CN211275526U - Terminal single-end test all-in-one machine - Google Patents

Terminal single-end test all-in-one machine Download PDF

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Publication number
CN211275526U
CN211275526U CN201921037311.XU CN201921037311U CN211275526U CN 211275526 U CN211275526 U CN 211275526U CN 201921037311 U CN201921037311 U CN 201921037311U CN 211275526 U CN211275526 U CN 211275526U
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CN
China
Prior art keywords
suction nozzle
main base
product
station
position groove
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Active
Application number
CN201921037311.XU
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Chinese (zh)
Inventor
赵建锋
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Zhuhai Dong Jingda Electronics Technology Co ltd
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Zhuhai Dong Jingda Electronics Technology Co ltd
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Priority to CN201921037311.XU priority Critical patent/CN211275526U/en
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Publication of CN211275526U publication Critical patent/CN211275526U/en
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Abstract

The utility model provides a reasonable in design, mechanism are simple, convenient to use's the single-end test all-in-one of terminal with the electrical property detection of terminal single-end, beat mark and CCD detects the collection in an organic whole. The utility model discloses a main base (11), be provided with vibration feeding tray (1), material loading suction nozzle (2), rotation station dish (3) and unloading suction nozzle (4) on main base (11) respectively, it evenly is provided with a plurality of product along the circumference and places position groove (31) to rotate station dish (3), still set gradually respectively on main base (11) with the product is placed corresponding insulation detection ware (5) in position groove (31), electrical property detector (6), tilting mechanism (7), laser marking mechanism (8) and CCD detection mechanism (9), material loading suction nozzle (2) and unloading suction nozzle (4) respectively with the product is placed position groove (31) corresponding. The utility model is suitable for a detection area of 49S-SMD terminal list.

Description

Terminal single-end test all-in-one machine
Technical Field
The utility model relates to a terminal single-end test all-in-one.
Background
At present, the single-end detection and marking of the existing 49S-SMD terminal respectively adopts three split devices, 1. insulation detection: detecting the short circuit and poor sealing products of the crystals; 2. and (3) testing electrical properties: detecting defective products with standard parameters exceeding the standard of the crystal; 3. laser marking: and marking the crystal by adopting a laser mode. Finally, a CCD camera is separately adopted to observe the product.
Three split devices adopted by the existing 49S-SMD detection and marking are required to be operated by personnel, so that the labor cost is high; the existing detection, marking and braid packaging adopts a sectional operation mode, so that the production efficiency is low; different frequency point products can be mixed in the process of the segmentation operation, and the quality problem of the produced products is easy to occur at the client.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that overcome prior art not enough, provide a reasonable in design, mechanism are simple, convenient to use with the single-end electrical property detection of terminal, beat mark and CCD detect collect terminal single-end test all-in-one in an organic whole.
The utility model adopts the technical proposal that: the utility model discloses a main base, be provided with vibration charging tray, material loading suction nozzle, rotation station dish and unloading suction nozzle on the main base respectively, it evenly is provided with a plurality of product along the circumference and places a groove to rotate the station dish, still set gradually respectively on the main base with the product is placed a corresponding insulation detector in groove, electrical property detector, tilting mechanism, laser marking mechanism and CCD detection mechanism, the material loading suction nozzle and the unloading suction nozzle respectively with the product is placed a groove corresponding.
The main base is provided with a pneumatic lifting frame, the pneumatic lifting frame is arranged above the rotary station disc, and the insulation detector and the electrical property detector are respectively arranged on the pneumatic lifting frame.
The turnover mechanism comprises a first support frame arranged on the main base, a telescopic cylinder and a turnover station block are respectively arranged on the first support frame, a feeding suction nozzle is arranged at the output end of the telescopic cylinder, and the feeding suction nozzle is arranged above the turnover station block and corresponds to the product placing groove.
The laser marking mechanism comprises a second support frame arranged on the main base and a laser printing head fixedly arranged on the second support frame, wherein the laser printing head is arranged above the rotary station disc and corresponds to the product placing groove.
The CCD detection mechanism comprises a supporting seat arranged on the main base and a CCD camera arranged in the supporting seat, a high-brightness light source is further arranged on the supporting seat, the high-brightness light source is arranged above the CCD camera and is arranged above the rotary working position disc, and the CCD camera and the high-brightness light source correspond to the product placing position groove respectively.
The utility model has the advantages that: the utility model discloses in, all concentrate on rotating the station dish with the function of insulation detection ware, electrical property detector, tilting mechanism, laser marking mechanism and CCD detection mechanism to reach and rotate the station dish and change the process that electrical property detection, laser marking and CCD camera that the round just can accomplish the product and detect, improved holistic efficiency widely and saved the cost of labor.
Drawings
Fig. 1 is a schematic top view of the present invention.
Detailed Description
As shown in fig. 1, the utility model discloses a main base 11, be provided with vibration charging tray 1, material loading suction nozzle 2, rotation station dish 3 and unloading suction nozzle 4 on the main base 11 respectively, it evenly is provided with a plurality of product along the circumference and places position groove 31 to rotate station dish 3, still set gradually respectively on the main base 11 with the product is placed corresponding insulation detector, electrical property detector, tilting mechanism 7, laser marking mechanism 8 in position groove 31 and CCD detection mechanism 9, material loading suction nozzle 2 and unloading suction nozzle 4 respectively with the product is placed position groove 31 corresponding.
The main base 11 is provided with a pneumatic lifting frame 5, the pneumatic lifting frame 5 is arranged above the rotary station disc 3, and the insulation detector and the electrical property detector are respectively arranged on the pneumatic lifting frame 5.
The turnover mechanism 7 comprises a first support frame 71 arranged on the main base 11, a telescopic cylinder 72 and a turnover station block 73 are respectively arranged on the first support frame 71, a feeding suction nozzle 74 is arranged on the output end of the telescopic cylinder 72, and the feeding suction nozzle 74 is arranged above the turnover station block 73 and corresponds to the product placing station groove 31.
The laser marking mechanism 8 comprises a second supporting frame 81 arranged on the main base 11 and a laser printing head 82 fixedly arranged on the second supporting frame 81, wherein the laser printing head 82 is arranged above the rotary station disc 3 and corresponds to the product placing station groove 31.
The CCD detection mechanism 9 comprises a support seat arranged on the main base 11 and a CCD camera arranged in the support seat, a high-brightness light source is further arranged on the support seat, the high-brightness light source is arranged above the CCD camera and is arranged above the rotary working position disc 3, and the CCD camera and the high-brightness light source correspond to the product placing position groove 31 respectively.
The working principle is as follows:
the product is conveyed to the lower part of the feeding suction nozzle 2 from the vibration feeding disc 1 in a vibration mode, and then the feeding suction nozzle 2 sucks the product into the product placing groove 31 of the rotary station disc 3. Then the rotary station disc 3 rotates by a preset angle, so that the product placing position groove 31 in which the product is placed is arranged below the insulation detector, then the insulation detector descends along with the pneumatic lifting frame 5 to perform insulation detection on the product, and after the detection is completed, the rotary station disc 3 transfers the product placing position groove 31 to the lower part of the electrical property detector to perform electrical property detection. Then, the product placement groove 31 is transferred to the station of the turnover mechanism 7, the feeding suction nozzle 74 takes the product on the turnover station block 73 and turns over 180 degrees, the shell of the product is upward, and then the feeding suction nozzle 74 takes the product back into the product placement groove 31. Then the rotary working position disc 3 transfers the product placing position groove 31 to the lower part of the laser printing head 82, and the laser printing head 82 performs laser printing on the product shell. After the detection is finished, the rotating station disc 3 transfers the product placing groove 31 to the lower part of the CCD camera for high-definition image detection. After the completion, the station disc 3 is rotated to transfer the product placing groove 31 to the lower part of the discharging suction nozzle 4, and the discharging suction nozzle 4 performs discharging. Wherein the non-defective products are placed in one area and the defective products are placed in another area.
The utility model is suitable for a detection area of 49S-SMD terminal list.

Claims (5)

1. The utility model provides a terminal single-end test all-in-one which characterized in that: it includes main base (11), be provided with vibration charging tray (1), material loading suction nozzle (2), rotation station dish (3) and unloading suction nozzle (4) on main base (11) respectively, it evenly is provided with a plurality of product along the circumference and places position groove (31) to rotate station dish (3), still set gradually respectively on main base (11) with the product is placed corresponding insulation detector, electrical property detector, tilting mechanism (7), laser marking mechanism (8) and CCD detection mechanism (9) in position groove (31), material loading suction nozzle (2) and unloading suction nozzle (4) respectively with the product is placed position groove (31) corresponding.
2. A terminal single-head testing all-in-one machine according to claim 1, characterized in that: the device is characterized in that a pneumatic lifting frame (5) is arranged on the main base (11), the pneumatic lifting frame (5) is arranged above the rotary station disc (3), and the insulation detector and the electrical property detector are respectively arranged on the pneumatic lifting frame (5).
3. A terminal single-head testing all-in-one machine according to claim 2, characterized in that: the turnover mechanism (7) comprises a first support frame (71) arranged on the main base (11), a telescopic cylinder (72) and a turnover station block (73) are respectively arranged on the first support frame (71), a feeding suction nozzle (74) is arranged at the output end of the telescopic cylinder (72), and the feeding suction nozzle (74) is arranged above the turnover station block (73) and corresponds to the product placement station groove (31).
4. A terminal single-head testing all-in-one machine according to claim 3, characterized in that: laser marking mechanism (8) are including setting up second support frame (81) on main base (11) and fixed the setting and are in laser printing head (82) on second support frame (81), laser printing head (82) are arranged in rotate the top of station dish (3) and with the product is placed position groove (31) and is corresponding.
5. A terminal single-head test all-in-one machine according to claim 4, characterized in that: the CCD detection mechanism (9) comprises a supporting seat arranged on the main base (11) and a CCD camera arranged in the supporting seat, a high-brightness light source is further arranged on the supporting seat, the high-brightness light source is arranged above the CCD camera and is arranged above the rotary working position disc (3), and the CCD camera and the high-brightness light source correspond to the product placing position groove (31) respectively.
CN201921037311.XU 2019-07-05 2019-07-05 Terminal single-end test all-in-one machine Active CN211275526U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921037311.XU CN211275526U (en) 2019-07-05 2019-07-05 Terminal single-end test all-in-one machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921037311.XU CN211275526U (en) 2019-07-05 2019-07-05 Terminal single-end test all-in-one machine

Publications (1)

Publication Number Publication Date
CN211275526U true CN211275526U (en) 2020-08-18

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ID=72036872

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921037311.XU Active CN211275526U (en) 2019-07-05 2019-07-05 Terminal single-end test all-in-one machine

Country Status (1)

Country Link
CN (1) CN211275526U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110369308A (en) * 2019-07-05 2019-10-25 珠海东精大电子科技有限公司 A kind of testing integrated machine of terminal single head

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110369308A (en) * 2019-07-05 2019-10-25 珠海东精大电子科技有限公司 A kind of testing integrated machine of terminal single head

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