Schneider Electric offers a variety of occupancy sensors designed to provide energy-efficient lighting and HVAC control in commercial, industrial, and residential buildings. These sensors detect the presence or absence of occupants in a space and automatically adjust lighting or HVAC systems accordingly, helping to optimize energy usage and enhance comfort. Key Features: Detection Technology: Schneider Electric occupancy sensors utilize various detection technologies such as passive infrared (PIR), ultrasonic, dual-technology (combining PIR and ultrasonic), or microphonics to detect occupancy in a space. PIR sensors detect changes in infrared radiation caused by movement, while ultrasonic sensors emit high-frequency sound waves and measure their reflection to detect motion. Adjustable Settings: Occupancy sensors typically offer adjustable settings for sensitivity, timeout delay, and coverage area. These settings can be customized to suit the specific requirements of different applications and spaces, allowing for optimal performance and energy savings. Integration: Schneider Electric occupancy sensors can be integrated with lighting control systems, building automation systems (BAS), or HVAC systems to provide seamless control and automation. They may also support communication protocols such as DALI (Digital Addressable Lighting Interface), BACnet (Building Automation and Control Networks), or KNX for interoperability with other building systems. Mounting Options: Occupancy sensors are available in various form factors and mounting options, including ceiling-mounted, wall-mounted, or surface-mounted models. This allows for flexible installation in different types of spaces, such as offices, conference rooms, corridors, warehouses, and restrooms. Energy Savings: By automatically turning off lights or adjusting HVAC settings when a space is unoccupied, occupancy sensors help reduce energy consumption and lower utility costs. They contribute to energy efficiency and sustainability initiatives by eliminating unnecessary energy usage during periods of vacancy. Occupancy Feedback: Some occupancy sensors feature built-in LED indicators or feedback mechanisms to provide visual feedback to occupants, indicating when motion is detected or when the system is active. This can help improve occupant awareness and comfort. Applications: Schneider Electric occupancy sensors are suitable for a wide range of applications, including: Office buildings Retail stores Schools and universities Hospitals and healthcare facilities Industrial facilities Residential homes Conclusion: Schneider Electric occupancy sensors offer advanced detection capabilities and flexible control options to optimize energy usage and enhance occupant comfort in commercial, industrial, and residential buildings. With their adjustable settings, integration capabilities, mounting options, energy-saving features, and suitability for various applications, these sensors provide effective solutions for building automation and energy management.