CN205488926U - USB3. 1 and microUSB2. 0 interface converter - Google Patents

USB3. 1 and microUSB2. 0 interface converter Download PDF

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Publication number
CN205488926U
CN205488926U CN201620087042.8U CN201620087042U CN205488926U CN 205488926 U CN205488926 U CN 205488926U CN 201620087042 U CN201620087042 U CN 201620087042U CN 205488926 U CN205488926 U CN 205488926U
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CN
China
Prior art keywords
haptic element
pcb board
housing
shell
interface convertor
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Expired - Fee Related
Application number
CN201620087042.8U
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Chinese (zh)
Inventor
林伟平
蒋佳平
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Dongguan Tianpu Jialiya Electronic Technology Co Ltd
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Dongguan Tianpu Jialiya Electronic Technology Co Ltd
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Priority to CN201620087042.8U priority Critical patent/CN205488926U/en
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Publication of CN205488926U publication Critical patent/CN205488926U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses a USB3.1 and microUSB2.0 interface converter connects through a transfer connector POGO PIN changeover contact ware between microUSB2.0 and the USB3.1, and POGO PIN changeover contact ware includes: casing, first haptic element and second haptic element, first haptic element and PCB board A welded fastening, the second haptic element is connected with a supporting spring, and restoring force through supporting spring pops out the casing and PCB board B electric connection outward, USB3.1's PCB board B promotes the second haptic element and removes in to the casing to restoring force through supporting spring makes second haptic element and contact point stably be connected, realizes USB3.1's simple and easy dismouting. The utility model discloses an use POGO PIN connector to carry out the transfer and connect, realize swift convenient change vulnerable part USB3.1, reduced use cost, practiced thrift the resource.

Description

USB3.1 Yu MicroUSB2.0 interface convertor
Technical field:
This utility model relates to interface conversion connector technique field, refers in particular to a kind of can simply change USB3.1's USB3.1 Yu MicroUSB2.0 interface convertor.
Background technology:
Structure the most in industry is designed as connecting corresponding PIN according to USB3.1 consortium specification by PCB Position carries out interface conversion (i.e. USB3.1 transfer MicroUSB2.0), USB3.1 adapter and MicroUSB2.0 For the connected mode of fixing welding between adapter and pcb board, so can realize USB3.1 interface with Use conversion between MicroUSB2.0 interface.But present design can not be in USB3.1 service life Realizing after end changing, can only be abandoned by whole product, whole product must abandon and cause the wasting of resources and use Cost increases.As shown in Figure 1, for interface convertor of the prior art, MicroUSB2.0 (5) and USB3.1 (6) the first pcb board 51 and the second pcb board 61, MicroUSB2.0 (5) and USB3.1 (6) it are connected to Directly it is connected with each other by the first pcb board 51 and the second pcb board 61, and is provided with on the first pcb board 51 Bump 52, the second pcb board 61 is welded to each other fixing with bump 52, makes when USB3.1 (6) damages, Only USB3.1 (6) can not be replaced, need to abandon whole interface convertor entirety, cause money Source is wasted.
In order to solve in order to solve existing USB3.1 be transformed in the structural design scheme of MicroUSB2.0 when After USB3.1 terminates service life, USB3.1 belongs to consumable accessory but can not be replaced, and must whole switching be produced Product are scrapped, and use cost is high and wastes the problem of resource, and applicant proposes present patent application.
Utility model content:
The purpose of this utility model is to overcome the deficiencies in the prior art, it is provided that a kind of USB3.1 with MicroUSB2.0 interface convertor.
In order to solve above-mentioned technical problem, this utility model have employed following technical proposals: USB3.1 with MicroUSB2.0 interface convertor, including: shell, MicroUSB2.0 and USB3.1 being installed in shell, The upper connection of MicroUSB2.0 has pcb board A, and the upper connection of USB3.1 has pcb board B, described MicroUSB2.0 And connected by a transfer adapter POGO PIN conversion connector between USB3.1, this POGO PIN changes Adapter includes: housing, be installed in housing first haptic element in electrical contact with pcb board A and with pcb board B Second haptic element in electrical contact, the first haptic element is welded and fixed with pcb board A, the second haptic element in housing with one Support spring connects, and ejects outside housing by the restoring force supporting spring and be electrically connected with pcb board B;PCB The contact point being electrically connected with the second haptic element it is provided with on plate B;USB3.1 inserts and is installed in shell, USB3.1 Pcb board B promote the second haptic element to move in housing, and by support spring restoring force make the second haptic element with Contact point is stably connected with, it is achieved the simple-mounting-dismounting of USB3.1.
Furthermore, in technique scheme, described POGO PIN conversion connector is horizontally installed to PCB On plate A, it is provided with in housing and embeds that install and the first groove of level through housing both sides for the first haptic element Body, the first haptic element has the first installation portion of the hollow being installed in the first cell body and stretches out first outside housing Connecting portion, the first connecting portion is welded and fixed with pcb board A.
Furthermore, in technique scheme, the second described haptic element and support spring are installed on the first haptic element In first installation portion of hollow, support spring supporting in the inwall of the first installation portion and the end of the second haptic element, The front end of the second haptic element is stretched out outside housing under supporting spring force effect.
Furthermore, in technique scheme, described shell includes: upper shell and lower house, upper shell On offer for USB3.1 insert install insert port, be mutually perpendicular between USB3.1 and MicroUSB2.0, Pcb board A is horizontally placed between upper shell and lower house, and USB3.1 inserts into the mouth and is limited in insertion In Kou, pcb board B and the second haptic element elasticity connect.
Furthermore, in technique scheme, described upper shell is divided into left part and right part, left part and right part Relatively place offers a breach, left part and right part and is interlocked the insert port described in being formed, and by USB3.1 (3) It is limited in inserting into the mouth of upper shell.
Furthermore, in technique scheme, the shell of described its interface of USB3.1 uses plastic cement material Make.
Furthermore, in technique scheme, its lower house of described shell connects and has a mounting blocks, should Mounting blocks is locked on lower house by screw, and mounting blocks is rotatable with screw for axle, and rotational angle is r.
Furthermore, in technique scheme, between described mounting blocks and lower house, leave free gap, Between mounting blocks and lower house, spring it is provided with in free gap.
Furthermore, in technique scheme, described pcb board A is provided with and pacifies for pcb board B activity The installing port of dress.
After using technique scheme, this utility model has the advantages that this compared with prior art Utility model adds a POGO PIN in USB3.1 and MicroUSB2.0 interface convertor design Adapter carries out transfer connection, and consumable accessory USB3.1 is designed to the movable part can dismantled and change, By using POGO PIN adapter to carry out transfer connection, it is achieved fast and easily consumable accessory USB3.1 is carried out Change, at the end of USB3.1 service life, only the pcb board having welded USB3.1 need to be replaced, turn Connector product can be continuing with, and reduces use cost, has saved resource.
Accompanying drawing illustrates:
Fig. 1 is the axonometric chart of legacy interface transducer;
Fig. 2 is axonometric chart of the present utility model;
Fig. 3 is side view of the present utility model;
Fig. 4 is structural representation Fig. 1 of the present utility model;
Fig. 5 is the axonometric chart of USB3.1 in this utility model;
Fig. 6 A-Fig. 6 B is the use comparison diagram of POGO PIN conversion connector in this utility model;
Fig. 7 is structural representation Fig. 2 in this utility model;
Fig. 8 is structural representation Fig. 3 in this utility model;
Fig. 9 is exploded view of the present utility model.
Detailed description of the invention:
Below in conjunction with specific embodiments and the drawings, this utility model is further illustrated.
As shown in Fig. 4 and Fig. 9, USB3.1 Yu MicroUSB2.0 interface convertor, including: shell 1, The MicroUSB2.0 2 and USB3.13 being installed in shell 1, MicroUSB2.0 2 connects and has pcb board Connect to have between pcb board B31, MicroUSB2.0 and USB3.1 on A21, USB3.1 3 and vertically connect, and Connected, by POGO PIN by a POGO PIN conversion connector 4 between MicroUSB2.02 and USB3.13 Conversion connector 4 realizes the interface conversion between MicroUSB2.0 2 and USB3.1 3.
As shown in Fig. 6 A-Fig. 6 B, POGO PIN conversion connector 4 includes: housing 40, be installed on housing 40 In and the first haptic element 41 and the second haptic element 42, be provided with in housing 40 for first haptic element 41 embed install, And the first cell body of level through housing 40 both sides, during the first haptic element 41 has and is installed in the first cell body The first empty installation portion 411 and stretch out the first connecting portion 412 outside housing 40, the second haptic element 42 and supporting Spring 43 is installed in the first installation portion 411 of the first haptic element 41 hollow, supports spring 43 and is supported in first The inwall of installation portion 411 and the end of the second haptic element 42, the front end of the second haptic element 42 is supporting spring 43 Stretch out under elastic force effect outside housing 40.Fig. 6 A is the original state of the second haptic element 42, when the second haptic element 42 During the stress compressing of front end, as shown in Figure 6B, the second haptic element 42 moves inward under pressure state.
As shown in Fig. 4, Fig. 7 and Fig. 8, USB3.1 is installed vertically on the pcb board A21 of MicroUSB2.0, POGO PIN conversion connector 4 is horizontally installed on pcb board A21, pcb board A21 is provided with for pcb board The installing port that B31 activity is installed, after assembling, pcb board B31 can produce pressure by the second haptic element 42, forces second Haptic element 42 nets interior movement, and the second haptic element 42, is ejected outside housing 40 by the restoring force supporting spring 43 And be electrically connected with pcb board B31;It is provided with on pcb board B31 and contacting that the second haptic element 42 is electrically connected with Point 311.
As shown in Fig. 2-3, described shell 1 includes: upper shell 11 and lower house 12, on upper shell 11 Offering and insert, for USB3.13, the insert port 111 installed, pcb board A21 is horizontally placed on upper shell 11 He Between lower house 12, USB3.13 inserts in insert port 111 and is limited in insert port 111, upper shell 11 are divided into left part and right part, left part and right part to offer a breach, left part and right part relative to place is interlocked formation Described insert port 111, and USB3.13 is limited in the insert port 111 of upper shell 11.Shell 1 its Connecting on lower house 12 and have a mounting blocks 14, this mounting blocks 14 is locked on lower house 12 by screw, and peace Dress block 14 is rotatable with screw for axle, and rotational angle is r, and in the present embodiment, rotational angle r is about 3 °;Peace Leave free gap between dress block 14 and lower house 12, in free gap in mounting blocks 14 and lower house 12 it Between be provided with spring 15.
Assembling mode of the present utility model is as follows:
1.POGO PIN conversion connector 4 is horizontally installed on pcb board A21, the first haptic element 41 and PCB It is welded and fixed between plate A;
2.MicroUSB2.0 be installed between upper shell 11 and lower house 12, USB3.1 is from insert port 111 insert installation, and the end of pcb board B is inserted in the installing port on pcb board A, During USB3.1 inserts, pcb board B promotes the second haptic element 42 to move, and has inserted Cheng Hou, the second haptic element 42 is by ejecting and in contact point under the restoring force effect of support spring 43 311 are stably connected with;
3. upper shell 11 makes USB3.1 spacing, and can not freely plug;
4. mounting blocks 14 is installed on lower house 12 by screw, with Convenient interface transducer subsequent installation On other electronic equipment;
The shell of above-mentioned its interface of USB3.13 uses plastic cement material to make, and can avoid other therewith to time slotting The part scratch connected;Above-mentioned USB3.13 inserts and is installed in shell 1, the pcb board B31 of USB3.13 Promote the second haptic element 42 to move in housing 40, and make the second haptic element 42 by the restoring force supporting spring 43 Be stably connected with contact point 311, when the end-of-life of USB3.1, it is only necessary to by the left part of upper shell 11 and Right part separates, and the most directly extracts USB3.1, changes a brand-new USB3.1, after having changed, then Left part and right part are connected, by using POGO PIN adapter to carry out transfer connection, it is achieved fast side Consumable accessory USB3.1 is replaced just, thus reduce use cost, the purpose economized on resources.
Certainly, the foregoing is only specific embodiment of the utility model, not limit this utility model Practical range, all equivalence changes done according to structure, feature and principle described in this utility model claim Or modify, all should be included in this utility model claim.

Claims (9)

1.USB3.1 Yu MicroUSB2.0 interface convertor, including: shell (1), the MicroUSB2.0 (2) being installed in shell (1) and USB3.1 (3), the upper connection of MicroUSB2.0 (2) has pcb board A (21), the upper connection of USB3.1 (3) has pcb board B (31), it is characterised in that:
Connected by transfer adapter POGO PIN conversion connector (4) between described MicroUSB2.0 (2) and USB3.1 (3), this POGO PIN conversion connector (4) including: housing (40), first haptic element (41) in electrical contact with pcb board A (21) in being installed on housing (40) and the second haptic element (42) in electrical contact with pcb board B (31), first haptic element (41) is welded and fixed with pcb board A (21), second haptic element (42) supports spring (43) with one in housing (40) and is connected, and outward and be electrically connected with pcb board B (31) by restoring force ejection housing (40) supporting spring (43);The contact point (311) being electrically connected with the second haptic element (42) it is provided with on pcb board B (31);Described USB3.1 (3) inserts and is installed in shell (1), the pcb board B (31) of USB3.1 (3) promotes the second haptic element (42) to move in housing (40), and make the second haptic element (42) be stably connected with contact point (311) by the restoring force supporting spring (43), it is achieved the simple-mounting-dismounting of USB3.1.
USB3.1 Yu MicroUSB2.0 interface convertor the most according to claim 1, it is characterized in that: described POGO PIN conversion connector (4) is horizontally installed on pcb board A (21), it is provided with in housing (40) and embeds installation for the first haptic element (41), and the first cell body of level through housing (40) both sides, first haptic element (41) has first installation portion (411) of the hollow being installed in the first cell body and stretches out housing (40) the first connecting portion (412) outward, first connecting portion (412) is welded and fixed with pcb board A (21).
USB3.1 Yu MicroUSB2.0 interface convertor the most according to claim 2, it is characterized in that: described the second haptic element (42) and support spring (43) are installed in first installation portion (411) of the first haptic element (41) hollow, supporting spring (43) and be supported in inwall and the end of the second haptic element (42) of the first installation portion (411), housing (40) is stretched out outward under supporting spring (43) elastic force effect in the front end of the second haptic element (42).
USB3.1 Yu MicroUSB2.0 interface convertor the most according to claim 1, it is characterized in that: described shell (1) including: upper shell (11) and lower house (12), offer on upper shell (11) and insert, for USB3.1 (3), the insert port (111) installed, it is mutually perpendicular between USB3.1 (3) and MicroUSB2.0 (2), pcb board A (21) is horizontally placed between upper shell (11) and lower house (12), USB3.1 (3) inserts in insert port (111) and is limited in insert port (111), pcb board B (31) is connected with the second haptic element (42) elasticity.
USB3.1 Yu MicroUSB2.0 interface convertor the most according to claim 4, it is characterized in that: described upper shell (11) is divided into left part and right part, left part and right part offer a breach relative to place, left part and right part are interlocked the insert port (111) described in being formed, and are limited in the insert port (111) of upper shell (11) by USB3.1 (3).
USB3.1 Yu MicroUSB2.0 interface convertor the most according to claim 1, it is characterised in that: the shell of described USB3.1 (3) its interface uses plastic cement material to make.
USB3.1 Yu MicroUSB2.0 interface convertor the most according to claim 1, it is characterized in that: the upper connection of described shell (1) its lower house (12) has a mounting blocks (14), this mounting blocks (14) locks on lower house (12) by screw, and mounting blocks (14) is rotatable with screw for axle, rotational angle is r.
USB3.1 Yu MicroUSB2.0 interface convertor the most according to claim 7, it is characterized in that: between described mounting blocks (14) and lower house (12), leave free gap, between mounting blocks (14) and lower house (12), in free gap, be provided with spring (15).
USB3.1 Yu MicroUSB2.0 interface convertor the most according to claim 1, it is characterised in that: it is provided with on described pcb board A (21) for the movable installing port installed of pcb board B (31).
CN201620087042.8U 2016-01-28 2016-01-28 USB3. 1 and microUSB2. 0 interface converter Expired - Fee Related CN205488926U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620087042.8U CN205488926U (en) 2016-01-28 2016-01-28 USB3. 1 and microUSB2. 0 interface converter

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620087042.8U CN205488926U (en) 2016-01-28 2016-01-28 USB3. 1 and microUSB2. 0 interface converter

Publications (1)

Publication Number Publication Date
CN205488926U true CN205488926U (en) 2016-08-17

Family

ID=56619151

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620087042.8U Expired - Fee Related CN205488926U (en) 2016-01-28 2016-01-28 USB3. 1 and microUSB2. 0 interface converter

Country Status (1)

Country Link
CN (1) CN205488926U (en)

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CB03 Change of inventor or designer information

Inventor after: Liu Jiahua

Inventor before: Lin Weiping

Inventor before: Jiang Jiaping

CB03 Change of inventor or designer information
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160817

Termination date: 20200128

CF01 Termination of patent right due to non-payment of annual fee