FSU communication module test tool
By designing an FSU communication module test fixture with grooves and clamping structures, the problems of equipment damage and instability caused by existing test fixtures were solved, thereby improving the stability and operational efficiency of module testing.
Patent Information
- Application Number
- CN202422728122.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-09
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-11-09
AI Technical Summary
Existing FSU communication module testing fixtures are prone to damaging equipment during fixation and testing, and their interface design is complex and unstable, affecting testing efficiency and ease of operation.
An FSU communication module testing fixture was designed, which adopts a base with grooves and a clamping structure. The clamping structure fixes the module through rotatable adjustment blocks and sliding blocks, providing multi-angle adaptability and stability. Combined with the limit groove and spring structure, it prevents the wiring from falling off and ensures stable connection.
It improves the stability and adaptability of module testing, reduces mechanical shock, prevents wiring from coming loose, and improves testing accuracy and operational efficiency.
Smart Images

Figure CN223463016U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model provides a kind of test tool, belong to FSU communication module technical field, especially involve a kind of FSU communication module test tool. BACKGROUND
[0002] FSU communication module, full name is Facility Status Unit, is a kind of intelligent monitoring unit specially designed for communication base station and related facilities, it integrates multiple sensors and communication technology, to monitor and manage the environmental status and equipment operation condition of base station in real time;The background technology of FSU communication module involves Internet of Things (IoT), remote monitoring, data acquisition and processing, and multiple communication protocols, it collects key parameters such as temperature, humidity, voltage, current through sensor, and transmits data to monitoring center through wired or wireless communication mode, realizes remote monitoring and alarm, while supporting modularization and integration design, ensure the flexibility and expansibility of system, meet the needs of modern communication network for efficient, stable operating environment.
[0003] In the operation and maintenance process of FSU communication module, periodic maintenance and diagnosis procedures must be implemented to ensure its functionality and reliability. Current test fixture, when performing fixing operation of FSU module, due to the complexity and irregularity of its interface design, may cause physical damage to the module. In addition, during comprehensive performance test of FSU, due to lack of continuous and stable fixing mechanism for interface line, there is a risk of accidental falling. If fixed by traditional connection method, it will lead to the process of disassembling connection line during test become cumbersome and time-consuming, affect test efficiency and operation convenience. UTILITY MODEL CONTENT
[0004] In order to make up for the shortcomings of prior art, the present application provides a kind of FSU communication module test tool, solve the problem of inconvenient use of existing FSU test tool, easy to cause damage to equipment itself.
[0005] In order to solve the above technical problems, the utility model provides the following technical scheme: a kind of FSU communication module test tool, including base, the upper side of the base is connected with the clamping structure corresponding to the recess through the recess of several uniform distribution, the both sides of clamping structure are equipped with the adjusting support placed in the both ends of base, the inside of adjusting support is equipped with the sliding block corresponding to itself, the clamping structure includes the clamping block corresponding to the recess, first adjusting block and second adjusting block are sequentially arranged on the side of clamping block away from base, and second adjusting block is symmetrically distributed above first adjusting block.
[0006] Preferably, the groove is provided with a T-shaped limiting groove in communication with the groove on one side away from the clamping structure, the limiting groove is provided with a limiting block fixedly connected with the clamping block, and the clamping block and the first adjusting block are both provided with a fixed shaft penetrating through the corresponding first adjusting block and second adjusting block.
[0007] Preferably, the limiting groove is provided with a spring fixedly connected with the limiting groove and limiting block at two ends, the clamping blocks are symmetrically distributed on the base and correspond to each other, and the second adjusting block is provided with uniformly distributed protrusions on the side close to each other.
[0008] Preferably, the sliding block is fixedly connected with a blocking piece above the adjusting support and has a side length greater than itself, the sliding block is provided with a transversely penetrating longitudinal through groove, and the longitudinal through groove is provided with an adjusting groove penetrating through one side plate of the sliding block and vertically communicating with the longitudinal through groove.
[0009] Preferably, the adjusting groove is provided with a T-shaped adjusting block corresponding to the adjusting groove, the adjusting block is fixedly connected with a fixed ring on the side close to the other sliding block, the fixed ring is made of a material with good elasticity, the adjusting block is provided with a bolt structure penetrating through the adjusting block and arranged in the longitudinal through groove, and the adjusting block is also provided with springs arranged in the adjusting groove at the upper and lower ends.
[0010] The one or more technical solutions provided in the embodiments have at least the following technical effects or advantages:
[0011] The base provided with the groove is connected with the clamping block in correspondence with the groove, the clamping block is provided with the first adjusting block and the second adjusting block, the more the number of the secondary adjusting blocks, the more diversified the clamping angle after rotation, so that uneven wiring ports on the module can be adapted, meanwhile, the sliding block in the adjusting support can assist in fixing the wiring of the module, thereby preventing the wiring from falling off and ensuring more stable connection.
[0012] Other advantages, objects and features of the present application will be clarified to some extent in the following description, and will be apparent to those skilled in the art based on the following description, or can be taught from the practice of the present application. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is a three-dimensional schematic view of the FSU communication module test tool of the present application;
[0014] Figure 2 It is a partial enlarged view of the sliding block part of the FSU communication module test tool of the present application;
[0015] Figure 3The utility model discloses a groove part's sectional view of FSU communication module test frock.
[0016] Figure 4 The utility model discloses a clamping structure's explosion breakdown drawing of FSU communication module test frock.
[0017] As shown in the figure:
[0018] 1, base;
[0019] 11, groove, 12, adjusting support, 13, sliding block, 14, limiting groove, 15, blocking piece, 16, longitudinal through slot, 17, adjusting groove, 18, adjusting block, 19, fixed ring,
[0020] 2, clamping structure,
[0021] 21, clamping block, 22, first adjusting block, 23, second adjusting block, 24, limiting block, 25, fixed shaft, 26, protrusion. Specific embodiments
[0022] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0023] It should be noted that the terms "vertical", "horizontal", "upper", "lower", "left", "right" and similar expressions used herein are for illustrative purposes only and do not represent the only implementation.
[0024] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the utility model belongs; the terms used in the specification of the utility model are only for the purpose of describing specific embodiments and are not intended to limit the utility model; the term "and / or" used herein includes any and all combinations of one or more related listed items.
[0025] As Figure 1 , 3As shown in Figure 4, an FSU communication module test tooling comprises a base 1, a clamping structure 2 located above the base 1 and connected to the grooves 11 through a number of evenly distributed grooves 11, a T-shaped limit groove 14 connected to the groove 11 is provided on the side of the groove 11 away from the clamping structure 2, a limit block 24 fixedly connected to the clamping block 21 is provided in the limit groove 14, the clamping block 21 and the first adjustment block 22 are both provided with a fixed shaft 25, the fixed shaft 25 respectively passes through the corresponding first adjustment block 22 and second adjustment block 23, both sides of the clamping structure 2 are provided with adjustment brackets 12 placed at both ends of the base 1, the interior of the adjustment bracket 12 is provided with a sliding block 13 corresponding to itself, the clamping structure 2 comprises a clamping block 21 corresponding to the groove 11, and the first adjustment block 22 and the second adjustment block 23 are sequentially provided on the side of the clamping block 21 away from the base 1, and the second adjustment block 23 is symmetrically distributed above the first adjustment block 22.
[0026] In this embodiment, the utility model patent relates to a base device with an improved structure, which is intended to enhance the stability and adaptability of module wiring. The device includes a base 1, which is provided with a groove 11 for connecting to a clamping block 21. The clamping block 21 is designed with a rotatable first adjustment block 22 and a second adjustment block 23. The rotational freedom of these adjustment blocks allows the clamping blocks to fix the module at a variety of angles to adapt to irregular wiring ports that may exist on the module. In addition, the adjustment bracket 12 in the base is internally equipped with a sliding block 13, which is used to assist in fixing the wiring part of the module to prevent it from falling off, thereby ensuring the stability and reliability of the electrical connection.
[0027] like Figure 1 and Figure 2 As shown, a spring is provided in the limit groove 14 at both ends which are fixedly connected to the limit groove 14 and the limit block 24 respectively, the clamping blocks 21 are symmetrically distributed and correspond to each other on the base 1, and evenly distributed protrusions 25 are provided on the side where the second adjustment blocks 23 are close to each other. A blocking member 15 is fixedly connected above the sliding block 13 and is placed above the adjustment bracket 12 and has a side length greater than itself. The sliding block 13 is provided with a longitudinal through groove 16 which passes through itself horizontally, and an adjustment groove 17 which passes through a plate on one side of the sliding block 13 and is vertically connected to the longitudinal through groove 16 on one side of the longitudinal through groove 16. A T-shaped adjustment block 18 corresponding to itself is provided inside the adjustment groove 17, and a fixing ring 19 is fixedly connected to the side of the adjustment block 18 close to the other sliding block 13. The fixing ring 19 is made of a material with good elasticity, and a bolt structure which passes through itself and is placed in the longitudinal through groove 16 is provided on the adjustment block 18. The upper and lower ends of the adjustment block 18 are also provided with springs placed in the adjustment groove 17.
[0028] In this embodiment, the clamping structure 2 provides multiple degrees of freedom through the design of the first and second adjusting blocks 22 and 23, allowing the clamping block 21 to fix the module in different directions and angles. This design enables the tooling to adapt to modules of different shapes and sizes, especially those with irregular connection ports; by passing the fixing shaft 25 through the first and second adjusting blocks 22 and 23, the stability of the clamping block 21 when clamping the module is ensured. This design reduces the displacement or rotation of the module that may occur during testing, improving the accuracy of the test; the use of T-shaped limiting grooves 14 and limiting blocks 24 provides additional stability, preventing unnecessary movement of the clamping block 21 during testing; the sliding block 13 inside the adjusting bracket 12 can assist in fixing the wiring part of the module, preventing the wiring from falling off. This design ensures the stability and reliability of electrical connections, especially in dynamic testing environments; the fixed connection of the two ends of the limiting groove 14 with the spring, as well as the spring design on the upper and lower ends of the adjusting block 18, provides a damping effect, reducing the mechanical impact on the module during testing; the design of the longitudinal slot 16 on the sliding block 13 and the adjusting groove 17 allows for fine adjustments to accommodate wires of different lengths and shapes. This design improves the applicability and flexibility of the tooling; the fixed ring 19 is made of elastic material and can be self-adapted according to the thickness of the wire, providing better fixing effect; the bolt structure design on the adjusting block 18 allows quick fixing and releasing of the module, improving the operation efficiency of the tooling; the upper blocking piece 15 of the sliding block 13 prevents the sliding block from falling out of the adjusting bracket 12, further improving the structural stability of the tooling.
[0029] In use, first, ensure that the base 1 of the test tool is placed on a stable horizontal surface, place the FSU communication module in the groove 11 on the base 1, the groove 11 is designed to fit the shape and size of the module; through the clamping block 21 on the clamping structure 2, the fixed shaft 25 on it penetrates the first adjusting block 22 and the second adjusting block 23, adjust the position and angle of the clamping block 21 according to the specific shape of the module to adapt to the irregular wiring port that may exist on the module; by rotating the first adjusting block 22 and the second adjusting block 23, the module is clamped at multiple angles to ensure that the module is stable and the wiring port is aligned; the position of the clamping block 21 is fixed by using the limiting block 24 and the spring in the limiting groove 14 to prevent displacement of the module during testing; the sliding block 13 inside the adjusting bracket 12 assists in fixing the wiring part of the module. The blocking piece 15 above the sliding block 13 prevents the sliding block 13 from falling out of the adjusting bracket 12; by the longitudinal through slot 16 and the adjusting groove 17 on the sliding block 13, fine adjustment is carried out to adapt to different lengths of wiring; the bolt structure on the adjusting block 18 is used to fix the module wiring to ensure the stability of the electrical connection. The fixing ring 19 of the adjusting block 18 is made of elastic material to adapt to different thicknesses of wiring; the springs at the upper and lower ends of the adjusting block 18 provide damping effect to reduce the vibration impact on the module during testing; after the above steps are completed, the test program of the communication module can be started to ensure the accuracy of the test and the safety of the module; after the test is completed, the module is removed and the tool is cleaned and maintained as necessary in the reverse order.
[0030] Although the utility model has disclosed as above with preferred embodiment, it is not used to limit the utility model, anyone familiar with this technology can make various changes and modifications without departing from the spirit and scope of the utility model, therefore the protection scope of the utility model should be limited by the claims.
Claims
1. A FSU communication module test tooling comprising a base (1) characterised in that: The upper of the base (1) is connected with the clamping structure (2) corresponding to the groove (11) through several evenly distributed grooves (11), the both sides of the clamping structure (2) are provided with the adjusting support (12) placed at both ends of the base (1), the inside of the adjusting support (12) is provided with the sliding block (13) corresponding to itself, the clamping structure (2) comprises the clamping block (21) corresponding to the groove (11), the side of the clamping block (21) away from the base (1) is sequentially provided with the first adjusting block (22) and the second adjusting block (23), and the second adjusting block (23) is symmetrically distributed above the first adjusting block (22).
2. The FSU communication module test fixture of claim 1, wherein: The side of the groove (11) away from the clamping structure (2) is provided with the T-shaped limiting groove (14) in communication with itself, the limiting groove (14) is provided with the limiting block (24) fixedly connected with the clamping block (21), and the clamping block (21) and the first adjusting block (22) are provided with the fixed shaft (25), and the fixed shaft (25) penetrates through the corresponding first adjusting block (22) and the second adjusting block (23) respectively.
3. The FSU communication module test fixture of claim 2, wherein: The limiting groove (14) is provided with the spring fixedly connected with the limiting groove (14) and the limiting block (24) at both ends, the clamping block (21) is symmetrically distributed on the base (1) and corresponds to each other, and the side of the second adjusting block (23) close to each other is provided with the protrusions (26) evenly distributed.
4. The FSU communication module test fixture of claim 1, wherein: The sliding block (13) is fixedly connected with the blocking piece (15) placed above the adjusting support (12) and having a side length greater than itself, the sliding block (13) is provided with the transversely penetrating longitudinal through groove (16), and the side of the longitudinal through groove (16) is provided with the adjusting groove (17) penetrating through the side plate body of the sliding block (13) and being in perpendicular communication with the longitudinal through groove (16).
5. The FSU communication module test fixture of claim 4, wherein: The adjusting groove (17) is provided with the T-shaped adjusting block (18) corresponding to itself in the inside, the side of the adjusting block (18) close to the other sliding block (13) is fixedly connected with the fixed ring (19), the fixed ring (19) is made of a material with good elasticity, the adjusting block (18) is provided with the bolt structure penetrating through itself and placed in the longitudinal through groove (16), and the upper and lower ends of the adjusting block (18) are also provided with the spring placed in the adjusting groove (17).