Foldable structure of electronic communication equipment
By using a foldable electronic communication antenna, the problems of large antenna space occupation and unstable electrical connection are solved, realizing the portability and reliability of the device, simplifying operation, and improving the efficiency and communication quality of the device.
Patent Information
- Application Number
- CN202520215227.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-11
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-02-11
AI Technical Summary
Existing electronic communication equipment has an antenna structure that cannot be folded, which takes up a lot of space, is inconvenient to carry and transport, has unstable electrical connections, and is complicated to operate, thus affecting the efficiency and reliability of the equipment.
The electronic communication antenna adopts a foldable structure. It is connected to the antenna mounting base through the folding hinge rotation shaft of the communication antenna. It is equipped with wire connection probes and probe pressure plates. Combined with the folding pressing rod and pressing plate mounting bracket, it can achieve flexible folding of the antenna and stability of electrical connection.
Reduce equipment footprint, facilitate carrying and transportation, improve the reliability of electrical connections, simplify operating procedures, reduce failure rates, extend equipment lifespan, and enhance efficiency and communication quality.
Smart Images

Figure CN223729001U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to electronic communication equipment field, specifically, electronic communication equipment's foldable structure is provided. BACKGROUND
[0002] In the era of rapid development of electronic communication technology, the application range of electronic communication equipment is increasingly wide, covering multiple fields from personal mobile devices to large communication base stations. As a key component of electronic communication equipment, the performance and structure of electronic communication antenna directly affect the overall performance and user experience of the communication equipment. However, the existing electronic communication equipment antenna structure has many shortcomings in actual application, and needs to be improved.
[0003] At present, the antenna of many electronic communication equipment adopts fixed structure, which cannot be folded. This leads to the fact that when the equipment is not used, the antenna still occupies a large space, and for the use scene with limited space,
[0004] At the same time, for the electronic communication equipment that needs to be carried and transported frequently, the fixed antenna structure increases the overall volume and weight of the equipment, which brings great difficulty to carrying and transportation. In the transportation process, the larger antenna is more likely to be collided and damaged, which increases the maintenance cost and replacement frequency of the equipment.
[0005] In the existing electronic communication equipment, the electrical connection between the antenna and the antenna tuner is often not reliable. Some devices adopt simple plug-in connection or welding connection, which is easy to appear the problem of poor contact due to vibration and collision factors in the use process of the equipment.
[0006] The antenna of the existing electronic communication equipment is not flexible in unfolding and folding operation, and needs complex tools or cumbersome steps to complete the state switching. This makes the user unable to quickly and conveniently adjust the antenna state according to the actual demand in the actual use process. Therefore, we improve it and propose a foldable structure of electronic communication equipment. UTILITY MODEL CONTENT
[0007] The utility model aims at the problems existing in the background technology. In order to realize the above utility model purpose, the utility model provides the following technical scheme: a foldable structure of electronic communication equipment, including electronic communication equipment base and electronic communication antenna, the electronic communication antenna is connected with antenna installation base through communication antenna folding hinge rotating shaft, the antenna installation base is arranged above the electronic communication equipment base, the electronic communication antenna is connected with antenna tuner wire.
[0008] The utility model discloses an antenna tuner is provided with the wire connecting probe on it, and the wire connecting probe is provided with the probe pressing plate above it.
[0009] The utility model discloses an antenna tuner is provided with the wire connecting probe on it, and the wire connecting probe is provided with the probe pressing plate above it.
[0010] The utility model discloses an antenna tuner is provided with the wire connecting probe on it, and the wire connecting probe is provided with the probe pressing plate above it.
[0011] The utility model discloses an antenna tuner is provided with the wire connecting probe on it, and the wire connecting probe is provided with the probe pressing plate above it.
[0012] The utility model discloses an antenna tuner is provided with the wire connecting probe on it, and the wire connecting probe is provided with the probe pressing plate above it.
[0013] The utility model discloses an antenna tuner is provided with the wire connecting probe on it, and the wire connecting probe is provided with the probe pressing plate above it.
[0014] The utility model discloses an antenna tuner is provided with the wire connecting probe on it, and the wire connecting probe is provided with the probe pressing plate above it.
[0015] Compared with the prior art, the utility model has the beneficial effects that:
[0016] The electronic communication antenna is connected with the antenna mounting base through the communication antenna folding hinge rotating shaft, and flexible folding function can be realized.
[0017] The foldable structure of the utility model makes the electronic communication equipment more convenient during carrying and transportation.
[0018] The utility model discloses electronic communication antenna and antenna tuner are connected through electric wire, and the electric wire connecting probe, probe pressure plate, pressure rod series components are provided on antenna tuner, when electronic communication antenna is unfolded, through operating folding press bar, can make pressure rod exert pressure to probe pressure plate, and then ensure that electric wire connecting probe and electronic communication antenna are in close contact, this structure effectively guarantees the stability and reliability of electrical connection between electronic communication antenna and antenna tuner, reduces the interference and loss in signal transmission process, improves communication quality.
[0019] The utility model discloses in the use process of equipment, because vibration, collision factor, electrical connection part is easy to appear the problem of bad contact. But in this collapsible structure, through probe pressure plate to electric wire connecting probe exert stable pressure, can effectively resist the influence of these external factors, reduce the probability of occurrence of bad contact failure, improve the stability and reliability of equipment, reduce the communication interruption and failure maintenance cost caused by electrical connection problem.
[0020] The utility model discloses operating personnel can according to actual demand, easily switch electronic communication antenna between unfolding and folding state. When needing to carry out communication work, quickly unfold antenna to obtain good communication effect, when not needing to use, in time fold antenna to save space. This flexible switching mode improves the use efficiency and adaptability of equipment, can satisfy the use demand under different scenes.
[0021] The utility model discloses that press plate mounting frame is provided with mounting frame sliding shaft sleeve, and with track shaft sliding cooperation. This makes press plate mounting frame can slide along track shaft, and according to the different state and position of electronic communication antenna, the position of its own is adjusted flexibly. In the process of antenna unfolding and folding, press plate mounting frame can accurately move to the suitable position, ensure that the press rod, probe pressure plate component can accurately act on the connecting part of antenna and antenna tuner, further improve the flexibility and accuracy of equipment operation.
[0022] The utility model discloses that the various components of collapsible structure, such as communication antenna folding hinge rotating shaft, press bar rotating shaft, reasonable structure, convenient to disassemble and install. When equipment appears the fault or needs to carry out maintenance, technical personnel can conveniently check, repair or replace each component, reduce the maintenance difficulty and cost, shorten the maintenance time of equipment, improve the usability of equipment.
[0023] The utility model discloses the structure of communication antenna folding hinge rotating shaft and press bar rotating shaft can guarantee that the rotation of antenna and folding press bar is smooth, reduce the probability of occurrence of the fault caused by component wear, thereby prolong the overall service life of equipment. ACCURACY
[0024] Figure 1The utility model provides a structure schematic view.
[0025] Figure 2 The utility model provides a local structure schematic view.
[0026] Figure 3 The utility model provides a local structure schematic view.
[0027] Figure 4 The utility model provides a probe pressure plate structure schematic view.
[0028] Indicated in the drawing:
[0029] 1, electronic communication equipment baseplate;2, electronic communication antenna;3, communication antenna folding hinge rotation shaft;4, antenna installation baseplate;5, antenna tuner;6, wire connection probe;7, probe pressure plate;8, pressure rod;9, hinged connecting plate;10, folding pressing rod;11, pressing rod rotation shaft;12, U-shaped shaft seat;13, pressing plate mounting frame;14, mounting frame sliding shaft sleeve;15, track shaft;16, support plate. Specific implementation
[0030] In order to make the utility model embodiment's purpose, technical scheme and advantage more clear, below, to the technical scheme in the utility model embodiment of the utility model, clear, complete description will be carried out.The described embodiment is the part embodiment of the utility model, and is not all embodiments.
[0031] Therefore, the detailed description of the embodiment of the utility model below is not intended to limit the scope of the claimed utility model, but only represents some embodiments of the utility model.Based on the embodiment in the utility model, all other embodiments obtained by the person skilled in the art without making creative labor belong to the scope of the utility model protection, it is need to explain, in the case of no conflict, the embodiment in the utility model and the feature and technical scheme in the embodiment can be combined mutually, it should be noted that: similar signs and letters in the following drawings represent similar items, therefore, once an item is defined in a drawing, it does not need to be further defined and explained in the subsequent drawings.
[0032] Embodiment 1: please refer to Figures 1-4 A foldable structure of electronic communication equipment, including electronic communication equipment baseplate 1 and electronic communication antenna 2, electronic communication antenna 2 is connected with antenna installation baseplate 4 through communication antenna folding hinge rotation shaft 3, and antenna installation baseplate 4 is arranged above electronic communication equipment baseplate 1, and electronic communication antenna 2 is connected with antenna tuner 5 by wire.
[0033] The antenna tuner 5 is provided with a wire connection probe 6, and the upper side of the wire connection probe 6 is provided with a probe pressing plate 7. The upper side of the probe pressing plate 7 is provided with a pressing rod 8, and the pressing rod 8 is connected with a folding pressing rod 10 through a hinged connecting plate 9. The folding pressing rod 10 is movably installed on a U-shaped shaft seat 12 through a pressing rod rotating shaft 11. The U-shaped shaft seat 12 is arranged on a pressing plate mounting frame 13. The pressing plate mounting frame 13 is provided with a mounting frame sliding shaft sleeve 14. The mounting frame sliding shaft sleeve 14 is in sliding fit with a track shaft 15. The pressing plate mounting frame 13 and the mounting frame sliding shaft sleeve 14 are arranged on the front side of a support plate 16.
[0034] The working principle of the foldable structure of the electronic communication device is as follows: the foldable structure of the electronic communication device is mainly used to realize the folding function of the electronic communication antenna 2, and can ensure the stability of the electrical connection between the electronic communication antenna 2 and the antenna tuner 5 during folding. The structure mainly comprises the electronic communication device base 1, the electronic communication antenna 2, the communication antenna folding hinge rotating shaft 3, the antenna mounting base 4, the antenna tuner 5, the wire connection probe 6, the probe pressing plate 7, the pressing rod 8, the hinged connecting plate 9, the folding pressing rod 10, the pressing rod rotating shaft 11, the U-shaped shaft seat, the pressing plate mounting frame 13, the mounting frame sliding shaft sleeve 14, and the track shaft 15.
[0035] The electronic communication antenna 2 is connected with the antenna mounting base 4 through the communication antenna folding hinge rotating shaft 3. The antenna mounting base 4 is arranged above the electronic communication device base 1, so that the electronic communication antenna 2 can rotate around the communication antenna folding hinge rotating shaft 3, thereby realizing the folding and unfolding actions of the antenna. When the antenna needs to be folded, an operator can manually rotate the electronic communication antenna 2 around the communication antenna folding hinge rotating shaft 3 to a suitable position; conversely, if the antenna needs to be unfolded, the antenna can be rotated in the opposite direction around the rotating shaft.
[0036] The electronic communication antenna 2 is connected with the antenna tuner 5 through a wire, so as to realize the transmission and processing of signals. The antenna tuner 5 is provided with the wire connection probe 6, which is a key component for the electrical connection between the electronic communication antenna 2 and the antenna tuner 5. The upper side of the wire connection probe 6 is provided with the probe pressing plate 7, which exerts pressure on the wire connection probe 6 when the electronic communication antenna 2 is in an unfolded state, so as to ensure that the probe is in close contact with the connection part of the electronic communication antenna 2, thereby ensuring the stability and reliability of the electrical connection.
[0037] The upper part of the probe pressing plate 7 is provided with a pressing rod 8, which is connected with a folding pressing rod 10 through a hinged connecting plate 9. The folding pressing rod 10 is movably installed on a U-shaped shaft seat through a pressing rod rotating shaft 11, and the U-shaped shaft seat is arranged on a pressing plate mounting rack 13. When the operator needs to apply pressure to the probe pressing plate 7, the folding pressing rod 10 can be operated. Since the folding pressing rod 10 is movably installed on the U-shaped shaft seat through the pressing rod rotating shaft 11, when the folding pressing rod 10 is rotated, it will drive the pressing rod 8 to move up and down through the hinged connecting plate 9. When the pressing rod 8 moves downward, pressure is applied to the probe pressing plate 7, thereby making the wire connecting probe 6 tightly contact with the connecting part of the electronic communication antenna 2.
[0038] The pressing plate mounting rack 13 is provided with a mounting rack sliding shaft sleeve 14, which is in sliding fit with a track shaft 15. The pressing plate mounting rack 13 and the mounting rack sliding shaft sleeve 14 are both arranged on the front side of a support plate 16. This structure enables the pressing plate mounting rack 13 to slide along the track shaft 15. During the folding and unfolding of the electronic communication antenna 2, the pressing plate mounting rack 13 can slide on the track shaft 15 as needed to adjust its position to adapt to different states of the antenna. For example, when the antenna is unfolded, the pressing plate mounting rack 13 can be slid to a suitable position so that the pressing rod 8 can accurately apply pressure to the probe pressing plate 7; when the antenna is folded, the pressing plate mounting rack 13 can be slid to a position that does not affect the folding of the antenna.
[0039] Antenna unfolded state: the operator unfolds the electronic communication antenna 2 around the communication antenna folding hinge rotating shaft 3 to the working position, and then operates the folding pressing rod 10 to rotate it around the pressing rod rotating shaft 11. The pressing rod 8 is driven downward by the hinged connecting plate 9, and the pressing rod 8 applies pressure to the probe pressing plate 7, making the wire connecting probe 6 tightly contact with the electronic communication antenna 2, ensuring stable electrical connection. At the same time, the pressing plate mounting rack 13 can be slid to a suitable position along the track shaft 15 as needed.
[0040] Antenna folded state: the operator first operates the folding pressing rod 10 to reverse rotate it around the pressing rod rotating shaft 11, and then drives the pressing rod 8 to move upward through the hinged connecting plate 9 to release the pressure on the probe pressing plate 7. Then the electronic communication antenna 2 is rotated around the communication antenna folding hinge rotating shaft 3 to the folded position, and at this time the pressing plate mounting rack 13 can be slid to a position that does not affect the folding of the antenna along the track shaft 15.
[0041] Working process of the foldable structure of the electronic communication device: confirm that the electronic communication device is in a safe and suitable operating environment, and check that all parts are not damaged and there is no foreign matter blocking the movement path.
[0042] The electronic communication antenna 2 is slowly rotated from the unfolded state to the folded state around the communication antenna folding hinge rotating shaft 3. During this process, the antenna rotates steadily around the rotating shaft on the antenna mounting base 4 until the electronic communication antenna 2 is folded to the appropriate position, reducing the overall space occupied by the device, facilitating storage and carrying.
[0043] According to the position of the antenna after unfolding, the pressing plate mounting bracket 13 is pushed. Because the mounting bracket sliding shaft sleeve 14 on the pressing plate mounting bracket 13 is in sliding fit with the track shaft 15, it can be adjusted by sliding along the track shaft 15. The pressing plate mounting bracket 13 is moved to the appropriate position, so that the subsequent pressure rod 8 and probe pressing plate 7 components can accurately act on the connection part of the antenna and the antenna tuner 5.
[0044] The folding pressing rod 10 is operated to rotate around the pressing rod rotating shaft 11. Because the folding pressing rod 10 is connected with the pressure rod 8 through the hinged connecting plate 9, the rotation of the folding pressing rod 10 will drive the hinged connecting plate 9 to move, and then the pressure rod 8 moves downward.
[0045] During the downward movement of the pressure rod 8, pressure is applied to the probe pressing plate 7 below, and the probe pressing plate 7 transmits the pressure to the wire connection probe 6, so that the wire connection probe 6 is in close contact with the corresponding connection part of the electronic communication antenna 2, thereby establishing a stable and reliable electrical connection between the electronic communication antenna 2 and the antenna tuner 5, ensuring that the signal can be normally transmitted and processed.
[0046] The folding pressing rod 10 is operated to rotate reversely around the pressing rod rotating shaft 11. The reversely rotating folding pressing rod 10 drives the pressure rod 8 to move upward through the hinged connecting plate 9.
[0047] As the pressure rod 8 moves upward, the pressure on the probe pressing plate 7 is gradually released, and the probe pressing plate 7 no longer applies pressure to the wire connection probe 6, so that the wire connection probe 6 is separated from the connection part of the electronic communication antenna 2, and the electrical connection is interrupted.
[0048] The pressing plate mounting bracket 13 is pushed, and the mounting bracket sliding shaft sleeve 14 is slid along the track shaft 15 to a position that does not interfere with the folding of the antenna, avoiding interference with other components during the folding of the antenna.
[0049] The electronic communication antenna 2 is slowly rotated from the unfolded state to the folded state around the communication antenna folding hinge rotating shaft 3. During this process, the antenna rotates steadily around the rotating shaft on the antenna mounting base 4 until the electronic communication antenna 2 is folded to the appropriate position, reducing the overall space occupied by the device, facilitating storage and carrying.
[0050] Example 2: Foldable structure of an electronic communication device, electronic communication device base 1: made of high-strength, lightweight aluminum alloy material, the size is determined according to the overall structure of the electronic communication device as 300mm long, 200mm wide, and 50mm high, ensuring stable placement of the device and providing reliable support for other components.
[0051] Antenna mounting base 4: also made of aluminum alloy material, firmly installed on the upper central position of the electronic communication device base 1 by bolts. Its size structure is 100mm long, 100mm wide, and 30mm high, with a mounting hole reserved at the top to fit the communication antenna folding hinge shaft 3.
[0052] Electronic communication antenna 2: uses a telescopic glass steel material antenna, the length can reach 500mm in the unfolded state, and can be shortened to 150mm after folding. The bottom of the antenna is connected to the antenna mounting base 4 through the communication antenna folding hinge shaft 3, and the rotating shaft is made of stainless steel material, with polished surface to ensure smooth rotation of the antenna and good wear resistance.
[0053] Antenna tuner 5 is installed inside the electronic communication device base 1 near the antenna mounting base 4, connected to the electronic communication antenna 2 through a wire with good flexibility and high temperature resistance, and the wire length is determined as 200mm according to the actual installation distance.
[0054] Wire connection probe 6: made of copper alloy material, with silver plating on the surface to improve conductivity. It is installed on the top of the antenna tuner 5, corresponding to the connection part of the electronic communication antenna 2.
[0055] Probe pressing plate 7: made of plastic material, with certain elasticity and strength. It is placed above the wire connection probe 6, and its size structure is able to completely cover the wire connection probe 6, ensuring uniform pressure.
[0056] Pressing rod 8: made of stainless steel rod, with a diameter of 10mm. The lower end of the pressing rod 8 is in contact with the probe pressing plate 7, and the upper end is connected to the folding pressing rod 10 through the hinged connecting plate 9.
[0057] Hinged connecting plate 9: made of aluminum alloy sheet, connected to the pressing rod 8 and the folding pressing rod 10 through rivets, ensuring firm connection and flexible rotation.
[0058] Folding pressing rod 10: made of engineering plastic material, with anti-slip treatment on the surface. It is movably installed on the U-shaped shaft seat through the pressing rod rotating shaft 11, which is made of stainless steel material to ensure flexible rotation.
[0059] U-shaped shaft seat: made of aluminum alloy material, fixed on the pressing plate mounting frame 13 by bolts, its size is determined according to the size and structure of the folding pressing rod 10, to ensure that the folding pressing rod 10 can rotate freely in the shaft seat.
[0060] Pressing plate mounting frame 13: made of high-strength plastic material, with a frame structure. The mounting frame sliding shaft sleeve 14 is arranged on the mounting frame, which is made of copper alloy and has a polished inner surface to reduce friction with the track shaft 15.
[0061] Track shaft 15: made of stainless steel round rod, with a diameter of 15mm and a length of 200mm. It is installed on the front side of the support plate 16 and slides with the mounting frame sliding shaft sleeve 14 to ensure smooth sliding of the pressing plate mounting frame 13.
[0062] Support plate 16: made of aluminum alloy plate, with a thickness of 5mm, fixed on the electronic communication equipment base 1 by bolts, providing support for the track shaft 15 and the pressing plate mounting frame 13.
[0063] Work flow: First, manually hold the electronic communication antenna 2, and slowly rotate it from the folded state to the unfolded direction around the communication antenna folding hinge rotating shaft 3 until it reaches the preset unfolded angle, such as 90° to the horizontal plane.
[0064] Then, according to the position of the unfolded antenna, push the pressing plate mounting frame 13 to slide along the track shaft 15 to the appropriate position, ensuring that the folding pressing rod 10 and the pressing rod 8 components can accurately act on the probe pressing plate 7.
[0065] Finally, operate the folding pressing rod 10 to rotate it downward around the pressing rod rotating shaft 11. Through the hinged connecting plate 9, the pressing rod 8 moves downward, and the pressing rod 8 applies pressure to the probe pressing plate 7, making the probe pressing plate 7 press the wire connecting probe 6 tightly, so that the wire connecting probe 6 is in close contact with the electronic communication antenna 2, completing the electrical connection, and the electronic communication equipment can work normally.
[0066] First, operate the folding pressing rod 10 to rotate it upward around the pressing rod rotating shaft 11. Through the hinged connecting plate 9, the pressing rod 8 moves upward, releasing the pressure on the probe pressing plate 7, so that the wire connecting probe 6 is separated from the electronic communication antenna 2, interrupting the electrical connection. Then, push the pressing plate mounting frame 13 to slide along the track shaft 15 to a position that does not interfere with the folding of the antenna. Finally, manually hold the electronic communication antenna 2, and slowly rotate it from the unfolded state to the folded direction around the communication antenna folding hinge rotating shaft 3 until it is folded to the appropriate position, reducing the overall space occupied by the equipment.
[0067] The above examples are only used to illustrate the technical solutions described in the utility model and do not limit the utility model. Although the utility model has been described in detail with reference to the above various embodiments, the utility model is not limited to the above specific embodiments, and therefore any modification or substitution of the utility model; and all technical solutions and improvements that do not deviate from the spirit and scope of the utility model are all covered in the scope of the claims of the utility model.
Claims
1. A foldable structure of an electronic communication device comprising an electronic communication device base (1) and an electronic communication antenna (2), characterized in that, The electronic communication antenna (2) is connected with the antenna installation base (4) through the communication antenna folding hinge rotating shaft (3), the antenna installation base (4) is arranged above the electronic communication device base (1), and the electronic communication antenna (2) is electrically connected with the antenna tuner (5).
2. A foldable structure for an electronic communication device as claimed in claim 1, wherein, The antenna tuner (5) is provided with the wire connection probe (6), and the wire connection probe (6) is provided with the probe pressing plate (7) above.
3. A foldable structure for an electronic communication device according to claim 2, wherein, The probe pressing plate (7) is provided with the pressing rod (8) above, and the pressing rod (8) is connected with the folding pressing rod (10) through the hinged connecting plate (9).
4. A foldable structure for an electronic communication device according to claim 3, wherein, The folding pressing rod (10) is movably installed on the U-shaped shaft base (12) through the pressing rod rotating shaft (11).
5. A foldable structure for an electronic communication device according to claim 4, wherein, The U-shaped shaft base (12) is arranged on the pressing plate mounting rack (13).
6. A foldable structure for an electronic communication device according to claim 5, wherein, The pressing plate mounting rack (13) is provided with the mounting rack sliding shaft sleeve (14).
7. A foldable structure for an electronic communication device according to claim 6, wherein, The mounting rack sliding shaft sleeve (14) is in sliding fit with the track shaft (15).
8. A foldable structure for an electronic communication device according to claim 7, wherein, The pressing plate mounting rack (13) and the mounting rack sliding shaft sleeve (14) are arranged on the front side of the supporting plate (16) together with the track shaft (15).