1. Introduction: When High-Definition Imaging Meets Confined SpacesIn the intersection of minimally invasive medical procedures and industrial precision inspection, a common technical challenge increasingly arises: how to obtain sufficiently clear, smooth, and realistic visual information within a c
IntroductionIf you're buying an endoscope—for medical use, industrial inspection, or DIY projects—you'll probably wonder about resolution. How clear will the image be? Can you see small details? The answer depends on what you're using it for. Resolution standards have come a long way, from basic sta
IntroductionAn endoscope camera module is the tiny camera that lets doctors see inside your body or inspectors look inside machinery. At the core of most modern endoscopes is a CMOS image sensor. CMOS technology has made these cameras smaller, cheaper, and more efficient. This article explains what
1. Introduction: When Detection Space Meets Device Volume ConstraintsIn the development of automated inspection equipment, specialized robots, and portable instruments, imaging system selection faces a fundamental contradiction: the target is deep inside narrow cavities, while control equipment is b
In the field of minimally invasive surgery, the "eye" of the instrument—the endoscope camera—is perhaps the most critical component. It must be small enough to navigate the human body's delicate pathways, yet powerful enough to provide surgeons with crystal-clear, lag-free imagery.At the heart of th
If you are sourcing imaging components or developing a vision-based product, you have likely come across two terms: endoscope and camera module. They are closely related, but they are not the same thing. Mixing them up can lead to the wrong purchasing decision or unnecessary development work.This ar
In both modern medicine and high-end industrial maintenance, the ability to see into inaccessible spaces is critical. Whether a surgeon is performing a minimally invasive procedure or an aerospace engineer is inspecting a turbine blade, the primary tool at work is the endoscope.At the heart of these
IntroductionIn industrial nondestructive testing, medical device development, and embedded vision systems, a recurring challenge arises when the target lies on the sidewall of a pipe or within narrow cavities, particularly at millimeter-scale diameters. Traditional forward-view endoscopes fail in su
IntroductionAn endoscope camera module is the small imaging system inside every borescope or medical scope. It lets you see into tight spaces—inside engines, behind walls, or inside the human body. Despite its tiny size, this module contains several precision parts that work together to capture and
IntroductionA USB endoscope camera module is a small camera designed to look into tight spaces. Plumbers use them to check inside pipes. Mechanics use them to inspect engines without taking things apart. Homeowners use them to see inside walls. If you need to see somewhere you can't physically fit y
OV9734 Sensor 3.6mm Micro HD Endoscope Camera Module: Engineering Guide for Confined-Space Vision SystemsIntroductionIn the realm of industrial inspection, precision equipment maintenance, and embedded vision systems, the ability to visualize the interior of narrow structures often determines the su
Technical Logic and System Integration Considerations for Selecting 8mm 2MP Endoscope ModulesIn the practice of medical endoscope equipment development and industrial inspection system integration, the selection of imaging modules often faces a set of coupled engineering constraints: physical dimens
In the imaging technology spectrum of medical endoscopes and industrial inspection equipment, the evolution of product specifications has always followed two parallel development paths: one continuously ascends toward higher resolution, wider dynamic range, and greater intelligence in the high-end m
Technical Selection and System Adaptation Considerations for 2MP HD UVC Camera ModulesIn the development practices of consumer electronics peripherals, industrial vision terminals, and open-source hardware projects, the selection of imaging modules often faces a set of interrelated engineering const
In the industrial landscape of vision imaging technology, products at different resolution levels occupy distinct ecological niches. While market attention increasingly gravitates toward frontier areas such as tens-of-megapixel sensors, multi-camera fusion, and computational photography, 2MP (1080P)
In applications such as industrial nondestructive testing, precision equipment maintenance, and medical diagnostics, selecting an imaging system often involves balancing a set of interdependent engineering constraints: the physical diameter of inspection channels restricts the module’s front-end siz
In the evolution of endoscopic imaging technology, the continual reduction of sensor size and module diameter has consistently been a key driver of industry innovation. The 4.5mm-diameter miniature USB endoscope module, centered on the BF2013 sensor, represents a critical node along this technologic
In the technological lineage of industrial inspection and medical辅助 imaging equipment, the evolution of endoscope modules has consistently followed a clear trajectory: continuously reducing front-end physical dimensions while maintaining or improving image quality, thereby expanding the boundaries o
In applications such as industrial endoscopic inspection, medical assisted examination, and precision equipment maintenance, selecting an imaging system often involves balancing a set of interdependent engineering constraints: the physical diameter of the observation channel limits the probe front t
In the development of industrial micro-pipe inspection, precision electronic component quality control, and medical device miniaturization, the selection of imaging systems often confronts a set of extreme engineering constraints: observation channel diameters measured in millimeters or even sub-mil
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SF-C1011USB-D3.1-720P60 D950 NLED
SINCEREFIRST
This is a 720P high-definition 60FPS OVONICS OH01A10 sensor 3.5mm medical endoscope camera module. The core component is the OVONICS OH01A10 CMOS color image sensor. The module offers 1MP effective pixels, supports a native resolution of 1280×800, and delivers exceptional high-definition, high-speed video output at 720P@60FPS. The sensor size is 1/14.25 inches, with a pixel size of 1.116μm × 1.116μm, ensuring excellent light sensitivity within a compact structure. The optical system is equipped with a 95° diagonal field of view (DFOV), a fixed focal length of 1.25mm, and an F4.0 aperture. The focus range covers 10–100mm and supports manual focus adjustment. The lens TV distortion is strictly controlled at < -2%, and the lens diameter is only 3.3mm, utilizing a detachable design to enhance integration flexibility. The module can be optionally equipped with four 0201-type LED fill lights and features a Micro USB interface with UVC protocol support, ensuring compatibility with mainstream operating systems such as Windows, Linux, and macOS. The entire manufacturing process employs SMT surface mount technology and an AA (Active Alignment) process, guaranteeing product consistency and reliability. | ![]() |
1. Smooth Dynamic Imaging
The 60FPS high frame rate, combined with 720P resolution, significantly reduces motion blur and smearing during the inspection of fast-moving objects or when scanning with the probe. It provides a near-real-time dynamic visual experience, making it particularly suitable for observing dynamic processes such as fluid movement within cavities or mechanical component vibrations.
2. Perfect Balance of HD and Fluidity
The 720P resolution ensures sufficient image detail clarity, while the 60FPS refresh rate delivers smooth and continuous dynamic footage. This combination achieves an optimal balance between transmission bandwidth and image quality, meeting detailed observation needs without causing visual fatigue or misjudgment due to insufficient frame rates.
3. Low Distortion and Precise Focus
With TV distortion of < -2%, straight lines remain accurately rendered even at the image edges. Coupled with a wide 10–100mm manual focus range, users can quickly achieve precise focus at different working distances, enhancing measurement and judgment accuracy.
4. Sterilizable and Biocompatible for In-Body Use
The OCHFA10 medical endoscope camera module supports ETO and STERRAD sterilization protocols. Constructed with biocompatible materials and IP68 waterproof sealing, it meets rigorous medical safety standards, ensuring suitability for in-body, disposable, or reusable medical applications.
5. Flexible Lighting and Plug-and-Play
The optional micro LED fill lights effectively improve image quality in low-light environments. UVC protocol support allows for driver-free plug-and-play operation, significantly simplifying device deployment and improving workflow efficiency.
6. Precision Engineering Ensures Stability
The SMT and AA processes ensure precise alignment between the lens and sensor, as well as the mechanical stability of the entire module. This guarantees consistent, clear, and high-quality image output even under long-term use or in vibrating environments.
1. Dynamic Medical Endoscopic Diagnosis
In medical applications such as bronchoscopes and gastrointestinal endoscopes, the 60FPS HD video clearly captures dynamic changes like mucosal peristalsis and fluid flow, providing doctors with smooth and realistic in vivo dynamic imaging to assist in early lesion diagnosis.
2. Precision Assembly and Motion Detection
Ideal for monitoring precision electronic component assembly processes, the high frame rate clearly captures details of high-speed robotic arm operations and component placement, preventing process deviations caused by blurred images.
3. Aircraft Engine Borescope Inspection
During internal blade inspection of engines, the 60FPS smooth video effectively captures subtle vibrations or crack propagation processes of blades in high-speed airflow environments, improving the accuracy of defect identification and diagnosis.
4. Scientific Research and Biological Microscopy
Suitable for observing dynamic specimens under biological microscopes, such as microorganism movement or cellular activities, the high-frame-rate HD video fully records rapidly changing biological processes, providing reliable visual data for scientific analysis.
5. Industrial Pipeline Internal Inspection
When inspecting pipeline inner walls for corrosion, cracks, or deposits, the high-frame-rate video ensures clear, smear-free continuous footage even while the probe is moving, preventing missed inspections and misjudgments.
Product Name | Medical Endoscope Camera Module |
Image Sensor | OH01A10 |
Pixel | 1MP |
Focusing Range | 10-100mm |
Focal Length | 1.25mm |
F NO | 4.0 |
Product Type | Endoscope Camera Module |
Led | 0402 Led |
TV Distortion | <-2% |
Feature | CMOS sensor Endoscope Camera Module |
Q1: How to prevent frequent cable breakage?
Use anti-bending cables with metal braid reinforcements. Avoid acute bends during use and wrap coils with a diameter greater than 10cm for storage. In industrial applications, consider adding protective spring tubes for strain relief.
Q2: Why are long cables needed in pipeline inspections?
For pipeline inspections, cables of 10–30 meters are common. They often include a Kevlar tensile layer and waterproof connectors, ensuring chemical resistance and real-time image transmission despite long-distance use.
Q3: How is waterproofing and sterilization achieved?
The module complies with IP68 waterproof standards and can endure 134°C steam sterilization. Its housing material resists high pressure and temperature. While medical modules offer full sterilization compatibility, industrial versions may opt for basic splash resistance.
This is a 720P high-definition 60FPS OVONICS OH01A10 sensor 3.5mm medical endoscope camera module. The core component is the OVONICS OH01A10 CMOS color image sensor. The module offers 1MP effective pixels, supports a native resolution of 1280×800, and delivers exceptional high-definition, high-speed video output at 720P@60FPS. The sensor size is 1/14.25 inches, with a pixel size of 1.116μm × 1.116μm, ensuring excellent light sensitivity within a compact structure. The optical system is equipped with a 95° diagonal field of view (DFOV), a fixed focal length of 1.25mm, and an F4.0 aperture. The focus range covers 10–100mm and supports manual focus adjustment. The lens TV distortion is strictly controlled at < -2%, and the lens diameter is only 3.3mm, utilizing a detachable design to enhance integration flexibility. The module can be optionally equipped with four 0201-type LED fill lights and features a Micro USB interface with UVC protocol support, ensuring compatibility with mainstream operating systems such as Windows, Linux, and macOS. The entire manufacturing process employs SMT surface mount technology and an AA (Active Alignment) process, guaranteeing product consistency and reliability. | ![]() |
1. Smooth Dynamic Imaging
The 60FPS high frame rate, combined with 720P resolution, significantly reduces motion blur and smearing during the inspection of fast-moving objects or when scanning with the probe. It provides a near-real-time dynamic visual experience, making it particularly suitable for observing dynamic processes such as fluid movement within cavities or mechanical component vibrations.
2. Perfect Balance of HD and Fluidity
The 720P resolution ensures sufficient image detail clarity, while the 60FPS refresh rate delivers smooth and continuous dynamic footage. This combination achieves an optimal balance between transmission bandwidth and image quality, meeting detailed observation needs without causing visual fatigue or misjudgment due to insufficient frame rates.
3. Low Distortion and Precise Focus
With TV distortion of < -2%, straight lines remain accurately rendered even at the image edges. Coupled with a wide 10–100mm manual focus range, users can quickly achieve precise focus at different working distances, enhancing measurement and judgment accuracy.
4. Sterilizable and Biocompatible for In-Body Use
The OCHFA10 medical endoscope camera module supports ETO and STERRAD sterilization protocols. Constructed with biocompatible materials and IP68 waterproof sealing, it meets rigorous medical safety standards, ensuring suitability for in-body, disposable, or reusable medical applications.
5. Flexible Lighting and Plug-and-Play
The optional micro LED fill lights effectively improve image quality in low-light environments. UVC protocol support allows for driver-free plug-and-play operation, significantly simplifying device deployment and improving workflow efficiency.
6. Precision Engineering Ensures Stability
The SMT and AA processes ensure precise alignment between the lens and sensor, as well as the mechanical stability of the entire module. This guarantees consistent, clear, and high-quality image output even under long-term use or in vibrating environments.
1. Dynamic Medical Endoscopic Diagnosis
In medical applications such as bronchoscopes and gastrointestinal endoscopes, the 60FPS HD video clearly captures dynamic changes like mucosal peristalsis and fluid flow, providing doctors with smooth and realistic in vivo dynamic imaging to assist in early lesion diagnosis.
2. Precision Assembly and Motion Detection
Ideal for monitoring precision electronic component assembly processes, the high frame rate clearly captures details of high-speed robotic arm operations and component placement, preventing process deviations caused by blurred images.
3. Aircraft Engine Borescope Inspection
During internal blade inspection of engines, the 60FPS smooth video effectively captures subtle vibrations or crack propagation processes of blades in high-speed airflow environments, improving the accuracy of defect identification and diagnosis.
4. Scientific Research and Biological Microscopy
Suitable for observing dynamic specimens under biological microscopes, such as microorganism movement or cellular activities, the high-frame-rate HD video fully records rapidly changing biological processes, providing reliable visual data for scientific analysis.
5. Industrial Pipeline Internal Inspection
When inspecting pipeline inner walls for corrosion, cracks, or deposits, the high-frame-rate video ensures clear, smear-free continuous footage even while the probe is moving, preventing missed inspections and misjudgments.
Product Name | Medical Endoscope Camera Module |
Image Sensor | OH01A10 |
Pixel | 1MP |
Focusing Range | 10-100mm |
Focal Length | 1.25mm |
F NO | 4.0 |
Product Type | Endoscope Camera Module |
Led | 0402 Led |
TV Distortion | <-2% |
Feature | CMOS sensor Endoscope Camera Module |
Q1: How to prevent frequent cable breakage?
Use anti-bending cables with metal braid reinforcements. Avoid acute bends during use and wrap coils with a diameter greater than 10cm for storage. In industrial applications, consider adding protective spring tubes for strain relief.
Q2: Why are long cables needed in pipeline inspections?
For pipeline inspections, cables of 10–30 meters are common. They often include a Kevlar tensile layer and waterproof connectors, ensuring chemical resistance and real-time image transmission despite long-distance use.
Q3: How is waterproofing and sterilization achieved?
The module complies with IP68 waterproof standards and can endure 134°C steam sterilization. Its housing material resists high pressure and temperature. While medical modules offer full sterilization compatibility, industrial versions may opt for basic splash resistance.
