Portable optical module coding box

By designing a portable optical module code box, the problems of inflexibility of traditional code code methods and resource waste are solved, portability, flexibility and compatibility are achieved, and costs and resource waste are reduced.

CN222940817UActive Publication Date: 2025-06-03SHENZHEN YITIANGUANG COMM CO LTD
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Patent Information

Application Number
CN202421956258.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-13
Publication Date
2025-06-03
Estimated Expiration
2034-08-13

AI Technical Summary

Technical Problem

The traditional optical module writing method relies on a fixed code writing device, requires an external power supply, and different code writing devices may be required for different types of optical modules, resulting in inflexible and inconvenient coding work, and may cause waste of resources and inconvenient management.

Method used

A portable optical module writing box is designed, including the upper case, the bottom case and the PCB. The mobile phone power cord and the optical module writing box power cord are universalized through TYPE C and DC power supplies. The cage is removed to reduce cost and beauty, and the limit device avoids scratches. It is compatible with three different series of product writing codes.

Benefits of technology

The portability and flexibility of the optical module code writing box is realized, cost and resource waste is reduced, scratches on the product shell during code writing, and compatibility and aesthetics are improved.

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Abstract

The utility model discloses a portable optical module coding box which comprises an upper shell, the bottom of the upper shell is movably connected with a bottom shell, the top of the bottom shell is movably connected with a PCB, the top of the PCB is fixedly connected with a DC power supply, the top of the PCB is fixedly connected with a TYPE C, the top of the PCB is fixedly connected with a QSFP DD seat, the top of the PCB is fixedly connected with an XFP seat, and the top of the XFP seat is fixedly connected with an optical module. The top of the PCB is fixedly connected with an SFP + seat, through the design of the smaller upper shell and the smaller base, the optical module coding box is smaller in size and convenient to carry, through the TYPE C power supply and the TYPE DC power supply, the optical module coding box can achieve universality of a mobile phone power line and an optical module coding box power line, a cage corresponding to the optical module coding box is omitted, the cost is reduced, and the optical module coding box is convenient to use. Therefore, the optical module coding box is more attractive in appearance, solves the problem that secondary sale is affected due to the fact that the surface of a shell of a product is scratched in the coding process, and can be compatible with coding of three different series of products.
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Description

Technical Field

[0001] The utility model relates to the technical field of optical module coding boxes, and specifically relates to a portable optical module coding box. Background Technique

[0002] With the development of optical module technology and the advancement of 5G communication technology, the types of optical modules are increasing, and the requirements for optical module coding have become more complex. An optical module coding box is a device used in the field of optical fiber communication, and its background technology mainly involves the coding and configuration process of optical modules. Optical modules are key components in optical fiber communication systems. They are responsible for converting electrical signals into optical signals for transmission in optical fibers. To ensure that optical modules can be compatible with different communication systems, optical modules need to undergo a coding process before leaving the factory, that is, they are given specific compatibility codes.

[0003] Traditional optical module coding methods usually rely on fixed coding devices. Most of these devices require an external power supply, and different coding devices may be needed for different types of optical modules. This approach not only limits the flexibility and mobility of coding work but also may lead to waste of resources and inconvenience in management. Therefore, it is necessary to seek a more flexible and convenient optical module coding solution to adapt to the changing technical requirements. Content of the Utility Model

[0004] The purpose of the utility model is to provide a portable optical module coding box, which solves the problems that traditional optical module coding methods usually rely on fixed coding devices. Most of these devices require an external power supply, and different coding devices may be needed for different types of optical modules. This approach not only limits the flexibility and mobility of coding work but also may lead to waste of resources and inconvenience in management.

[0005] To achieve the above purpose, a portable optical module coding box is provided, including an upper shell. The bottom of the upper shell is movably connected to a bottom shell, and the top of the bottom shell is movably connected to a PCB. The product volume of this optical module coding box is smaller and it is convenient to carry.

[0006] A DC power supply is fixedly connected to the top of the PCB, a TYPE C is fixedly connected to the top of the PCB, a QSFP DD socket is fixedly connected to the top of the PCB, an XFP socket is fixedly connected to the top of the PCB, and an SFP+ socket is fixedly connected to the top of the PCB. Through the TYPE C and the DC power supply, the mobile phone power cord and the power cord of the optical module coding box can be made universal. The corresponding cage of the product of this optical module coding box is removed, reducing the cost, thus making the appearance better-looking, solving the problem of scratching the surface of the product shell during the coding process, which affects secondary sales, and this optical module coding box can be compatible with the coding of three different series of products.

[0007] According to a portable optical module coding box described above, the size of the PCB is smaller than that of the bottom case, and the PCB is movably connected to the bottom case, which facilitates the installation of the PCB on the bottom case and the installation of the PCB and the bottom case with the upper case.

[0008] According to a portable optical module coding box described above, threaded holes I are provided inside both the PCB and the bottom case, and PCB screws are arranged inside the threaded holes I. The PCB and the bottom case are movably connected through the PCB screws, which enhances the connection stability between the PCB and the bottom case and facilitates the disassembly and installation of the PCB through the PCB screws.

[0009] According to a portable optical module coding box described above, the shape and size of the bottom case match those of the upper case, and the bottom case is movably connected to the upper case, which facilitates the connection between the bottom case and the upper case, and the upper case can protect the PCB.

[0010] According to a portable optical module coding box described above, threaded holes II are provided inside the bottom case and at the bottom of the upper case. The shape and size of the threaded holes II match those of the base screws, and the bottom case is movably connected to the upper case through the base screws, which enhances the connection stability between the bottom case and the upper case and facilitates disassembly and installation.

[0011] According to a portable optical module coding box described above, the SFP+ cage, XFP cage, and QSFP DD cage are removed from the top of the upper case, and front and rear limiting devices and left and right limiting devices are provided on the top of the upper case. The limiting devices achieve the effect of the cage, reduce the cost, make the appearance better-looking, and prevent the module from being scratched, solving the problem that the scratching of the product shell surface during the coding process affects secondary sales. Moreover, this optical module coding box can be compatible with the coding of three different series of products.

[0012] According to a portable optical module coding box described above, both the bottom case and the upper case are made of transparent acrylic material, so that the indicator lights inside the box can be clearly seen, and the coding status and compatibility can be clearly known, making the product more beautiful and perfect.

[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0014] 1. The product volume of this optical module coding box is smaller and it is convenient to carry;

[0015] 2. This optical module coding box can make the mobile phone power cord and the power cord of the optical module coding box universal;

[0016] 3. This optical module coding box removes the corresponding cage of the product, reduces the cost, and thus makes the appearance better-looking;

[0017] 4. Solved the problem that scratching the surface of the product shell during the coding process affects secondary sales;

[0018] 5. A light module coding box can be compatible with the coding of three different series of products.

[0019] The additional aspects and advantages of the present utility model will be partially given in the following description, partially become obvious from the following description, or be understood through the practice of the present utility model. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The present utility model will be further described below in conjunction with the drawings and embodiments;

[0021] Figure 1 FIG. is a three-dimensional structural schematic diagram of a portable light module coding box of the present utility model;

[0022] Figure 2 FIG. is a three-dimensional structural schematic diagram of the upper shell of a portable light module coding box of the present utility model;

[0023] Figure 3 FIG. is a top view of a portable light module coding box of the present utility model;

[0024] Figure 4 FIG. is a top view of a portable light module coding box of the present utility model after removing the cage;

[0025] Figure 5 FIG. is a top view of a portable light module coding box of the present utility model.

[0026] In the figure: 1. Upper shell; 10. PCB screw; 20. PCB; 30. QSFP DD socket; 40. XFP socket; 50. SFP+ socket; 60. Bottom shell; 70. Base screw; 80. DC power supply; 90. TYPE C; 2. Front and rear limiting device; 3. Left and right limiting device; 4. SFP+ cage; 5. XFP cage; 6. QSFP DD cage. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0027] The technical solutions in the embodiments of the present utility model will be clearly and completely described below in conjunction with the drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0028] Please refer to Figures 1-5, an embodiment of the present utility model provides a technical solution: a portable optical module coding box, which includes an upper shell 1. The bottom of the upper shell 1 is movably connected to a bottom shell 60, and the top of the bottom shell 60 is movably connected to a PCB 20. The volume of this optical module coding box is smaller and it is convenient to carry;

[0029] A DC power supply 80 is fixedly connected to the top of the PCB 20, a TYPE C 90 is fixedly connected to the top of the PCB 20, a QSFP DD socket 30 is fixedly connected to the top of the PCB 20, an XFP socket 40 is fixedly connected to the top of the PCB 20, and an SFP+ socket 50 is fixedly connected to the top of the PCB 20. Through the TYPE C 90 and the DC power supply 80, the power cord of the mobile phone and the power cord of the optical module coding box can be made universal. This optical module coding box removes the corresponding cage of the product, reducing the cost, thus making the appearance look better, solving the problem that the scratching of the product shell surface during the coding process affects the secondary sales, and this optical module coding box can be compatible with the coding of three different series of products.

[0030] The size of the PCB 20 is smaller than that of the bottom shell 60, and the PCB 20 is movably connected to the bottom shell 60, which is convenient for the installation of the PCB 20 on the bottom shell 60, and is also convenient for the installation of the PCB 20 and the bottom shell 60 on the upper shell 1. Threaded holes one are opened in both the PCB 20 and the bottom shell 60, and a PCB screw 10 is arranged inside the threaded hole one. The PCB 20 and the bottom shell 60 are movably connected through the PCB screw 10, strengthening the connection stability between the PCB 20 and the bottom shell 60, and facilitating the disassembly and installation of the PCB 20 through the PCB screw 10. The shape and size of the bottom shell 60 match those of the upper shell 1, and the bottom shell 60 is movably connected to the upper shell 1, which is convenient for the connection between the bottom shell 60 and the upper shell 1, and the upper shell 1 can protect the PCB 20. Threaded holes two are opened in both the inner part of the bottom shell 60 and the bottom of the upper shell 1. The shape and size of the threaded hole two match those of the base screw 70, and the bottom shell 60 is movably connected to the upper shell 1 through the base screw 70, strengthening the connection stability between the bottom shell 60 and the upper shell 1, and facilitating disassembly and installation. The SFP+ cage 4, XFP cage 5 and QSFP DD cage 6 are removed from the top of the upper shell 1, and front and rear limiting devices 2 and left and right limiting devices 3 are arranged on the top of the upper shell 1. The limiting devices achieve the effect of the cage, reducing the cost, thus making the appearance look better, and the module will not be scratched, solving the problem that the scratching of the product shell surface during the coding process affects the secondary sales, and this optical module coding box can be compatible with the coding of three different series of products. Both the bottom shell 60 and the upper shell 1 are made of transparent acrylic material, so that the indicator lights inside the box can be clearly seen, and the coding status and compatibility can be clearly known, making the product more beautiful and perfect.

[0031] Working principle: This optical module coding box adopts a smaller optical module coding box, which reduces costs and improves aesthetics. It also removes three cages, thus achieving the effect of cost reduction. Through the upper shell 1, it can protect the PCB 20. A limiting device is added to the upper shell 1 to achieve the effect of a cage, preventing the module from being scratched. For convenient carrying and use, this optical module coding box uses TYPE C 90 and DC power 80 connectors, allowing it to be connected to a computer at any time using a mobile phone data cable for coding and data reading. The mobile phone power cord and the power cord of the optical module coding box can be made universal. Both the upper shell 1 and the bottom shell 60 of this optical module coding box are made of transparent acrylic material, enabling the indicator lights inside the box to be clearly seen, clearly knowing the coding status and compatibility, making the product more beautiful and perfect.

[0032] The above has described the embodiments of the present invention in detail with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those of ordinary skill in the art, various changes can be made without departing from the gist of the present invention.

Claims

1. A portable optical module coding box, comprising an upper shell (1), characterized in that: The bottom of the upper shell (1) is movably connected to the bottom shell (60), and the top of the bottom shell (60) is movably connected to the PCB (20); The top of the PCB (20) is fixedly connected to a DC power supply (80), the top of the PCB (20) is fixedly connected to a TYPE C (90), the top of the PCB (20) is fixedly connected to a QSFP DD socket (30), the top of the PCB (20) is fixedly connected to an XFP socket (40), and the top of the PCB (20) is fixedly connected to an SFP+ socket (50).

2. A portable optical module coding box as claimed in claim 1, characterized in that: The size of the PCB (20) is smaller than the size of the bottom shell (60), and the PCB (20) is movably connected to the bottom shell (60).

3. A portable optical module coding box as claimed in claim 1, characterized in that: The PCB (20) and the bottom shell (60) are both provided with a threaded hole 1, and a PCB screw (10) is arranged inside the threaded hole 1, and the PCB (20) and the bottom shell (60) are movably connected via the PCB screw (10).

4. A portable optical module coding box as claimed in claim 1, characterized in that: The shape and size of the bottom shell (60) match those of the upper shell (1), and the bottom shell (60) is movably connected to the upper shell (1).

5. A portable optical module coding box as claimed in claim 4, characterized in that: The interior of the bottom shell (60) and the bottom of the upper shell (1) are both provided with threaded holes 2, the shape and size of the threaded holes 2 match the shape and size of the base screws (70), and the bottom shell (60) is movably connected to the upper shell (1) via the base screws (70).

6. A portable optical module coding box as claimed in claim 1, characterized in that: The top of the upper shell (1) has the SFP+ cage (4), the XFP cage (5) and the QSFP DD cage (6) removed, and the top of the upper shell (1) is provided with front and rear limit devices (2) and left and right limit devices (3).

7. The portable optical module coding box according to claim 1, characterized in that: The bottom shell (60) and the upper shell (1) are both made of transparent acrylic material.