AutronX breathing sensors are advanced occupancy sensing solutions designed for accurate and dependable presence detection across a variety of indoor spaces. Especially effective in environments where a person may remain seated, still, or only minimally active for longer periods, these sensors offer a smarter alternative to conventional motion-based sensing in certain applications.
By detecting subtle movement and breathing-level presence, they help deliver more reliable automation in occupied spaces. The result is improved comfort, seamless usability, and more efficient energy management in interiors where uninterrupted sensing matters.

Designed to detect occupied spaces with greater accuracy, including environments where movement may be limited or minimal.

The range supports overhead detection with 360° coverage, making it suitable for practical interior automation across different room layouts.

By enabling lighting or connected loads only when needed, breathing sensors support more efficient energy usage without compromising convenience.

Selected models include adjustable time delay settings, allowing the response to be aligned with the way a space is used.
Discover a focused range of breathing sensors designed for precise presence detection, flexible mounting needs, and intelligent everyday automation.
Flush-Mounted Occupancy Sensor
AU-XBR753 is a flush-mounted breathing sensor designed for clean ceiling integration and dependable occupancy sensing across indoor spaces. With 360° detection and adjustable response settings, it is well-suited for applications where discreet installation and practical automation performance are important.
A versatile model designed for installations that may require either wall or ceiling mounting. AU-X47 is suited for spaces where flexibility in placement is important and where both directional and wider-area motion detection may be required.
Dual mounting flexibility
180° / 360° detection configuration
Suitable for general-purpose applications
Adjustable time delay settings
A ceiling-mounted microwave motion sensor designed for broader overhead coverage and higher load support. AU-X700C is well suited for spaces that require stronger ceiling-based sensing performance.
Ceiling-mounted format
360° detection
Higher rated load support
Suitable for wider interior zones
A compact ceiling-mounted option designed for controlled overhead sensing in spaces that do not require extended detection distance. AU-X753 is a practical choice for more focused applications.
Compact ceiling-mounted design
360° detection
Controlled coverage range
Clean overhead integration
A wall-mounted model designed for directional motion sensing in spaces where side-mounted installation is preferred. AU-X765 is useful for areas where the sensing pattern needs to follow a more targeted direction.
Wall-mounted format
180° detection
Directional sensing suitability
Ideal for side-entry or passage-based layouts
A ceiling-mounted microwave motion sensor designed for broader sensing coverage within the range. AU-X759D is suitable for installations that require wider overhead monitoring in interior applications.
Ceiling-mounted installation
360° detection
Wider sensing range
Suitable for larger monitored zones
Different spaces need different sensing. Discover models built for precision, coverage, and seamless automation.
Speak with our team to identify the most suitable model for your installation, coverage, and automation requirements.
They can be used in cabins, meeting rooms, workstations, bedrooms, washrooms, lounges, hotel rooms, and other indoor spaces where reliable occupancy detection is important.
Yes. Selected models in the range are designed to detect slight movement and breathing-level presence, helping improve sensing accuracy in low-movement environments.
AU-XBR753 is the flush-mounted model in the range and is suitable for neat ceiling integration.
AU-XBR700 offers the highest load support in the current range.
The right choice depends on the mounting requirement, connected load, room layout, and the level of detection sensitivity needed for the space.