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Event-based vision cameras capture changes in brightness, called "events," instead of traditional frame-by-frame recording. This enables high-speed, energy-efficient processing with minimal data redundancy. Ideal for robotics and autonomous systems, they excel in tracking fast-moving objects and dynamic scenes. Their innovative design is transforming machine perception and real-time responsiveness
Combining Sony’s CMOS image sensor technology with Prophesee’s unique event-based Metavision® sensing technologies.
The Event-based data allows the sensor to operate at > 10,000 fps. The Dynamic range of more than 120dB allows high robustness in extreme lighting conditions.
The shutter-free sensor continuously monitors photocurrent for changes of illumination and responds with an ON/OFF event representing an increase or decrease in intensity exceeding given thresholds.
Triton2 EVS cameras are actively aligned during manufacturing to minimize image sensor tilt, image sensor rotation, and to place the center of the image sensor at the lens optical axis.
The 2.5GigE Ethernet interface is 2.5x faster than Gigabit Ethernet, transferring 300 MB/s enabling higher bandwidth without compromising size & thermal management.
The IP67 offers protection from Dust, Dirt and Water ensuring long-term camera durability in harsh industry conditions. Lucid also offers IP67 Lens Tube.
Event-based vision cameras have revolutionized numerous applications by leveraging their ability to capture dynamic changes in real-time. In fluid dynamics, they facilitate detailed visualization of flow patterns, turbulence, and vortex behaviors with unparalleled precision. They are widely used in motion analysis and vibration monitoring, enabling real-time detection of subtle movements and oscillations critical in engineering and structural health assessments.
For particle size monitoring and counting, these cameras offer fast, accurate measurements in industries like pharmaceuticals, material sciences, and manufacturing. They enhance crowd detection and tracking by efficiently monitoring high-density environments, crucial for public safety and urban planning. In spatter monitoring, these devices track high-speed particles during processes like welding, improving quality and safety. Moreover, they are applied in sports analytics, autonomous navigation, and bio-inspired robotics, transforming how data is captured and processed in dynamic settings.
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Models | MP | Resolution | FPS | Sensor | Sensor Size | Pixel Size | Shutter | Lens Mount | Chroma | GigE Interface |
---|---|---|---|---|---|---|---|---|---|---|
TRT009S-EC | 0.9 MP | 1280 x 720 px | N/A | Sony | Prophesee IMX636 CMOS | 1/2.5” | 4.86 μm | Shutter-Free | C | N/A | 2.5GigE M12 |
TRT003S-EC | 0.3 MP | 640 x 512 px | N/A | Sony | Prophesee IMX637 CMOS | 1/4.5” | 4.86 μm | Shutter-Free | C | N/A | 2.5GigE M12 |
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