Linear crystal oscillator detection device capable of rapidly receiving materials

By designing and coordinating components of a linear crystal oscillator detection device, rapid sealing and material collection of crystal oscillators was achieved, solving the problems of low packaging efficiency and inconvenient winding operation, improving production efficiency and enhancing the protection effect of crystal oscillators.

CN223449903UActive Publication Date: 2025-10-17KYUSHU DENTSU JIANGSU CO LTD
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Patent Information

Application Number
CN202421296923.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-07
Publication Date
2025-10-17
Estimated Expiration
2034-06-07

AI Technical Summary

Technical Problem

In the existing crystal oscillator packaging process, the packaging efficiency is low, and the operation of winding up the material after packaging is not simple enough, which affects production time and material quality.

Method used

A linear crystal oscillator testing device with rapid material collection was designed. It adopts components such as a workbench, mounting plate, guide seat, winding wheel, sealing machine and cylinder. Through the cooperation of guide groove and guide wheel, the batch sealing and material collection of crystal oscillators can be realized. The lifting cylinder drives the sealing block to seal the crystal oscillators.

Benefits of technology

This technology enables rapid sealing and collection of crystal oscillators, improving production efficiency, ensuring that crystal oscillators are not affected by external factors during transportation and storage, and enhancing the protective effect of packaging materials.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a linear crystal oscillator detection device capable of quickly receiving materials, which comprises a working table, a mounting plate and a guide seat are arranged on the working table, a fixing plate is arranged at the side end of the mounting plate, a winding wheel is connected onto the fixing plate through a motor, and a discharging wheel, a plurality of first material guide wheels, a film sealing machine and a plurality of second material guide wheels are arranged on the mounting plate. The top film is wound on the discharging wheel and extends to pass through the first material guiding wheel, the film sealing machine and the second material guiding wheel to reach the winding wheel, the bottom film is located in the guiding seat, and the crystal oscillator is placed on the bottom film. According to the utility model, the film sealing machine, the winding wheel, the discharging wheel and the guide wheel are matched with one another, so that after the detection is finished, the rapid film sealing and material receiving of the crystal oscillators in batches can be realized, the material receiving efficiency is improved, and the crystal oscillators can be prevented from being influenced by external factors to be damaged.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to crystal detection technical field, especially relate to a linear crystal detection device of quick material receiving. BACKGROUND

[0002] The existing linear crystal detection device plays a vital role in the production process of crystal. Once the crystal is accurately detected to ensure its quality and performance meet the standards, the next step is to package it. The purpose of packaging is not only to prevent the crystal from being physically damaged during subsequent transportation, storage and use, such as damage caused by collision, friction or pressure, but also to resist various external environmental factors such as humidity, temperature change and chemical erosion.

[0003] Especially important, packaging can effectively prevent the potential threat of static electricity to the internal fine structure of the crystal. Electrostatic discharge (ESD) is a potential hazard that can occur inadvertently and cause permanent damage to the microelectronic structure of the crystal, affecting its performance and stability. Therefore, the packaging material must have good anti-static properties to ensure that the crystal can effectively isolate the effects of static electricity after packaging.

[0004] However, in the existing packaging process, the packaging efficiency is low, and after packaging is completed, the packaging material (such as plastic film, aluminum foil, etc.) usually needs to be rolled up for subsequent transportation and storage. But the existing rolling mechanism often has problems such as insufficient speed and inconvenient operation, which not only increases the production time, but also affects the quality of the packaging material and the protection effect of the crystal. UTILITY MODEL CONTENTS

[0005] The utility model aims at: in order to solve the existing packaging process, the packaging efficiency is low, and after packaging is completed, the packaging material (such as plastic film, aluminum foil, etc.) usually needs to be rolled up for subsequent transportation and storage. But the existing rolling mechanism often has problems such as insufficient speed and inconvenient operation, which not only increases the production time, but also affects the quality of the packaging material and the protection effect of the crystal and proposes a linear crystal detection device of quick material receiving.

[0006] In order to achieve the above purpose, the utility model adopts the following technical scheme: a linear crystal detection device of quick material receiving, including workbench, the workbench is provided with mounting plate and guide seat, the mounting plate side end is provided with fixed plate, the winding wheel is connected on the fixed plate through motor, the mounting plate is provided with material placing wheel, a plurality of first material guide wheels, film sealing machine and a plurality of second material guide wheels, the top film is wound on the material placing wheel and extends through the first material guide wheel, the film sealing machine, the second material guide wheel to the winding wheel, the bottom film is located in the guide seat, and the crystal is placed on the bottom film.

[0007] As a further description of the above technical solution:

[0008] The film sealing machine is connected to the lifting cylinder.

[0009] As a further description of the above technical solution:

[0010] A guide groove is provided in the guide seat, the bottom film is located in the guide groove, the top film is located directly above the bottom film, the crystal oscillator is located between the top film and the bottom film, and a film sealing block is provided at the bottom of the film sealing machine, and the film sealing block is located on both sides of the crystal oscillator.

[0011] As a further description of the above technical solution:

[0012] L-shaped guide plates are provided on both sides of the film sealing machine, and the L-shaped guide plates are located directly above the guide grooves.

[0013] As a further description of the above technical solution:

[0014] The first guide wheel is provided with an adjusting wheel, the adjusting wheel is connected to the rotating plate, and the rotating plate is rotatably connected to the mounting plate.

[0015] As a further description of the above technical solution:

[0016] An adjustable wheel is provided above the second guide wheel, the adjustable wheel is connected to the adjustment plate, the adjustment plate is rotatably connected to the mounting plate, a support wheel is provided at the bottom of the adjustable wheel, and a guide trough is formed between the adjustable wheel and the support wheel.

[0017] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:

[0018] In the utility model, the bottom film is placed in the guide groove and extended and sleeved on the take-up wheel, and the crystal oscillators with the same spacing are placed on the bottom mold. The top film is located directly above the bottom film along the first guide wheel and the L-shaped guide plate and extended and sleeved on the take-up wheel. When the take-up wheel is pulled, the bottom film and the top film are driven to move simultaneously. When moved to the bottom of the film sealing machine, the lifting cylinder drives the film sealing block to move downward, and the film is sealed on all sides of each crystal oscillator, and the individual crystal oscillators are separated, and then the action is repeated. This structure can achieve rapid film sealing and material collection for the crystal oscillators in batches after the inspection is completed, thereby improving the material collection efficiency and ensuring that the crystal oscillators are not affected by external factors and damaged. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the drawings needed to be used in the embodiments will be briefly introduced as follows. It should be understood that the following drawings only show some embodiments of the present application, and therefore should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can also be obtained without creative labor on the premise of the drawings.

[0020] Figure 1 For a straight-line crystal vibration detection device that can quickly collect materials Figure One .

[0021] Figure 2 For a straight-line crystal vibration detection device that can quickly collect materials Figure Two .

[0022] Figure 3 For a straight-line crystal vibration detection device that can quickly collect materials Figure Three .

[0023] Legend:

[0024] 1-Workbench; 2-Mounting plate; 3-Guide seat; 4-Fixed plate; 5-Motor; 6-Winding wheel; 7-Discharging wheel; 8-First material guide wheel; 9-Film sealing machine; 10-Second material guide wheel; 11-Topping film; 12-Bottom film; 13-Crystal vibration; 14-Lifting cylinder; 15-Guide groove; 16-Film sealing block; 17-L-shaped guide plate; 18-Adjusting wheel; 19-Rotating plate; 20-Adjustable wheel; 21-Adjusting plate; 22-Material guide groove; 23-Supporting wheel. DETAILED DESCRIPTION

[0025] The technical scheme in the embodiments of the present application will be described clearly and completely in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0026] In order to make the purpose, technical scheme and advantages of the embodiments of the present application more clear, the technical scheme in the embodiments of the present application will be described clearly and completely in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are some of the embodiments of the present application, not all the embodiments. The components of the embodiments of the present application described and shown in the drawings here can be arranged and designed in various different configurations.

[0027] Therefore, the following detailed description of embodiments of the application provided in the accompanying drawings is not intended to limit the scope of the application claimed, but merely represents selected embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of the application.

[0028] It should be noted that similar reference numbers and letters represent similar items in the following drawings, so once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings.

[0029] In the description of the embodiments of the application, it should be noted that the terms "upper", "inner" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship commonly used when the product of the application is used, and are merely for the convenience of describing the application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the application.

[0030] In the description of the application, it should also be noted that unless otherwise explicitly specified and limited, the terms "provided", "mounted", "connected", "connected" should be broadly understood, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be directly connected, or indirectly connected through an intermediate medium; it can be the communication between two elements. For those of ordinary skill in the art, the specific meaning of the above terms in the application can be understood according to the specific circumstances.

[0031] Please refer to Figures 1-3 The utility model provides a kind of technical scheme: a linear crystal vibration detection device of quick material collection, including workbench 1, the workbench 1 is provided with mounting plate 2 and guide seat 3, the mounting plate 2 side end is provided with fixed plate 4, winding wheel 6 is connected on the fixed plate 4 by motor 5, the mounting plate 2 is provided with material discharge wheel 7, a plurality of first material guide wheel 2, film sealing machine 9 and a plurality of second material guide wheel 10, top film 11 is wound on the material discharge wheel 7 and extends through the first material guide wheel 2, the film sealing machine 9, the second material guide wheel 10 to the winding wheel 6, bottom film 12 is located in the guide seat 3, crystal vibration 13 is placed on the bottom film 12.

[0032] The film sealing machine 9 is connected to the lifting cylinder 14. The lifting cylinder drives the film sealing machine to move up and down to seal the crystal vibration.

[0033] The guiding groove 15 is arranged in the guiding seat 3, the bottom film 12 is arranged in the guiding groove 15, the top film 11 is arranged above the bottom film 12, the crystal oscillator 13 is arranged between the top film 11 and the bottom film 12, the film sealing block 16 is arranged at the bottom of the film sealing machine 9, and the film sealing block 16 is arranged on both sides of the crystal oscillator 13. The film sealing block can seal the periphery of the crystal oscillator with equal spacing, so that each crystal oscillator is sealed, and electrostatic damage between the crystal oscillators is avoided.

[0034] The L-shaped guiding plates 17 are arranged on both sides of the film sealing machine 9 and above the guiding groove 15. The top film is guided, and the bottom film is prevented from running out during conveying.

[0035] The adjusting wheel 18 is arranged on the first material guiding wheel 2, the adjusting wheel 18 is connected to the rotating plate 19, and the rotating plate 19 is rotationally connected to the mounting plate 2. The angle of the adjusting wheel can be adjusted as required, and the smoothness of the top film conveying can be controlled.

[0036] The adjustable wheel 20 is arranged above the second material guiding wheel 10, the adjustable wheel 20 is connected to the adjusting plate 21, the adjusting plate 21 is rotationally connected to the mounting plate 2, the adjustable wheel 20 is provided with the supporting wheel 23 at the bottom, and the material guiding groove 22 is formed between the adjustable wheel 20 and the supporting wheel 23. The angle of the adjusting plate can be adjusted as required, so that the spacing between the adjustable wheel and the supporting wheel can be adjusted.

[0037] The material discharging wheel is rotationally connected to the mounting plate through the limiting plate, so that the normal material discharging of the top film is ensured.

[0038] Working principle: the bottom film is placed in the guiding groove and is sleeved on the winding wheel, the crystal oscillators with the same spacing are placed on the bottom film, the top film is arranged above the bottom film along the first material guiding wheel and the L-shaped guiding plate and is sleeved on the winding wheel, when the winding wheel is pulled, the bottom film and the top film are driven to move simultaneously, when the bottom film and the top film move to the bottom of the film sealing machine, the film sealing block is driven to move downward by the lifting cylinder, the periphery of each crystal oscillator is sealed, the crystal oscillators are separated, and then the operation is repeated. This structure can realize the rapid film sealing and material collecting of the batch of crystal oscillators after detection, improve the material collecting efficiency, and ensure that the crystal oscillators are not damaged due to external factors.

[0039] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A linear crystal oscillator detection device capable of quickly collecting materials, characterized in that: The invention comprises a workbench, wherein a mounting plate and a guide seat are provided on the workbench, a fixed plate is provided at the side end of the mounting plate, a winding wheel is connected to the fixed plate through a motor, a discharge wheel, several first guide wheels, a film sealing machine and several second guide wheels are provided on the mounting plate, the top film is wound on the discharge wheel and extends through the first guide wheel, the film sealing machine, the second guide wheel to the winding wheel, the bottom film is located in the guide seat, and the crystal oscillator is placed on the bottom film; a guide groove is provided in the guide seat, the bottom film is located in the guide groove, the top film is located directly above the bottom film, the crystal oscillator is located between the top film and the bottom film, a film sealing block is provided at the bottom of the film sealing machine, and the film sealing blocks are located on both sides of the crystal oscillator.

2. A linear crystal oscillator detection device capable of rapidly collecting materials according to claim 1, characterized in that: The film sealing machine is connected to the lifting cylinder.

3. A linear crystal oscillator detection device capable of rapidly collecting materials according to claim 1, characterized in that: L-shaped guide plates are provided on both sides of the film sealing machine, and the L-shaped guide plates are located just above the guide grooves.

4. A linear crystal oscillator detection device capable of rapidly collecting materials according to claim 3, characterized in that: The first guide wheel is provided with an adjusting wheel, the adjusting wheel is connected to the rotating plate, and the rotating plate is rotatably connected to the mounting plate.

5. A linear crystal oscillator detection device capable of rapidly collecting materials according to claim 1, characterized in that An adjustable wheel is provided above the second guide wheel, the adjustable wheel is connected to the adjustment plate, the adjustment plate is rotatably connected to the mounting plate, a support wheel is provided at the bottom of the adjustable wheel, and a guide trough is formed between the adjustable wheel and the support wheel.