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The dual-line Ethernet switch is a network access device specifically designed for industrial environments. Its core technology strictly adheres to the 10BASE-T1L Ethernet standard. This standard enables symmetrical data transmission rates of up to 10 Mbps over a single pair of twisted wires, with a maximum communication distance of 1000 meters. This provides an excellent physical layer foundation for the flexible deployment of equipment in industrial sites. This switch is suitable for network construction in secure areas and can provide a stable and reliable data aggregation channel for the acoustic vibration temperature Ethernet monitor system. In terms of system scalability, this switch has a powerful cascading function, supporting up to 8 sequential access of acoustic vibration temperature Ethernet monitors. Through standard Ethernet protocols for data interaction, each monitor can transmit critical parameters such as sound, vibration, and temperature in real time and accurately to the upper-level monitoring system, meeting the demand for multi-node data collection in industrial environments. As an economical access solution for the acoustic vibration temperature Ethernet monitor system, this switch ensures performance while significantly reducing system construction costs. It adopts a two-wire design, greatly simplifying on-site wiring work, reducing cable material consumption and installation labor hours, and is particularly suitable for rapid deployment and upgrading in existing industrial facilities. Compared with traditional multi-wire Ethernet solutions, it not only saves initial investment but also reduces long-term maintenance costs, providing users with a cost-effective network access option, and effectively facilitating the intelligent upgrade of industrial monitoring systems.
The motor cloud box is an intelligent monitoring terminal specifically designed for industrial scenarios, deeply integrating the ability to comprehensively collect key parameters of the motor's operating status. Specifically, it can accurately capture the acceleration data of the motor, monitor the vibration of the equipment in real time, and promptly detect potential mechanical fault hazards; simultaneously, it collects temperature information of key parts such as the motor stator and bearings, effectively preventing equipment damage caused by overheating; precisely measures the real-time rotational frequency of the motor, grasping the changes in equipment operation speed; at the same time, it continuously monitors the electrical parameters of the motor, such as voltage, current, and power, and comprehensively analyzes the energy consumption and electrical performance of the motor. Moreover, the motor cloud box can accurately obtain the load data of the motor's working condition, clearly reflecting the actual operating load of the equipment. This product is widely applicable to the daily monitoring needs of various industrial motors, especially providing a cost-effective solution for comprehensive protection of key rotating equipment such as industrial motors, fans, and pumps. In terms of communication and interfaces, the motor cloud box highly integrates a variety of connection methods, including WIFI wireless communication, CAT1 cellular network, Bluetooth 5.0 near-field communication, and RS485 industrial bus interface, ensuring the flexible deployment of the equipment in different industrial environments and stable data transmission. Through various advanced technical means, the motor cloud box achieves full-dimensional and comprehensive monitoring of the motor from mechanical vibration, temperature changes to electrical parameters and load conditions. Its core advantage lies in upgrading the traditional motor monitoring mode to cloud-based and intelligent management, using the cloud platform to achieve centralized storage, remote access, and analysis of data. More importantly, the product is equipped with an AI automatic intelligent diagnosis function, which can conduct deep learning and intelligent analysis based on the massive collected data, automatically identify abnormal states of the motor, predict potential faults, and promptly issue warning information, thereby making the motor supervision work more forward-looking, intelligent, and efficient, providing a solid guarantee for the safe and stable operation of industrial production.
The motor condition sensor is a high-performance sensing device specifically designed for monitoring the status of motors. It boasts outstanding high insulation and withstand voltage capabilities, enabling stable operation in complex electrical environments and effectively resisting voltage fluctuations and interference that may occur during motor operation. Its unique surge protection design further enhances the device's ability to withstand instantaneous high voltage impacts, providing a solid guarantee for the long-term stable operation of the sensor in various harsh working conditions. Additionally, the sensor employs an overall sealing process, which can completely prevent the intrusion of corrosive substances such as dust, moisture, and oil from the outside, significantly improving the environmental adaptability and service life of the equipment. With its excellent performance design, this motor condition sensor can be widely applied to the frequency monitoring of all types of motors, whether they are small precision motors or large industrial motors, accurately capturing the rotational speed information during motor operation, providing crucial data support for motor condition assessment, fault warning, and maintenance.
The handling and stacking robot possesses outstanding and highly efficient load capacity, with a maximum load capacity of up to 180 kilograms. This powerful performance enables it to easily handle large-scale automated warehousing environments and high-intensity, heavy-weight material handling tasks on production lines, providing a solid hardware foundation for enterprises to achieve efficient material circulation. In terms of intelligent precise positioning, the robot integrates an advanced control system, which acts as the "brain" of the robot. Through precise algorithms and real-time data processing, it ensures that every step of the stacking operation is accurate, thereby significantly improving overall operation efficiency and ensuring the smooth operation of the entire production or warehousing process, avoiding material loss or process interruption due to positioning errors.
The explosion-proof rail-mounted robot is a highly targeted intelligent inspection device specially designed for special environments where there are flammable, explosive, and toxic substances. In practical application scenarios, such environments often contain various potential risks. Ordinary inspection devices are difficult to complete inspection tasks safely and effectively. However, the explosion-proof rail-mounted robot, with its unique design and functions, can operate stably in such complex and dangerous environments. The design and installation of its track system fully take into account the actual situation of the project site. Different project sites have significant differences in spatial layout, terrain, and equipment distribution. Therefore, the track system needs to be tailored according to these specific actual conditions. Professionals will conduct detailed surveys and analyses of the project site, precisely plan the direction, length, height, and other parameters of the track to ensure that the track can be laid reasonably within the site. The robot will move along the pre-designed and installed track, and in this way, it can systematically cover all the objects that need inspection in the project site, not leaving any corner that may have problems, thereby providing a strong guarantee for the safe and stable operation of the site.
The multimodal intelligent access control system is equipped with the powerful processing engine of Rockchip Microelectronics, supporting the collection and recognition functions of face, iris, and face + iris. Its iris recognition algorithm is outstanding, capable of achieving extremely low false recognition rate (FAR) and false rejection rate (FRR). The product adopts intelligent pitch algorithm, which can automatically adapt to people of different heights ranging from 1.4 to 1.9 meters, and supports two usage modes: single machine or networked connection.
This equipment is used for real-time detection of damage on the surface of the belt, such as protrusions, depressions, burrs, peeling, delamination, edge biting, rubber cracking, tearing, stacking, etc., as well as abnormal conditions at the belt joints. It can automatically issue alerts, save images, and locate the damage based on the size and manner of the damage.
The company is a provider of complete solutions for mine rail transportation dispatching systems and intelligent mine signal control and safety dispatching. With its independently intellectual property-owned mine information integration and monitoring system, it offers unique solutions for mine rail transportation, including signal interlock, dispatching concentration, intelligent logistics management, unmanned mine operation, intelligent dispatching and command for mine locomotive and vehicle transportation, integrated precise positioning and control of mobile targets, and wireless communication (5G/WiFi6).
HIS IS WHAT WE DO
Increase research and development efforts in next-generation artificial intelligence and advanced complex control technologies, such as "intelligent and unmanned" systems, in the field of mining transportation.
A provider of comprehensive signal control and safety dispatching solutions for intelligent mining, featuring a proprietary mine signal centralized interlocking and monitoring system with independent intellectual
Integration of next-generation information technologies with the mining production process, deeply combining digitalization and intelligence.
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