Fixture for processing microwave communication module
By designing a jig for processing microwave communication modules with a clamping base and a rotating mechanism, the problem that traditional jigs are difficult to adjust angles and clamp modules of different sizes is solved, automatic and rapid positioning and multi-angle processing are achieved, and processing stability and adaptability are improved.
Patent Information
- Application Number
- CN202422398811.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-09-30
AI Technical Summary
Existing jigs for processing microwave communication modules are not convenient for adjusting the processing angle and are difficult to clamp microwave communication module bodies of different sizes, resulting in poor stability and inability to meet diversified market demands.
A jig for processing microwave communication modules was designed, which includes a clamping base, a slide rail, a limit mechanism, a rotating mechanism and a fixed block. The moving block is driven by positive and negative screws and a motor to move within the slide rail. Combined with the design of rubber blocks and springs, automatic and rapid positioning and clamping can be achieved. At the same time, processing at different angles can be achieved through the rotating mechanism of gears and knobs.
It realizes automatic rapid positioning, clamping and multi-angle processing of microwave communication modules, improves processing stability and adaptability, and meets diversified market demands.
Smart Images

Figure CN223419323U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of module processing jigs, in particular to a jig for processing microwave communication modules. Background Art
[0002] Due to its wide bandwidth and high capacity, microwave communications can be used to transmit a variety of telecommunications services, such as telephone, telegraph, data, fax, and color television signals. Microwave communications also offer excellent disaster resilience, generally remaining unaffected by warnings and reports of natural disasters such as floods, windstorms, and earthquakes. However, microwaves are susceptible to interference during airborne transmission. The same frequency cannot be used in the same direction on the same microwave circuit, so microwave circuit construction must be strictly regulated by radio regulatory authorities. Furthermore, due to the linear propagation characteristics of microwaves, high-rise buildings cannot obstruct the beam of radio waves. Therefore, urban planning departments must consider the planning of microwave channels in urban areas to ensure that high-rise buildings do not obstruct communications.
[0003] However, existing jigs for processing microwave communication modules have the following problems during use: traditional jigs are not convenient for adjusting the processing angle and for clamping microwave communication module bodies of different sizes, resulting in poor stability and failure to meet diversified market demands. Utility Model Content
[0004] The purpose of the present utility model is to provide a tool for processing a microwave communication module to solve the related problems raised in the above background technology.
[0005] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a jig for processing microwave communication modules, comprising a clamping base, a slide rail and a fixed block, a slide rail being installed at the bottom end of the clamping base, and a moving block being provided inside the slide rail, a limiting mechanism for moving the moving blocks being provided inside the clamping base, a fixed block being installed at the top of the moving block, and a fixed shaft being installed inside the fixed block through a bearing, a mounting block being installed on one side of the fixed shaft, and a movable groove being provided on the inner wall of the mounting block, a pressing block being provided inside the movable groove, and a rubber block being provided on the outer wall of the pressing block, a microwave communication module body being provided between the outer walls of the rubber blocks, a rotating mechanism for adjusting the processing angle being provided on one side of the fixed block, and a single-chip microcomputer being provided on the front wall of the clamping base.
[0006] The present technical solution provides a jig for processing microwave communication modules, wherein the limiting mechanism includes a forward and reverse screw rod and a motor, and the forward and reverse screw rods penetrating the movable block are installed inside the clamping base through bearings, and the outer walls of the forward and reverse screw rods are engaged with the inner wall of the movable block, and the outer wall of the clamping base is provided with a motor, and the output end of the motor is connected to one end of the forward and reverse screw rod through a coupling.
[0007] The technical solution provides a jig for processing a microwave communication module, wherein an inner wall of the movable groove is provided with a spring piece, and one side of the spring piece is in contact with a holding block.
[0008] The present technical solution provides a jig for processing a microwave communication module, wherein the inner wall of the movable groove is provided with a pressure sensor, and the outer wall of the pressure sensor is in contact with the outer wall of the holding block.
[0009] The present technical solution provides a tool for processing microwave communication modules, wherein the rotating mechanism includes a gear and a knob. The outer wall of the fixed shaft is mounted with a gear, and the outer wall of the gear is mounted with a knob. The outer wall of the knob is provided with anti-slip grooves.
[0010] The present technical solution provides a jig for processing microwave communication modules, wherein a horizontal plate is installed on one side of the fixed block, and a cross slot is opened inside the horizontal plate, a positioning rod passing through the gear is installed on the inner wall of the cross slot, and a spring is sleeved on the outer wall of the positioning rod, and the outer wall of the spring is in contact with the cross slot on the inner wall of the horizontal plate.
[0011] Compared with the prior art, the present invention provides a tool for processing microwave communication modules, which has the following beneficial effects:
[0012] 1. The utility model places the microwave communication module body between rubber blocks, and then starts the motor to drive the forward and reverse screws to rotate, so that the forward and reverse screws drive the movable block to move synchronously in the front and rear positions in the slide rail in the opposite directions, which is convenient for driving the rubber block to fit closely with the position of the microwave communication module body, so that the holding block squeezes the spring piece in the movable groove, and at the same time the spring piece feeds back information to the single-chip microcomputer, and the single-chip microcomputer will turn off the motor. This structure facilitates the automatic and rapid positioning and clamping of the microwave communication module body.
[0013] 2. The utility model tightens the spring and separates it from the gear by pulling the positioning rod. The operator holds it with his hand and rotates the knob to drive the fixed shaft to rotate, and the other side rotates synchronously. When it rotates to the verified position, the positioning rod is released, and the positioning rod is driven to engage and fix with the gear position under the action of the spring's own elastic force, which is convenient for processing at different angles. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 This is a schematic diagram of the main cross-sectional structure of the utility model;
[0015] Figure 2 This is a schematic diagram of the main structure of the present utility model.
[0016] In the figure: 1. Clamping base; 2. Slide rail; 3. Forward and reverse screw rods; 4. Moving block; 5. Fixed block; 6. Fixed shaft; 7. Mounting block; 8. Movable slot; 9. Pressure sensor; 10. Spring; 11. Holding block; 12. Rubber block; 13. Microwave communication module body; 14. Horizontal plate; 15. Positioning rod; 16. Spring; 17. Gear; 18. Knob; 19. Motor; 20. Single chip microcomputer. DETAILED DESCRIPTION
[0017] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0018] Example 1, as Figure 1-2 As shown, the utility model provides a technical solution: a jig for processing microwave communication modules, comprising a clamping base 1, a slide rail 2 and a fixed block 5, the bottom end of the clamping base 1 is installed with a slide rail 2, and the interior of the slide rail 2 is provided with a moving block 4, the clamping base 1 is provided with a limiting mechanism for moving the moving block 4, the limiting mechanism includes a forward and reverse screw rod 3 and a motor 19, the clamping base 1 is provided with a forward and reverse screw rod 3 that passes through the moving block 4 through a bearing, and the outer wall of the forward and reverse screw rod 3 is engaged with the inner wall of the moving block 4, the outer wall of the clamping base 1 is provided with a motor 19, and the output end of the motor 19 is connected to one end of the forward and reverse screw rod 3 through a coupling, the inner wall of the movable groove 8 is installed with a spring 10, and the spring One side of 10 is in contact with the holding block 11, and the inner wall of the movable groove 8 is provided with a pressure sensor 9, and the outer wall of the pressure sensor 9 is in contact with the outer wall of the holding block 11. By placing the microwave communication module body 13 between the rubber blocks 12, and then starting the motor 19 to drive the forward and reverse screw rods 3 to rotate, the forward and reverse screw rods 3 drive the movable block 4 to move synchronously in the front and rear positions in the slide rail 2 in the opposite direction, which is convenient for driving the rubber block 12 to fit closely with the position of the microwave communication module body 13, so that the holding block 11 squeezes the spring piece 10 in the movable groove 8, and at the same time the spring piece 10 feeds back information to the single-chip microcomputer 20, and the single-chip microcomputer 20 will turn off the motor 19. This structure facilitates the automatic and rapid positioning and clamping of the microwave communication module body 13.
[0019] Example 2, as Figure 1-2As shown, the utility model provides a technical solution: a jig for processing a microwave communication module, comprising a fixed block 5 installed on the top of a moving block 4, and a fixed shaft 6 is installed inside the fixed block 5 through a bearing, a mounting block 7 is installed on one side of the fixed shaft 6, and a movable groove 8 is opened on the inner wall of the mounting block 7, a holding block 11 is provided inside the movable groove 8, and a rubber block 12 is provided on the outer wall of the holding block 11, a microwave communication module body 13 is provided between the outer walls of the rubber block 12, a rotating mechanism for adjusting the processing angle is provided on one side of the fixed block 5, the rotating mechanism includes a gear 17 and a knob 18, a gear 17 is installed on the outer wall of the fixed shaft 6, and a knob 18 is installed on the outer wall of the gear 17, and a knob 18 is provided on the outer wall of the knob 18 Anti-slip grooves, a horizontal plate 14 is installed on one side of the fixed block 5, and a cross groove is opened inside the horizontal plate 14, and a positioning rod 15 that passes through the gear 17 is installed on the inner wall of the cross groove, and the outer wall of the positioning rod 15 is sleeved with a spring 16, and the outer wall of the spring 16 is in contact with the cross groove on the inner wall of the horizontal plate 14. When the operator needs to adjust the processing angle of the microwave communication module body 13, the positioning rod 15 is pulled to tighten the spring 16 and separate it from the gear 17. The operator holds and rotates the knob 18 with his hand to drive the fixed shaft 6 to rotate, and the other side rotates synchronously. After rotating to the verified position, the positioning rod 15 is released, and the positioning rod 15 is driven to engage and fix with the gear 17 under the action of the spring 16's own elastic force, which is convenient for processing at different angles.
[0020] Working principle: First, turn on the external power supply, the operator places the microwave communication module body 13 between the rubber blocks 12, and then starts the motor 19 to drive the forward and reverse screw rods 3 to rotate, so that the forward and reverse screw rods 3 drive the movable block 4 to move synchronously in the front and rear positions in the slide rail 2 in the opposite direction, so as to drive the rubber block 12 to fit closely with the position of the microwave communication module body 13, so that the holding block 11 squeezes the spring piece 10 in the movable groove 8, and at the same time the spring piece 10 feeds back information to the single-chip microcomputer 20, and the single-chip microcomputer 20 will turn off the motor 19. This structure facilitates the automatic and rapid positioning and clamping of the microwave communication module body 13.
[0021] When the operator needs to adjust the processing angle of the microwave communication module body 13, the positioning rod 15 is pulled to tighten the spring 16 and separate it from the gear 17. The operator holds and rotates the knob 18 with his hand to drive the fixed shaft 6 to rotate, and the other side rotates synchronously. When it rotates to the verified position, the positioning rod 15 is released, and the spring 16's own elastic force drives the positioning rod 15 to engage and fix the position of the gear 17, which is convenient for processing at different angles.
[0022] Finally, it should be noted that the above content is only used to illustrate the technical solution of the utility model, rather than to limit the scope of protection of the utility model. Simple modifications or equivalent replacements of the technical solution of the utility model by ordinary technicians in this field do not deviate from the essence and scope of the technical solution of the utility model.
Claims
1. A tool for processing a microwave communication module, comprising a clamping base (1), a slide rail (2) and a fixing block (5), characterized in that: A slide rail (2) is installed at the bottom end of the clamping base (1), and a moving block (4) is provided inside the slide rail (2). A limiting mechanism for moving the moving blocks (4) is provided inside the clamping base (1). A fixed block (5) is installed at the top of the moving block (4), and a fixed shaft (6) is installed inside the fixed block (5) through a bearing. A mounting block (7) is installed on one side of the fixed shaft (6), and a movable groove (8) is provided on the inner wall of the mounting block (7). A holding block (11) is provided inside the movable groove (8), and a rubber block (12) is provided on the outer wall of the holding block (11). A microwave communication module body (13) is provided between the outer walls of the rubber block (12). A rotating mechanism for adjusting the processing angle is provided on one side of the fixed block (5). A single-chip microcomputer (20) is provided on the front wall of the clamping base (1).
2. The tool for processing a microwave communication module according to claim 1, characterized in that: The limiting mechanism includes a forward and reverse screw rod (3) and a motor (19); the forward and reverse screw rod (3) penetrating the moving block (4) is installed inside the clamping base (1) through a bearing, and the outer wall of the forward and reverse screw rod (3) is engaged with the inner wall of the moving block (4); the outer wall of the clamping base (1) is provided with a motor (19), and the output end of the motor (19) is connected to one end of the forward and reverse screw rod (3) through a coupling.
3. The tool for processing a microwave communication module according to claim 1, characterized in that: A spring piece (10) is installed on the inner wall of the movable groove (8), and one side of the spring piece (10) is in contact with the holding block (11).
4. The tool for processing a microwave communication module according to claim 1, wherein: A pressure sensor (9) is provided on the inner wall of the movable groove (8), and the outer wall of the pressure sensor (9) is in contact with the outer wall of the holding block (11).
5. The tool for processing a microwave communication module according to claim 1, characterized in that: The rotating mechanism comprises a gear (17) and a knob (18), the gear (17) is mounted on the outer wall of the fixed shaft (6), and the knob (18) is mounted on the outer wall of the gear (17), and the outer wall of the knob (18) is provided with anti-slip grooves.
6. The tool for processing a microwave communication module according to claim 1, characterized in that: A transverse plate (14) is installed on one side of the fixed block (5), and a cross groove is opened inside the transverse plate (14). A positioning rod (15) penetrating the gear (17) is installed on the inner wall of the cross groove. A spring (16) is sleeved on the outer wall of the positioning rod (15), and the outer wall of the spring (16) contacts the cross groove on the inner wall of the transverse plate (14).