CN216284994U - Universal optical universal machine - Google Patents

Universal optical universal machine Download PDF

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Publication number
CN216284994U
CN216284994U CN202122699285.0U CN202122699285U CN216284994U CN 216284994 U CN216284994 U CN 216284994U CN 202122699285 U CN202122699285 U CN 202122699285U CN 216284994 U CN216284994 U CN 216284994U
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China
Prior art keywords
moving mechanism
axis moving
general
placing
pfc
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CN202122699285.0U
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Chinese (zh)
Inventor
赖勉力
汪利军
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Ningbo Jiuzong Intelligent Technology Co ltd
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Ningbo Jiuzong Intelligent Technology Co ltd
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Abstract

The utility model relates to the technical field of PFC fingerprint module defect detection, and particularly discloses a universal optical universal machine which comprises a detection device body, wherein a detection table is arranged in the detection device body, a Y-axis moving mechanism is arranged on the detection table, a slidable bottom plate is arranged on the Y-axis moving mechanism, a rotatable placing seat is arranged on the bottom plate, and a placing groove for placing a PFC fingerprint module is arranged on the placing seat; the detection table is provided with a first visual assembly, the detection table is further provided with a mounting support which is arranged at one end of the Y-axis moving mechanism and is perpendicular to the Y-axis moving mechanism, the upper end of the mounting support is provided with an X-axis moving mechanism, the X-axis moving mechanism is provided with a slidable mounting plate, the mounting plate is provided with a Z-axis moving mechanism, and the Z-axis moving mechanism is provided with a second visual assembly. The utility model better solves the problem that the visual detection device in the prior art cannot detect the PFC fingerprint module comprehensively.

Description

Universal optical universal machine
Technical Field
The utility model relates to the technical field of PFC fingerprint module defect detection, in particular to a universal optical universal machine.
Background
The PFC fingerprint module needs to be detected after production, and no dirt, scratch, white dot, multi-point glue and leaking glue on the PFC fingerprint membrane module are determined. At present, the detection modes of the PFC fingerprint module are mainly manual detection and visual detection modes, and manual detection not only brings large labor amount, but also has the problems of missing detection and false detection; the vision detection mode has the problem that the PFC fingerprint module cannot be detected comprehensively better.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model is solved by the following technical scheme:
a general optical universal machine comprises a detection device body, wherein a detection table is arranged in the detection device body, a Y-axis moving mechanism is arranged on the detection table, a slidable bottom plate is arranged on the Y-axis moving mechanism, a rotatable placing seat is arranged on the bottom plate, and a placing groove for placing a PFC fingerprint module is arranged on the placing seat; the detection bench is provided with a first visual assembly which is located above the Y-axis moving mechanism and used for detecting defects of the upper end part of the PFC fingerprint module, the detection bench is further provided with an installation support which is arranged at one end part of the Y-axis moving mechanism and perpendicular to the Y-axis moving mechanism, the upper end part of the installation support is provided with an X-axis moving mechanism, the X-axis moving mechanism is provided with a slidable installation plate, the installation plate is provided with a Z-axis moving mechanism, and the Z-axis moving mechanism is provided with a second visual assembly used for detecting the side wall of the PFC fingerprint module.
According to the utility model, the first visual assembly and the second visual assembly are arranged on the detection table, so that the PFC fingerprint module can be detected more comprehensively, and the problem that the PFC fingerprint module cannot be detected more comprehensively by a visual detection device in the prior art is solved better.
Preferably, the first visual component and the second visual component both comprise cameras, the cameras are connected with lenses, and coaxial light sources are arranged below the lenses.
According to the utility model, the first visual component and the second visual component can better complete the detection of the PFC fingerprint module through the arrangement of the first visual component and the second visual component. Preferably, the placing seat comprises a base, a rotatable rotating seat is arranged above the base, and the placing groove is formed in the rotating seat.
According to the utility model, through the arrangement of the placing seat structure, the second visual detection mechanism can better detect the side end of the PFC fingerprint module. Preferably, the rotating seat is provided with open grooves at two ends of the placing groove, and the depth of the open grooves is larger than that of the placing groove.
In the utility model, the detection of detection personnel is facilitated by the arrangement of the open slot.
Preferably, the Y-axis moving mechanism and the X-axis moving mechanism are provided with organ guards.
According to the utility model, through the arrangement of the organ protective cover, the Y-axis moving mechanism and the Z-axis moving mechanism can be better protected.
Preferably, the detection device body further includes a cover provided on the detection table, and an opening is provided in one end of the cover in the longitudinal direction of the Y-axis moving mechanism.
According to the utility model, through the arrangement of the outer cover, the interference of the light source in the external environment on the coaxial light sources on the first visual component and the second visual component can be better reduced, so that the accuracy of the detection result is better improved.
Drawings
Fig. 1 is a schematic configuration diagram of a general-purpose optical general-purpose machine according to embodiment 1.
Fig. 2 is a schematic diagram of an internal structure of the general optical general machine in fig. 1.
Fig. 3 is a schematic structural view of the placing seat in fig. 2.
Detailed Description
For a further understanding of the utility model, reference should be made to the following detailed description taken in conjunction with the accompanying drawings and examples. It is to be understood that the examples are illustrative of the utility model and not limiting.
Example 1
As shown in fig. 1 to 3, the present embodiment provides a general optical general machine, which includes a detection device body 100, a detection table 210 is disposed in the detection device body 100, the detection device body 100 further includes a cover 120 disposed on the detection table 210, and a cover opening 130 is disposed on an end of the cover 120 along a length direction of a Y-axis moving mechanism 220. The detection table 210 is provided with a Y-axis moving mechanism 220, and the Y-axis moving mechanism 220 is provided with an organ shield 2120. The Y-axis moving mechanism 220 is further provided with a slidable bottom plate 230, the bottom plate 230 is provided with a rotatable placing seat 240, the placing seat 240 is provided with a placing groove 310 for placing the PFC fingerprint module, the placing seat 240 comprises a base 320, a rotatable rotating seat 330 is arranged above the base 320, and the placing groove 310 is arranged on the rotating seat 330; the rotating seat 330 is provided with an open slot 340 at both ends of the placing slot 310, and the depth of the open slot 340 is larger than that of the placing slot 310; the detection table 210 is provided with a first visual assembly which is located above the Y-axis moving mechanism 220 and used for detecting defects of the upper end part of the PFC fingerprint module, the detection table 210 is further provided with a mounting bracket 250 which is arranged at one end part of the Y-axis moving mechanism 220 and is perpendicular to the Y-axis moving mechanism 220, the upper end part of the mounting bracket 250 is provided with an X-axis moving mechanism 260, and the Y-axis moving mechanism 220 and the X-axis moving mechanism 260 are both provided with an organ protection cover 2120. Still be equipped with slidable mounting panel 270 on the X axle moving mechanism 260, be equipped with Z axle moving mechanism 280 on the mounting panel 270, be equipped with the second vision subassembly that is used for detecting PFC fingerprint module lateral wall on the Z axle moving mechanism 280. The first and second visual components in this embodiment each include a camera 290, a lens 2100 is connected to the camera 290, and a coaxial light source 2110 is provided below the lens 2100.
When the optical universal machine is used, the Y-axis moving mechanism 220 is driven to move the placing seat 24 to the position of the outer cover opening 130 on the detection table 210, then the PFC fingerprint module to be detected is placed in the placing groove 310 on the placing seat 240, and then the Y-axis moving mechanism 220 is driven to move the PFC fingerprint module to be detected to the lower end of the first visual component, so that the first visual component operates to detect the upper end of the PFC fingerprint module; after the detection of the upper end of the PFC is finished, the Y-axis moving mechanism is driven to move to the end of the mounting bracket 250, then the X-axis moving mechanism 260 is driven to enable the second visual component to move to the position above the placing seat 240, then the Z-axis moving mechanism 280 is driven to enable the second visual component to move to the side wall of one end of the PFC fingerprint module, visual detection is carried out on one side of the PFC fingerprint module through the second visual component, then the rotating seat 330 is rotated by 180 degrees, and visual detection is carried out on the other side of the PFC fingerprint module through the second visual component; after the detection is completed, the Z-axis moving mechanism 280 is moved upwards, and then the Y-axis moving mechanism 220 is moved so that the placing seat 240 is moved to the position of the outer cover opening 130, and then the detected PFC fingerprint module is taken down from the placing seat 240 and replaced with a new PFC fingerprint module to be detected.
General optics universal machine in this embodiment has realized comparatively comprehensive detection to PFC fingerprint module through set up first vision subassembly and second vision subassembly on examining test table 210, and the visual detection device that has solved that prior art exists of preferred can't comparatively comprehensive carry out the problem that detects to PFC fingerprint module. It should be noted that: since the detection of the PFC fingerprint module by the visual detection technology is a mature technology existing in the prior art, it is not repeated in this embodiment.
Wherein, through the setting of dustcoat 120, the interference of the coaxial light source on reduction external environment in the light source that can be preferred to first vision subassembly and the second vision subassembly to the improvement of preferred testing result's accuracy.
The first visual assembly and the second visual assembly are arranged, so that the PFC fingerprint module can be detected better by the first visual assembly and the second visual assembly.
Among them, the provision of the organ guard 2120 can realize preferable protection of the Y-axis moving mechanism 260 and the Z-axis moving mechanism 280.
Wherein, through the setting of placing seat 240 structure, can drive the rotation of PFC fingerprint module through the rotation of placing seat 240 on-rotating seat 330 to make the side to PFC fingerprint module that second visual detection mechanism can be preferred detect.
Wherein, through the setting of open slot 340, not only made things convenient for the measurement personnel to place PFC fingerprint module in standing groove 310, also made things convenient for the measurement personnel to take out the detection module in standing groove 310 simultaneously to measurement personnel's detection has been made things convenient for.
In summary, the above-mentioned embodiments are only preferred embodiments of the present invention, and all equivalent changes and modifications made in the claims of the present invention should be covered by the claims of the present invention.

Claims (6)

1. A universal optical universal machine, characterized by: the detection device comprises a detection device body (100), wherein a detection table (210) is arranged in the detection device body (100), a Y-axis moving mechanism (220) is arranged on the detection table (210), a slidable bottom plate (230) is arranged on the Y-axis moving mechanism (220), a rotatable placing seat (240) is arranged on the bottom plate (230), and a placing groove (310) for placing a PFC fingerprint module is arranged on the placing seat (240); it is located Y axle moving mechanism (220) top and is used for carrying out the first vision subassembly that detects PFC fingerprint module upper end defect to be equipped with on examining test table (210), it sets up in installing support (250) of Y axle moving mechanism (220) tip and perpendicular to Y axle moving mechanism (220) still to be equipped with on examining test table (210), the upper end of installing support (250) is equipped with X axle moving mechanism (260), be equipped with slidable mounting panel (270) on X axle moving mechanism (260), be equipped with Z axle moving mechanism (280) on mounting panel (270), be equipped with on Z axle moving mechanism (280) and be used for carrying out the second vision subassembly that detects PFC fingerprint module lateral wall.
2. A general-purpose optical general-purpose machine according to claim 1, wherein: the first visual assembly and the second visual assembly respectively comprise a camera (290), a lens (2100) is connected to the camera (290), and a coaxial light source (2110) is arranged below the lens (2100).
3. A general-purpose optical general-purpose machine according to claim 1, wherein: the placing seat (240) comprises a base (320), a rotatable rotating seat (330) is arranged above the base (320), and the placing groove (310) is arranged on the rotating seat (330).
4. A general-purpose optical general-purpose machine according to claim 3, wherein: the rotating seat (330) is provided with an open slot (340) positioned at two ends of the placing slot (310), and the depth of the open slot (340) is larger than that of the placing slot (310).
5. A general-purpose optical general-purpose machine according to claim 1, wherein: organ shields (2120) are arranged on the Y-axis moving mechanism (220) and the X-axis moving mechanism (260).
6. A general-purpose optical general-purpose machine according to claim 1, wherein: the detection device body (100) further comprises an outer cover (120) arranged on the detection table (210), and an outer cover opening (130) is formed in one end portion of the outer cover (120) along the length direction of the Y-axis moving mechanism (220).
CN202122699285.0U 2021-11-05 2021-11-05 Universal optical universal machine Active CN216284994U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122699285.0U CN216284994U (en) 2021-11-05 2021-11-05 Universal optical universal machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122699285.0U CN216284994U (en) 2021-11-05 2021-11-05 Universal optical universal machine

Publications (1)

Publication Number Publication Date
CN216284994U true CN216284994U (en) 2022-04-12

Family

ID=81005439

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122699285.0U Active CN216284994U (en) 2021-11-05 2021-11-05 Universal optical universal machine

Country Status (1)

Country Link
CN (1) CN216284994U (en)

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