Ⅰ Working Principle of the Flexible Video Laryngoscope
The flexible video laryngoscope is an instrument designed for guiding tracheal intubation. It allows the operator to clearly observe the larynx and the entrance to the trachea. It provides a reliable airway for anesthesiologists before surgery and assists medical personnel in performing tracheal intubation on unconscious patients receiving cardiopulmonary resuscitation in emergency situations to maintain airway patency.
A miniature camera equipped with a light source is assembled in the camera catheter unit, and the image is displayed on an LCD screen, enabling the operator to clearly observe the larynx during the tracheal intubation process.
ⅡMain Components
The flexible video laryngoscope consists of a display, an operating handle, and an insertion tube(with a camera). The insertion tube is made of metal and medical=grade TPU material, which meets the requirements for biocompatibillity.
Key components like the ergonomic handle, high-resolution camera, and durable control module support repeated use post-disinfection, ensuring cost-effectiveness. Its versatile design accommodates pediatric to adult patients with adjustable settings for diverse needs. The lightweight handle reduces operator fatigue during long procedures, with intuitive controls for focus, brightness, and image orientation, streamlining workflow for dynamic clinical demands.
Ⅲ Product Performance
It is suitable for guiding tracheal intubation and can also be used for oral examinations and treatments.
Ⅳ Advantages
A muti-directional rotatable display: Wide field of view with broad depth of field (DOF);
Functional buttons: Precise operation, convenient and efficient;
Insertion section rotation: Enhance diagnostic and treatment flexibility;
Dedicated suction button: Quick-connect for efficient suction;
A quick-lock design for aviation connectors:
Quick installation, saving time;
Enhance stability in clinical use;
Processor:
1.Product Introduction
The image processor, a critical core in advanced medical imaging devices, enhances visual data quality for precise diagnosis and intervention. With high-performance computing, it refines raw signals from cameras/sensors—reducing noise, optimizing contrast, and sharpening details for true-to-life outputs.
Seamlessly integrating with video laryngoscopes, endoscopes, and imaging systems, it adapts to diverse formats and resolutions, maintaining consistent performance across scenarios. Its compact, energy-efficient design fits portable devices without sacrificing speed or functionality.
Reliable under continuous use, it supports prolonged procedures with uninterrupted processing. Adaptive adjustment optimizes parameters for varying lighting/tissue, ensuring optimal visualization. By delivering high-fidelity real-time processing, it boosts diagnostic accuracy and procedural efficiency, improving outcomes in anesthesia, emergency medicine, and gastroenterology.
1. The types of image processors currently available in our company.
A 4-inch LCD Screen(touchscreen)
Advantages:
Adjustable LED brightness
Supports USB & HDMI video output
B 10.1-inch LCD expansion screen (Optional)
Advantages:
Supports white balance adjustment
Supports media playback (images and videos)
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| Model | Insertion part outer diameter (unit:mm) | Suction channel inner diameter (unit:mm) | Remarks |
| BMR-1120 | Ф2.8 | — | Without suction channel |
| BMR-1130 | Ф3.8 | — | Without suction channel |
| BMR-1230 | Ф3.1 | Ф1.2 | With suction channel |
| BMR-1235 | Ф3.9 | Ф1.5 | With suction channel |
| BMR-1240 | Ф4.2 | Ф2.0 | With suction channel |
| BMR-1245 | Ф4.8 | Ф2.2 | With suction channel |
| BMR-1350 | Ф5.2 | Ф2.2 | With suction channel |
| BMR-1355 | Ф5.8 | Ф2.8 | With suction channel |
| BMR-1400 | Ф5.9 | Ф3.0 | With suction channel |
| BMR-X120 | Ф2.8 | — | Without suction channel |
| BMR-X130 | Ф3.8 | — | Without suction channel |
| BMR-X230 | Ф3.1 | Ф1.2 | With suction channel |
| BMR-X235 | Ф3.9 | Ф1.5 | With suction channel |
| BMR-X240 | Ф4.2 | Ф2.0 | With suction channel |
| BMR-X245 | Ф4.8 | Ф2.2 | With suction channel |
| BMR-X350 | Ф5.2 | Ф2.2 | With suction channel |
| BMR-X355 | Ф5.8 | Ф2.8 | With suction channel |
| BMR-X400 | Ф5.9 | Ф3.0 | With suction channel |
| Edge Uniformlly Angle Requirement | |||
| Nominal Direction of View Angle θ Range | Non-uniformity UL | ||
| θ≤30° | ≤25% | ||
| 30°<θ≤50° | ≤35% | ||
| 50°<θ | ≤45% | ||