High-speed optical module detection and calibration system

By designing a high-speed optical module detection and calibration system and utilizing structures such as the lead screw body, placement plate, U-shaped frame and collection box, the problem of severely inaccurate optical modules that cannot be calibrated and confused is solved, separate storage and stable positioning are achieved, and the accuracy of detection and calibration is improved.

CN223451973UActive Publication Date: 2025-10-17WUHAN CHAOQING DIGITAL INTELLIGENCE TECH CO LTD
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Patent Information

Application Number
CN202422683571.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-05
Publication Date
2025-10-17
Estimated Expiration
2034-11-05

AI Technical Summary

Technical Problem

In the prior art, seriously inaccurate optical modules cannot be calibrated and lack a dedicated storage mechanism, resulting in them being mixed with normal optical modules, causing confusion.

Method used

A high-speed optical module detection and calibration system is designed, which includes a body, a conveying mechanism, a detection module, a calibration module, a support plate, and a collection structure. The collection structure consists of a screw body, a placement plate, a U-shaped frame, and a collection box. The optical modules are separately stored through the U-shaped frame and positioning components.

Benefits of technology

This enables effective repair and storage of seriously inaccurate optical modules, avoids confusion with normal optical modules, and improves the accuracy and efficiency of optical module detection and calibration.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223451973U_ABST
Patent Text Reader

Abstract

The utility model relates to a high-speed optical module detection and calibration system, which aims to solve the technical problems that at present, seriously inaccurate optical modules needing to be repaired cannot be calibrated, no corresponding storage mechanism is arranged on half of equipment, and the optical modules are easily mixed together with normal optical modules, and comprises a machine body, a supporting plate and a collecting structure, the supporting plate is fixedly arranged at the side end of the machine body; the collecting structure is arranged on the supporting plate; the collecting structure comprises a lead screw body, a placing plate and a collecting box; the lead screw body is arranged on the supporting plate. The placing plate is connected with a nut block on the lead screw body; the two collecting boxes are symmetrically placed on the placing plate; two U-shaped frames are symmetrically and fixedly arranged on the top side of the placing plate, the U-shaped frames are placed in the U-shaped frames, and the high-speed optical module storage device has the advantages that qualified high-speed optical modules and high-speed optical modules with serious problems can be stored separately and cannot be mixed when stored separately.
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Description

TECHNICAL FIELD

[0001] The utility model relates to optical module technical field especially relates to a high -speed optical module detects and calibration system. BACKGROUND

[0002] Optical module is composed of optoelectronic device, function circuit and optical interface etc., and the optoelectronic device includes two parts of emission and reception. Optical module needs to be detected, and is not accurate to calibrate. High -speed optical module can be used on artificial intelligence module.

[0003] The optical module detection and calibration system includes detection module and calibration module, and the optical module is detected by the detection module and is not accurate by the calibration module. However, the seriously inaccurate optical module that needs to be repaired cannot be calibrated, and there is no corresponding storage mechanism on half of the equipment, so the normal optical module is mixed together.

[0004] In view of this, we propose a high-speed optical module detection and calibration system. UTILITY MODEL CONTENTS

[0005] The utility model aims at overcoming the deficiency of prior art, adapting to the actual need, and providing a high-speed optical module detection and calibration system to solve the technical problem that the seriously inaccurate optical module that needs to be repaired cannot be calibrated, and there is no corresponding storage mechanism on half of the equipment, so the normal optical module is mixed together.

[0006] In order to realize the utility model's purpose, the technical scheme that the utility model adopts is as follows: a high-speed optical module detection and calibration system is designed, including the body, the body top is arranged with the conveyor body, the body on the conveyor body entrance end is arranged with the detection module, the body on the conveyor body output end is arranged with the calibration module, and the support plate and the collection structure are further included;

[0007] The support plate is fixed to the side end of the body;

[0008] The collection structure is arranged on the support plate;

[0009] The collection structure includes the lead screw body, the placement plate and the collection box;

[0010] The lead screw body is arranged on the support plate;

[0011] The placement plate is connected with the screw nut block on the lead screw body;

[0012] Two collection boxes are symmetrically placed on the placement plate;

[0013] Among them, two U-shaped frames are symmetrically fixed on the top side of the placement plate, and the U-shaped frame is placed in the U-shaped frame.

[0014] Preferably, two inner sides of the open end of the U-shaped frame are respectively provided with inclined surfaces, and the open end of the U-shaped frame forms an outer octagonal opening.

[0015] Preferably, the open end of the U-shaped frame is aligned with the side end of the placing plate.

[0016] Preferably, one side top of the opposite end of the two U-shaped frames is respectively provided with a positioning assembly.

[0017] The positioning assembly comprises a fixing block, a positioning block and a connecting block.

[0018] The fixing block is fixedly arranged on the U-shaped frame.

[0019] The positioning block is arranged in the hole of the fixing block.

[0020] The inner end of the positioning block is inserted into the side opening of the inner end of the collecting box.

[0021] The connecting block is fixedly arranged at the outer end of the positioning block.

[0022] Preferably, two springs are symmetrically arranged between the connecting block and the fixing block.

[0023] Compared with the prior art, the utility model has the advantages that:

[0024] 1. The utility model discloses a collecting device for high-speed optical module, which comprises a machine body, a conveying machine body, a detection module, a calibration module, a support plate, a collecting structure and a collecting box.

[0025] 2. The utility model discloses a collecting device for high-speed optical module, which comprises a machine body, a conveying machine body, a detection module, a calibration module, a support plate, a collecting structure and a collecting box. BRIEF DESCRIPTION OF DRAWINGS

[0026] Fig. 1 It is the whole structure schematic diagram of the utility model;

[0027] Fig. 2 It is the collecting structure schematic diagram of the utility model;

[0028] Fig. 3 It is the collecting box placing structure schematic diagram of the utility model;

[0029] Fig. 4 It is the positioning assembly structure schematic diagram of the utility model;

[0030] In the drawing: 1, machine body; 2, conveying machine body; 3, detection module; 4, calibration module; 5, support plate; 6, collecting structure;

[0031] 601, screw body; 602, placement plate; 603, U-shaped frame; 604, collection box; 605, positioning assembly;

[0032] 6031, inclined surface;

[0033] 6051, fixed block; 6052, positioning block; 6053, connecting block; 6054, spring. DETAILED DESCRIPTION

[0034] The utility model is further illustrated below in combination with the drawings and examples:

[0035] Example 1: a high-speed optical module detection and calibration system, referring to Figs. 1 to 4 , including the body 1, the body 1 top is arranged with the conveyor body 2, the body 1 on the conveyor body 2 entrance end is arranged with detection module 3, the body 1 on the conveyor body 2 output end is arranged with calibration module 4, and detection module 3 and calibration module 4 are all by the technical personnel of this profession according to actual situation self-selection use;Still including support plate 5 and collection structure 6;Support plate 5 is fixedly arranged on the side end of body 1;Collection structure 6 is arranged on support plate 5;

[0036] Collection structure 6 includes screw body 601, placement plate 602 and collection box 604;Screw body 601 is arranged on support plate 5;Screw body 601 is by the technical personnel of this profession according to actual situation self-selection use;Placement plate 602 is connected with the screw nut block on screw body 601;Two collection boxes 604 are symmetrically placed on placement plate 602;Among them, two U-shaped frames 603 are symmetrically fixed on the top side of placement plate 602, and the U-shaped frame 603 is placed in the U-shaped frame 603.

[0037] The utility model discloses a screw body 601, placement plate 602, U-shaped frame 603 and collection box 604 are set up, have respectively accommodate qualified high-speed optical module and serious problem's high-speed optical module, and the advantage that separation is accommodated and does not mix, solve for the serious inaccurate need repair's then can not be calibrated, half of the equipment also does not have corresponding accommodation mechanism, easy and normal optical module mix together.

[0038] Specifically, the two inner sides of the open end of the U-shaped frame 603 are respectively provided with inclined surfaces 6031, and the open end of the U-shaped frame 603 forms an outer octagonal opening.

[0039] Further, the open end of the U-shaped frame 603 is aligned with the side end of the placement plate 602, and the collection box 604 contacts the placement plate 602.

[0040] Further, the two U-shaped frames 603 are respectively provided with positioning assemblies 605 on one side of the top of the opposite end.

[0041] The positioning assembly 605 comprises a fixing block 6051, a positioning block 6052 and a connecting block 6053; the fixing block 6051 is fixedly arranged on the U-shaped frame 603; the positioning block 6052 is arranged in the hole of the fixing block 6051; the inner end of the positioning block 6052 is inserted into the side opening of the inner end of the collecting box 604; the connecting block 6053 is fixedly arranged at the outer end of the positioning block 6052; two springs 6054 are symmetrically arranged between the connecting block 6053 and the fixing block 6051, and the two ends of the spring 6054 are fixedly connected with the connecting block 6053 and the fixing block 6051 respectively, and the elastic coefficient of the spring 6054 is selected by the person skilled in the art according to the actual situation.

[0042] The utility model discloses a fixing block 6051, positioning block 6052, connecting block 6053 and spring 6054 are set up, have the advantage that the collecting box 604 after pushing in placement is positioned, and the collecting box 604 is kept stable when moving.

[0043] Working principle: using the device of the utility model, the high-speed optical module is sent into the entering end of the conveyor body 2, the high-speed optical module is conveyed through the detection module 3, the qualified detection module 3 is directly received into a collecting box 604 from the output end of the conveyor body 2, and the conveying that needs to be calibrated is calibrated through the calibration module 4, and after calibration, it is received into a collecting box 604 from the output end of the conveyor body 2. Through detection, the problem cannot be calibrated, then the screw rod body 601 drives the placement plate 602 and the collecting box 604 to move, moves another collecting box 604 to the output end of the conveyor body 2, and the high-speed optical module that cannot be calibrated is received into another collecting box 604 from the output end of the conveyor body 2. When the collecting box 604 is filled, the connecting block 6053 is pulled out, the positioning block 6052 moves outward, the spring 6054 is stretched, the inner end of the positioning block 6052 is away from the side opening of the inner end of the collecting box 604, and the corresponding collecting box 604 is pulled out, and the empty collecting box 604 is pushed in and positioned again.

[0044] The utility model discloses a preferable embodiment, but is not limited to this, and the person skilled in the art can easily understand the spirit of the utility model according to the above -mentioned embodiment and make different inferences and changes, but as long as not departing from the spirit of the utility model, it is within the protection scope of the utility model.

Claims

1. A high-speed optical module detection and calibration system, comprising a body (1), a conveyor body (2) arranged on the top of the body (1), a detection module (3) arranged on the body (1) at the entrance end of the conveyor body (2), and a calibration module (4) arranged on the body (1) at the output end of the conveyor body (2), characterized in that: Also includes: A support plate (5) is fixedly mounted on a side end of the machine body (1); a collecting structure (6), arranged on the support plate (5); The collecting structure (6) comprises: A lead screw body (601) is arranged on the support plate (5); A placement plate (602) is connected to the nut block on the lead screw body (601); Two collecting boxes (604) are symmetrically placed on the placement plate (602); Wherein, two U-shaped frames (603) are symmetrically fixed on the top side of the placement plate (602), and the U-shaped frames (603) are placed inside the U-shaped frames (603).

2. A high-speed optical module detection and calibration system according to claim 1, characterized in that: Inclined surfaces (6031) are respectively provided on both inner sides of the opening end of the U-shaped frame (603), and the opening end of the U-shaped frame (603) forms an outward octagonal opening.

3. A high-speed optical module detection and calibration system as claimed in claim 2, characterized in that: The open end of the U-shaped frame (603) is aligned with the side end of the placement plate (602).

4. The high-speed optical module detection and calibration system according to claim 1, wherein: Positioning components (605) are respectively arranged on the top of one side of the two opposite ends of the U-shaped frames (603); The positioning assembly (605) comprises: A fixed block (6051) is fixed on the U-shaped frame (603); A positioning block (6052) is inserted into the hole of the fixing block (6051); The inner end of the positioning block (6052) is inserted and matched with an opening on one side of the inner end of the collection box (604); The connecting block (6053) is fixedly mounted on the outer end of the positioning block (6052).

5. A high-speed optical module detection and calibration system as claimed in claim 4, characterized in that: Two springs (6054) are symmetrically arranged between the connecting block (6053) and the fixing block (6051).