CN210514591U - Mobile phone shell test platform charges - Google Patents
Mobile phone shell test platform charges Download PDFInfo
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- CN210514591U CN210514591U CN201921171246.XU CN201921171246U CN210514591U CN 210514591 U CN210514591 U CN 210514591U CN 201921171246 U CN201921171246 U CN 201921171246U CN 210514591 U CN210514591 U CN 210514591U
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Abstract
The utility model aims at providing a can reduce the equipment maintenance cost, can effectively reduce workman intensity of labour and improve efficiency of software testing's the cell-phone shell test platform that charges. The utility model discloses a base, support plate module, plug module and push down the module, it adorns admittedly to push down the module the top of base, equal sliding fit is in on the base the support plate module with the plug module is located respectively push down the both sides of module, be equipped with the standing groove that a plurality of all with product looks adaptation on the support plate module, a plurality of one side of standing groove all is equipped with the locking subassembly, be equipped with the test of a plurality of all with product joint looks adaptation on the plug module public head, be equipped with test joint, a plurality of all with product matched with product locating piece and a plurality of a plurality of and product joint looks adaptation on the module and locking subassembly matched with locking power component down. The utility model discloses be applied to the technical field of the cell-phone shell test equipment that charges.
Description
Technical Field
The utility model relates to a technical field of the cell-phone shell test equipment that charges, in particular to cell-phone shell test platform charges.
Background
Nowadays, the updating and upgrading speed of mobile phones is increasingly accelerated, the mobile phones are limited by batteries and high performance, the usable time of the charged mobile phones is generally short, and a mobile power supply is provided to meet the requirements of users. However, it is inconvenient to use a mobile phone when using a mobile power source. Therefore, people's appeal is provided for how to conveniently charge the mobile phone when going out.
The plug port and the data line of the consumer electronic product are used as keys for realizing data communication interaction, and manufacturers need to perform functional verification such as electrical parameter testing on plug plugging after design and production are completed so as to ensure the quality of the product. Because the clearance between public first plug of common Type-C, E75 and Micro-USB and the female seat port that corresponds is less, generally is 0.05~0.10mm, relies on processing spare part to realize accurate plug butt joint not only technically difficult realization completely, and the processing cost is high moreover, and product self also can produce the difference in the course of working in addition, if the counterpoint inaccurate then damage the product easily.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that overcome prior art not enough, provide one kind and can reduce the equipment maintenance cost, can effectively reduce workman intensity of labour and improve efficiency of software testing's the cell-phone shell test platform that charges.
The utility model adopts the technical proposal that: the utility model discloses a base, support plate module, plug module and push down the module, it adorns admittedly to push down the module the top of base, equal sliding fit is in on the base the support plate module with the plug module is located respectively push down the both sides of module, be equipped with the standing groove that a plurality of all with product looks adaptation on the support plate module, a plurality of one side of standing groove all is equipped with the locking subassembly, be equipped with the test of a plurality of all with product joint looks adaptation on the plug module public head, be equipped with test joint, a plurality of all with product matched with product locating piece and a plurality of a plurality of and product joint looks adaptation on the module and locking subassembly matched with locking power component down.
According to the scheme, the to-be-tested product is placed on the placing groove, and the carrier plate module transports the to-be-tested product to the position below the pressing module; the lower pressing module moves downwards to be matched with the carrier plate module to move back, so that the test connector is connected with one end of the product connector, the locking power assembly drives the locking assembly to move the product to the positioning pin, the product is fixed through the positioning block and the positioning pin, and then the plugging module moves to the carrier plate module to insert the test male head into the other end of the product connector, so that the test of the product is completed; therefore, the testing process of the utility model realizes the testing of the product through the testing male head and the testing connector, the testing process is automatically carried out by using the air cylinder mechanism, the testing efficiency is high, and the product is fixed through the locking power assembly, the locking assembly and the product positioning block, so that the precise positioning of the product is realized, the plugging and unplugging testing of the testing male head and the testing connector is more accurate, the excessive collision damage to the product can be avoided, and the high processing cost caused by completely depending on the shape positioning is reduced; the utility model discloses a daily maintenance only needs to maintain test public head with test connector can, through structural design's rigor nature, test public head with test connector life is also than the high many of traditional test scheme, and greatly reduced equipment maintenance cost has also reduced the cost of labor owing to having left out the manual operation step simultaneously.
According to a preferable scheme, the carrier plate module comprises a pen-shaped air cylinder fixedly mounted on the base and a carrier plate which is in transmission connection with the pen-shaped air cylinder and is in sliding fit with the base, the placing groove and the locking assembly are arranged on the carrier plate, the locking assembly is arranged on one side of the placing groove, and a plurality of positioning pins matched with the product are arranged on the other side of the placing groove.
According to the scheme, products are placed on the placing groove, the pen-shaped air cylinder drives the carrier plate, so that the carrier plate slides on the base to the position below the pressing module, the products to be tested are conveyed to the position below the pressing module, the pressing module presses downwards, the pen-shaped air cylinder drives the carrier plate to move back, the test connector is made to contact with the product connector, the pressing module is made to contact with the carrier plate module, the locking power assembly drives the locking assembly, the products are made to contact with the positioning pins, and the products are fixed through the positioning pins and the product positioning blocks.
According to a preferable scheme, the plugging module comprises a plugging cylinder fixedly mounted on the base, a connecting plate in transmission connection with the plugging cylinder and in sliding fit with the base, mounting blocks respectively arranged at two ends of the connecting plate, and a PCB fixedly mounted on the mounting blocks, wherein the testing male head is mounted on the mounting blocks in a matched manner, and the PCB is in electrical signal connection with the testing male head.
According to the scheme, the plugging cylinder drives the connecting plate to slide on the base, so that the testing male head installed on the installation block is inserted into a product connector, and the testing data of the testing male head are transmitted to external equipment through the PCB
According to a preferable scheme, two limiting blocks are fixedly arranged on the base, and positioning screws matched with the limiting blocks are arranged at two ends of the connecting plate.
According to the scheme, the positioning screws and the limiting blocks are arranged to limit the sliding stroke of the connecting plate, so that damage to a product caused by over-insertion of the test male head is avoided.
According to a preferable scheme, the downward pressing module comprises a top plate, mounting plates arranged at two ends of the top plate, a pushing table arranged below the top plate, a downward pressing air cylinder penetrating through the top plate and in transmission connection with the pushing table, and a plurality of linear bearings penetrating through the top plate and fixedly connected with the pushing table, wherein a plurality of circuit boards in one-to-one correspondence with the test connectors are arranged at the bottom of the pushing table, the test connectors are in electrical signal connection with the circuit boards, and the product positioning block and the locking power assembly are fixedly arranged on the pushing table.
According to the scheme, the pushing table is driven by the pressing cylinder to move downwards, the support plate module is matched with the pushing table to move back, the test connector is connected with the product connector, the locking power assembly drives the locking assembly, the locking assembly pushes the product to move towards the positioning pin, and the product is fixed through the positioning pin and the product positioning block; the linear bearing plays a guiding role when the pushing platform moves in the vertical direction.
Preferably, the locking power assembly comprises a locking cylinder fixedly mounted on the push table and a locking push plate in transmission connection with the locking cylinder.
According to the scheme, the locking push plate is driven by the locking cylinder, so that the locking push plate is in contact with the locking assembly, and the locking assembly is triggered to push a product to the positioning pin.
Preferably, one side of the top plate is in hinged fit with the mounting plate, and the other side of the top plate is in threaded connection with the mounting plate.
According to the scheme, the top plate and the mounting plate are mounted in a mode of being hinged and combined with threads, so that the top plate can be turned up in a rotating mode, and the pressing module can be maintained and repaired conveniently.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
fig. 2 is a schematic structural diagram of the carrier module;
FIG. 3 is a schematic structural diagram of the plugging module;
FIG. 4 is a schematic structural diagram of the press module;
fig. 5 is a schematic structural view of the pressing module at another angle.
Detailed Description
As shown in fig. 1 to 5, in the present embodiment, the present invention includes a base 1, a carrier 24 module 2, a plug module 3 and a push-down module 4, the press-down module 4 is fixedly arranged above the base 1, the carrier plate 24 module 2 and the plug-in module 3 which are both in sliding fit with the base 1 are respectively arranged at two sides of the press-down module 4, the carrier plate 24 and the module 2 are provided with a plurality of placing grooves 21 which are all matched with the product, one side of each placing groove 21 is provided with a locking component 22, the plugging module 3 is provided with a plurality of testing male heads 31 which are matched with the product connectors 5, the pressing module 4 is provided with a plurality of testing joints 41 matched with the product joints 5, a plurality of product positioning blocks 42 matched with the products, and a plurality of locking power assemblies 43 matched with the locking assemblies 22.
The carrier plate 24 module 2 comprises a pen-shaped cylinder 23 fixedly mounted on the base 1 and a carrier plate 24 which is in transmission connection with the pen-shaped cylinder 23 and is in sliding fit with the base 1, the placing groove 21 and the locking assembly 22 are both arranged on the carrier plate 24, the locking assembly 22 is arranged on one side of the placing groove 21, a plurality of positioning pins 25 matched with products are arranged on the other side of the placing groove 21, and in the design, the locking assembly 22 is an existing locking technology.
The plugging module 3 comprises a plugging cylinder 32 fixedly mounted on the base 1, a connecting plate 33 connected with the plugging cylinder 32 in a transmission manner and matched with the base 1 in a sliding manner, mounting blocks 34 respectively arranged at two ends of the connecting plate 33, and a PCB 35 fixedly mounted on the mounting blocks 34, wherein the testing male head 31 is mounted on the mounting blocks 34 in a matching manner, and the PCB 35 is in electrical signal connection with the testing male head 31.
Two limiting blocks 11 are fixedly arranged on the base 1, and two ends of the connecting plate 33 are provided with positioning screws 36 matched with the limiting blocks 11.
The downward pressing module 4 comprises a top plate 44, mounting plates 45 arranged at two ends of the top plate 44, a pushing table 46 arranged below the top plate 44, a downward pressing air cylinder 47 penetrating through the top plate 44 and in transmission connection with the pushing table 46, and a plurality of linear bearings 48 penetrating through the top plate 44 and fixedly connected with the pushing table 46, wherein the bottom of the pushing table 46 is provided with a plurality of circuit boards 49 in one-to-one correspondence with the test connectors 41, the test connectors 41 are in electrical signal connection with the circuit boards 49, and the product positioning block 42 and the locking power assembly 43 are fixedly arranged on the pushing table 46.
The locking power assembly 43 comprises a locking cylinder 431 fixedly mounted on the push table 46 and a locking push plate 432 in transmission connection with the locking cylinder 431.
One side of the top plate 44 is hinged to the mounting plate 45, and the other side of the top plate 44 is connected with the mounting plate 45 through threads.
The utility model discloses be applied to the technical field of the cell-phone shell test equipment that charges.
Claims (7)
1. The utility model provides a cell-phone shell test platform charges which characterized in that: it comprises a base (1), a carrier plate (24) module (2), a plug-in module (3) and a press-down module (4), the pressing module (4) is fixedly arranged above the base (1), the carrier plate (24) module (2) and the plugging module (3) which are in sliding fit on the base (1) are respectively arranged at two sides of the pressing module (4), a plurality of placing grooves (21) which are matched with the product are arranged on the carrier plate (24) module (2), a locking component (22) is arranged on one side of each placing groove (21), a plurality of testing male heads (31) which are matched with the product joints are arranged on the plugging module (3), the pressing module (4) is provided with a plurality of test joints (41) matched with the product joints, a plurality of product positioning blocks (42) matched with the product and a plurality of locking power assemblies (43) matched with the locking assemblies (22).
2. The charging handset shell test platform of claim 1, wherein: support plate (24) module (2) are including adorning admittedly in pen type cylinder (23) on base (1) and with pen type cylinder (23) transmission is connected and sliding fit is in support plate (24) on base (1), standing groove (21) with locking Assembly (22) all locate on support plate (24), locking Assembly (22) are located one side of standing groove (21), the opposite side of standing groove (21) is equipped with locating pin (25) of a plurality of and product looks adaptation.
3. The charging handset shell test platform of claim 1, wherein: the plugging module (3) comprises a plugging cylinder (32) fixedly arranged on the base (1), a connecting plate (33) connected with the plugging cylinder (32) in a transmission mode and matched with the connecting plate in a sliding mode on the base (1), mounting blocks (34) respectively arranged at two ends of the connecting plate (33) and a PCB (35) fixedly arranged on the mounting blocks (34), the testing male head (31) is arranged on the mounting blocks (34) in a matched mode, and the PCB (35) is connected with the testing male head (31) in an electric signal mode.
4. A charging handset housing test platform according to claim 3, wherein: two limiting blocks (11) are fixedly arranged on the base (1), and positioning screws (36) matched with the limiting blocks (11) are arranged at two ends of the connecting plate (33).
5. The charging handset shell test platform of claim 1, wherein: the downward pressing module (4) comprises a top plate (44), mounting plates (45) arranged at two ends of the top plate (44), a pushing table (46) arranged below the top plate (44), a downward pressing air cylinder (47) penetrating through the top plate (44) and connected with the pushing table (46) in a transmission mode, and a plurality of linear bearings (48) penetrating through the top plate (44) and fixedly connected with the pushing table (46), wherein a plurality of circuit boards (49) corresponding to the test connectors (41) one to one are arranged at the bottom of the pushing table (46), the test connectors (41) are connected with the circuit boards (49) in an electric signal mode, and product positioning blocks (42) and locking power assemblies (43) are fixedly arranged on the pushing table (46).
6. The charging handset shell test platform of claim 5, wherein: the locking power assembly (43) comprises a locking cylinder (431) fixedly arranged on the push platform (46) and a locking push plate (432) in transmission connection with the locking cylinder (431).
7. The charging handset shell test platform of claim 6, wherein: one side of the top plate (44) is in hinged fit with the mounting plate (45), and the other side of the top plate (44) is in threaded connection with the mounting plate (45).
Priority Applications (1)
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CN201921171246.XU CN210514591U (en) | 2019-07-24 | 2019-07-24 | Mobile phone shell test platform charges |
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CN201921171246.XU CN210514591U (en) | 2019-07-24 | 2019-07-24 | Mobile phone shell test platform charges |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110412402A (en) * | 2019-07-24 | 2019-11-05 | 珠海市运泰利自动化设备有限公司 | A kind of charge mobile phone shell test platform |
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2019
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110412402A (en) * | 2019-07-24 | 2019-11-05 | 珠海市运泰利自动化设备有限公司 | A kind of charge mobile phone shell test platform |
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