Rapid detection device for electromagnetic compatibility of 5G communication equipment
By designing a fast electromagnetic compatibility detection device for 5G communication equipment including rotatable placement components, clamping components, positioning components, electromagnetic compatibility detection components and transfer components, the problems of inconvenience and classification difficulties in the prior art are solved, and the rapid, continuous detection and flexible use of 5G communication equipment are achieved.
Patent Information
- Application Number
- CN202510296555.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-13
- Publication Date
- 2025-06-27
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The prior art is not convenient for continuous testing when detecting the electromagnetic compatibility of 5G communication equipment, and it is difficult to classify qualified and unqualified products, and the detection device is not convenient for use or repair alone.
A rapid electromagnetic compatibility detection device for 5G communication equipment including rotatable placement components, clamping components, positioning components, electromagnetic compatibility detection components and transfer components is designed. Through the coordinated work of these components, the continuous detection, classification and flexible use of 5G communication equipment is realized.
It realizes fast and continuous detection of 5G communication equipment, improves detection efficiency, and can classify and process qualified and unqualified products. At the same time, the electromagnetic compatibility detection components can be used or repaired separately according to the situation, and are flexible to use.
Smart Images

Figure CN120214441A_ABST
Abstract
Description
Technical Field
[0001] The present invention specifically relates to a rapid electromagnetic compatibility detection device for 5G communication equipment, belonging to the technical field of 5G communication equipment. Background Art
[0002] Electromagnetic compatibility refers to the ability of a device or system to operate in its electromagnetic environment and meet requirements without causing intolerable electromagnetic interference to any device in its environment. Electromagnetic compatibility can ensure that the device operates accurately in a complex electromagnetic environment, avoiding malfunction or data error of the device caused by interference. Through electromagnetic compatibility design, the reliability and stability of the product can be improved, thereby improving the product quality. 5G communication equipment refers to equipment that supports the fifth-generation mobile communication technology (5G). These devices can achieve high-speed and low-latency data transmission. They usually include base stations, routers, smartphones, Internet of Things devices, etc. These devices integrate complex electronic components and circuit boards inside to support 5G communication functions. Electronic products generally refer to devices or systems that are driven by electric energy and have specific functions. These devices often contain components such as electronic components and circuit boards and can process, transmit, or store electronic signals. In summary, 5G communication equipment fully meets the definition of electronic products.
[0003] Currently, the application document with the application number CN202420374534.X discloses an electromagnetic compatibility tester for electronic products, including a base. One side of the top of the base is fixedly connected with a test box. A placing component is arranged on the lower inner wall of the test box. The other side of the top of the base is fixedly connected with a tester body. One end of the tester body is provided with a power socket. A connector is movably inserted into the inner wall of the power socket, and one end of the connector is fixedly connected with a power cord. A wire winding mechanism for cooperating with the power cord is arranged on the top of the base. By setting the wire winding mechanism, the wire loop moves back and forth and cooperates with the wire winding roller to orderly wind and unwind the power cord, which plays a role in facilitating the orderly winding and unwinding of the power cord in the tester and improves the convenience of using the tester. By setting the placing component, it plays a role in facilitating the stable placement of the electronic product to be tested during testing and improves the use effect of the tester.
[0004] The above technical solution can orderly wind and unwind the power cord and can position the electronic product at the same time. However, the above technical solution is inconvenient for continuous detection when detecting electromagnetic compatibility, and it is also inconvenient to classify qualified and unqualified products. In addition, its detection device is also inconvenient to be taken off and used separately. In view of this, the present invention is specifically proposed. Summary of the Invention
[0005] The object of the present invention is to provide a rapid detection device for the electromagnetic compatibility of 5G communication devices to solve the above problems. It has the advantages of being able to detect the connection of 5G communication devices, improving the detection efficiency. At the same time, it also has a classification function, and the electromagnetic compatibility detection component can be removed and used or repaired separately according to the situation.
[0006] The present invention achieves the above object through the following technical solutions. A rapid detection device for the electromagnetic compatibility of 5G communication devices includes a device bottom plate. A rotatable placement component is fixedly connected to the top of the device bottom plate. The rotatable placement component is used to place the 5G communication device and drive the 5G communication device to rotate. A support component is arranged on the top of the device bottom plate. A clamping component is connected to the support component. The electromagnetic compatibility detection component for rapidly detecting the electromagnetic compatibility of the 5G communication device is clamped on the clamping component. A positioning component for positioning the 5G communication device is also fixedly installed on the support component. Three support plates are fixedly connected to the top of the device bottom plate. An installation table is fixedly connected to the top of the support plate. A conveying device for conveying qualified 5G communication devices is fixedly connected to one side of the top of the installation table. A transfer component for transferring unqualified 5G communication devices is also fixedly installed on the top of the installation table. An inclined sliding table is fixedly connected to one side of the installation table. A collection box is also arranged on the top of the device bottom plate. One end of the inclined sliding table is located on the top of the collection box.
[0007] Further, in order to rotate the circular placement bottom plate through the rotating rod, the rotatable placement component includes a support cylinder. The support cylinder is fixedly connected to the top of the device bottom plate. An installation groove is opened at the central position of the top of the support cylinder. A bearing is fixedly installed on the inner side wall of the installation groove. A rotating rod is fixedly connected in the bearing. The top of the rotating rod is fixed with a circular placement bottom plate. An outer retaining ring and an inner retaining ring are fixedly installed on the top of the circular placement bottom plate from outside to inside. The outer side wall of the inner retaining ring is fixedly connected with partition baffles in a circumferential array, and one end of the partition baffle is fixed on the inner side wall of the outer retaining ring.
[0008] Further, in order to make the driving gear ring cooperate with the driving gear, the bottom of the circular placement bottom plate is fixedly connected with suspension rods in a circumferential array. A driving gear ring is fixedly connected to the inner side of one end of the suspension rod. A driving motor is installed on the outer side wall of the support round rod through a motor fixing seat. A driving gear is fixedly installed on the output shaft of the driving motor. The driving gear meshes with the driving gear ring.
[0009] Further, in order to position the installation cross plate through the L-shaped support rod, the support assembly includes L-shaped support rods fixed on both sides of the top of the bottom of the device. One end of the support rod is fixedly connected with an installation cross plate, the installation cross plate is located above the rotatable placement assembly, and strip-shaped notches are symmetrically formed on the installation top plate.
[0010] Further, in order to enable the two clamping moving blocks to slide in the rectangular strip hole when the bidirectional lead screw rotates, the clamping assembly includes a vertical baffle fixedly installed on the top of the installation cross plate. A rectangular strip hole is formed in the vertical baffle. A bidirectional lead screw is rotatably installed on the inner side wall of the rectangular strip hole. A clamping motor is fixedly installed on the outer side wall of the vertical baffle. The output shaft of the clamping motor is fixed to one end of the bidirectional lead screw. Clamping moving blocks are threadedly connected to both ends of the bidirectional lead screw, and the clamping moving blocks are located in the rectangular strip hole. One end of the clamping moving block is bolted to an L-shaped clamping plate.
[0011] Further, in order to install the signal generator and the signal analyzer through the outer shell, the electromagnetic compatibility detection assembly includes an outer shell. Support legs are arranged at the four corners of the bottom of the outer shell. The outer shell is located on the top of the installation cross plate, and the support legs are located in the strip-shaped notches. An isolation baffle is fixed inside the outer shell. A signal generator for generating an electromagnetic environment is fixedly installed inside the outer shell. A signal analyzer for receiving the electromagnetic signal of the 5G communication device is also fixed inside the outer shell. The signal generator and the signal analyzer are respectively on both sides of the isolation baffle. A lifting handle is also fixed on the top of the outer shell.
[0012] Further, in order to displace the clamping stable seat through the pneumatic finger, the positioning assembly includes a weight-reducing mounting seat. The weight-reducing mounting seat is fixedly installed at the central position of the bottom of the installation cross plate. The top of one end of the weight-reducing mounting seat is fixedly connected with a pneumatic finger. The pneumatic finger is located on the top of the conveying device. Clamping stable seats for clamping the 5G communication device are fixed on the output ends on both sides of the pneumatic finger. Rubber buffer pads are adhered to the inner side walls of the clamping stable seats.
[0013] Further, in order to drive the rotary connecting plate to rotate through the rotary cylinder, the transfer assembly includes a U-shaped mounting plate which is fixedly mounted on one side of the mounting table, and the U-shaped mounting plate is located on one side of the conveying device. A rotary cylinder is connected to the top of the U-shaped mounting plate through a screw. A rotary connecting plate is fixed on the rotating shaft of the rotary cylinder. A displacement telescopic rod is fixed to the top of one end of the rotary connecting plate. The output end of the displacement telescopic rod penetrates through the rotary connecting plate, and a vacuum chuck is mounted on one end of the displacement telescopic rod. The vacuum chuck is located above the pneumatic finger.
[0014] Technical effects and advantages of the present invention: By providing a rotatable placement component, a clamping component, a positioning component, an electromagnetic compatibility detection component and a transfer component, when performing electromagnetic compatibility detection on a 5G communication device, multiple 5G communication devices to be detected can be placed on the rotatable placement component first. Then, the tester takes one 5G communication device in front and positions the 5G communication device through the positioning component. After the operation is completed, the tester connects the 5G communication device to the electromagnetic compatibility detection component, and the electromagnetic compatibility of the 5G communication device can be detected through the electromagnetic compatibility detection component. Since multiple 5G communication devices are placed on the rotatable placement component, when the electromagnetic compatibility detection of the 5G communication devices in a certain area is completed, the tester can rotate the rotatable placement component to rotate the untested 5G communication devices in front of the tester, achieving continuous detection and improving the detection efficiency. The transfer component can transfer the 5G communication devices that fail the detection, achieving the function of classification. In addition, the clamping component can conveniently position or release the positioning of the electromagnetic compatibility detection component, enabling the electromagnetic compatibility detection component to be removed and used or repaired separately according to the situation, and being relatively flexible in use. Description of the Drawings
[0015] Figure 1 is a schematic diagram of the overall structure of the present invention;
[0016] Figure 2 is a schematic diagram of the connection between the clamping component and the electromagnetic compatibility detection component in the present invention;
[0017] Figure 3 is a schematic diagram of the structure of the rotatable placement component in the present invention;
[0018] Figure 4 is a schematic diagram of the installation of the transfer component in the present invention;
[0019] Figure 5 is an exploded structural diagram of the rotatable placement component in the present invention;
[0020] Figure 6 is a schematic diagram of the structure at the clamping component in the present invention;
[0021] Figure 7 Structural schematic diagram of the transfer component in the present invention;
[0022] Figure 8 Structural schematic diagram of the electromagnetic compatibility detection component in the present invention;
[0023] In the figure: 1, equipment bottom plate; 2, rotatable placement component; 201, support cylinder; 202, bearing; 203, rotating rod; 204, circular placement bottom plate; 205, outer retaining ring; 206, inner retaining ring; 207, partition baffle; 208, suspension rod; 209, driving gear ring; 210, driving motor; 211, driving gear; 3, support component; 301, L-shaped support rod; 302, mounting cross plate; 4, clamping component; 401, vertical baffle; 402, bidirectional lead screw; 403, clamping motor; 404, clamping moving block; 405, L-shaped clamping plate; 5, electromagnetic compatibility detection component; 501, outer housing; 502, support leg; 503, isolation baffle; 504, signal generator; 505, signal analyzer; 6, positioning component; 601, weight-reducing mounting seat; 602, pneumatic finger; 603, clamping stable seat; 604, rubber buffer pad; 7, support plate; 8, mounting table; 9, conveying device; 10, transfer component; 1001, U-shaped mounting plate; 1002, rotary cylinder; 1003, rotary connecting plate; 1004, displacement expansion rod; 1005, vacuum suction cup; 11, inclined slide; 12, collection box. Detailed implementation manners
[0024] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0025] Please refer to Figures 1-8As shown in the figure, a rapid electromagnetic compatibility detection device for 5G communication equipment includes a device bottom plate 1. A rotatable placement component 2 is fixedly connected to the top of the device bottom plate 1. The rotatable placement component 2 is used to place the 5G communication equipment and drive the 5G communication equipment to rotate. A support component 3 is arranged on the top of the device bottom plate 1. A clamping component 4 is connected to the support component 3. An electromagnetic compatibility detection component 5 for rapidly detecting the electromagnetic compatibility of the 5G communication equipment is clamped on the clamping component 4. A positioning component 6 for positioning the 5G communication equipment is also fixedly installed on the support component 3. Three support plates 7 are fixedly connected to the top of the device bottom plate 1. A mounting table 8 is fixedly connected to the top of the support plate 7. A conveying device 9 for conveying qualified 5G communication equipment is fixedly connected to one side of the top of the mounting table 8. A transfer component 10 for transferring unqualified 5G communication equipment is also fixedly installed on the top of the mounting table 8. An inclined sliding table 11 is fixedly connected to one side of the mounting table 8. A collection box 12 is also arranged on the top of the device bottom plate 1. One end of the inclined sliding table 11 is located on the top of the collection box 12. The qualified 5G communication equipment can be conveyed through the conveying device 9. The conveying device 9 is an existing mature technology and will not be elaborated here. When the unqualified 5G communication equipment falls on the inclined sliding table 11, the unqualified 5G communication equipment can slide, and then the unqualified 5G communication equipment can be collected in the collection box 12.
[0026] The rotatable placement component 2 includes a support cylinder 201. The support cylinder 201 is fixedly connected to the top of the device bottom plate 1. An installation groove is opened at the central position of the top of the support cylinder 201. A bearing 202 is fixedly installed on the inner side wall of the installation groove. A rotating rod 203 is fixedly connected in the bearing 202. A circular placement bottom plate 204 is fixed to the top of the rotating rod 203. An outer retaining ring 205 and an inner retaining ring 206 are respectively fixedly installed on the top of the circular placement bottom plate 204 from the outside to the inside. Partition baffles 207 are fixedly connected to the outer side wall of the inner retaining ring 206 in a circumferential array, and one end of the partition baffle 207 is fixed to the inner side wall of the outer retaining ring 205. Suspension rods 208 are fixedly connected to the bottom of the circular placement bottom plate 204 in a circumferential array. A driving gear ring 209 is fixedly connected to the inner side of one end of the suspension rod 208. A driving motor 210 is installed on the outer side wall of the support round rod through a motor fixing seat. A driving gear 211 is fixedly installed on the output shaft of the driving motor 210. The driving gear 211 meshes with the driving gear ring 209. After the driving motor 210 works, the circular placement bottom plate 204 can be finally rotated. When the circular placement bottom plate 204 rotates, the rotating rod 203 can rotate in the bearing 202.
[0027] The support component 3 includes L-shaped support rods 301 fixed on both sides of the top of the bottom of the device. One end of the support rod is fixedly connected with a mounting cross plate 302. The mounting cross plate 302 is located above the rotatable placement component 2. Strip-shaped notches are symmetrically formed on the mounting cross plate 302, which facilitates the installation of the electromagnetic compatibility detection component 5 and the positioning component 6.
[0028] The clamping component 4 includes a vertical baffle 401 fixedly installed on the top of the mounting cross plate 302. A rectangular strip hole is formed on the vertical baffle 401. A bidirectional lead screw 402 is rotatably installed on the inner side wall of the rectangular strip hole. A clamping motor 403 is fixedly installed on the outer side wall of the vertical baffle 401. The output shaft of the clamping motor 403 is fixed to one end of the bidirectional lead screw 402. Clamping moving blocks 404 are threadedly connected to both ends of the bidirectional lead screw 402, and the clamping moving blocks 404 are located in the rectangular strip hole. One end of the clamping moving block 404 is bolted to an L-shaped clamping plate 405. After the clamping motor 403 drives the bidirectional lead screw 402 to rotate in place, the two clamping moving blocks 404 and the L-shaped clamping plates 405 can be driven to displace. After the two L-shaped clamping plates 405 move away from each other, the detection personnel can remove the electromagnetic compatibility detection component 5, enabling the electromagnetic compatibility detection component 5 to be removed and used or repaired separately according to the situation, with relatively flexible use.
[0029] The electromagnetic compatibility detection component 5 includes a housing 501. Support legs 502 are provided at the four corners of the bottom of the housing 501. The housing 501 is located on the top of the mounting cross plate 302, and the support legs 502 are located in the strip-shaped notches. An isolation baffle 503 is fixed inside the housing 501. A signal generator 504 for generating an electromagnetic environment is fixedly installed inside the housing 501. A signal analyzer 505 for receiving the electromagnetic signals of the 5G communication device is also fixed inside the housing 501. The signal generator 504 and the signal analyzer 505 are respectively on both sides of the isolation baffle 503. A lifting handle is also fixed on the top of the housing 501. After the positioning of the entire electromagnetic compatibility detection component 5 is released, the electromagnetic compatibility detection component 5 can be conveniently carried for use in some special occasions.
[0030] The positioning component 6 includes a weight-reducing mounting base 601. The weight-reducing mounting base 601 is fixedly installed at the center position of the bottom of the mounting cross plate 302. One end of the weight-reducing mounting base 601 is fixedly connected with a pneumatic finger 602. The pneumatic finger 602 is located on the top of the conveying device 9. Clamping and stabilizing seats 603 for clamping the 5G communication device are fixed on the output ends on both sides of the pneumatic finger 602. A rubber buffer pad 604 is adhered to the inner side wall of the clamping and stabilizing seat 603. When positioning the 5G communication device, the rubber buffer pad 604 reduces the damage to the 5G communication device, achieving a protective effect.
[0031] The transfer component 10 includes a U-shaped mounting plate 1001 which is fixedly mounted on one side of the mounting table 8 and is located on one side of the conveying device 9. A rotary cylinder 1002 is connected to the top of the U-shaped mounting plate 1001 by a screw. A rotary connecting plate 1003 is fixed on the rotary shaft of the rotary cylinder 1002. A displacement telescopic rod 1004 is fixed to the top of one end of the rotary connecting plate 1003. The output end of the displacement telescopic rod 1004 penetrates through the rotary connecting plate 1003, and a vacuum chuck 1005 is mounted on one end of the displacement telescopic rod 1004. The vacuum chuck 1005 is located above the pneumatic finger 602. The rotary cylinder 1002 can drive the rotary connecting plate 1003 to rotate 180 degrees, so that the vacuum chuck 1005 can be switched between above the pneumatic finger 602 and above the inclined slide 11.
[0032] When the present invention is in use, when performing electromagnetic compatibility testing on 5G communication devices, the testing personnel can first place multiple 5G communication devices on the top of the circular placement bottom plate 204 respectively, and the 5G communication devices need to be located between the outer retaining ring 205 and the inner retaining ring 206. The 5G communication devices in this position are convenient for the testing personnel to take. Then the testing personnel can stand on one side of the conveying device 9. Subsequently, the testing personnel take one 5G communication device in front of them. After taking it down, the testing personnel can place the 5G communication device on one side of the clamping and stabilizing seat 603. After the testing personnel make the pneumatic finger 602 work, the two clamping and stabilizing seats 603 can approach each other to clamp and fix the 5G communication device. After positioning, the operator can connect the 5G communication devices to the signal generator 504 and the signal analyzer 505 respectively. The signal generator 504 generates electromagnetic signals of various frequencies and powers to simulate the actual electromagnetic environment. These signals are directly sent to the 5G communication device under test through appropriate transmission media, while the signal analyzer 505 receives and analyzes the response signals sent from the 5G communication device under test. Therefore, the signal analyzer 505 can measure parameters such as the frequency and power of the signal, so as to judge the performance of the device in the electromagnetic environment;
[0033] After the detection, if the product is detected to be qualified, the inspector can make the pneumatic finger 602 work and then move the two clamping and stabilizing seats 603 away. After releasing the fixation of the 5G communication device, the 5G communication device can fall onto the conveying device 9 below for conveying. One end of the conveying device 9 can be connected to other conveying equipment to transfer to other steps. If the product is detected to be unqualified, the inspector can make the displacement telescopic rod 1004 work and then drive the vacuum suction cup to descend until the vacuum suction cup 1005 adsorbs the unqualified 5G communication device. After adsorption, the clamping and stabilizing seat 603 releases the positioning of the 5G communication device. At the same time, the displacement telescopic rod 1004 drives the unqualified 5G communication device to rise. Then, the inspector can make the rotary connecting plate 1003 and the unqualified 5G communication device rotate 180 degrees through the rotary cylinder 1002. After rotation, the vacuum suction cup 1005 releases the suction of the unqualified 5G communication device. The dropped unqualified 5G communication device slides into the collection box 12 through the inclined slide 11, achieving the classification function. Since multiple 5G communication devices are placed on the rotatable placement component 2, when the 5G communication devices in a certain area are detected, the inspector can make the drive motor 210 work and then drive the driving gear 211 to rotate, thereby driving the driven gear ring 209, the suspension rod 208, and the circular placement bottom plate 204 to rotate, so that the undetected 5G communication devices above the circular placement bottom plate 204 rotate in front of the inspector, achieving continuous detection and improving the detection efficiency.
[0034] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and without departing from the spirit or basic characteristics of the present invention, the present invention can be implemented in other specific forms. Therefore, in any aspect, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claimed rights.
[0035] In addition, it should be understood that although this specification is described according to the embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A 5G communication equipment electromagnetic compatibility rapid detection device, comprising an equipment base plate (1), characterized in that: The top of the device bottom plate (1) is fixedly connected with a rotatable placement component (2), and the rotatable placement component (2) is used to place the 5G communication device and drive the 5G communication device to rotate. The top of the device bottom plate (1) is provided with a support component (3), and the support component (3) is connected with a clamping component (4), and the clamping component (4) clamps an electromagnetic compatibility detection component (5) for performing rapid electromagnetic compatibility detection on the 5G communication device. The support component (3) is also fixed with a positioning component (6) for positioning the 5G communication device. Three support plates (7) are fixed on the top of the base plate (1), a mounting platform (8) is fixedly connected to the top of the support plate (7), a conveying device (9) for conveying qualified 5G communication equipment is fixedly connected to one side of the top of the mounting platform (8), a transfer component (10) for transferring unqualified 5G communication equipment is also fixed to the top of the mounting platform (8), an inclined slide (11) is fixedly connected to one side of the mounting platform (8), and a collection box (12) is also arranged on the top of the equipment base plate (1), and one end of the inclined slide (11) is located on the top of the collection box (12).
2. The 5G communication equipment electromagnetic compatibility rapid detection device according to claim 1, characterized in that: The rotatable placement component (2) comprises a support cylinder (201), the support cylinder (201) being fixedly connected to the top of the device bottom plate (1), a mounting groove being provided at the center of the top of the support cylinder (201), a bearing (202) being fixedly installed on the inner side wall of the mounting groove, a rotating rod (203) being fixedly connected inside the bearing (202), a circular placement bottom plate (204) being fixedly installed on the top of the rotating rod (203), an outer retaining ring (205) and an inner retaining ring (206) being fixedly installed on the top of the circular placement bottom plate (204) from the outside to the inside, a partition baffle (207) being fixedly connected to the outer side wall of the inner retaining ring (206) in a circumferential array, and one end of the partition baffle (207) being fixedly fixed to the inner side wall of the outer retaining ring (205).
3. The 5G communication equipment electromagnetic compatibility rapid detection device as claimed in claim 2, characterized in that: The bottom of the circular placement base plate (204) is fixedly connected to a suspension rod (208) in a circular array, and the inner side of one end of the suspension rod (208) is fixedly connected to a driving gear ring (209). A driving motor (210) is installed on the outer side wall of the supporting circular rod through a motor fixing seat, and a driving gear (211) is fixedly installed on the output shaft of the driving motor (210), and the driving gear (211) is meshed with the driving gear ring (209).
4. The 5G communication equipment electromagnetic compatibility rapid detection device according to claim 1, characterized in that: The support assembly (3) comprises an L-shaped support rod (301) fixed on both sides of the top of the bottom of the device, and a mounting cross plate (302) is fixedly connected to one end of the support rod. The mounting cross plate (302) is located above the rotatable placement assembly (2), and the mounting cross plate (302) is symmetrically provided with strip-shaped notches.
5. The 5G communication equipment electromagnetic compatibility rapid detection device as claimed in claim 4, characterized in that: The clamping assembly (4) comprises a vertical baffle (401) fixedly mounted on the top of the mounting cross plate (302), the vertical baffle (401) being provided with a rectangular hole, a bidirectional screw rod (402) being rotatably mounted on the inner side wall of the rectangular hole, a clamping motor (403) being fixedly mounted on the outer side wall of the vertical baffle (401), an output shaft of the clamping motor (403) being fixed on one end of the bidirectional screw rod (402), a clamping moving block (404) being threadedly connected at both ends of the bidirectional screw rod (402), and the clamping moving block (404) being located in the rectangular hole, and one end of the clamping moving block (404) being connected to an L-shaped clamping plate (405) by means of bolts.
6. The 5G communication equipment electromagnetic compatibility rapid detection device according to claim 5, characterized in that: The electromagnetic compatibility detection component (5) comprises an outer shell (501), the four corners of the bottom of the outer shell (501) are each provided with a support leg (502), the outer shell (501) is located on the top of the mounting horizontal plate (302), and the support leg (502) is located in the strip-shaped notch, an isolation baffle (503) is fixed in the outer shell (501), a signal generator (504) for generating an electromagnetic environment is fixedly installed in the outer shell (501), a signal analyzer (505) for receiving electromagnetic signals of 5G communication equipment is also fixed in the outer shell (501), the signal generator (504) and the signal analyzer (505) are respectively located on both sides of the isolation baffle (503), and a lifting handle is also fixed on the top of the outer shell (501).
7. The 5G communication equipment electromagnetic compatibility rapid detection device according to claim 4, characterized in that: The positioning assembly (6) includes a weight-reducing mounting seat (601), which is fixedly mounted at the center position of the bottom of the mounting cross plate (302), and a pneumatic finger (602) is fixedly connected to the top of one end of the weight-reducing mounting seat (601), and the pneumatic finger (602) is located at the top of the conveying device (9). A clamping stabilizing seat (603) for clamping 5G communication equipment is fixed on the output ends on both sides of the pneumatic finger (602), and a rubber buffer pad (604) is bonded to the inner side wall of the clamping stabilizing seat (603).
8. The 5G communication equipment electromagnetic compatibility rapid detection device according to claim 7, characterized in that: The transfer assembly (10) comprises a U-shaped mounting plate (1001), wherein the U-shaped mounting plate (1001) is fixedly mounted on one side of the mounting platform (8), and the U-shaped mounting plate (1001) is located on one side of the conveying device (9); the top of the U-shaped mounting plate (1001) is connected to a rotating cylinder (1002) via a screw rod; a rotating connecting plate (1003) is fixed on the rotating shaft of the rotating cylinder (1002); a displacement telescopic rod (1004) is fixed on the top of one end of the rotating connecting plate (1003); the output end of the displacement telescopic rod (1004) passes through the rotating connecting plate (1003); a vacuum suction cup (1005) is installed on one end of the displacement telescopic rod (1004); and the vacuum suction cup (1005) is located above the pneumatic finger (602).
Citation Information
Patent Citations
Electronic product electromagnetic compatibility tester
CN221883794U