As medical‑imaging devices rapidly evolve toward intelligence and portability, DR (Digital Radiography) systems raise unprecedented performance requirements for core computing units. Boasting 10G‑class network throughput and a high‑density compact computing architecture, the ZRT HLC‑6009 AI box PC serves as a critical technical bedrock for high‑speed data processing, real‑time image rendering and multi‑scenario adaptation.
Dual Challenges in DR System Upgrades
Against the industry shift toward high‑resolution imaging and AI‑assisted diagnosis, two major pain points for DR systems have grown increasingly prominent:
Transmission bottlenecks hinder clinical examination efficiency.
High-resolution imaging produces exponentially growing data volumes, while traditional network port transmission speeds fail to support real-time processing demands. With the widespread adoption of AI-assisted diagnosis, increased frequent data interactions easily cause latency and frame rate fluctuations, severely disrupting routine clinical examination workflows.
Bulky computing hardware occupies valuable internal device space.
Radiology rooms feature constrained spatial conditions, requiring precise layout arrangement for lead shielding, patient access routes, and core medical facilities. Conventional tower-type main controllers come with bulky form factors and complicated cabling structures, which interfere with peripheral device operation and heat dissipation, greatly limiting on-site deployment flexibility.
Three Core Advantages Optimized for DR System Applications
Engineered with an integrated design of 10Gbps high-speed network ports, ultra-compact chassis, and robust computing capability, the ZRT HLC-6009 box PC comprehensively addresses core technical pain points in DR system deployment and clinical application scenarios.
10Gbps Network Port (Optional): Enables Second-level Medical Image Streaming
The HLC-6009 features an optional single 10Gbps port combined with dual Gigabit Ethernet ports, enabling flexible task allocation for device interconnection and hospital network data transmission. Compared with traditional embedded solutions, the 10Gbps interface delivers approximately 10 times higher network throughput, significantly accelerating the archiving and storage of high-resolution medical images.
For AI-enabled DR systems, the 10Gbps network realizes low-latency collaboration across the full workflow of image acquisition, intelligent analysis, and report generation, ensuring smooth, uninterrupted clinical diagnosis procedures.
Compact Chassis + Robust Computing: Maximize Space Efficiency and Elevate Overall Performance
Measuring only 220×200×88 mm, this box PC delivers an ultra-compact form factor, far smaller than conventional tower-type controllers.
Powered by Intel 11th‑generation Tiger Lake-H processors, this system supports dual-channel DDR4 memory with a maximum capacity of 64GB. It efficiently processes core tasks including medical image noise reduction and edge enhancement, while stably running lightweight AI algorithms for clinical scenarios such as pneumonia screening and fracture recognition.
The system supports MXM discrete GPU expansion, with full compatibility with NVIDIA RTX 30/40 series and Quadro T series graphics cards. It fully satisfies current high-precision image rendering demands and allows direct GPU replacement for future AI module iterations, effectively lowering overall equipment upgrade costs.
Versatile Expansion and Reliable Compatibility: Full-Scale Support for Diverse Medical Scenarios
Equipped with rich peripheral interfaces including M.2, USB, HDMI, and DP, the HLC-6009 supports seamless connectivity with DR detectors, medical diagnostic displays, and operation panels, significantly improving overall device collaboration and system integration efficiency.
It supports a DC 18–26V wide-voltage input range and integrates over-voltage, over-current, and reverse-polarity protection circuits, ensuring stable operation under complex and fluctuating power conditions in radiology departments.
Adopting heat pipe thermal conduction technology, the system achieves high-efficiency heat dissipation and maintains stable operation under long-term heavy-load working conditions.
Built for High-Resolution, Intelligent and Compact DR Equipment
As medical institutions continuously pursue superior image quality and higher diagnostic efficiency, the industry demands both high-speed data transmission and compact device design. Tailored to real-world clinical scenarios, this solution targets core industry pain points, enabling faster medical image transmission and a smaller equipment footprint. It provides solid technical support for efficient diagnosis and treatment in radiology departments.