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PCS-200
1. Wide Temperature Adaptability: The system supports full-temperature operation from -40℃ to 80℃ (PCS-200) and -20℃ to 60℃ (PCS-600X), with electromagnetic interference resistance up to EMC Class B standard and compliance with ISA S71.04 G3 corrosion protection requirements, adapting to complex building environments.
2. Ultra-High Reliability: Adopting industrial-grade hot standby redundancy technology, the hardware failure rate of the control system is as low as 0.1%, the module MTBF (Mean Time Between Failures) exceeds 100,000 hours, and the power supply supports redundant access to ensure 24/7 stable operation of the system.
3. Strong Expandability: The PCS-200 single controller supports up to 8 IO expansion modules, while the PCS-600X can connect 32 remote sub-stations and support 16,384 DI/DO points. It is compatible with protocols such as CANopen and Modbus RTU/TCP, easily meeting the expansion needs of large - scale buildings.
4. Refined Energy Management: Featuring an energy management system, it monitors energy consumption in real-time via 16-bit precision AI signal acquisition (with an error of ±0.2%) and automatically adjusts equipment parameters based on algorithms. The comprehensive energy saving rate of the SUPCON Technology Park reconstruction project reached 15.8%.
5. Multi-System Collaboration: The 3D visualization engine intuitively presents equipment status and supports the IBMS operation management platform for multi-system linkage. It can integrate subsystems such as intelligent lighting, fire alarm, and video surveillance. For example, the Sun Yat-sen University project improved operation efficiency by 30% through the platform.
6. Terminal Equipment Compatibility: It is perfectly compatible with terminal equipment such as FCU fan coil thermostats (temperature setting 5-35℃) and liquid level sensors (range 0-10M, accuracy ±0.5%FS), realizing the full-link intelligence of "control-monitoring-terminal".
1. Wide Temperature Adaptability: The system supports full-temperature operation from -40℃ to 80℃ (PCS-200) and -20℃ to 60℃ (PCS-600X), with electromagnetic interference resistance up to EMC Class B standard and compliance with ISA S71.04 G3 corrosion protection requirements, adapting to complex building environments.
2. Ultra-High Reliability: Adopting industrial-grade hot standby redundancy technology, the hardware failure rate of the control system is as low as 0.1%, the module MTBF (Mean Time Between Failures) exceeds 100,000 hours, and the power supply supports redundant access to ensure 24/7 stable operation of the system.
3. Strong Expandability: The PCS-200 single controller supports up to 8 IO expansion modules, while the PCS-600X can connect 32 remote sub-stations and support 16,384 DI/DO points. It is compatible with protocols such as CANopen and Modbus RTU/TCP, easily meeting the expansion needs of large - scale buildings.
4. Refined Energy Management: Featuring an energy management system, it monitors energy consumption in real-time via 16-bit precision AI signal acquisition (with an error of ±0.2%) and automatically adjusts equipment parameters based on algorithms. The comprehensive energy saving rate of the SUPCON Technology Park reconstruction project reached 15.8%.
5. Multi-System Collaboration: The 3D visualization engine intuitively presents equipment status and supports the IBMS operation management platform for multi-system linkage. It can integrate subsystems such as intelligent lighting, fire alarm, and video surveillance. For example, the Sun Yat-sen University project improved operation efficiency by 30% through the platform.
6. Terminal Equipment Compatibility: It is perfectly compatible with terminal equipment such as FCU fan coil thermostats (temperature setting 5-35℃) and liquid level sensors (range 0-10M, accuracy ±0.5%FS), realizing the full-link intelligence of "control-monitoring-terminal".
1. PCS-200 Distributed Control System: Its operating environment is temperature -40~80℃ and humidity ≤90%RH (no condensation); it is equipped with a 32-bit Cortex M4 processor with a main frequency of 240MHz; the communication interface includes Ethernet (supporting Modbus TCP protocol) and 2 RS-485 ports; it can support up to 8 IO expansion modules at most; it has logical control, sequential control, process control and power-off data retention functions, and has passed CE certification.
2. PCS-600X Redundant Control System: Its operating environment is temperature -20~60℃ and humidity ≤90%RH (no condensation); it uses a 32-bit Cortex M7 processor with a main frequency of 528MHz; the communication interface covers 4 Ethernet ports, 2 optical fibers and 2 RS-485 ports; it can connect 32 remote sub-stations and support 512 DI/DO points; it supports 1:1 hot standby redundancy and hot swap (switching time <60s), and has passed CE certification.
1. PCS-200 Distributed Control System: Its operating environment is temperature -40~80℃ and humidity ≤90%RH (no condensation); it is equipped with a 32-bit Cortex M4 processor with a main frequency of 240MHz; the communication interface includes Ethernet (supporting Modbus TCP protocol) and 2 RS-485 ports; it can support up to 8 IO expansion modules at most; it has logical control, sequential control, process control and power-off data retention functions, and has passed CE certification.
2. PCS-600X Redundant Control System: Its operating environment is temperature -20~60℃ and humidity ≤90%RH (no condensation); it uses a 32-bit Cortex M7 processor with a main frequency of 528MHz; the communication interface covers 4 Ethernet ports, 2 optical fibers and 2 RS-485 ports; it can connect 32 remote sub-stations and support 512 DI/DO points; it supports 1:1 hot standby redundancy and hot swap (switching time <60s), and has passed CE certification.
1. Smart Hospitals: In projects such as the Hainan Branch of the PLA General Hospital, it monitors over 5,000 points, real-time monitors CO₂, PM2.5, temperature and humidity, adjusts the ward environment through FCU thermostats, and links with the cold and heat source system to realize safe and efficient operation of medical spaces.
2. Commercial Complexes: The Xi'an Weiyang Longfor Paradise Walk project adopts this system to couple air conditioning, lighting, and elevator control. Equipped with an energy management system, it realizes energy consumption optimization, with a comprehensive energy saving rate of over 15%, improving consumer experience while reducing operating costs.
3. Transportation Hubs: In the Tianjin Binhai International Airport project, the system manages ventilation and air conditioning as well as lighting equipment, monitors water supply and drainage status through liquid level sensors, and combines remote intelligent management and control to solve the problem of low equipment operation and maintenance efficiency in high passenger flow scenarios.
4. Parks & Offices: The Zhejiang University Hangzhou International Science and Technology Innovation Center project (over 20,000 control points) realizes the group control of cold and heat sources and data room management, reducing operation and maintenance personnel by 20% and energy consumption by 15%, adapting to the composite needs of scientific research and office.
1. Smart Hospitals: In projects such as the Hainan Branch of the PLA General Hospital, it monitors over 5,000 points, real-time monitors CO₂, PM2.5, temperature and humidity, adjusts the ward environment through FCU thermostats, and links with the cold and heat source system to realize safe and efficient operation of medical spaces.
2. Commercial Complexes: The Xi'an Weiyang Longfor Paradise Walk project adopts this system to couple air conditioning, lighting, and elevator control. Equipped with an energy management system, it realizes energy consumption optimization, with a comprehensive energy saving rate of over 15%, improving consumer experience while reducing operating costs.
3. Transportation Hubs: In the Tianjin Binhai International Airport project, the system manages ventilation and air conditioning as well as lighting equipment, monitors water supply and drainage status through liquid level sensors, and combines remote intelligent management and control to solve the problem of low equipment operation and maintenance efficiency in high passenger flow scenarios.
4. Parks & Offices: The Zhejiang University Hangzhou International Science and Technology Innovation Center project (over 20,000 control points) realizes the group control of cold and heat sources and data room management, reducing operation and maintenance personnel by 20% and energy consumption by 15%, adapting to the composite needs of scientific research and office.
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