
王锦洲
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Foxlink Electronics Dongguan Co Ltd
Cheng Uei Precision Industry Co Ltd
Original Assignee
Foxlink Electronics Dongguan Co Ltd
Cheng Uei Precision Industry Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Foxlink Electronics Dongguan Co Ltd, Cheng Uei Precision Industry Co Ltd filed Critical Foxlink Electronics Dongguan Co Ltd
Priority to CNU2008202036281U priority Critical patent/CN201314966Y/en
Application granted granted Critical
Publication of CN201314966Y publication Critical patent/CN201314966Y/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model discloses a lens module socket, which comprises an insulating body, a plurality of socket terminals and a metal shell, wherein the insulating body is provided with a base, and lateral walls are stretched from four lateral edges of the base and enclose a storage tank with the base; the four lateral walls are opened with lateral pushing clip limiting tanks; a plurality of socket terminals are fixed on the insulating body; the metal shell is fixed and wrapped on the outer parts of the four lateral walls of the insulating body; the metal shell comprises two opposite first lateral walls and two opposite second lateral walls, wherein the upper edges of the first and the second lateral walls are bent and are extended with lateral pushing clips; the positions of the lateral pushing clips on two first lateral walls and two second lateral walls are corresponding to each other and in uniform; and the lateral pushing clips are clamped in the lateral pushing clip limiting tank and extend into the storage tank. Due to the corresponding relation of the lateral pushing clips of the metal shell, when a lens module is inserted into the socket, the lateral pushing clip can exert and locate evenly to lead the applied force to be balanced, thereby avoiding the rotation or inclination of the lens module in the socket.

Description

Camera lens module socket
Technical field
The utility model relates to a kind of socket, relates in particular to a kind of camera lens module socket.
Background technology
The known camera lens module socket that plugs usefulness for the camera lens module, see also shown in Figure 5, one camera lens module 4 has a base station that roughly is square 41, some camera lens terminal (not shown) and that is plugged on the base station 41 are located at the lens body 42 on the base station 41, protrudes out a direction locating piece 43 on the lens body 42.Camera lens module socket comprises an insulating body 1 ', a metal shell 2 ' and some female terminals 3 ' that are connected with the camera lens terminal respectively on the insulating body 1 ' that are retained on.Insulating body 1 ' has a base portion 11 ', four lateral margins of described base portion 11 ' have upwards vertically protruded out a sidewall 12 ' respectively, four sidewalls 12 ' are end to end and surround a storage tank 13 ' with described base portion 11 ', all offer the thruster shell fragment on described four sidewalls 12 ' and limit groove 124 '.Metal shell 2 ' is retained on the insulating body 1 ', this metal shell 2 ' comprises that four coat the side wall 21 ' of a sidewall 12 ' respectively, the upper limb of four side walls 21 ' all bends and is extended with a thruster shell fragment 212 ', and the thruster shell fragment 212 ' of preceding side wall 21 ' is positioned at left part, the thruster shell fragment 212 ' of back side wall 21 ' is positioned at right part, the thruster shell fragment 212 ' of left side wall 21 ' is positioned at the rear portion, and the thruster shell fragment 212 ' of right-side wall 21 ' is positioned at the front portion.Each thruster shell fragment 212 ' is held in thruster shell fragment qualification groove 124 ' respectively and extends in the storage tank 13 '.
Yet when above-mentioned known camera lens module socket inserted at camera lens module 4, four thruster shell fragments 212 ' can form turning moment to the base station 41 of camera lens module 4, camera lens module 4 is rotated or deflection in socket, thereby deflection appear in the image that causes easily taking.
The utility model content
The purpose of this utility model is that providing a kind of at above-mentioned the deficiencies in the prior art can prevent that the camera lens module from rotating or the camera lens module socket of deflection in socket.
For achieving the above object, the utility model camera lens module socket comprises an insulating body, some female terminals and a metal shell.Insulating body has a base portion, and four lateral margins of base portion have upwards vertically protruded out a sidewall respectively, and four sidewalls are end to end and surround a storage tank with described base portion, all offers the thruster shell fragment on four sidewalls and limits groove; Some female terminals are retained on the insulating body; The metal shell fixing also is coated on the four sidewall outsides of insulating body, metal shell comprises that two first side walls and two that coat forward and backward sidewall respectively coat second side wall of left and right sidewall respectively, first side wall and the second side wall upper limb all bend and are extended with the thruster shell fragment, correspondence and consistent is mutually distinguished in the position that is provided with of the thruster shell fragment on two first side walls and two second side walls, and each thruster shell fragment is held in thruster shell fragment qualification groove respectively and extends in the storage tank.
As mentioned above, the utility model camera lens module socket is because the position that is provided with of the thruster shell fragment on two first side walls and two second side walls is distinguished corresponding and consistent mutually, thereby when the camera lens module inserts, each thruster shell fragment is to the average application of force of camera lens module energy and location, make each thruster shell fragment acting force can balance, so can avoid rotation of camera lens chunk or deflection.
Description of drawings
Fig. 1 is the stereographic map of the utility model camera lens module socket.
Fig. 2 is the exploded view of the utility model camera lens module socket.
Fig. 3 is the stereographic map of the insulating body of camera lens module socket shown in Figure 1.
Fig. 4 is the stereographic map of the metal shell of camera lens module socket shown in Figure 1.
Fig. 5 is the known camera lens module and the stereographic map of camera lens module socket.
Each description of reference numerals is as follows among the figure:
[the utility model]
Camera lens module socket 100 insulating bodies 1
Base portion 11 sidewalls 12
Socket end pilot trench 121 holding sections 122
Fixed part 123 thruster shell fragments limit groove 124
The thruster retaining is held wall 1241 fixation spring tabs and is limited groove 125
Direction locating slot 126 sidewall boss 127
Storage tank 13 metal shells 2
First side wall, 21 first support slots 211
Thruster shell fragment 212 buckles 213
Second side wall, 22 second support slots 221
Fixation spring tab 222 holding holes 223
Female terminal 3
[background technology]
Insulating body 1 ' base portion 11 '
Sidewall 12 ' thruster shell fragment limits groove 124 '
Direction locating slot 126 ' metal shell 2 '
Side wall 21 ' thruster shell fragment 212 '
Female terminal 3 ' camera lens module 4
Base station 41 lens bodies 42
Direction locating piece 43
Embodiment
By describing technology contents of the present utility model, structural attitude in detail, realized purpose and effect, give explanation below in conjunction with embodiment and conjunction with figs. are detailed.
See also Fig. 1, the utility model camera lens module socket 100 comprises an insulating body 1, a metal shell 2 and some female terminals 3.
See also Fig. 2 and Fig. 3, insulating body 1 has the tabular base portion 11 that is square.Four lateral margins of base portion 11 have upwards vertically protruded out a sidewall 12 respectively, and present embodiment definition has two corresponding forward and backward sidewalls 12 and two corresponding left and right sidewall 12, four sidewalls 12 end to end, and four sidewalls 12 surround a storage tank 13 with described base portion 11.The inwall of four sidewalls 12 is opened and is respectively equipped with some socket end pilot trench 121, and these some socket end pilot trench 121 extend on the base portion 11.The outer surface of left and right sidewall 12 has respectively protruded out two holding sections 122 and a fixed part 123, and described holding section 122 roughly is the bucking ladder shape, and described fixed part 123 is rectangle.The place, top of forward and backward sidewall 12 all offers two thruster shell fragments separated by a distance and limits groove 124, the center on the top of left and right sidewall 12 all offers a thruster shell fragment and limits groove 124, two thruster shell fragments on the sidewall 12 of front limit groove 124 respectively with the sidewall 12 of back on two thruster shell fragments limit the left and right sides position consistency of groove 124, the thruster shell fragment on the and arranged on left and right sides wall 12 limits groove 124 front and back position unanimities.The diapire that described thruster shell fragment limits groove 124 has protruded out thruster retaining straight up and has held wall 1241, and the lateral surface of lateral surface territory sidewall 12 that the thruster retaining is held wall 1241 is on an isoplanar, and the thickness that described thruster retaining is held wall 1241 is not more than the thickness of sidewall 12.The thruster shell fragment of left and right sidewall 12 limits groove 124 adjacent both sides and respectively offers fixation spring tab qualification groove 125, and the position of the fixation spring tab of left and right sidewall 12 qualification groove 125 is corresponding mutually.The center of rear wall 12 offers a direction locating slot 126, and this direction locating slot 126 is used for positioning mirror head mould group.The middle part of front side wall 12 has protruded out a sidewall boss 127, and this sidewall boss 127 limits between the groove 124 in two thrusters.
See also Fig. 2 and Fig. 4, metal shell 2 comprises two relative first side wall 21, second side walls 22 relative with two.The bottom of described two first side walls 21 all offers one first support slot 211, the coboundary of two first side walls 21 upwards protrudes out respectively and extends to the inside and be bent to form two thruster shell fragments 212, and 212 mutual correspondence and the left and right sides position consistency of the thruster shell fragment on two first side walls 21.The middle part of the coboundary of second side wall 22 upwards protrudes out respectively and extends to the inside and be bent to form a thruster shell fragment 212, and the thruster shell fragment 212 on two second side walls 22 is corresponding one by one and front and back position is consistent.The coboundary of described second side wall 22 upwards protrudes out respectively at the place, adjacent both sides of thruster shell fragment 212 and has been bent to form a fixation spring tab 222, and the fixation spring tab 222 on described second side wall 22 is corresponding one by one and front and back position is consistent.The coboundary of two first side walls 21 and two second side walls 22 is arc fold bending and extend to form two buckles 213 to the inside all.Described two second side walls 22 offer two holding holes 223 that offer on one second support slot, 221, the second side walls 22 respectively near lower edge.
See also Fig. 1 and Fig. 2, when assembling the utility model camera lens module socket 100, metal shell 2 is retained on the insulating body 1, and two first side walls 21 coat forward and backward sidewall 12, two second side walls 22 respectively and coat left and right sidewall 12 respectively.Holding section 122 on the and arranged on left and right sides wall 12 of insulating body 1 is held in the holding hole 223 of second side wall 22; Buckle 213 colludes the coboundary that is held in sidewall 12.Thruster shell fragment 212 is held in thruster shell fragment qualification groove 124 places respectively and extends in the storage tank 13.Fixation spring tab 222 is held in fixation spring tab qualification groove 125 places respectively and extends in the storage tank 13.First support slot 211 of first side wall 21, second support slot 221 of second side wall 22 fasten mutually with the fixed part 123 of sidewall 12 respectively.Female terminal 3 is retained in the socket end pilot trench 121 of insulating body 1.
When camera lens module 4 was assembled in the utility model camera lens module socket 100, direction locating piece 43 was held in the direction locating slot 126, and fixation spring tab 222 is held on the base station 41 of camera lens module 4, and thruster shell fragment 212 is replaced on four sides of base station 41.When desire is extracted camera lens module 4 from camera lens module socket 100, because fixation spring tab 222 only is arranged on the two second relative side walls 22, so only must utilize tool to back out the fixation spring tab 222 on two second side walls 22, can easily rapidly camera lens module 4 be extracted from camera lens module socket 100.
As mentioned above, the utility model camera lens module socket 100 is because the corresponding one by one and position consistency of thruster shell fragment 212 difference on two first side walls 21 and two second side walls 22, thereby when camera lens module 4 inserts, the base station 41 of 212 pairs of camera lens modules 4 of each thruster shell fragment is the application of force and location on average, make each thruster shell fragment acting force can balance, so can avoid 4 rotations of camera lens module or deflection and the deflection of the filmed image that causes.

Claims (3)

1. camera lens module socket, comprise an insulating body, some female terminals and a metal shell, insulating body has a base portion, four lateral margins of this base portion have upwards vertically protruded out a sidewall respectively, four sidewalls and base portion surround a storage tank that can supply the camera lens module to plug, all offer the thruster shell fragment on four sidewalls and limit groove, some female terminals are retained on the insulating body, the metal shell fixing also is coated on insulating body four sidewall outsides, described metal shell comprise two coat respectively before, relative first side wall and two of rear wall coats a left side respectively, relative second side wall of right side wall, described two first side walls and two second side wall upper limbs all bend and are extended with the thruster shell fragment, it is characterized in that: the left and right sides position consistency of the corresponding one by one and corresponding thruster shell fragment of the thruster shell fragment on two first side walls, the front and back position unanimity of the corresponding one by one and corresponding thruster shell fragment of the thruster shell fragment on two second side walls, each thruster shell fragment are held in a thruster shell fragment respectively and limit groove and extend in the storage tank.
2. camera lens module socket as claimed in claim 1 is characterized in that: be respectively arranged with two described thruster shell fragments separated by a distance on described two first side walls, the center on two second side walls is respectively arranged with described thruster shell fragment.
3. camera lens module socket as claimed in claim 1, it is characterized in that: the coboundary on described two second side walls upwards protrudes out respectively and is bent with at least one fixation spring tab, the corresponding one by one and corresponding fixation spring tab front and back position unanimity of fixation spring tab on two second side walls, limit groove and respectively offer a corresponding fixation spring tab on left and right sidewall, fixation spring tab is held in fixation spring tab qualification groove place respectively and extends in the storage tank.
CNU2008202036281U 2008-11-14 2008-11-14 Lens module socket Expired - Fee Related CN201314966Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNU2008202036281U CN201314966Y (en) 2008-11-14 2008-11-14 Lens module socket

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNU2008202036281U CN201314966Y (en) 2008-11-14 2008-11-14 Lens module socket

Publications (1)

Publication Number Publication Date
CN201314966Y true CN201314966Y (en) 2009-09-23

Family

ID=41126765

Family Applications (1)

Application Number Title Priority Date Filing Date
CNU2008202036281U Expired - Fee Related CN201314966Y (en) 2008-11-14 2008-11-14 Lens module socket

Country Status (1)

Country Link
CN (1) CN201314966Y (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109613674A (en) * 2018-12-24 2019-04-12 中北大学 A kind of laser light source collimation alignment device using memory alloy structure
CN111066308A (en) * 2018-06-07 2020-04-24 华为技术有限公司 Positioning device, camera module and mobile terminal

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111066308A (en) * 2018-06-07 2020-04-24 华为技术有限公司 Positioning device, camera module and mobile terminal
US11399124B2 (en) 2018-06-07 2022-07-26 Huawei Technologies Co., Ltd. Positioning apparatus, camera module, and mobile terminal
CN109613674A (en) * 2018-12-24 2019-04-12 中北大学 A kind of laser light source collimation alignment device using memory alloy structure

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20090923

Termination date: 20121114