The OAK-D Short Range PoE with ToF (OAK-D SR PoE) was designed to provide an accurate short to medium-range depth perception (ideally up to 3m). It’s ideal for applications like bin picking, for pick and place machines, quality control/automated manufacturing, robotics arms, and more. It features a robust, IP65 / IP67-rated enclosure (please see specifications details).
Besides the stereo camera pair (2x OV9782 , 2cm baseline distance) it features ToF sensor which has an ideal range of 20cm to 5m, and depth accuracy of below 1% indoors and below 2% outdoors.
The OAK-D SR PoE leverages our OAK-SoM-Pro to make an overall compact design. The use of the SoM reduces the design’s scale, making it easier to mount or fit in various robotic processes.
PoE connection allows cameras to communicate to other computers via networking protocols (TCP, UDP, HTTP, MQTT, etc.). As our PoE models feature device flash memory, you can also run your programs in standalone mode. OAK PoE cameras are housed in an rugged, IP-rated enclosure, which is required for industrial and outdoor use.
We suggest following PoE deployment guide as the first steps after installation.
RVC2 architecture on-board features:
Product Diagram
Technical Specifications
This camera uses special 120FPS global shutter sensors as the stereo pair cameras.
Sensor specifications:
RGB / Stereo Pair | ToF Sensor | |
---|---|---|
Sensor | OV9782 (PY074) | 33D ToF |
DFOV / HFOV / VFOV | 89.5° / 80° / 55° | 82.3° / 70° / 54.7° |
Resolution | 1MP (1280x800) | VGA (640x480) |
Range / Focus | FF: 20cm - ∞ | 20cm - 6m |
Max Framerate | 120 FPS (800P) | 45 FPS (VGA) |
Pixel size | 3μm | 7μm |
Lens size | 1/4 inch | 1/3.2 inch |
F-number | 2.0 ±5% | 1.45 ± 5% |
Effective Focal Length | 2.35mm | N/A |
This product is classified as a Class 1 Laser Product under the EN/IEC 60825-1, Edition 3 (2014) internationally. Test protocol from laser class classification can be downloaded from here. More information about IR perception and laser safety can by found here.
Active stereo
Night vision
Power consumption
Most of the power is consumed by the RVC2, so the power consumption mostly depends on the workload of the VPU:
Illumination LED and laser dot projector
Power is configurable (more power - more brightness):
So the total power consumption can be up to ~7.5W if you are using all the features at 100% at the same time. To reduce the power consumption, you can reduce FPS of the whole pipeline - that way, subsystems won’t be utilized at 100% and will consume less power.
Stereo depth
This OAK camera has a baseline of 2 cm - the distance between the left and the right stereo camera. Minimal and maximal depth perception (MinZ and Max) depends on camera FOV, resolution, and baseline- more information here.
ToF depth perception
ToF tech emits modulated IR light (940nm), measures return time to sensor, and calculates object distance. This determines depth in the scene.
For more information about ToF depth perception please check this article.
M12 PoE connector is used for power and GBit data transfer. Additionally M8 connector for IO connectivity; USB2 (D+, D-), camera IOs (FSIN, STROBE), power, and one auxiliary GPIO. Cap for M8 is included when connector is not used to ensure water resistance. More information can be found here.
Water resistance
This camera has IP rated enclosure.
First produced batch (from August 2024) has IP65 rating. Later units have IP67. More details can be found here.
Temperature
The ambient operating temperature of RVC2 based devices is between -20°C and 50°C when fully utilizing the VPU. To find out more, see our operating temperature range documentation.
Package Includes
Package contains:
Note: PoE injector / switch is required to power the device and it is not included in the packaging. If you need an injector, you can buy it here.
Files
Open Source Hardware
This hardware design is open source, and all design files are available on GitHub.