4k 60fps Endoscope Video Processor NTSC LN-21YL_4K
LN-21YL_4K is a professional medical endoscope video processor based on FPGA architecture.
It adopts a SONY CMOS sensor and supports 4K/60fps high-definition video output.
With vascular highlighting and advanced noise suppression technologies, it delivers clear and stable images for clinical diagnosis and minimally invasive surgery.
The device is compact, lightweight, and easy to use in various medical scenarios.
Technical Specifications
The LN-21YL_4K represents a sophisticated approach to medical video processing, integrating cutting-edge imaging technology into an exceptionally compact form factor. This professional-grade converter box leverages FPGA processing architecture coupled with a high-sensitivity SONY CMOS sensor to deliver pristine 4K resolution video at 60 frames per second. The system's reconfigurable FPGA platform enables continuous performance optimization and supports custom development for specialized clinical applications. Weighing merely 120 grams and featuring advanced thermal management, this unit establishes new standards for portable high-definition medical imaging.
2. Product Technical FeaturesFPGA Processing Architecture
The LN-21YL_4K employs a field-programmable gate array (FPGA) as its computational core, providing significant advantages over conventional processors.
Reconfigurable Logic: The FPGA fabric allows for hardware-level optimizations and algorithm acceleration, delivering superior processing efficiency for complex imaging tasks.
Future-Proof Design: Capable of receiving firmware updates that can fundamentally enhance processing algorithms and add new features throughout the product lifecycle.
Custom Development Support: The reprogrammable nature enables tailored implementations for specific clinical or research requirements.
Advanced Imaging Algorithms
The processing pipeline incorporates sophisticated computer vision algorithms optimized for medical applications.
Vascular Structure Enhancement: Employs real-time edge detection and contrast optimization specifically tuned for highlighting microvascular structures.
Multi-Stage Noise Reduction: Implements a temporal-spatial noise filtering algorithm that effectively reduces noise while maintaining critical diagnostic details.
Ergonomic Engineering Design
The system incorporates advanced materials and thermal management for reliable operation.
Composite Material Construction: Utilizes high-strength polymers and alloy composites for optimal durability-to-weight ratio.
Advanced Thermal Design: Efficient heat dissipation enables sustained performance without active cooling.
Modular Connectivity: Standard video interfaces ensure compatibility with existing clinical display systems.
The system is engineered for clinical environments requiring high-fidelity imaging:
Minimally Invasive Surgery: Enhanced visualization for precision procedures
Diagnostic Endoscopy: Superior image quality for accurate tissue assessment
Teaching Institutions: FPGA programmability for research and education
Multi-Departmental Use: Easily shared between specialties due to portability
We provide comprehensive professional support:
Extended Warranty: 24-month manufacturer warranty
FPGA Development Support: Technical assistance for custom implementations
Performance Optimization: Ongoing algorithm improvements and updates



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