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
Early in a routine gastrointestinal screening, a subtle mucosal lesion went unnoticed on a conventional low-resolution endoscope.
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
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SF-C1019USB-D6.0-SV-L25-D110
SINCEREFIRST
| This is a micro 1MP OV9734 sensor wide-angle side-view inspection endoscope camera module. Equipped with the OV9734 sensor and combined with an exquisite structural design, its overall diameter is controlled to a mere 6mm, allowing it to easily penetrate various narrow spaces to complete inspection tasks. In terms of field of view, the module offers three selectable diagonal field angles: 95°, 110°, and 140°, which can be flexibly switched according to the field-of-view requirements of different inspection scenarios. Whether focusing on local details or capturing large-range scenes, it can adapt efficiently. The module adopts a fixed-focus lens design, with a stable depth of field ranging from 10mm to 100mm. There is no need for frequent focus adjustment, and clear details of objects within this range can be presented, effectively improving inspection efficiency. At the same time, the module is equipped with 4 brightness-adjustable LED fill lights. Even in dimly lit inspection environments, the clarity of the field of view can be enhanced by adjusting the fill light brightness, preventing the omission of key inspection details due to insufficient light. In terms of image output, the module can stably capture images at a resolution of 1280×720 and output videos smoothly at a frame rate of 30fps. The images are clear and free of stuttering, enabling accurate reproduction of the real state of the inspected object. In addition, the module features IP67-level waterproof performance, which allows it to cope with humid, water-rich, or even short-term water-immersed inspection environments. Whether in medical scenarios involving contact with body fluids or industrial pipeline inspection in humid environments, it can maintain stable operation, demonstrating excellent durability and adaptability. It is a reliable choice for various precision inspection tasks. | ![]() |
Ultra-small Diameter: With a diameter of only 6mm, it can easily enter narrow spaces and expand the inspection range.
Multi-level Field Angles: 95°, 110°, and 140° options are available to flexibly adapt to the field-of-view requirements of different inspection scenarios.
HD Stable Output: 1280×720 resolution plus 30fps frame rate, combined with a fixed-focus lens with a depth of field of 10-100mm, ensuring clear details and efficient inspection.
Durable with Adjustable Fill Light: IP67 waterproof rating for stain resistance and durability; 4 LED fill lights with adjustable brightness to adapt to dim environments.
Product Name | Side View Wide Angle endoscope camera module |
Features | endoscope camera module |
Pixel Size | 1MP |
Sensor | OV9734 |
TV Distortion | <-10% |
Focal Length | 1.08mm |
FOV(D) | 95°, 110°, 140° |
Trademark | SINCERE FIRST |
Interface | USB2.0 |
Focusing Range | 10-100mm |
1. Precision dental treatment: In 3D root canal navigation, the 140° wide angle covers multiple root canals, and the 6mm diameter can penetrate the molar area to assist in precise treatment.
2. Automobile manufacturing quality control: Inspect for blockages, wear, and other issues in direct fuel injection nozzles; maintain transmission valve bodies and check for cracks in engine cylinder walls.
3. Aviation precision maintenance: Resistant to aviation kerosene corrosion for inspecting aircraft engine turbine disks; penetrate deep into actuators for detailed inspections to ensure the safe operation of aerospace equipment.
FAQ
1. How does the endoscope camera module work?
The endoscope camera module collects the internal image through the front optical lens, converts it into electrical signal by CMOS or CCD sensor, and then optimizes it through image processing chip for noise reduction and enhancement, and finally outputs high-definition video signal. Some modules support wireless transmission or fiber optic signal transmission, suitable for medical or industrial inspection scenarios.
2. Why is low illumination performance important for endoscope modules?
In case of insufficient light in the body or pipeline environment, the module needs a high sensitivity sensor and a large aperture lens, and the noise reduction algorithm ensures the clarity of the dark field. Some products use infrared fill light or HDR technology to improve low light performance.
3. What is the significance of the depth of field range of the module?
Large depth of field (such as 5mm to 50mm) can clearly show near and far objects at the same time, reduce the need for frequent focusing, suitable for endoscopic surgery; Shallow depth of field is used to highlight specific plane details, such as skin inspection.
| This is a micro 1MP OV9734 sensor wide-angle side-view inspection endoscope camera module. Equipped with the OV9734 sensor and combined with an exquisite structural design, its overall diameter is controlled to a mere 6mm, allowing it to easily penetrate various narrow spaces to complete inspection tasks. In terms of field of view, the module offers three selectable diagonal field angles: 95°, 110°, and 140°, which can be flexibly switched according to the field-of-view requirements of different inspection scenarios. Whether focusing on local details or capturing large-range scenes, it can adapt efficiently. The module adopts a fixed-focus lens design, with a stable depth of field ranging from 10mm to 100mm. There is no need for frequent focus adjustment, and clear details of objects within this range can be presented, effectively improving inspection efficiency. At the same time, the module is equipped with 4 brightness-adjustable LED fill lights. Even in dimly lit inspection environments, the clarity of the field of view can be enhanced by adjusting the fill light brightness, preventing the omission of key inspection details due to insufficient light. In terms of image output, the module can stably capture images at a resolution of 1280×720 and output videos smoothly at a frame rate of 30fps. The images are clear and free of stuttering, enabling accurate reproduction of the real state of the inspected object. In addition, the module features IP67-level waterproof performance, which allows it to cope with humid, water-rich, or even short-term water-immersed inspection environments. Whether in medical scenarios involving contact with body fluids or industrial pipeline inspection in humid environments, it can maintain stable operation, demonstrating excellent durability and adaptability. It is a reliable choice for various precision inspection tasks. | ![]() |
Ultra-small Diameter: With a diameter of only 6mm, it can easily enter narrow spaces and expand the inspection range.
Multi-level Field Angles: 95°, 110°, and 140° options are available to flexibly adapt to the field-of-view requirements of different inspection scenarios.
HD Stable Output: 1280×720 resolution plus 30fps frame rate, combined with a fixed-focus lens with a depth of field of 10-100mm, ensuring clear details and efficient inspection.
Durable with Adjustable Fill Light: IP67 waterproof rating for stain resistance and durability; 4 LED fill lights with adjustable brightness to adapt to dim environments.
Product Name | Side View Wide Angle endoscope camera module |
Features | endoscope camera module |
Pixel Size | 1MP |
Sensor | OV9734 |
TV Distortion | <-10% |
Focal Length | 1.08mm |
FOV(D) | 95°, 110°, 140° |
Trademark | SINCERE FIRST |
Interface | USB2.0 |
Focusing Range | 10-100mm |
1. Precision dental treatment: In 3D root canal navigation, the 140° wide angle covers multiple root canals, and the 6mm diameter can penetrate the molar area to assist in precise treatment.
2. Automobile manufacturing quality control: Inspect for blockages, wear, and other issues in direct fuel injection nozzles; maintain transmission valve bodies and check for cracks in engine cylinder walls.
3. Aviation precision maintenance: Resistant to aviation kerosene corrosion for inspecting aircraft engine turbine disks; penetrate deep into actuators for detailed inspections to ensure the safe operation of aerospace equipment.
FAQ
1. How does the endoscope camera module work?
The endoscope camera module collects the internal image through the front optical lens, converts it into electrical signal by CMOS or CCD sensor, and then optimizes it through image processing chip for noise reduction and enhancement, and finally outputs high-definition video signal. Some modules support wireless transmission or fiber optic signal transmission, suitable for medical or industrial inspection scenarios.
2. Why is low illumination performance important for endoscope modules?
In case of insufficient light in the body or pipeline environment, the module needs a high sensitivity sensor and a large aperture lens, and the noise reduction algorithm ensures the clarity of the dark field. Some products use infrared fill light or HDR technology to improve low light performance.
3. What is the significance of the depth of field range of the module?
Large depth of field (such as 5mm to 50mm) can clearly show near and far objects at the same time, reduce the need for frequent focusing, suitable for endoscopic surgery; Shallow depth of field is used to highlight specific plane details, such as skin inspection.
