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In an office environment with a wide variety of rooms and equipment, the responsibilities of management personnel are complex, and the traditional mechanical key management results in a large workload.
Traditional office management systems struggle to provide unified, hierarchical authorization management for access control of passages, rooms, cabinets, and equipment.
Some nodes have singular unlocking methods, making it difficult to pass through without a key or card, preventing touchless operation and complicating the use process.
Safety, access control, room, and cabinet management systems in the office are independent of each other, with a low level of intelligence, leading to severe information islands.
The office lock control system focuses on scenarios such as campus access, commercial office spaces, and item management. It uses intelligent locks and an IoT platform at its core, combined with mobile terminals and cloud services, applying IoT, biometric recognition, and intelligent control technologies to achieve real-time lock status monitoring, online management of personnel access permissions, and abnormal equipment status alarms. It enhances the intelligence, informatization, and platformization of office equipment management.
Multiple layers of defense protection
It covers multiple scenarios such as passages, rooms, and cabinets, accommodating various roles including administrators, individuals, visitors, and maintenance personnel.
Process online control
The lock control app enables remote information interaction, allowing for the remote configuration of unlocking permissions and providing users with real-time updates on the status of door locks.
Convenient and quick operations
The system supports various unlocking methods, including app unlocking, card swipe unlocking, facial recognition unlocking, and fingerprint unlocking, allowing quick access.
System platform management
It implements platform-based information management, with operation data automatically generated, and can be integrated with safety access control and intelligent office solutions.
The intelligent door lock system, designed for office parks, dormitories, apartments, and residential homes, addresses issues such as high safety risks, low unlocking efficiency, and poor user experience. Centered on connected intelligent door locks and an intelligent lock and control platform, it utilizes IoT, cloud services, digital twin, and biometric technologies. With features such as group lock management, safety and reliability, remote intelligent control, and intelligent alarms, the system effectively enhances the intelligence, informatization, and platformization of lock and control management, making daily work and life safer, smarter, and more convenient.
The UT-050 series intelligent unlocking key management machine uses electronic sealing technology and mobile internet technology to standardize the authorization of all unlocking keys and automatically store usage records. These technical measures ensure the proper management and use of unlocking tools (keys). It accurately records details such as the applicant, approver, reason for unlocking, key retrieval, and return, and enables key monitoring, remote control, and directional unlocking, eliminating human errors, standardizing the management of unlocking tools (keys), and ensuring the safety of on-site personnel as well as the O&M safety of power grid equipment.
The intelligent energy O&M control system is primarily designed for supply-side energy users, including photovoltaic stations, wind turbines, energy storage stations, charging stations, integrated energy stations, and multi-energy integration stations. It facilitates intelligent O&M and monitoring across these scenarios, enabling intelligent energy O&M on the regional energy production and supply side.
The Unitech intelligent home system includes subsystems such as intelligent lighting, intelligent safety, HVAC environment control, intelligent shading, AI voice control, and intelligent scenes. It is built around independently developed UT-BUS bus technology and proprietary user language technology, combined with ZigBee wireless networking technology. Based on the dual-safety product design concept, the system creates a rich, stable, and reliable intelligent environment, offering a comfortable and personalized intelligent home experience for users.
The campus energy efficiency management system utilizes digital IoT and other intelligent power technologies to provide comprehensive monitoring and management of power distribution, distributed energy equipment, personnel, and environments for users such as enterprises, factories, hospitals, campuses, and buildings. It enables operational monitoring, energy efficiency management, intelligent O&M energy coordination, transfer supply operations, and full lifecycle management of equipment assets. The system also meets the requirements of government and power regulatory authorities for online energy consumption monitoring and demand-side management, contributing to the goals of "carbon peaking and carbon neutrality."
The IoT intelligent lock management system deeply integrates technologies such as IoT, wireless power supply, identity recognition, and digital twin. With safety as the foundation and efficiency enhancement as the guideline, it provides a comprehensive intelligent lock management platform for industries with widely distributed equipment, large quantities of devices, and high status monitoring requirements, such as substations, distribution networks, marketing, and towers. This platform effectively improves operational efficiency, strengthens equipment safety protection, monitors equipment operating environments, and enhances the level of informatization system construction.
The system collects, identifies, monitors and controls the status information of infrastructure, environment, buildings, safety and other aspects of the campus through the perception and control of equipment and the IoT sensor network. Integrate and interactively manage video surveillance, access control, intelligent lighting, and intrusion safety through the three-dimensional IBMS platform. By establishing end-to-end integration of spatiotemporal access and business/process permissions, the system enables intelligent interaction and control between people, between people and objects, and between objects in specific scenarios, which enhances campus management efficiency and improves the overall environmental experience.
The plant intelligent lock management system addresses the safety management needs of plant O&M and auxiliary control tasks. With unified interfaces and high-safety C-grade anti-theft intelligent locks and computer keys at its core, the system utilizes graphical ticketing and authorized ticketing methods to solve problems such as the difficulty of managing traditional lock and control keys, chaotic permission management, and missing usage records. It achieves integrated management and control of personnel permissions, equipment access permissions, and equipment access status, effectively reducing key management workloads and improving the work efficiency of personnel.
The UT-050 series intelligent unlocking key management machine uses electronic sealing technology and mobile internet technology to standardize the authorization of all unlocking keys and automatically store usage records. These technical measures ensure the proper management and use of unlocking tools (keys). It accurately records details such as the applicant, approver, reason for unlocking, key retrieval, and return, and enables key monitoring, remote control, and directional unlocking, eliminating human errors, standardizing the management of unlocking tools (keys), and ensuring the safety of on-site personnel as well as the O&M safety of power grid equipment.
The communication interface lock management solution aims to achieve integrated management of safe operation in communication rooms through control of access, application-layer protection, and environmental monitoring. It features multi-layer protection, unified interface control, physical sealing, and online management, addressing the shortcomings of the current safety protection system and operational management in communication rooms, while improving the scientific, efficient, and secure operation of rooms, reducing overall operational risks and maintenance workload.
The substation/rail transit door control solution is mainly aimed at intelligent management and control of electric gates for power plants, substations, and rail transit. It features map guidance, visual intercom, remote door control, on-site APP Bluetooth unlocking, dynamic password unlocking, and permission management functions to meet the entry and exit control needs of personnel conducting inspections, maintenance, and construction in the power and rail transit industries, ensuring safety and improving O&M efficiency.
The substation E-key access solution is designed for substations, power plants, petrochemicals, railways, and other industrial enterprises. It addresses issues such as numerous keys, difficult management, easy loss, easy duplication, and rusting. The solution adopts high-safety locks and unlockers with unified interfaces, enabling permission management, operation authorization, status monitoring, operation record storage, and querying.
The dormitory lock control system, based on IoT, cloud services, and digital twin technology, is designed for scenarios such as campuses, public rental housing, and vacation rentals. It utilizes networked intelligent locks, an IoT platform, and a mobile app, offering features like bulk management of lock groups, flexible lock deployment, centralized authorization management, real-time status monitoring, and information reporting and analysis. Additionally, it can integrate with intelligent campus and intelligent apartment systems to enable intelligent management and improve operational efficiency.
The distribution network lock control solution addresses the safety management and equipment monitoring needs of box-type substations, branch boxes, ring main units, switch rooms, and other equipment. Based on new IoT and cloud service technologies, it utilizes high-safety keyless locks and digital keys. By binding personnel identities, controlling lock/unlock permissions, and recording operational processes, it enhances the safety of lock operations and ensures traceability and operational safety during maintenance work.
The intelligent lighting system is built around self-developed user language and UT-BUS bus technology, integrated with ZigBee wireless networking, cloud services, intelligent voice, and standard protocols. Relying on the dual-safety product design concept, it creates a low-cost, expandable, stable, and reliable intelligent lighting system, providing users with efficient, energy-saving, safe, and comfortable intelligent lighting solutions.
The industrial enterprise power distribution and O&M control system adopts intelligent power technologies such as digital IoT to provide comprehensive monitoring and management of the user-side power distribution equipment, personnel, and environment. It enables operational monitoring, energy efficiency management, intelligent O&M, sub-supply operation, and full lifecycle management of equipment assets. Additionally, it meets the requirements of government and power regulatory authorities for online energy consumption monitoring and demand-side management for energy users.
The comprehensive energy O&M system for industrial enterprises works collaboratively from both the energy supply and consumption sides. It achieves comprehensive energy dispatching of various distributed energy stations in industrial parks, enabling intelligent operation, monitoring, maintenance, complementarity, optimization, coordinated management, and control across the entire process and life cycle of energy generation (production), supply (transmission), transformation (conversion), distribution (allocation), and consumption (utilization). This supports industrial parks in taking the lead in achieving "carbon peaking and carbon neutrality."
The industrial enterprise energy efficiency management system realizes monitoring, analysis, optimized management, and coordinated control of electrical energy through intelligent sensor control devices and an energy efficiency management cloud service platform. It assists users in improving energy efficiency and ensuring the safety and reliability of power supply, reducing energy costs, actively participating in demand response, and avoiding load limits, thereby delaying capacity increase investments. It promotes energy saving, emission reduction, and electricity substitution, contributing to "carbon peak and carbon neutrality."
By monitoring the carbon emissions in various scenarios across the campus and using scientific accounting models to audit carbon assets, the system helps identify reduction measures, achieving the goals of energy saving, emission reduction, and efficiency improvement, and creating a near-zero carbon benchmark campus. By connecting energy, building, and office subsystems with edge intelligent devices, the system integrates energy consumption data into a digital platform. This helps optimize green energy supply at the source, ensures effective carbon emission monitoring at the terminal, and upgrades intelligent management during the process. Ultimately, it enables near-zero carbon circular economic development and a green living experience. With the goal of achieving carbon neutrality in the campus, a closed-loop system is created that covers data collection of carbon emission sources, emission accounting, asset inventory, and carbon neutrality strategies.
By deeply integrating intelligence and informatization, this solution creates a new pattern for a intelligent and warm mining area, constructing a first-class intelligent coal mine support platform and building an efficient, safe, convenient, green, and healthy campus environment. Fully utilizing 5G, IoT, and digital twin technologies to build new infrastructure for the campus, the solution establishes an intelligent control and operation management platform for surface mining, achieving intelligent interconnectivity, twin control of the mining area, and promoting the construction of a safe, intelligent, green, and happy intelligent mining area.
The three-level defense communication safety lock control system uses communication equipment interface locks and mechatronic intelligent door locks to provide multi-layer protection and intelligent control for tower company communication equipment rooms and cabinet doors, as well as communication equipment interfaces. The system offers features like mandatory interface locking, remote door unlocking, real-time status monitoring, and timely abnormal alarms, meeting the needs of inspections, maintenance, emergency repairs, and safety management and control for communication process.
The system uses sensing control devices and IoT sensor networks to collect, identify, monitor, and control status information related to infrastructure, environment, buildings, and safety within the campus. Combining 3D modeling and IBMS platform, it creates flexible and intelligent scene solutions. Through the end-to-end connecting the space and time rights with the business and process rights, it implements the intelligent linkage and control between people, people and objects, and objects based on specific scenes to improve the management level of the campus and create a good campus environment experience.
The intelligent lock control system for communication towers is designed for the intelligent management of tower company communication room and cabinet door locks. It uses mechatronic intelligent locks with remote and on-site unlocking, high lock safety, real-time status monitoring, and timely abnormal alarms. This system meets the needs of base station inspections, maintenance, emergency repairs, and process control, ensuring base station safety and improving O&M efficiency.