Remote monitoring terminal device for 5G private network industrial automation equipment
By using anti-pull components to fix the RS232 and RS485 wiring harnesses in the remote monitoring terminal device, the problem of loose interfaces caused by pulling the wiring harnesses is solved, and the stability and accuracy of data transmission are achieved.
Patent Information
- Application Number
- CN202423073107.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-13
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-12-13
AI Technical Summary
In the remote monitoring terminal devices of 5G private network industrial automation equipment, the RS232 and RS485 wiring harnesses are easily loosened due to pulling, causing signal attenuation and communication interruption, affecting the stability and accuracy of data transmission.
The RS232 and RS485 wiring harnesses are fixed with an anti-pull assembly, which includes a fixing foot screwed to the bottom of the terminal device and a holder structure clipped onto the wiring harness to ensure that the wiring harness does not loosen during pulling and maintains a secure connection.
It effectively prevents the wiring harness from loosening due to external pulling, ensures continuous and stable data transmission, avoids signal attenuation and communication interruption, and improves the accuracy and reliability of remote monitoring data.
Smart Images

Figure CN223334151U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of monitoring equipment, specifically a 5G private network industrial automation equipment remote monitoring terminal device. Background Art
[0002] 5G private network industrial automation equipment refers to various types of automated equipment connected and controlled via 5G private networks during industrial production. Leveraging 5G technology's high bandwidth, low latency, large capacity, and high reliability, these devices enable more efficient, flexible, and intelligent industrial automation production. The following is a detailed description of these devices: they typically include industrial robots, automated production lines, smart sensors, programmable logic controllers (PLCs), distributed control systems (DCSs), and surveillance cameras. These devices connect and communicate with each other via 5G private networks, collaboratively completing industrial production tasks.
[0003] 5G private network industrial automation equipment requires remote monitoring terminals to monitor its operation. These devices collect real-time operational data, such as operating status, production parameters, and fault alarms, and transmit this data to a remote monitoring center. Operators can monitor equipment status at any time from the monitoring center. If an anomaly is detected, they can respond quickly, adjusting parameters or troubleshooting the problem, thereby reducing equipment downtime and improving production efficiency.
[0004] Take the UPS remote monitoring intelligent terminal as an example: its main module includes RS232 and RS485 interfaces, which can be applied to all UPSs with serial communication and built-in IoT cards. Data is uploaded to the cloud in real time. Users can view data and receive WeChat alerts by following the official account.
[0005] During actual operation of the UPS remote monitoring intelligent terminal, after the RS232, RS485, and power cord interfaces are installed with wiring harnesses, the RS232 and RS485 harnesses are easily pulled during use, causing them to loosen between the RS232 and RS485 harnesses and the RS232 and RS485 interfaces. This can cause minor breaks or damage to the wires within the cables, increasing wire resistance. This can also cause signal attenuation for RS232 and RS485 signal transmission. Although the RS232 and RS485 sockets are equipped with screw locks, stress can still cause the interfaces to loosen, resulting in poor contact in the communication lines. This poor contact can cause intermittent interruptions in data transmission. Utility Model Content
[0006] The purpose of this utility model is to provide a 5G private network industrial automation equipment remote monitoring terminal device to solve the defects mentioned in the above background technology.
[0007] To achieve the above-mentioned purpose, a 5G private network industrial automation equipment remote monitoring terminal device is provided, including a terminal device body, a display screen is fixedly provided on the surface of the terminal device body, and an RS232 socket and an RS485 socket are respectively provided on the bottom of the terminal device body, and at the same time, an RS232 plug and an RS485 plug are respectively plugged and fixed on the RS232 socket and the RS485 socket, and an RS232 wiring harness is fixed on the end of the RS232 plug, and an RS485 wiring harness is fixed on the end of the RS485 plug; the RS232 wiring harness and the RS485 wiring harness are both fixed on the bottom of the terminal device body through an anti-pull component; the anti-pull component includes a first fixing foot and a second fixing foot screwed and fixed on both sides of the bottom of the terminal device body, and a lock seat is fixed on the RS232 wiring harness and the RS485 wiring harness.
[0008] Preferably, a connecting piece is fixedly provided on the end of the first fixed foot on the anti-pull assembly, and a first clamping seat is fixedly provided on one side of the connecting piece, and a second clamping seat is provided on one side of the first clamping seat.
[0009] Preferably, the first card seat and the second card seat are respectively connected to the inside of the card slots provided on the surface of the lock seat on the RS485 wiring harness, and the card slots are arranged in a ring shape.
[0010] Preferably, the first card seat and the second card seat are both made of plastic material and are "C"-shaped structures, and the first card seat and the second card seat are respectively connected to the two sides of the card slot.
[0011] Preferably, a center piece is fixedly installed at the end of the second card seat, and a third card seat is fixedly provided at the end of the center piece, and a fourth card seat is provided on one side of the third card seat. The third card seat and the fourth card seat are both "C"-shaped structures made of plastic material.
[0012] Preferably, the third and fourth card holders are respectively clamped in the card slots opened on the surface of the lock seat on the RS232 wiring harness, and the bottom of the lock seat is screwed with a base, and fixing pads are fixed on the circumferential inner walls of the lock seat and the base.
[0013] Compared with the prior art, the beneficial effects of the present invention are:
[0014] 1. The utility model has a first card holder and a second card holder that are respectively connected to the inside of a card slot provided on the surface of the lock seat of the RS485 wiring harness; a third card holder and a fourth card holder that are respectively connected to the inside of a card slot provided on the surface of the lock seat of the RS232 wiring harness. When the RS232 wiring harness and the RS485 wiring harness are pulled, the provision of the anti-pull component can ensure a stable connection of the communication line, thereby ensuring continuous and stable data transmission and avoiding data loss or communication interruption caused by line problems. When the wiring harness is pulled, the internal wires may be damaged, resulting in increased resistance, which in turn causes signal attenuation and distortion.
[0015] 2. The utility model uses the anti-pull component to fix the position of the wiring harness, reduce the abnormal external force it is subjected to, and can well protect the physical integrity of the wiring harness; to ensure that RS232 and RS485 signals are transmitted with good electrical performance, so that the receiving end can accurately receive and analyze the signals, thereby improving the accuracy of remote monitoring data. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a front view schematic diagram of the structure of the utility model;
[0017] Figure 2 for Figure 1 Bottom view of
[0018] Figure 3 Schematic diagram of the anti-pull component;
[0019] Figure 4 Schematic diagram of securing the RS232 and RS485 harnesses to prevent components from being pulled;
[0020] Figure 5 This is a schematic diagram of the lock seat structure.
[0021] Numbers in the figure: 1. Terminal device body; 2. Display screen; 3. RS232 plug; 31. RS232 wiring harness; 311. Lock seat; 312. Base; 313. Card slot; 314. Fixing pad; 4. RS485 plug; 41. RS485 wiring harness; 5. Anti-pull assembly; 51. First fixing foot; 52. Connecting piece; 53. First card seat; 54. Second card seat; 55. Center piece; 56. Third card seat; 57. Fourth card seat; 58. Second fixing foot. DETAILED DESCRIPTION
[0022] See also Figure 1-5The utility model provides a 5G private network industrial automation equipment remote monitoring terminal device, including a terminal device body 1, a display screen 2 is fixedly provided on the surface of the terminal device body 1, and an RS232 socket and an RS485 socket are respectively provided at the bottom of the terminal device body 1, and an RS232 plug 3 and an RS485 plug 4 are respectively plugged and fixed on the RS232 socket and the RS485 socket, and an RS232 wiring harness 31 is fixedly provided at the end of the RS232 plug 3, and an RS485 wiring harness 41 is fixedly provided at the end of the RS485 plug 4; the RS232 wiring harness 31 and the RS485 wiring harness 41 are both fixed to the bottom of the terminal device body 1 through an anti-pull component 5; the anti-pull component 5 includes a first fixing foot 51 and a second fixing foot 58 screwed and fixed on both sides of the bottom of the terminal device body 1, and a lock seat 311 is fixedly provided on the RS232 wiring harness 31 and the RS485 wiring harness 41.
[0023] Working principle: When in use, first plug the RS232 plug 3 and the RS485 plug 4 into the RS232 socket and the RS485 socket respectively. At this time, fix the two sets of lock seats 311 on the RS232 wiring harness 31 and the RS485 wiring harness 41 respectively, and fix them with two sets of long screws so that the lock seats 311 will not loosen on the wiring harness. At this time, the first card seat 53 and the second card seat 54 are respectively connected to the card slots on the surface of the lock seat 311 on the RS485 wiring harness 41. The third card seat 56 and the fourth card seat 57 are respectively connected to the card slot 313 on the surface of the lock seat 311 on the RS232 wiring harness 31. The first card seat 53 and the second card seat 54 as well as the third card seat 56 and the fourth card seat 57 can also be fixed by horizontal long screws. Finally, the first fixing foot 51 and the second fixing foot 58 are screwed and fixed to both sides of the bottom of the terminal device body 1. When the RS232 wiring harness 31 and the RS485 wiring harness 41 are pulled, the anti- The setting of the pulling component 5 can prevent the RS232 plug 3, RS232 socket and RS485 plug 4 and RS485 socket from loosening. The RS232 harness 31 and RS485 harness 41 play a key role in the communication process of the remote monitoring intelligent terminal; the anti-pull component 5 can effectively prevent the harness from loosening or detaching from the interface due to accidental external force pulling; in an industrial environment, there may be people walking around the equipment, other equipment moving or transportation vehicles coming and going, all of which may generate pulling force on the harness; the setting of the anti-pull component 5 can ensure the stable connection of the communication line, thereby ensuring the continuous and stable transmission of data, and avoiding data loss or communication interruption caused by line problems; the harness may damage the internal wires during the pulling process, resulting in increased resistance, and then causing signal attenuation and distortion; the anti-pull component 5 can well protect the physical integrity of the harness by fixing the position of the harness and reducing the abnormal external force it is subjected to; to ensure RS232 and RS485 The signal is transmitted with good electrical performance, enabling the receiving end to accurately receive and analyze the signal, improving the accuracy of remote monitoring data.
[0024] A connecting piece 52 is fixedly provided at the end of the first fixing foot 51 on the anti-pull component 5 , and a first clamping seat 53 is fixedly provided on one side of the connecting piece 52 , and a second clamping seat 54 is provided on one side of the first clamping seat 53 .
[0025] As a preferred embodiment, the first card seat 53 and the second card seat 54 are respectively connected to the inside of the card slot 313 opened on the surface of the lock seat 311 on the RS485 wiring harness 41, and the card slot 313 is arranged in a ring shape.
[0026] The first card seat 53 and the second card seat 54 are both made of plastic and are “C”-shaped structures. The first card seat 53 and the second card seat 54 are respectively connected to the two sides of the card slot 313 .
[0027] As a preferred embodiment, a center piece 55 is fixedly installed at the end of the second card seat 54, and a third card seat 56 is fixedly provided at the end of the center piece 55. At the same time, a fourth card seat 57 is provided on one side of the third card seat 56. The third card seat 56 and the fourth card seat 57 are both "C"-shaped structures made of plastic material.
[0028] The third card seat 56 and the fourth card seat 57 are respectively clamped in the card slot 313 opened on the surface of the lock seat 311 on the RS232 wiring harness 31, and the bottom of the lock seat 311 is screwed with a base 312. At the same time, a fixing pad 314 is fixed on the circumferential inner wall of the lock seat 311 and the base 312.
[0029] 5G private network industrial automation equipment remote monitoring terminal devices mainly work in the following ways: the terminal device will be connected to the sensors on various industrial automation equipment; these sensors include temperature sensors, pressure sensors, vibration sensors, liquid level sensors, etc.; for example, on a CNC machine tool on an automated production line, the temperature sensor can monitor the temperature of the machine tool motor, and the pressure sensor can detect the pressure of the hydraulic system; communication with the sensor is achieved through standard interfaces (such as industrial Ethernet interface, RS-485 interface, etc.) to obtain physical quantity data related to the equipment's operating status; the sensor data is read at a certain time interval (configurable, such as every second, every minute, etc.); after reading the data, the data will be pre-processed; this may include data format conversion, such as converting the analog signal from the sensor into a digital signal, and preliminary screening of abnormal data; for example, if the temperature sensor transmits a data point that is obviously beyond the normal operating temperature range (such as exceeding 1000℃, while the normal operating temperature range is 0-100℃), the data will be marked as possibly abnormal; the terminal device accesses the 5G private network through the built-in 5G communication module; 5G The private network provides high-bandwidth, low-latency, and highly reliable network connections for industrial data transmission. It communicates with 5G base stations to establish secure communication links. During the access process, identity authentication and network configuration are required to ensure that only authorized terminals can access the private network.
[0030] The technical content mentioned above is the internal technology well known to professionals in this field. It is not the necessary technical features to be publicly protected in this case and will not be elaborated here.
Claims
1. A 5G private network industrial automation equipment remote monitoring terminal device, comprising a terminal device body (1), characterized in that: A display screen (2) is fixedly provided on the surface of the terminal device body (1), and an RS232 socket and an RS485 socket are respectively provided on the bottom of the terminal device body (1), and an RS232 plug (3) and an RS485 plug (4) are respectively plugged and fixed on the RS232 socket and the RS485 socket, and an RS232 wiring harness (31) is fixedly provided on the end of the RS232 plug (3), and an RS485 wiring harness (41) is fixedly provided on the end of the RS485 plug (4); the RS232 wiring harness (31) and the RS485 wiring harness (41) are both fixedly provided on the bottom of the terminal device body (1) through an anti-pull component (5); the anti-pull component (5) includes a first fixing foot (51) and a second fixing foot (58) which are screwed and fixed on both sides of the bottom of the terminal device body (1), and a lock seat (311) is fixedly provided on the RS232 wiring harness (31) and the RS485 wiring harness (41).
2. A 5G private network industrial automation equipment remote monitoring terminal device according to claim 1, characterized in that: A connecting piece (52) is fixedly provided at the end of the first fixed foot (51) on the anti-pull assembly (5), and a first clamping seat (53) is fixedly provided on one side of the connecting piece (52), and a second clamping seat (54) is provided on one side of the first clamping seat (53).
3. A 5G private network industrial automation equipment remote monitoring terminal device according to claim 2, characterized in that: The first card seat (53) and the second card seat (54) are respectively connected to the inside of a card slot (313) provided on the surface of a lock seat (311) on the RS485 wiring harness (41), and the card slot (313) is arranged in a ring shape.
4. A 5G private network industrial automation equipment remote monitoring terminal device according to claim 3, characterized in that: The first card seat (53) and the second card seat (54) are both made of plastic material and are "C"-shaped structures, and the first card seat (53) and the second card seat (54) are respectively clamped on both sides of the card slot (313); a center piece (55) is fixedly installed at the end of the second card seat (54), and a third card seat (56) is fixedly provided at the end of the center piece (55), and a fourth card seat (57) is provided on one side of the third card seat (56), and the third card seat (56) and the fourth card seat (57) are both made of plastic material and are "C"-shaped structures.
5. A 5G private network industrial automation equipment remote monitoring terminal device according to claim 4, characterized in that: The third card seat (56) and the fourth card seat (57) are respectively connected to the inside of the card slot (313) provided on the surface of the lock seat (311) on the RS232 wiring harness (31), and the bottom of the lock seat (311) is screwed with a base (312), and a fixing pad (314) is fixedly provided on the inner circumference of the lock seat (311) and the base (312).