GigE Vision
1 | 2.5 | 5 | 10 GigE Vision
Up to 12 × 10 GigE Vision Cameras
Gidel’s FPGA-based PCIe frame grabbers support the major high-performance camera interfaces used in demanding vision systems, including GigE Vision, CoaXPress, and Camera Link. The lineup enables real-time image acquisition from single-camera and multi-camera systems, with high bandwidth, low latency, reliable data capture, and on-board FPGA processing directly in the acquisition path.
| Product Name | HawkEye-20GigE | Proc10A-40GigE | Proc1C10M-120GigE | Proc1C10N-120GigE |
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| Product Name | HawkEye-CXP12 | Proc10A-CXP | Proc1C10N-CXP12 |
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| Product Name | HawkEye-CL |
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Gidel PCIe frame grabbers manage high-bandwidth camera acquisition directly on the Altera FPGA, enabling deterministic, low-latency data capture while reducing CPU overhead. Optional inline FPGA processing supports real-time image enhancement, Compression, HDR, Detection, and data optimization before host-side processing.
Need more information?
Reuven Weintraub, founder and CTO of Gidel, reveals how to unlock exceptional image processing performance by adding FPGA’s processing at Vision Show, Stuttgart 2024.
Gidel edge AI vision and frame grabbers at the Embedded World show 2024.
Boost your vision! Gidel’s high-performance GigE Vision, Camera Link and CoaXPress frame grabbers help overcome bandwidth bottlenecks in high-resolution and/or high-speed computer vision applications.
Gidel founder and CTO Reuven Weintraub present the performance and versatility of Gidel’s GigE Vision, Camera Link and CoaXPress frame grabbers for high-speed image acquisition and pre-processing at the Embedded World 2022 in Nuremberg, Germany.
Gidel offers PCIe frame grabbers for GigE Vision, CoaXPress, and Camera Link camera interfaces. The portfolio supports a wide range of camera speeds and configurations, from standard industrial imaging systems to high-bandwidth, multi-camera applications requiring synchronized acquisition and real-time FPGA processing.
Yes. Gidel’s PCIe frame grabbers can perform optional inline FPGA processing during acquisition, before image data reaches the host PC. Available capabilities include Compression, HDR correction, Detection, image enhancement, ROI processing, and custom FPGA algorithms.
Yes. Gidel’s InfiniVision architecture enables deterministic, synchronized acquisition across scalable multi-card systems. Depending on the camera interface and configuration, systems can scale to 100+ synchronized cameras while managing synchronization, bandwidth, connectivity, buffering, and data aggregation.
Gidel provides dedicated software, drivers, APIs, and GUI tools for camera configuration, image acquisition, system control, and application integration. For applications requiring customized FPGA processing, the ProcVision Suite provides development, debugging, and validation tools for integrating proprietary algorithms directly into the image acquisition pipeline.
A PCIe frame grabber installs in a host computer and transfers acquired image data through PCIe. Gidel FantoVision systems combine camera interface acquisition, an NVIDIA Jetson processor, and optional real-time FPGA image processing in a compact Edge AI computer. The correct platform depends on whether the application requires a host-based PCIe card or a complete embedded vision system.
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