Holoscan Camera Solution

e-con Systems’ Holoscan camera solution is based on low power Lattice FPGA running e-con’s proprietary TintE™ ISP, which efficiently offloads image processing from the NVIDIA GPU. This reduces computational load, optimizing performance for AI-driven tasks such as object detection, recognition and so on. TintE enhances image quality through advanced processing algorithms, providing superior imaging solutions. Its user-friendly ISP features enable efficient, real-time processing, which is crucial for demanding applications across various industries.

The featured inbuilt Holoscan sensor bridge enables multi-sensor aggregation through a single 10 Gigabit Ethernet interface, drastically reducing latency compared to traditional Ethernet solutions.

Available in both development kit and miniature versions, the Holoscan camera system represents a major advancement for AI applications requiring real-time sensor fusion and low-latency data transmission in robotics, autonomous systems, industrial automation, and more.

Watch the Holoscan Camera Solution Demo:

Key features of e-con Systems’ Holoscan Camera solution

  • High-speed 10G Ethernet interface ensuring ultra-low latency image transmission
  • Lattice CertusPro™-NX FPGA with proprietary TintE ISP for reducing GPU processing load
  • Support for up to 4K at 30fps with real-time streaming capabilities
  • Dual MIPI CSI-2 ports for connecting multiple cameras along with IMU, GPS, and Radar
  • Compatibility with NVIDIA AGX ORIN, IGX ORIN, and NVIDIA Thor platforms
  • Powered by Marvell CUX3610 PHY for reliable 10G Ethernet over copper
  • Flexible cabling options supporting distances up to 100 meters
  • Compact design ideal for space-constrained environments

The Holoscan camera solution supports e-con’s comprehensive range of camera modules, including the 8MP Sony IMX715 Rolling Shutter Camera, 5MP Sony IMX568 Global Shutter Camera, 20MP onsemi AR2020 High Resolution Camera, Full HD onsemi AR0234 Global Shutter Camera, and 3MP SONY ISX031 Camera.