Gamma hand-held test equipment for testing multiple modules for fiber testing

By utilizing the connector and screw fixing technology of GAMMA handheld test equipment, the fiber optic test equipment can test multiple modules in a small size, solving the problem that existing equipment can only test one module and is large in size, making it suitable for various occasions.

CN113640599BActive Publication Date: 2025-11-28SHENZHEN WEIDU TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202110822398.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-07-21
Publication Date
2025-11-28
Estimated Expiration
2041-07-21

AI Technical Summary

Technical Problem

Existing fiber optic testing equipment can only test one module at a time and cannot test multiple modules simultaneously. It is also bulky, and the slots require four-sided area constraints, which makes the equipment too large.

Method used

The GAMMA handheld testing equipment is used, and adjacent modules are connected to the main body of the equipment via connectors. The modules are stacked and fixed with screws, enabling data transmission and testing of multiple modules. Only one connector is needed on the main body of the equipment, and the modules are connected to the main body for data transmission.

Benefits of technology

It enables the testing of multiple modules in a small device, making it suitable for various occasions and easy to carry and use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a handheld test device for testing multiple modules, comprising a device main body, a connector arranged on the device main body, multiple modules stacked on the device main body, each module being provided with a connector, adjacent two modules being connected through the connectors for data transmission, and one of the multiple modules being connected with the device main body through the connector for data transmission. The application is provided with the connector, adjacent two modules are connected through the connector for data transmission, and the module is connected with the device main body through the connector for data transmission, so that the device main body can test multiple modules, i.e. multiple functions, and in addition, since the multiple modules are stacked on the device main body and adjacent two modules are connected through the connector for data transmission, only one connector needs to be arranged on the device main body, so that the device main body is small in size, and the device main body can test multiple functions and is small in size.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of optical fiber testing, and more particularly to a handheld test device capable of testing multiple modules. BACKGROUND

[0002] With the construction of 5G, the data communication bandwidth requirement in the big data field is getting higher and higher, and the number of optical communication and its affiliated industries is also getting larger and larger, so it is necessary to test the optical power, output stable light, optical switch, and even network analysis functions through a test device, and the test function needs to be connected with the test device. At present, some test devices can only test one module, that is, test one function. However, when using the test device in the field to test multiple modules at the same time, this test device usually connects multiple modules, that is, tests multiple functions, through setting multiple slots, that is, the number of modules connected is equal to the number of slots. However, the slot volume is relatively large, and the slot needs to exist in the four edge areas to limit, which makes the test device bulky. SUMMARY

[0003] The features and advantages of the present application will be apparent from the following description, or can be learned from practice of the present application.

[0004] The purpose of the present application is to provide a handheld test device capable of testing multiple functions and small in size.

[0005] The technical solution adopted by the present application to solve the above technical problems is as follows: a GAMMA handheld test device for testing multiple modules for optical fiber testing, which is used for testing optical power, output stable light, optical switch, and network analysis. The device main body is provided with a connector, and multiple modules are stacked on the device main body. Each module is provided with a connector, and the adjacent two modules are connected through the connector for data transmission. One of the multiple modules is connected with the device main body through the connector for data transmission. The device main body realizes the test of multiple modules and tests multiple functions.

[0006] Two modules are installed on the device body, the two modules are a first module and a second module, the first module is installed on the device body, the second module is installed on the first module, the front and back of the first module are provided with connectors, the connector on the back of the first module is a first connector male seat, the first connector male seat is connected with the connector female seat on the device body, and the connector on the front of the first module is a first connector female seat; the connector on the back of the second module is a second connector male seat, the second connector male seat is connected with the first connector female seat on the first module, and the first module and the second module are stacked on the device body; the connector on the front of the second module is a second connector female seat, and the second connector female seat is connected with the connector male seat on the other module.

[0007] A screw is arranged in each module, two adjacent modules are connected through the screw, and one of the plurality of modules is connected with the device body through the screw.

[0008] The device body comprises a shell and a fan arranged in the shell, and the shell is provided with a heat dissipation air duct.

[0009] A detachable battery is arranged in the shell, and the battery supplies power to the fan.

[0010] The device body comprises a shell, a mainboard is arranged in the shell, and the mainboard is provided with a fast charging interface and / or a USB interface.

[0011] The device body comprises a shell, a mainboard is arranged in the shell, and the mainboard is provided with a SIM card slot and / or a TF card slot.

[0012] The device body comprises a shell, a mainboard is arranged in the shell, and the shell is provided with a touch screen, and the touch screen is electrically connected with the mainboard.

[0013] The device body comprises a shell, a mainboard is arranged in the shell, and the shell is provided with a camera, and the camera is electrically connected with the mainboard.

[0014] The device body comprises a shell, and the shell is provided with a rope buckle.

[0015] The device body comprises a shell, a loudspeaker and a mainboard are arranged in the shell, and the loudspeaker is connected with the mainboard.

[0016] The application sets the connector, the adjacent two modules are connected through the connector to transmit data, the module and the device main body are connected through the connector to transmit data, so as to realize the test of the device main body to the multiple modules, that is, to test multiple functions, in addition, since the multiple modules are stacked on the device main body, the adjacent two modules are connected through the connector to transmit data, only one connector needs to be set on the device main body, so that the device main body is small in size, so that the device main body can test multiple functions and is small in size, and is more practical, applicable to multiple occasions and convenient to carry. BRIEF DESCRIPTION OF DRAWINGS

[0017] The advantages and implementation modes of the application will be more obvious by referring to the drawings and combining the examples, wherein the contents shown in the drawings are only used for explaining and describing the application, and do not constitute any sense of limitation to the application, and in the drawings:

[0018] Figure 1 The structure of the test device in the embodiment of the application Figure 1 ;

[0019] Figure 2 The structure diagram of the test device installing one module in the embodiment of the application

[0020] Figure 3 The back structure diagram of the first module in the embodiment of the application

[0021] Figure 4 The front structure diagram of the first module in the embodiment of the application

[0022] Figure 5 The structure diagram of the test device installing two modules in the embodiment of the application

[0023] Figure 6 The connection structure diagram of the first module and the device main body in the embodiment of the application

[0024] Figure 7 The enlarged view of A in the embodiment of the application Figure 6

[0025] Figure 8 The structure of the test device in the embodiment of the application Figure 2 ;

[0026] Figure 9 The plan view of the test device in the embodiment of the application

[0027] Figure 10 The split view of the test device in the embodiment of the application

[0028] Figure 11 The structure diagram of the battery disassembled in the embodiment of the application ​DETAILED DESCRIPTION

[0029] As Figure 1 shown, the handheld test device for testing multiple modules proposed in the embodiment of the application is applied to optical fiber test. The handheld test device is a GAMMA handheld test platform, and the main tests are optical power, output stable light, optical switch, and even network analysis.

[0030] The handheld test device comprises a device main body 1, the device main body 1 is provided with a connector 101, and multiple modules are stacked on the device main body 1. Each module is provided with a connector, adjacent two modules are connected through the connectors for data transmission, and one of the multiple modules is connected with the device main body through the connector for data transmission. The connector is arranged, adjacent two modules are connected through the connector for data transmission, and the module is connected with the device main body through the connector for data transmission, so that the device main body tests the multiple modules, that is, tests multiple functions. In addition, since the multiple modules are stacked on the device main body, adjacent two modules are connected through the connector for data transmission, only one connector needs to be arranged on the device main body, so that the device main body is small in size. Thus, the device main body can test multiple functions and is small in size, and is more practical, applicable to multiple occasions and convenient to carry.

[0031] In the embodiment, the connector on the device main body is a connector female seat 101, and the connector on each module comprises a connector female seat and a connector male seat.

[0032] As Figures 2 to 4 shown, Figure 2 one module is installed on the device main body 1, the module is a first module 2, and the first module 2 is installed on the device main body 1. In combination with Figure 3 and Figure 4 , the front and back of the first module 2 are provided with connectors, the connector on the back of the first module 2 is a first connector male seat 201, the first connector male seat 201 is connected with the connector female seat 101 on the device main body, and the connector on the front of the first module 2 is a first connector female seat 202, the first connector female seat 202 is connected with the connector male seat on the other module. Referring to Figure 5 , Figure 5 two modules are installed on the device main body 1, the two modules are a first module 2 and a second module 3, the first module 2 is installed on the device main body 1, and the second module 3 is installed on the first module 2. Like the first module 2, the connector on the back of the second module 3 is a second connector male seat, the second connector male seat is connected with the first connector female seat on the first module, so that the first module 2 and the second module 3 are stacked on the device main body 1. The connector on the front of the second module 3 is a second connector female seat, the second connector female seat is connected with the connector male seat on the other module.

[0033] If three modules are installed on the device body, the three modules are a first module, a second module and a third module, the first module is installed on the device body, the second module is installed on the first module, and the third module is installed on the second module. The connector on the back of the third module is a third connector male seat, which is connected with the second connector female seat on the second module. In this way, the first module, the second module and the third module are stacked on the device body. The connector on the front of the third module is a third connector female seat, which is connected with the connector male seat on the other module. And so on.

[0034] As Figure 6 and Figure 7 In order to connect the modules with the device body and the modules with each other, the device body 1 is provided with threaded holes, each module is provided with a screw, and each module is also provided with threaded holes. Adjacent two modules are connected through the screws, and one of the plurality of modules is connected with the device body through the screw. By arranging the screw in the module, it is beneficial for the stacking of the modules, and it can also avoid knocking other positions.

[0035] The shell of the device body 1 is provided with a first threaded hole 102, and the first module 2 is provided with a first screw 203. The first module 2 is fixed on the device body 1 through the connection of the first screw 203 and the first threaded hole 102. The first module 2 is also provided with a second threaded hole 204, which is located directly above the first screw 203. The second threaded hole 204 is used to connect with the screw on the other module.

[0036] If two modules are installed on the device body, the two modules are a first module and a second module. The first module is fixed on the device body by connecting the first screw with the first threaded hole. Like the first module, the second module is provided with a second screw, which is used to fix the second module on the first module by connecting with the second threaded hole on the first module. In this way, the first module and the second module are stacked on the device body. The second module is also provided with a third threaded hole, which is located directly above the second screw. The third threaded hole is used to connect with the screw on the other module.

[0037] If three modules are installed on the device body, the three modules are a first module, a second module and a third module, the first module is fixed on the device body by connecting the first screw with the first threaded hole, and the second module is fixed on the first module by connecting the second screw with the second threaded hole. As the first module and the second module, the third module is provided with a third screw, and the third module is fixed on the second module by connecting the third screw with the third threaded hole on the second module, so that the first module, the second module and the third module are stacked on the device body. The third module is also provided with a fourth threaded hole, which is located directly above the third screw, and the fourth threaded hole is used to connect with the screw on the other module.

[0038] As shown in Figures 8 to 11 The device body includes a shell, a mainboard 105 and a fan 106, the shell includes an upper cover 103 and a bottom cover 104, and the mainboard 105 is provided with a CPU. The shell is provided with the fan 106, the upper cover 103 of the shell is provided with an L-shaped heat dissipation air duct 107 for dissipating heat of the CPU, and the bottom cover 104 is provided with a ventilation hole 108 corresponding to the fan 106. The shell is provided with a detachable battery 109, which facilitates the installation and disassembly of the battery, and the battery 109 supplies power to the fan 106.

[0039] The mainboard is provided with a fast charging interface 110 and / or a USB interface 111 for connecting an external power supply. The mainboard is provided with a SIM card slot 112 and / or a TF card slot 113, the shell is provided with a touch screen 114, and the touch screen is electrically connected with the mainboard. The shell is provided with a camera 115, which is electrically connected with the mainboard, and the shell is provided with a loudspeaker 117, which is connected with the mainboard. The shell is provided with a hanging rope buckle 116 for connecting a hanging rope, and the shell is provided with a silica gel power switch button and a function button.

[0040] The preferred embodiments of the application are described above with reference to the accompanying drawings, and those skilled in the art can realize the application in various ways without departing from the scope and essence of the application. For example, the features shown or described as part of an embodiment can be used in another embodiment to obtain another embodiment. The above is only the preferred embodiment of the application, and does not limit the scope of the application, and any equivalent changes made according to the content of the specification and drawings are included in the scope of the application.

Claims

1. A GAMMA hand-held test set for testing multiple modules for fiber testing, the GAMMA hand-held test set for testing optical power, output stable light, optical switch, network analysis; comprising a device main body, characterized in that, The device body is provided with a connector, a plurality of modules are stacked on the device body, each module is provided with a connector, adjacent two modules are connected through the connector for data transmission, one of the plurality of modules is connected with the device body through the connector for data transmission; the device body realizes testing of the plurality of modules, and tests multiple functions; Two modules are installed on the device body, the two modules are a first module and a second module, the first module is installed on the device body, the second module is installed on the first module, the front and back of the first module are provided with connectors, the connector on the back of the first module is a first connector male seat, the first connector male seat is connected with the connector female seat on the device body, and the connector on the front of the first module is a first connector female seat; The connector on the back of the second module is a second connector male seat, the second connector male seat is connected with the first connector female seat on the first module, and the first module and the second module are stacked on the device body; the connector on the front of the second module is a second connector female seat, and the second connector female seat is connected with the connector male seat on the other module; Each module is provided with a screw, adjacent two modules are connected through the screw, and one of the plurality of modules is connected with the device body through the screw; The shell of the device body is provided with a first threaded hole, the first module is provided with a first screw, the first module is fixed on the device body through the connection of the first screw and the first threaded hole, and the first module is further provided with a second threaded hole; The second module is provided with a second screw, the second module is fixed on the first module through the connection of the second screw and the second threaded hole of the first module, and the second module is further provided with a third threaded hole; 2. The GAMMA handheld test equipment for testing a plurality of modules for fiber optic testing of claim 1, wherein, The device body comprises a shell and a fan arranged in the shell.

3. The GAMMA handheld test equipment for testing a plurality of modules for fiber optic testing of claim 2, wherein, The shell is provided with a detachable battery, and the battery supplies power to the fan.

4. The GAMMA handheld test equipment for testing a plurality of modules for fiber optic testing of claim 1, wherein, The device body comprises a shell, the shell is provided with a mainboard, the mainboard is provided with a fast charging interface and / or a USB interface.

5. The GAMMA handheld test equipment for testing a plurality of modules for fiber optic testing of claim 1, wherein, The device body comprises a shell, the shell is provided with a mainboard, the mainboard is provided with a SIM card slot and / or a TF card slot.

6. The GAMMA handheld test equipment for testing a plurality of modules for fiber optic testing of claim 1, wherein, The device body comprises a shell, the shell is provided with a mainboard, the shell is provided with a touch screen, and the touch screen is electrically connected with the mainboard.

7. The GAMMA handheld test equipment for testing a plurality of modules for fiber optic testing of claim 1, wherein, The device body comprises a shell, the shell is provided with a mainboard, the shell is provided with a camera, and the camera is electrically connected with the mainboard.

8. The GAMMA handheld test equipment for testing a plurality of modules for fiber optic testing of claim 1, wherein, The device body comprises a shell, the shell is provided with a hanging rope buckle.

9. The GAMMA handheld test equipment for testing a plurality of modules for fiber optic testing of claim 1, wherein, The device body comprises a shell, the shell is provided with a loudspeaker and a mainboard, and the loudspeaker is connected with the mainboard.

Citation Information

Patent Citations

  • Handheld test equipment for testing multiple modules

    CN216350967U

  • Battery pack

    JP2007059088A

  • Modular test systems for severe environments

    US20100220441A1