Pleora Introduces iPORTâ„¢ GEV-TB External Frame Grabber to Bring High-Bandwidth GigE Vision Connectivity to Lower-Cost Computing Platforms

The external frame grabber converts GigE Vision 2.x camera output into a PCIe stream, transmitting video at up to 22.5 Gbps with low, predictable latency over a standard Ethernet cable directly to a Thunderboltâ„¢ 3/4 or USB4 (USB-C) port. By eliminating the need for a host PCIe slot or internal frame grabber, the solution enables direct connection of high-performance GigE Vision cameras to laptops, embedded PCs, industrial systems, and single-board computers to reduce system size, cost, power consumption, and integration complexity.

Ottawa, ON - June 11, 2026 - Pleora Technologies today announced the launch of the iPORT™ GEV-TB External Frame Grabber, designed to simplify the integration of high-bandwidth GigE Vision® cameras with compact, cost-effective computing platforms while maintaining the performance required for demanding imaging applications. The company will demonstrate the new solution live at Automate 2026 (Booth #10002), showcasing real-time, low-latency video streaming with low CPU usage.


The external frame grabber converts GigE Vision 2.x camera output into a PCIe stream, transmitting video at up to 22.5 Gbps with low, predictable latency over a standard Ethernet cable directly to a Thunderbolt™ 3/4 or USB4 (USB-C) port. By eliminating the need for a host PCIe slot or internal frame grabber, the solution enables direct connection of high-performance GigE Vision cameras to laptops, embedded PCs, industrial systems, and single-board computers to reduce system size, cost, power consumption, and integration complexity.

A built-in direct memory access (DMA) engine transfers full image data directly to host memory, significantly reducing CPU overhead and freeing resources for application processing. Hardware-based packet resend management and an integrated frame buffer ensure deterministic, reliable image delivery, even in high-throughput or burst conditions. The solution is GigE Vision 2.2 and GenICam compliant and supported by Pleora's eBUS™ SDK, enabling rapid application development and deployment across platforms using a common API.

"The iPORT GEV-TB External Frame Grabber provides system designers and integrators with a flexible, standards-based solution that extends high-bandwidth GigE Vision connectivity to platforms where PCIe slots are not available," said James Falconer, Product Manager, Pleora Technologies. "By offloading CPU-intensive tasks and delivering deterministic performance, this solution unlocks new possibilities for portable, high-performance imaging systems."

The iPORT GEV-TB External Frame Grabber is now sampling with lead customers, with full availability in CY Q1, 2027. Future variants will include dual-channel configurations, as well as integrated IEEE 1588 and PoE/PoE+ support. For information on early product availability contact info@pleora.com.

For more information visit https://www.pleora.com/machine-vision-connectivity/iport-gev-tb/.

About Pleora Technologies
Pleora Technologies is a global leader in real-time video and data connectivity for industrial automation, medical imaging, and security and defense applications. With over 25 years of expertise, Pleora delivers solutions that simplify design, accelerate time-to-market, and reduce costs to enable the development of advanced imaging systems worldwide. Learn more at pleora.com.

Featured Product

Powerful robot drives: Perfect solutions for modern robotics

Powerful robot drives: Perfect solutions for modern robotics

With a focus on high power density and system integration, maxon supports application optimized robot designs and provides engineering services including design, simulation, and system optimization even for highly complex robotic architectures. maxon provides high precision drive solutions for multi axis robotic systems requiring absolute repeatability, high efficiency, and dynamic performance. Complemented by design, simulation, and system optimization support, maxon enables application optimized robotic architectures with high power density and seamless system integration. .