Research on Lightweight Integration of Low-Power Imaging Modules in Children’s Educational MicroscopesAbstractScientific enlightenment tools designed for young children must ensure both operational safety and engagement while providing intuitive and clear observational experiences. Traditional optic
Deconstructing the Design Philosophy and Application Boundaries of a Compact Endoscope Camera ModuleAgainst the backdrop of the increasing miniaturization and integration of professional-grade image acquisition equipment, a compact endoscope camera module tailored for close-range, confined-space ins
Technical Evolution and Clinical Empowerment of Hysteroscopic Imaging Systems Abstract With the deepening application of minimally invasive diagnostic and therapeutic techniques in gynecology, hysteroscopy has become a core tool for diagnosing and treating intrauterine lesions. Its clinical efficacy
January 27, 2026 — Mindray has been granted a patent for a novel "endoscopic camera and endoscopic camera system," introducing a dedicated anti-collision terminal structure. This innovation directly addresses a critical and often overlooked challenge in the precise assembly process of high-end endos
How to Select the Right Ultra-Short-Throw HD Camera Module for Confined Spaces? When integrating vision systems into industrial endoscopes, pipeline inspection tools, minimally invasive surgical instruments, or compact devices, choosing the right camera module is critical to success. Faced with chal
{"text":"The medical imaging landscape is rapidly shifting from Full HD (1080p) to Ultra HD (4K) as the new gold standard for high-end visualization. While marketing departments often demand 4K specifications to compete in premium segments, engineering teams face a complex reality. Integrating a hig
{"text":"In minimally invasive surgery (MIS), the monitor acts as the surgeon’s eyes, introducing a unique physiological challenge known as \"Hand-Eye Decoupling.\" Even millisecond delays between a physical hand movement and the visual confirmation on the screen can disrupt surgical flow. This late
{"text":"The landscape of medical and industrial inspection is rapidly shifting. We are moving away from bulky, cart-based units toward handheld, battery-operated IoT devices. This transition empowers professionals to perform diagnostics in remote or constrained environments with unprecedented ease.
{"text":"The medical device industry is currently navigating a fundamental restructuring. For decades, endoscopy relied on the \"asset\" model, where hospitals purchased expensive capital equipment designed to last for years. Today, the sector is rapidly shifting toward a \"consumable\" model, drive
{"text":"Accessing sub-2mm cavities presents a significant engineering hurdle across both medical and industrial sectors. Surgeons navigating bronchial peripheries and maintenance crews inspecting turbine blade cooling channels often face a physical wall: traditional 3mm borescopes simply cannot fit
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The development of high-resolution industrial endoscopes with an extremely small diameter is not merely a matter of component miniaturization, but a system-level engineering challenge that necessitates a sophisticated trade-off among optics, sensor performance, mechanical structure, and signal integ
High-Definition Micro Modules Empower Flexible Veterinary EndoscopesIn modern veterinary diagnostics, achieving precise internal examination, foreign body removal, and diagnostic sampling with minimal trauma is crucial for enhancing animal welfare and clinical standards—especially when dealing with
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SF-SP12-D12.5 AF 12MP
SINCEREFIRST
| This is a 12MP high-resolution integrated USB endoscope camera module with steel shell. It adopts a CMOS image sensor, featuring 12MP high pixels, which can support 3840x3104 high-definition resolution and a maximum frame rate of 30FPS, presenting smooth and clear dynamic images. The sensor size is 1/3.06 inch, with a pixel size of 1.12μmx1.12μm, and it is paired with an F2.2 aperture to ensure excellent light-sensing performance. It has a field of view of 80.9° and a depth of field ranging from 3.5cm to infinity, and supports auto-focus, allowing flexible capture of details at different distances. It uses a USB2.0 interface and supports the UVC protocol for easy and quick connection; the integrated design makes the structure more compact, with a lens diameter of only 14.5mm and a steel sleeve for enhanced durability. The lens integrates 8 LEDs with SMD chips, with a stable color temperature of 4500-5000k, and is manufactured using SMT technology and AA process to ensure product precision. Among them, the combination of 12MP high pixels and 4500-5000k natural color temperature has significant advantages. High pixels can accurately capture fine textures, while the color temperature close to natural light can truly restore the original color of objects, reducing color deviation. During observation, it can not only clearly see fine structures such as capillaries and tiny cracks but also judge key information such as object material and lesion status through real colors, improving the accuracy of observation. | ![]() |
Durable Structure: The integrated lens design with a steel shell, while ensuring a slender diameter of 14.5mm for easy access to narrow spaces, greatly enhances anti-drop and anti-wear capabilities, extending the service life.
Efficient Operation: Supports auto-focus function, eliminating the cumbersome operation of manual focusing, enabling quick locking of observation targets and improving detection efficiency.
Excellent Image Quality: Manufactured using SMT technology and AA process, it ensures precise assembly of optical components, reducing problems such as aberration and glare, and achieving higher image consistency.
Strong Compatibility: The combination of USB2.0 interface and UVC protocol allows it to be compatible with various operating systems and devices without complex drivers, lowering the integration threshold.
Excellent Supplementary Lighting: 8 SMD chip LEDs provide stable supplementary lighting, and combined with the F2.2 large aperture, they can ensure sufficient image brightness in dim environments, solving the problem of blurred imaging in dark areas of traditional endoscopes.
1. Industrial Precision Component Inspection: Such as internal observation of small gearboxes and circuit board solder joints. The 12MP pixels can clearly identify virtual solder joints and component wear marks, and the natural color temperature can accurately present the degree of metal oxidation.
2. Home Appliance Repair Field: Such as internal inspection of air conditioner evaporators and refrigerator pipelines. Auto-focus and large depth of field can flexibly observe dust accumulation and liquid leakage problems in different positions.
3. Cultural Relic Restoration Work: Observing cultural relic gaps and fine decorations, truly restoring the color and texture of cultural relics, providing accurate references for restoration.
4. Scientific Research Experiment Assistance: Assisting in observing the internal state of small biological samples and micro experimental devices, facilitating detailed experimental recording and analysis.
Product Name | 14.5mm Endoscope Camera Module |
Led | 8pcs |
Mounting Type | USB2.0 |
Sensor | CMOS |
Focusing Range | 3.5cm~Infinity |
Pixel | 12MP |
F.NO | 2.2 |
Trademark | SINCERE FIRST |
Focus Type | Auto Focus |
Fov(D) | 80.9° |
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.
Mainstream resolutions include 720p, 1080p, 4K, etc. Medical grade modules usually require more than 1080p to ensure diagnostic accuracy, while industrial modules may choose lower resolutions to reduce costs according to demand. Ultra-high resolution modules are mostly used in precision surgery or scientific research.
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.
It supports a high-definition resolution of 3840x3104 with 12MP pixels, ensuring clear image details.
Yes, it uses a USB2.0 interface and supports the UVC protocol, allowing for easy and quick connection to various operating systems and devices without complex drivers.
It integrates 8 SMD chip LEDs with stable supplementary lighting, and combined with the F2.2 large aperture, it ensures sufficient image brightness in dim environments, solving the problem of blurred imaging in dark areas.
High pixels accurately capture fine textures, while the natural color temperature close to sunlight truly restores object colors, reducing color deviation and improving observation accuracy.
| This is a 12MP high-resolution integrated USB endoscope camera module with steel shell. It adopts a CMOS image sensor, featuring 12MP high pixels, which can support 3840x3104 high-definition resolution and a maximum frame rate of 30FPS, presenting smooth and clear dynamic images. The sensor size is 1/3.06 inch, with a pixel size of 1.12μmx1.12μm, and it is paired with an F2.2 aperture to ensure excellent light-sensing performance. It has a field of view of 80.9° and a depth of field ranging from 3.5cm to infinity, and supports auto-focus, allowing flexible capture of details at different distances. It uses a USB2.0 interface and supports the UVC protocol for easy and quick connection; the integrated design makes the structure more compact, with a lens diameter of only 14.5mm and a steel sleeve for enhanced durability. The lens integrates 8 LEDs with SMD chips, with a stable color temperature of 4500-5000k, and is manufactured using SMT technology and AA process to ensure product precision. Among them, the combination of 12MP high pixels and 4500-5000k natural color temperature has significant advantages. High pixels can accurately capture fine textures, while the color temperature close to natural light can truly restore the original color of objects, reducing color deviation. During observation, it can not only clearly see fine structures such as capillaries and tiny cracks but also judge key information such as object material and lesion status through real colors, improving the accuracy of observation. | ![]() |
Durable Structure: The integrated lens design with a steel shell, while ensuring a slender diameter of 14.5mm for easy access to narrow spaces, greatly enhances anti-drop and anti-wear capabilities, extending the service life.
Efficient Operation: Supports auto-focus function, eliminating the cumbersome operation of manual focusing, enabling quick locking of observation targets and improving detection efficiency.
Excellent Image Quality: Manufactured using SMT technology and AA process, it ensures precise assembly of optical components, reducing problems such as aberration and glare, and achieving higher image consistency.
Strong Compatibility: The combination of USB2.0 interface and UVC protocol allows it to be compatible with various operating systems and devices without complex drivers, lowering the integration threshold.
Excellent Supplementary Lighting: 8 SMD chip LEDs provide stable supplementary lighting, and combined with the F2.2 large aperture, they can ensure sufficient image brightness in dim environments, solving the problem of blurred imaging in dark areas of traditional endoscopes.
1. Industrial Precision Component Inspection: Such as internal observation of small gearboxes and circuit board solder joints. The 12MP pixels can clearly identify virtual solder joints and component wear marks, and the natural color temperature can accurately present the degree of metal oxidation.
2. Home Appliance Repair Field: Such as internal inspection of air conditioner evaporators and refrigerator pipelines. Auto-focus and large depth of field can flexibly observe dust accumulation and liquid leakage problems in different positions.
3. Cultural Relic Restoration Work: Observing cultural relic gaps and fine decorations, truly restoring the color and texture of cultural relics, providing accurate references for restoration.
4. Scientific Research Experiment Assistance: Assisting in observing the internal state of small biological samples and micro experimental devices, facilitating detailed experimental recording and analysis.
Product Name | 14.5mm Endoscope Camera Module |
Led | 8pcs |
Mounting Type | USB2.0 |
Sensor | CMOS |
Focusing Range | 3.5cm~Infinity |
Pixel | 12MP |
F.NO | 2.2 |
Trademark | SINCERE FIRST |
Focus Type | Auto Focus |
Fov(D) | 80.9° |
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.
Mainstream resolutions include 720p, 1080p, 4K, etc. Medical grade modules usually require more than 1080p to ensure diagnostic accuracy, while industrial modules may choose lower resolutions to reduce costs according to demand. Ultra-high resolution modules are mostly used in precision surgery or scientific research.
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.
It supports a high-definition resolution of 3840x3104 with 12MP pixels, ensuring clear image details.
Yes, it uses a USB2.0 interface and supports the UVC protocol, allowing for easy and quick connection to various operating systems and devices without complex drivers.
It integrates 8 SMD chip LEDs with stable supplementary lighting, and combined with the F2.2 large aperture, it ensures sufficient image brightness in dim environments, solving the problem of blurred imaging in dark areas.
High pixels accurately capture fine textures, while the natural color temperature close to sunlight truly restores object colors, reducing color deviation and improving observation accuracy.
