CN105921422B - A kind of full-automatic integration test all-in-one machine - Google Patents
A kind of full-automatic integration test all-in-one machine Download PDFInfo
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- CN105921422B CN105921422B CN201610532533.3A CN201610532533A CN105921422B CN 105921422 B CN105921422 B CN 105921422B CN 201610532533 A CN201610532533 A CN 201610532533A CN 105921422 B CN105921422 B CN 105921422B
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B07—SEPARATING SOLIDS FROM SOLIDS; SORTING
- B07C—POSTAL SORTING; SORTING INDIVIDUAL ARTICLES, OR BULK MATERIAL FIT TO BE SORTED PIECE-MEAL, e.g. BY PICKING
- B07C5/00—Sorting according to a characteristic or feature of the articles or material being sorted, e.g. by control effected by devices which detect or measure such characteristic or feature; Sorting by manually actuated devices, e.g. switches
- B07C5/34—Sorting according to other particular properties
- B07C5/344—Sorting according to other particular properties according to electric or electromagnetic properties
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01R—MEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
- G01R1/00—Details of instruments or arrangements of the types included in groups G01R5/00 - G01R13/00 and G01R31/00
- G01R1/02—General constructional details
- G01R1/04—Housings; Supporting members; Arrangements of terminals
- G01R1/0408—Test fixtures or contact fields; Connectors or connecting adaptors; Test clips; Test sockets
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- General Physics & Mathematics (AREA)
- Testing Electric Properties And Detecting Electric Faults (AREA)
Abstract
The invention discloses a kind of full-automatic integration test all-in-one machines, including cabinet assembly, a workbench is provided in cabinet assembly, feeding mechanism assembly, mechanism for testing assembly and receiving mechanism assembly are provided on the workbench, the mechanism for testing assembly includes TCH test channel, TCH test channel includes the channel matrix for exposing the pin foot of testing element, and the test of the two sides pin foot for separating testing element is fixedly installed in channel matrix every platform;The two sides of TCH test channel are provided with for testing pressure resistance and electrical test suite, test suite includes carrier substrate, carrier substrate with the vertically arranged sliding track mechanism of TCH test channel by being installed on the workbench, the electrical testing base station and voltage-withstand test base station being arranged side by side along the parallel direction of TCH test channel are set on carrier substrate, the telescopic cylinder for pushing carrier substrate to move along sliding track mechanism is provided on workbench.Full-automatic integration test all-in-one machine of the invention, testing efficiency and highly-safe.
Description
Technical field
The invention belongs to pressure resistances, electric characteristic detecting apparatus technical field, and in particular to a kind of full-automatic integration test all-in-one machine,
For network transformer, network filter and associated electronic components.
Background technique
Usual electronic component requires to carry out the detection such as voltage-withstand test, electric performance test after the completion of production, so that
Electronic component can reach the requirement of safe handling, and electronic component is avoided to occur bad pressure resistance, electric leakage, short circuit in use
The problems such as.Currently, the mode that voltage-withstand test and electrical testing use is directed to specific electronics by manufacture mainly with artificial position
The fixture of element, synthesis has fixed switching-on mechanism, voltage-withstand test switching-on mechanism, electrical testing switching-on mechanism on fixture, will need
The electronic component of monitoring is put into fixture, combined floodgate fixation is carried out to testing element by fixed switching-on mechanism, then again by resistance to
Pressing brake mechanism closes a floodgate to testing element, carries out voltage-withstand test, after voltage-withstand test is complete, separating brake, then by electrically closing
Brake mechanism closes a floodgate to testing element, carries out electrical testing.Be required in test process by manually being closed a floodgate, separating brake,
The operation such as component is placed, high labor cost, testing efficiency is low and danger coefficient is higher.
Summary of the invention
It is an object of the invention to:Exist during voltage-withstand test and electrical testing for existing electronic component artificial
At high cost, testing efficiency is low and the higher problem of danger coefficient, provides a kind of full-automatic integration test all-in-one machine, can be realized pair
Network transformer, the full-automatic voltage-withstand test of network filter and associated electronic components and electrical testing.
To achieve the goals above, the technical solution adopted by the present invention is:
A kind of full-automatic integration test all-in-one machine, including cabinet assembly are provided with a workbench in cabinet assembly, described
Feeding mechanism assembly, mechanism for testing assembly and receiving mechanism assembly are provided on workbench, the mechanism for testing assembly includes
TCH test channel, TCH test channel include the channel matrix for exposing the pin foot of testing element, are fixedly installed and are used in channel matrix
The test of two sides pin foot of testing element is separated every platform;The two sides of TCH test channel are provided with for testing pressure resistance and electrical property
Test suite, test suite include carrier substrate, and carrier substrate with the vertically arranged sliding track mechanism of TCH test channel by being mounted on
On workbench, the electrical testing base station and voltage-withstand test base being arranged side by side along the parallel direction of TCH test channel are set on carrier substrate
Platform is provided with the telescopic cylinder for pushing carrier substrate to move along sliding track mechanism on workbench.
Preferably, the electrical testing base position there are two detecting electric performance is arranged side by side in the electrical testing base station,
There are two voltage-withstand test base positions for setting in the voltage-withstand test base station, and two tests are spaced between two voltage-withstand test base positions
Element vacancy is spaced a testing element vacancy between adjacent electrical testing base position and voltage-withstand test base position.
Preferably, the feeding mechanism assembly includes cutting agency, the first feeding mechanism and the first Material moving device;
First Material moving device includes that foundation trench is expected in the first shifting, and the first feeding mechanism includes feeding passage, feeding passage
Outlet end be arranged in first shifting material foundation trench side, the arrival end of the TCH test channel be arranged in first shifting material foundation trench it is another
Side, and the arrival end of TCH test channel and the outlet end of feeding passage are arranged in a staggered manner;The first shifting is provided in first shifting material foundation trench
Expect channel, and is provided between the first material moving channel and the first shifting material foundation trench and expects base for guiding the first material moving channel to move first
The mobile guide frame of slot;First material moving channel, which is connected with, pushes the first material moving channel to survey in docking feeding passage position and docking
The first passage mobile cylinder switched between examination channel position;First opposite with the arrival end of TCH test channel moves the one of material foundation trench
Side is additionally provided with for first in the testing element push-in TCH test channel in the first material moving channel to be moved material cylinder.
Preferably, the feeding passage is docked with cutting agency, and the bottom of the channel of feeding passage is provided with feeding transmission
Band, for the testing element of cutting agency outlet end to be sent in TCH test channel.
Preferably, the receiving mechanism assembly includes defective products receiving mechanism component and non-defective unit receiving mechanism component;
The defective products receiving mechanism component includes the first rewinding channel, the first rewinding channel and the TCH test channel
Outlet end docking, the side in the first rewinding channel is provided with defective products rewinding case, and the other side in the first rewinding channel is provided with
Defective products pusher cylinder, the both sides of the edge in the first rewinding channel are provided with notch section, and set in the first rewinding channel of notch section
It is equipped with the pusher fixture block of bad connection product pusher cylinder.
Preferably, the non-defective unit receiving mechanism component includes the second feeding mechanism, the second Material moving device and non-defective unit rewinding
Mechanism;
Second feeding mechanism is docked with the outlet end in the first rewinding channel;
Second Material moving device is connected between the second feeding mechanism and non-defective unit receiving mechanism;
Second Material moving device includes that foundation trench is expected in the second shifting, and the outlet end setting of the second feeding mechanism moves material second
The other side of the second shifting material foundation trench, and the entrance of non-defective unit receiving mechanism is arranged in the side of foundation trench, the non-defective unit receiving mechanism
It holds and is arranged in a staggered manner with the outlet end of the second feeding mechanism;It is provided with the second material moving channel in second shifting material foundation trench, and second moves material
The guide frame being provided between material foundation trench for guiding the second material moving channel to move material foundation trench movement second is moved in channel and second;
Second material moving channel, which is connected with, pushes the second material moving channel in the position and docking non-defective unit receiving mechanism for docking the second feeding mechanism
Position between the second channel mobile cylinder that switches;Second opposite with the arrival end of non-defective unit receiving mechanism moves the one of material foundation trench
Side is additionally provided with for moving material cylinder for second of the testing element push-in non-defective unit receiving mechanism in the second material moving channel.
By adopting the above-described technical solution, the beneficial effects of the invention are as follows:
A kind of full-automatic integration test all-in-one machine of the invention, by TCH test channel two sides be respectively arranged with can carry out it is resistance to
The test suite of pressure test and electrical testing, can carry out voltage-withstand test and electrical testing, testing efficiency is higher, and centre is set simultaneously
It is equipped with test to separate the two sides pin foot of testing element every platform, to guarantee the safety of test, the whole process of test is under including
Material, test and rewinding, whole process are full automatic working, can effectively improve working efficiency, and reduce cost of labor and safety
The generation of accident.
Detailed description of the invention
Fig. 1 is full-automatic integration test all-in-one machine structure schematic diagram of the invention.
Fig. 2 is cutting agency and the first feeding machine structure schematic diagram of the invention.
Fig. 3 is the first feeding mechanism and the first Material moving device structural schematic diagram of the invention.
Fig. 4 is the first Material moving device and mechanism for testing assembly structure schematic diagram of the invention.
Fig. 5 is mechanism for testing assembly mechanism schematic diagram of the invention.
Fig. 6 is electrical testing base station and voltage-withstand test abutment structure schematic diagram of the invention.
Fig. 7 is mechanism for testing assembly and defective products receiving mechanism component structure diagram of the invention.
Fig. 8 is defective products receiving mechanism component and the second feeding machine structure schematic diagram of the invention.
Fig. 9 is the second feeding mechanism and the second Material moving device structural schematic diagram of the invention.
Appended drawing reference:
100- cabinet assembly, 101- workbench;
200- feeding mechanism assembly, 210- cutting agency, the first feeding mechanism of 220-, 221- feeding passage, 222- feeding
Conveyer belt, the first Material moving device of 230-, 231- first move material foundation trench, the first material moving channel of 232-, the mobile gas of 233- first passage
Cylinder, 234- first move material cylinder;
300- mechanism for testing assembly, 310- TCH test channel, 311- channel matrix, 312- are tested every platform, 320- test suite,
321- carrier substrate, 322- sliding track mechanism, 323- electrical testing base station, 324- voltage-withstand test base station, 325- telescopic cylinder;A- electricity
Property test base position, b- voltage-withstand test base position, c- testing element vacancy;
400- receiving mechanism assembly, 410- defective products receiving mechanism component, 411- defective products rewinding case, 412- pusher card
Block, 413- defective products pusher cylinder, the first rewinding of 414- channel, the second feeding mechanism of 420-, the second Material moving device of 430-, 431-
Second channel mobile cylinder, the second material moving channel of 432-, 433- second move material foundation trench, and 434- second moves material cylinder, 440- non-defective unit
Receiving mechanism;
500- testing element.
Specific embodiment
Referring to Fig.1-9, a kind of full-automatic integration test all-in-one machine of the invention, including cabinet assembly 100, cabinet assembly
It is provided with a workbench 101 on 100, feeding mechanism assembly 200, mechanism for testing assembly 300 are provided on the workbench 101
With receiving mechanism assembly 400.
Referring to Fig. 2, Fig. 3, feeding mechanism assembly 200 includes cutting agency 210, the first feeding mechanism 220 and the first shifting material
Mechanism 230, testing element 500 to be tested is needed in the present embodiment to be contained by charging pipe, then by cutting agency 210,
Testing element 500 in charging pipe can be released one by one, then into the first feeding mechanism 220.
Referring to Fig. 4, mechanism for testing assembly 300 includes TCH test channel 310.
First Material moving device 230 includes that the first shifting expects that foundation trench 231, the first feeding mechanism 220 include feeding passage 221, is sent
The side of the first shifting material foundation trench 231 is arranged in the outlet end in material channel 221, and the arrival end setting of the TCH test channel 310 exists
First moves the other side of material foundation trench 231, and the arrival end of TCH test channel 310 and the outlet end of feeding passage 221 are arranged in a staggered manner.The
It is provided with the first material moving channel 232 in one shifting material foundation trench 231, and is set between the first material moving channel 232 and the first shifting material foundation trench 231
It is equipped with for guiding the first material moving channel 232 to move the mobile guide frame (not shown) of material foundation trench 231 first.First, which moves material, leads to
Road 232, which is connected with, pushes the first material moving channel 232 between docking 221 position of feeding passage and docking 310 position of TCH test channel
The first passage mobile cylinder 233 of switching;First opposite with the arrival end of TCH test channel 310 moves the side of material foundation trench 231 also
It is provided with first for the testing element 500 in the first material moving channel 232 to be pushed into TCH test channel 310 and moves material cylinder 234.
Feeding passage 221 is docked with cutting agency 210, and the bottom of the channel of feeding passage 221 is provided with infeed conveyor
222, for the testing element 500 of 210 outlet end of cutting agency to be sent in TCH test channel 310.
The testing element 500 that cutting agency 210 comes out is fallen directly into the feeding passage 221 of the first feeding mechanism 220,
It is transferred in the first Material moving device 230 by being provided with infeed conveyor 222 in feeding passage 221.
In the first Material moving device 230, by first passage mobile cylinder 233 by the first material moving channel 232 be pushed to
Testing element 500 is then moved to the first shifting by the position that feeding passage 221 docks, the infeed conveyor 222 in feeding passage 221
Expect in channel 232, is then again pushed to the first material moving channel 232 and TCH test channel 310 by first passage mobile cylinder 233
The position of docking, then move material cylinder 234 by first and shift the testing element 500 in the first material moving channel 232 onto TCH test channel
In 310.
Referring to Fig. 5, Fig. 6, TCH test channel 310 includes the channel matrix 311 for exposing the pin foot of testing element 500, channel
The test of the two sides pin foot for separating testing element 500 is fixedly installed on matrix 311 every platform 312;TCH test channel 310
Two sides are provided with for testing pressure resistance and electrical test suite 320, and test suite 320 includes carrier substrate 321, carrier base
Plate 321 is set on carrier substrate 321 by being mounted on workbench 101 with the vertically arranged sliding track mechanism 322 of TCH test channel 310
Set the electrical testing base station 323 and voltage-withstand test base station 324 being arranged side by side along the parallel direction of TCH test channel 310, workbench 101
On be provided with and push the telescopic cylinder 325 that moves along sliding track mechanism 322 of carrier substrate 321.
It is gradually accumulated when in TCH test channel 310, then elapses forward one by one, carrier is at this moment driven by telescopic cylinder 325
Then substrate 321 passes through on electrical testing base station 323 and voltage-withstand test base station 324 toward close to the movement of the direction of TCH test channel 310
Different mechanism for testing (not shown) contact the testing elements 500 of different corresponding positions respectively, be then respectively completed electrical testing
And voltage-withstand test, after the completion of test, test suite 320 is retracted under the action of telescopic cylinder 325, in channel 310 to be tested
Testing element 500 repeats movement just now after elapsing forward once more, carries out the electrical testing of next testing element 500 and resistance to
Pressure test.The electrical testing base station 323 of electrical testing and the voltage-withstand test base station 324 of voltage-withstand test are separately provided, do not done mutually
It disturbs, it is safer.
It is arranged side by side that there are two detecting electric performances in order to improve the efficiency of test, in the electrical testing base station 323
Electrical testing base position a, setting is there are two voltage-withstand test base position b in the voltage-withstand test base station 324, and two voltage-withstand tests
It is spaced two testing element vacancy c between the b of base position, a survey is spaced between adjacent electrical testing base position a and voltage-withstand test base position b
Try element vacancy c.In this way, the testing element 500 in TCH test channel 310 can be under the action of first moves material cylinder 234 every time
The position of mobile two testing elements 500 can disposably complete the test of two testing elements 500, test when then testing
Efficiency is twice originally.There are two voltage-withstand test base position b for setting on voltage-withstand test base station 324, and interphase is every there are two tests
Element vacancy c is not interfere with each other, safety is higher to ensure that the distance between two voltage-withstand test base position b.
Receiving mechanism assembly 400 includes defective products receiving mechanism component 410 and non-defective unit receiving mechanism component.
Referring to Fig. 7, defective products receiving mechanism component 410 includes the first rewinding channel 414, the first rewinding channel 414 and institute
The outlet end for the TCH test channel 310 stated is docked, and the side in the first rewinding channel 414 is provided with defective products rewinding case 411, and first receives
The other side in material channel 414 is provided with defective products pusher cylinder 413, and the both sides of the edge setting in the first rewinding channel 414 is jagged
Portion, and the first rewinding channel 414 of notch section is provided with the pusher fixture block 412 of bad connection product pusher cylinder 413.It tests
Testing element 500 after is pushed in the first rewinding channel 414, and passes through among pusher fixture block 412, when test member
The test result of part 500 is non-defective unit, then testing element 500 successively elapses forward from the first rewinding channel 414, enters next
In a mechanism;If the test result of the testing element 500 is defective products, when testing element 500 is by pusher fixture block 412,
412 transverse shifting of pusher fixture block is driven by defective products pusher cylinder 413, so that defective products testing element 500 therein be pushed away
Enter into defective products rewinding case 411, completes the collection of defective products.It is with every two testing element 500 when test for list
Pusher fixture block 412 and defective products pusher cylinder 413 when position is tested, in corresponding defective products receiving mechanism component 410
Two groups are provided with, is arranged side by side respectively, it can be achieved that carrying out sub-material operation as unit of every two testing element 500.
Referring to Fig. 8, Fig. 9, non-defective unit receiving mechanism component includes the second feeding mechanism 420, the second Material moving device 430 and non-defective unit
Receiving mechanism 440.
Second feeding mechanism 420 is docked with the outlet end in the first rewinding channel 414, and the second feeding mechanism 420 is using with the
Identical structure in one receiving mechanism is, it can be achieved that transmission work to testing element 500.
Second Material moving device 430 is connected between the second feeding mechanism 420 and non-defective unit receiving mechanism 440;Second material moving machine
Structure 430 includes that foundation trench 433 is expected in the second shifting, and the side of the second shifting material foundation trench 433 is arranged in the outlet end of the second feeding mechanism 420,
The other side of the second shifting material foundation trench 433, and the arrival end of non-defective unit receiving mechanism 440 is arranged in the non-defective unit receiving mechanism 440
It is arranged in a staggered manner with the outlet end of the second feeding mechanism 420.Second moves in material foundation trench 433 and is provided with the second material moving channel 432, and the
It is provided between two material moving channels 432 and the second shifting material foundation trench 433 and expects foundation trench for guiding the second material moving channel 432 to move second
433 mobile guide frame (not shown), the guide frame in the present embodiment is all made of the fit system of guide pad and sliding slot, real
The movement that can be now oriented to.Second material moving channel 432, which is connected with, pushes the second material moving channel 432 docking the second feeding mechanism 420
Position and dock non-defective unit receiving mechanism 440 position between the second channel mobile cylinder 431 that switches;With non-defective unit receiving mechanism
The second opposite side for moving material foundation trench 433 of 440 arrival end is additionally provided with for the test in the second material moving channel 432 is first
Part 500 is pushed into the second shifting material cylinder 434 of non-defective unit receiving mechanism 440.
Testing element 500 is transmitted to the second shifting material foundation trench 433 in the second Material moving device 430 from the second feeding mechanism 420
In, second, which moves material foundation trench 433, is moved into the position docked with non-defective unit receiving mechanism 440 by second channel mobile cylinder 431
It sets, then moves material cylinder 434 by second and testing element 500 is pushed into non-defective unit receiving mechanism 440.Non-defective unit receiving mechanism
440 are encased in single testing element 500 in charging pipe one by one again, are finally completed entire test and packing work.
Claims (6)
1. a kind of full-automatic integration test all-in-one machine, including cabinet assembly (100), cabinet assembly are provided with a job on (100)
Platform (101), which is characterized in that be provided with feeding mechanism assembly (200), mechanism for testing assembly on the workbench (101)
(300) and receiving mechanism assembly (400), the mechanism for testing assembly (300) include TCH test channel (310), TCH test channel
It (310) include the channel matrix (311) for exposing the pin foot of testing element (500), channel matrix is fixedly installed on (311)
For separate testing element (500) two sides pin foot test every platform (312);The two sides of TCH test channel (310) are provided with use
In test pressure resistance and electrical test suite (320), test suite (320) includes carrier substrate (321), carrier substrate (321)
By being mounted on workbench (101) with TCH test channel (310) vertically arranged sliding track mechanism (322), on carrier substrate (321)
The electrical testing base station (323) and voltage-withstand test base station (324) being arranged side by side along the parallel direction of TCH test channel (310) are set,
The telescopic cylinder (325) for pushing carrier substrate (321) mobile along sliding track mechanism (322) is provided on workbench (101).
2. full-automatic integration test all-in-one machine according to claim 1, which is characterized in that the electrical testing base station
(323) the electrical testing base position (a) there are two detecting electric performance is arranged side by side in, in the voltage-withstand test base station (324)
There are two voltage-withstand test base positions (b) for setting, and two testing element vacancy (c), phase are spaced between two voltage-withstand test base positions (b)
A testing element vacancy (c) is spaced between adjacent electrical testing base position (a) and voltage-withstand test base position (b).
3. full-automatic integration test all-in-one machine according to claim 1, which is characterized in that the feeding mechanism assembly
It (200) include cutting agency (210), the first feeding mechanism (220) and the first Material moving device (230);
First Material moving device (230) includes that foundation trench (231) are expected in the first shifting, and the first feeding mechanism (220) includes that feeding is logical
Road (221), the side that the outlet end setting of feeding passage (221) moves material foundation trench (231) first, the TCH test channel
(310) other side that arrival end setting moves material foundation trench (231) first, and the arrival end of TCH test channel (310) and feeding are logical
The outlet end in road (221) is arranged in a staggered manner;It is provided with the first material moving channel (232) in first shifting material foundation trench (231), and first moves material
It is provided between channel (232) and the first shifting material foundation trench (231) and expects foundation trench for guiding the first material moving channel (232) to move first
(231) mobile guide frame;First material moving channel (232), which is connected with, pushes the first material moving channel (232) logical to feeding
The first passage mobile cylinder (233) switched between road (221) position and docking TCH test channel (310) position;With TCH test channel
(310) the first opposite side for moving material foundation trench (231) of arrival end is additionally provided with for will be in the first material moving channel (232)
Testing element (500) is pushed into the first shifting material cylinder (234) in TCH test channel (310).
4. full-automatic integration test all-in-one machine according to claim 3, which is characterized in that the feeding passage (221)
It is docked with cutting agency (210), the bottom of the channel of feeding passage (221) is provided with infeed conveyor (222), is used for blanking machine
The testing element (500) of structure (210) outlet end is sent in TCH test channel (310).
5. full-automatic integration test all-in-one machine according to claim 1, which is characterized in that the receiving mechanism assembly
It (400) include defective products receiving mechanism component (410) and non-defective unit receiving mechanism component;
The defective products receiving mechanism component (410) includes the first rewinding channel (414), the first rewinding channel (414) and institute
The outlet end for the TCH test channel (310) stated is docked, and the side in the first rewinding channel (414) is provided with defective products rewinding case (411),
The other side in the first rewinding channel (414) is provided with defective products pusher cylinder (413), the two sides in the first rewinding channel (414)
Edge is provided with notch section, and the first rewinding channel (414) of notch section is provided with pushing away for bad connection product pusher cylinder (413)
Expect fixture block (412).
6. full-automatic integration test all-in-one machine according to claim 5, which is characterized in that the non-defective unit receiving mechanism group
Part includes the second feeding mechanism (420), the second Material moving device (430) and non-defective unit receiving mechanism (440);
Second feeding mechanism (420) is docked with the outlet end in the first rewinding channel (414);
Second Material moving device (430) is connected between the second feeding mechanism (420) and non-defective unit receiving mechanism (440);
Second Material moving device (430) includes that foundation trench (433) are expected in the second shifting, and the outlet end of the second feeding mechanism (420) is set
The side for moving material foundation trench (433) second is set, non-defective unit receiving mechanism (440) setting moves material foundation trench (433) second
The other side, and the arrival end of non-defective unit receiving mechanism (440) and the outlet end of the second feeding mechanism (420) are arranged in a staggered manner;Second moves
Material foundation trench (433) in be provided with the second material moving channel (432), and the second material moving channel (432) and second move expect foundation trench (433) it
Between be provided with for guide the second material moving channel (432) second move material foundation trench (433) move guide frame;Second, which moves material, leads to
Road (432), which is connected with, pushes the second material moving channel (432) in the position of docking the second feeding mechanism (420) and docking non-defective unit rewinding
The second channel mobile cylinder (431) switched between the position of mechanism (440);With the arrival end phase of non-defective unit receiving mechanism (440)
Pair second move material foundation trench (433) side be additionally provided with for pushing away the testing element (500) in the second material moving channel (432)
Enter non-defective unit receiving mechanism (440) second moves material cylinder (434).
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CN108971029B (en) * | 2018-08-31 | 2024-05-24 | 深圳市三五五装备技术有限公司 | Full-automatic detection and sorting receiving device for SMD/DIP elements |
CN113210301B (en) * | 2021-06-02 | 2022-07-01 | 四川经纬达科技集团有限公司 | Power transformer production equipment and production process |
CN114054386A (en) * | 2021-11-11 | 2022-02-18 | 广州加杰精密机械有限公司 | SMD electronic component multistation accredited testing organization |
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CN201449427U (en) * | 2009-07-08 | 2010-05-05 | 东莞创慈磁性元件有限公司 | Three-in-one automatic tester for transformer |
CN204489922U (en) * | 2015-01-05 | 2015-07-22 | 东莞启益电器机械有限公司 | charger detection device |
CN104525500A (en) * | 2015-01-06 | 2015-04-22 | 南通新三能电子有限公司 | Automatic sorting device for bolt capacitors |
CN105242161A (en) * | 2015-10-29 | 2016-01-13 | 青岛海智半导体有限公司 | Testing system of electronic element with pins |
CN205949337U (en) * | 2016-07-06 | 2017-02-15 | 绵阳高新区经纬达科技有限公司 | Full -automatic comprehensive test all -in -one |
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