Amid the trend of medical endoscope diagnosis and treatment evolving toward "high precision, three-dimensionalization, and intelligence," endoscope camera modules, as the "visual core" of the equipment, their technological breakthroughs directly determine the accuracy of diagnosis and treatment as w
On April 8th, the 91st China International Medical Equipment Fair (CMEF) opened at the National Exhibition and Convention Center (Shanghai). Shenzhen SonoScape Medical made a grand appearance with a series of smart endoscope innovations, including the debut of its new-generation smart endoscope plat
Recently, the news that the Second Affiliated Hospital of University of South China completed a high-difficulty skull base minimally invasive surgery using Karl Storz’s 4K ultra-high-definition (UHD) endoscope system has once again brought high-end endoscope technology into the industry spotlight. A
Medical imaging devices are becoming smaller, smarter, and more integrated than ever.
Across many regions of the world, especially in developing countries and isolated communities, access to advanced medical diagnostics depends on how effectively local clinics can connect with remote specialists.
Advances in medical imaging are redefining what surgeons can achieve during minimally invasive procedures.
In modern clinical practice, imaging precision defines treatment accuracy. Choosing the right Medical Endoscope determines how well surgeons and diagnosticians visualize tissue structures, identify abnormalities, and perform minimally invasive procedures safely.
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As a core tool in modern dental diagnosis and treatment, the performance of oral endoscopes directly depends on the technical level of their core component—the camera module. The OCH2B30 camera module launched by OmniVision Group in 2024 (with ultra-small size of 2.6mm×2.6mm, 2-megapixel resolution,
As the core optical component of an endoscope camera module, the lens's protective performance directly determines imaging stability and equipment service life. In scenarios pursuing miniaturization (e.g., lenses with a diameter of 1.5mm), adding a steel shell restricts spatial adaptability. Thus, a
As a key tool in dental diagnosis and treatment, dental endoscopes need to achieve high-definition imaging in the narrow spaces of the oral cavity (such as the posterior dental region and gingival sulcus), while meeting the requirements of frequent disinfection, flexible operation, and medical compl
As a key tool in dental diagnosis and treatment, dental endoscopes need to achieve accurate detail capture (such as early dental caries and plaque detection) in the narrow, low-light oral environment, while meeting requirements for ergonomic operation, medical compliance, and adaptability to diagnos
As a professional platform focused on robotic surgery team training, the VirtaMed RoboS Simulator derives its core value from creating a highly realistic simulation environment that enables seamless transition from skill training to clinical application. The endoscope imaging system, as the core car
Separated endoscope camera modules, characterized by the independent layout of "lens - DSP board", are widely used in scenarios such as medical minimally invasive procedures and industrial narrow-space inspection. The connection method between the lens and the DSP board directly affects the module’s
In the design of separated endoscope camera modules, the connection method between the lens and the DSP board directly affects the product’s miniaturization capability, transmission stability, and scenario adaptability. Currently, the mainstream connection methods—wire bonding, MIPI/DVP interface, a
The imaging quality of endoscope camera modules heavily depends on lighting conditions. Take the split-type module equipped with the OmniVision OH01A10 sensor as an example: its F4.0 aperture and 1.116μm pixels can handle regular lighting, but whether to opt for the integrated 4 0201-type LED fill l
Endoscopic camera modules, as the "visual core" of minimally invasive medical procedures and precision industrial inspections, require their structural design to balance imaging performance, environmental adaptability, and application-specific needs. The steel shell, an optional protective component
Modern medicine has transformed the way doctors diagnose and treat conditions inside the human body. Among the most powerful diagnostic tools available today is the Endoscope Camera, a device that allows physicians to look directly into internal organs without the need for large surgical incisions. From digestive health monitoring to preventive cancer screening, the endoscope has become essential for accurate, minimally invasive diagnostics.
In the rapidly evolving field of medical endoscopy, 4K ultra-high-definition display systems have become standard for high-end equipment. However, the image quality foundation of the entire system depends not only on the main controller or monitor, but more critically on its foundational "eye" – the
In pipeline inspection scenarios, the endoscope camera module is a core device for visualizing internal defects. As an "extension and protective structure" of the lens, the length of the module's steel shell directly affects the inspection range, operational flexibility, and environmental adaptabili
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SF-N1070(with steel shell)
SINCEREFIRST
This CMOS sensor ultra low light 7mm diameter 1080P Type-C endoscope camera module with steel shell, utilizes the GalaxyCore GC2755 CMOS color image sensor, delivering 1080P@30FPS high-definition fluid output with 2MP resolution (1920×1080). Featuring a 1/6-inch sensor size and 1.6μm×1.6μm large pixel design, it integrates advanced low-light imaging technology to capture clear images in environments as dim as 0.1Lux minimum operating illumination, substantially enhancing detail performance in dark scenarios. The module incorporates six high-brightness LED fill lights and manual focus functionality, ensuring precision visualization during surgical or inspection procedures. Equipped with a Type-C interface and USB 2.0 transmission protocol, it supports UVC standard and OTG functionality for plug-and-play operation. The integrated structural design, coupled with a 7mm steel-shell lens, balances durability with miniaturization requirements. Manufactured using SMT (Surface Mount Technology) and AA (Active Alignment) processes, it guarantees optical assembly precision and consistency, making it ideal for medical endoscopy, industrial inspection, and other professional applications. | ![]() |
Outstanding Low-Light Imaging Capability: With a 1.6μm large pixel size and 0.1Lux low-light algorithm, it can still present clear images even in nearly dark environments (such as body cavities), reducing the reliance on supplementary lighting.
High-Brightness LED Lighting: Integrated with 6 LED light beads, it achieves bright lighting to ensure visual clarity throughout the surgery/detection process.
Precise Structural Design: Anti-corrosion steel sleeve packaging, capable of withstanding high-temperature disinfection, with a diameter of only 7mm yet achieving ultra-precision penetration.
Stable and Reliable Quality: AA (active alignment) process + SMT technology, ensuring no image distortion and stable performance.
Plug-and-Play Compatibility: UVC protocol + Type-C interface enables driver-free compatibility across Windows, Mac, and Android systems. USB 2.0 transmission has zero latency. Supports OTG mobile device direct connection.
Scene-Specific Professional Adaptation: Manual focusing combined with 1080P@30FPS image output, 2MP resolution is sufficient for recording lesion details, suitable for minimally invasive surgeries or pipeline inspections.
1.Dental Diagnostics:Manual focus (±0.02mm) allows precise examination of subgingival caries, while 6-LED adaptive lighting eliminates oral cavity shadows. AA-processed optics prevent image distortion during root canal inspections.
2. Disaster rescue: detection of vital signs in debris crevices and remote assessment of dangerous goods leakage site
3. Intelligent hardware integration: robot automatic inspection (the following waterway cleaning robot vision module).
4. Aerospace Engine Maintenance: The SMT-encapsulated module resists vibration (up to 15G) and high temps (85°C), ideal for turbine blade crack detection in confined spaces (Φ≥7mm pipelines).
Product Name | Medical or Industrial Endoscope Camera Module |
Features | 2MP Camera Module |
Pixel | 1.6um*1.6um |
Sensor | GC2755 sensor |
Diameter | 7mm |
Interface | USB2.0 |
Output Image Format | MJPG/YUV2(YUYV) |
Model Number | SF-N1070(with steel shell) |
Lens Size | 1/5 inch |
Interface | 6PIN Soldering |
FAQ
1. What are the typical requirements for custom modules?
Common requirements include special dimensions (e.g., 1mm diameter), multispectral imaging (e.g., fluorescence navigation), and interface protocol adaptation (e.g., interfacing with DICOM systems).
2. How to evaluate the cost performance of the module?
For comprehensive resolution, durability, and after-sales support (such as medical modules that require calibration services from manufacturers), industrial scenarios can prioritize MTBF (mean time to failure) indicators.
3. What can I do if the module fails to start?
Check the power adapter (for example, 12V output), the port is loose, and the fuse is blown. If the wireless module is used, check the battery level and pairing status.
This CMOS sensor ultra low light 7mm diameter 1080P Type-C endoscope camera module with steel shell, utilizes the GalaxyCore GC2755 CMOS color image sensor, delivering 1080P@30FPS high-definition fluid output with 2MP resolution (1920×1080). Featuring a 1/6-inch sensor size and 1.6μm×1.6μm large pixel design, it integrates advanced low-light imaging technology to capture clear images in environments as dim as 0.1Lux minimum operating illumination, substantially enhancing detail performance in dark scenarios. The module incorporates six high-brightness LED fill lights and manual focus functionality, ensuring precision visualization during surgical or inspection procedures. Equipped with a Type-C interface and USB 2.0 transmission protocol, it supports UVC standard and OTG functionality for plug-and-play operation. The integrated structural design, coupled with a 7mm steel-shell lens, balances durability with miniaturization requirements. Manufactured using SMT (Surface Mount Technology) and AA (Active Alignment) processes, it guarantees optical assembly precision and consistency, making it ideal for medical endoscopy, industrial inspection, and other professional applications. | ![]() |
Outstanding Low-Light Imaging Capability: With a 1.6μm large pixel size and 0.1Lux low-light algorithm, it can still present clear images even in nearly dark environments (such as body cavities), reducing the reliance on supplementary lighting.
High-Brightness LED Lighting: Integrated with 6 LED light beads, it achieves bright lighting to ensure visual clarity throughout the surgery/detection process.
Precise Structural Design: Anti-corrosion steel sleeve packaging, capable of withstanding high-temperature disinfection, with a diameter of only 7mm yet achieving ultra-precision penetration.
Stable and Reliable Quality: AA (active alignment) process + SMT technology, ensuring no image distortion and stable performance.
Plug-and-Play Compatibility: UVC protocol + Type-C interface enables driver-free compatibility across Windows, Mac, and Android systems. USB 2.0 transmission has zero latency. Supports OTG mobile device direct connection.
Scene-Specific Professional Adaptation: Manual focusing combined with 1080P@30FPS image output, 2MP resolution is sufficient for recording lesion details, suitable for minimally invasive surgeries or pipeline inspections.
1.Dental Diagnostics:Manual focus (±0.02mm) allows precise examination of subgingival caries, while 6-LED adaptive lighting eliminates oral cavity shadows. AA-processed optics prevent image distortion during root canal inspections.
2. Disaster rescue: detection of vital signs in debris crevices and remote assessment of dangerous goods leakage site
3. Intelligent hardware integration: robot automatic inspection (the following waterway cleaning robot vision module).
4. Aerospace Engine Maintenance: The SMT-encapsulated module resists vibration (up to 15G) and high temps (85°C), ideal for turbine blade crack detection in confined spaces (Φ≥7mm pipelines).
Product Name | Medical or Industrial Endoscope Camera Module |
Features | 2MP Camera Module |
Pixel | 1.6um*1.6um |
Sensor | GC2755 sensor |
Diameter | 7mm |
Interface | USB2.0 |
Output Image Format | MJPG/YUV2(YUYV) |
Model Number | SF-N1070(with steel shell) |
Lens Size | 1/5 inch |
Interface | 6PIN Soldering |
FAQ
1. What are the typical requirements for custom modules?
Common requirements include special dimensions (e.g., 1mm diameter), multispectral imaging (e.g., fluorescence navigation), and interface protocol adaptation (e.g., interfacing with DICOM systems).
2. How to evaluate the cost performance of the module?
For comprehensive resolution, durability, and after-sales support (such as medical modules that require calibration services from manufacturers), industrial scenarios can prioritize MTBF (mean time to failure) indicators.
3. What can I do if the module fails to start?
Check the power adapter (for example, 12V output), the port is loose, and the fuse is blown. If the wireless module is used, check the battery level and pairing status.
