720P Separate Mini Endoscope Camera Modules Technology Evolution and Market Strategy Positioning Against the backdrop of continuous miniaturization and integration in industrial inspection and medical auxiliary equipment, the core of embedded vision systems—micro camera modules—reveals the demand or
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
January 19, 2026 — Ofilm has announced the completion of its 1×1mm ultra-miniature endoscopic camera module, marking a pivotal step in advancing minimally invasive medical diagnostics. This breakthrough addresses a core challenge in the industry by dramatically reducing the size constraints of tradi
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From "Seeing" to "Seeing Clearly, Understanding and Penetrating"In the field of medical devices, the development of endoscope technology has profoundly changed the way of diagnosis and minimally invasive surgery. As the "eyes" of the endoscope system, camera modules are undergoing a profound transfo
The Profound Transformation of Medical Imaging Through the Lens of 10MP Endoscope ModulesIn an era where precision medicine and minimally invasive surgery are increasingly prevalent, endoscopes serve as the doctor's “extended eyes.” Their technological evolution directly impacts diagnostic accuracy
When Full HD resolution becomes a standard specification for miniature image sensors, Rayshun Micro's ES101 and OmniVision's OH01A10 have developed distinctly different technical characteristics within the same resolution framework.
5MP HD autofocus module empowers the Rhino XT duct cleaning system: Clear vision drives professional cleaning and transparent service.In professional HVAC duct cleaning, service value lies not only in cleaning results but also in the visualization, verifiability, and trustworthiness of the cleaning
Industry Analysis of Miniature HD Camera Modules: Core Perception Components in the Era of Intelligent VisionIntroductionAmidst the wave of universal connectivity and intelligent upgrades, machine vision has emerged as a pivotal technology empowering countless industries. As the “eyes” of visual sys
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
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SF-C1011USB-D3.3-720P60
SINCEREFIRST
This is the 3.3mm Sensor OH01A10 Medical USB 2.0 Endoscope Camera Module with LED Light, a high-performance solution specifically designed for accurate imaging in confined spaces. It is core-equipped with the OH01A10 color sensor and adopts an innovative split-type structural design — it connects to the DSP processing board via high-stability wire bonding, and finally achieves efficient image output through the Micro USB interface, combining excellent installation adaptability and stable signal transmission. With an overall diameter of only 3.3mm, the module is paired with a 1.25mm short-focus lens and an optical configuration of F-number 3.58, allowing it to easily access narrow lumens or the interior of equipment in medical minimally invasive and industrial testing scenarios. Its core advantage lies in the synergistic design of the 10-100mm wide focusing range and 95° large field of view (FOV): the 10mm short-distance focusing can clearly capture details such as tiny lesions and defects in precision components, while the 100mm long-distance focusing can fully cover the inspection area without frequent adjustment of the module position. Combined with the 95° wide-angle view, it significantly reduces imaging blind spots. Especially in confined spaces such as otolaryngological lumens and laparoscopic surgical fields, it can present a wider range of observation images at one time, which not only improves the efficiency of diagnosis and operation but also reduces the risk of omissions caused by limited field of view. The module supports 720P@60fps high-definition video output, with TV distortion controlled within -2%, resulting in minimal edge distortion of the image. Additionally, it can be optionally equipped with 4 high-brightness LED fill lights of 0201 specification to ensure uniform illumination in low-light environments. The product is manufactured using the SMT process and AA (Active Alignment) process, ensuring consistent imaging through micron-level calibration. It has also passed multiple international testing and certifications including CE, FCC, RoHS, and Reach, featuring both compliance and reliability. | ![]() |
1. High definition imaging: OH01A10 sensor and 1.25mm focal length lens are used to ensure clear and sharp imaging at close range (10mm-100mm).
2. Low distortion (TV distortion < -2%) : 95° wide viewing Angle (FOV) combined with optical optimization makes image edge deformation minimal and improves diagnostic accuracy.
3. High brightness LED lighting: Integrated LED light source to ensure that even lighting can be provided in low light environments to avoid shadow interference.
1. Medical Diagnostics: Ideal for ENT procedures including sinus examinations, vocal cord inspections, and pediatric bronchoscopy.
2. Minimally Invasive Surgery: Enables precise visualization during laparoscopic and arthroscopic procedures.
3. Ear, nose and throat (ENT) : nasal cavity, ear canal, throat and other parts of the examination and minimally invasive surgery.
Product Name | Miniature endoscope camera module with led |
Basic tolerance | ±0.1mm |
DSP | USB |
Sensor | OH01A10 |
Focusing Range | 10-100mm |
Focal Length | 1.25mm |
F Number | 3.58 |
FOV(D) | 95° |
TV Distortion | <-2% |
Diameter | 3.3mm |
1. 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.
2. 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.
3. How to achieve waterproof and sterilization design?
The medical-grade module uses IP68 waterproof seal, the housing material is resistant to high temperature and pressure (such as epoxy resin), and can withstand 134°C steam sterilization. Industrial modules may require only a splash proof design (IP54).
This is the 3.3mm Sensor OH01A10 Medical USB 2.0 Endoscope Camera Module with LED Light, a high-performance solution specifically designed for accurate imaging in confined spaces. It is core-equipped with the OH01A10 color sensor and adopts an innovative split-type structural design — it connects to the DSP processing board via high-stability wire bonding, and finally achieves efficient image output through the Micro USB interface, combining excellent installation adaptability and stable signal transmission. With an overall diameter of only 3.3mm, the module is paired with a 1.25mm short-focus lens and an optical configuration of F-number 3.58, allowing it to easily access narrow lumens or the interior of equipment in medical minimally invasive and industrial testing scenarios. Its core advantage lies in the synergistic design of the 10-100mm wide focusing range and 95° large field of view (FOV): the 10mm short-distance focusing can clearly capture details such as tiny lesions and defects in precision components, while the 100mm long-distance focusing can fully cover the inspection area without frequent adjustment of the module position. Combined with the 95° wide-angle view, it significantly reduces imaging blind spots. Especially in confined spaces such as otolaryngological lumens and laparoscopic surgical fields, it can present a wider range of observation images at one time, which not only improves the efficiency of diagnosis and operation but also reduces the risk of omissions caused by limited field of view. The module supports 720P@60fps high-definition video output, with TV distortion controlled within -2%, resulting in minimal edge distortion of the image. Additionally, it can be optionally equipped with 4 high-brightness LED fill lights of 0201 specification to ensure uniform illumination in low-light environments. The product is manufactured using the SMT process and AA (Active Alignment) process, ensuring consistent imaging through micron-level calibration. It has also passed multiple international testing and certifications including CE, FCC, RoHS, and Reach, featuring both compliance and reliability. | ![]() |
1. High definition imaging: OH01A10 sensor and 1.25mm focal length lens are used to ensure clear and sharp imaging at close range (10mm-100mm).
2. Low distortion (TV distortion < -2%) : 95° wide viewing Angle (FOV) combined with optical optimization makes image edge deformation minimal and improves diagnostic accuracy.
3. High brightness LED lighting: Integrated LED light source to ensure that even lighting can be provided in low light environments to avoid shadow interference.
1. Medical Diagnostics: Ideal for ENT procedures including sinus examinations, vocal cord inspections, and pediatric bronchoscopy.
2. Minimally Invasive Surgery: Enables precise visualization during laparoscopic and arthroscopic procedures.
3. Ear, nose and throat (ENT) : nasal cavity, ear canal, throat and other parts of the examination and minimally invasive surgery.
Product Name | Miniature endoscope camera module with led |
Basic tolerance | ±0.1mm |
DSP | USB |
Sensor | OH01A10 |
Focusing Range | 10-100mm |
Focal Length | 1.25mm |
F Number | 3.58 |
FOV(D) | 95° |
TV Distortion | <-2% |
Diameter | 3.3mm |
1. 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.
2. 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.
3. How to achieve waterproof and sterilization design?
The medical-grade module uses IP68 waterproof seal, the housing material is resistant to high temperature and pressure (such as epoxy resin), and can withstand 134°C steam sterilization. Industrial modules may require only a splash proof design (IP54).
