
Onsemi has introduced its first real-time, indirect time-of-flight (iToF) sensor, the Hyperlux™ ID series, for high-precision long-range measurements and three-dimensional imaging of fast-moving objects. The Hyperlux ID series features On's new proprietary global shutter pixel architecture and built-in storage to capture the full scene while taking real-time depth measurements.
This innovative approach goes beyond the limitations of standard iToF sensors to achieve depth perception up to 30 meters, four times the size of standard iToF sensors, and in a smaller form factor. In addition, the sensor family generates both black and white images and depth information. By combining these two outputs, the sensor family can provide a comprehensive view of the environment without having to configure separate sensors for visual and depth data.
As a result, the Hyperlux ID series enables simplified design and industry-leading ultra-depth perception, working in dynamic scene conditions and capturing fast-moving objects, which were not possible before.
With the widespread application of automation and robotics in the industrial sector, fast and efficient access to high-precision depth information has become critical to improving productivity and safety in complex environments. However, until now, iToF sensors have been limited in their application due to their limited ranging range, poor performance in poor lighting conditions, and inability to calculate depth for moving objects.
With the ability to make precise measurements of moving objects and high-resolution images, the Hyperlux ID series will help reduce errors and downtime, optimize processes in manufacturing systems, and thus reduce operating costs. In addition, the Hyperlux ID series is suitable for consumer applications such as facial recognition, gesture detection and 3D video conferencing.
The Hyperlux ID sensor family incorporates global shutter architecture and iToF technology for accurate and fast depth perception. The iToF technique senses depth by measuring the phase shift of reflected light emitted from one or more vertical cavity surface emitting lasers (VCsels). The proprietary pixel architecture enables the sensor to simultaneously capture and store four different phases of light in a single exposure, instantly capturing a full scene and improving the accuracy of depth measurements. In addition, global shutter technology synchronizes all sensor pixels with the VCSEL, significantly reducing ambient infrared noise from other light sources. The built-in deep processing capability also outputs real-time results without the need for expensive external memory and high-performance processors.
"Not only does the Hyperlux ID series offer higher resolution and better ambient light rejection than other iToF sensors on the market, we are also impressed by its integrated processing capabilities. This feature generates depth, confidence, and intensity maps at high speed, making it particularly suitable for capturing moving objects." Alexander Lewinsky, Managing Director of IDS Imaging Development Systems, said: "Thanks to our close collaboration with On, we have been able to develop and expand our range of 3D cameras very quickly, delivering a cost-effective time-of-flight camera. For indoor and outdoor applications at scale."
The Hyperlux ID series includes a 1.2 megapixel global shutter and 3.5µm backlit (BSI) pixel sensor. The AF0130 model also has built-in processing capabilities that make integration easier and reduce system costs. For customers who want to integrate their own depth inspection algorithms, AF0131 is available, adding greater flexibility to their systems.
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