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
In industrial inspection and medical endoscopy applications, customers often have explicit requirements for flexible control over image capture parameters. A frequently asked technical question recently concerns whether modules can be configured to lower resolutions or frame rates when the catalog s
In applications such as industrial pipeline inspection, automotive maintenance, and building assessment, selecting an imaging system often involves balancing a set of interdependent engineering constraints: the required observation depth necessitates sufficiently long cabling, narrow cavities impose
Technical Logic and System Integration Considerations for Selecting 3.9mm Ultra-Miniature USB Imaging Modules In the development of industrial endoscopic inspection, minimally invasive medical devices, and micro-smart terminals, the selection of imaging modules often faces a set of mutually constrai
In the selection process for industrial inspection and medical endoscopes, the correlation between product protection ratings and mechanical construction frequently emerges as a critical dimension for customers evaluating product suitability. A question that has been raised repeatedly in recent cons
Technical Logic and Application Guide for Selecting the OVM6946 Ultra-Compact Waterproof Endoscope ModuleIn visualization applications across industrial inspection, precision manufacturing, and medical assistance, imaging system selection often faces a set of extreme constraints: observation channel
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SF-C1011USB-D3.9-720P60
SINCEREFIRST
This is the OH01A10 Sensor 3.9mm Mini Flexible Endoscope Camera Module, a professional-grade device for the medical and precision testing fields. Equipped with OmniVision's high-sensitivity OH01A10 sensor, the module supports 720P high-definition resolution and 60fps high frame rate video output. Combined with a 1.08mm short focal length lens, a 10-80mm wide focusing range, an F4.0 large aperture, and an 85° wide-angle design, it can capture clear details of the inspection area in all directions. Its optical system adopts a multi-layer coated lens, paired with high-brightness LED fill lights, enabling it to output low-noise and high-fidelity images even in complex environments. It features a built-in USB interface DSP image processor that performs real-time noise reduction and color optimization, while innovative electronic image stabilization technology effectively offsets image blurring caused by handheld jitter. The module's flexible conduit supports ±180° bidirectional bending, and the 3.9mm ultra-fine lens can easily penetrate narrow spaces larger than 4mm, with excellent IP67-rated waterproof and dustproof performance to adapt to harsh working conditions such as humidity and oil stains. The module adopts a separate structural design, connected to the DSP board via wire bonding, and outputs through a USB2.0 interface, supporting the UVC protocol for plug-and-play functionality. Manufactured with precision through SMT technology and AA (Active Alignment) manufacturing process, the product strictly complies with four international certification standards: RoHS, CE, FCC, and REACH. The accompanying professional software supports functions such as image freezing, providing efficient and reliable technical support for medical diagnosis, industrial testing, and other scenarios. | ![]() |
Next-Generation Pixel Technology for Enhanced Imaging: The PureCel®Plus-S architecture significantly improves quantum efficiency, boosting the signal-to-noise ratio (SNR) compared to traditional FSI technology under the same lighting conditions. It effectively suppresses motion artifacts, and the 60fps high-speed acquisition ensures no motion blur in dynamic scenes.
Miniaturized Separate Architecture: The 3.9mm ultra-thin lens features a separate layout from the DSP board, supporting custom cable lengths and capable of accessing narrow cavities with an aperture of <4mm. The Steel Shell has corrosion-resistant and wear-resistant properties, and the waterproof and dustproof structure can cope with complex working conditions such as humidity and oil stains.
Driver-Free Cross-Platform Compatibility: Complies with the UVC protocol standard, enabling direct deployment on Windows, macOS, and Linux systems without the need to install dedicated drivers. This significantly shortens the software integration cycle of medical equipment and reduces development costs.
Integrated Lighting: Four 0402 micro LEDs adopt a constant current drive design, providing sufficient brightness and uniform light distribution in the field of view, effectively reducing vignetting and improving the accuracy of diagnosis and testing.
Process Assurance: Manufactured through SMT + AA precision processes, certified by international standards including RoHS, CE, FCC, and REACH, ensuring stable and reliable structure and a longer service life.
Medical Device Integration: Suitable for the front-end image acquisition unit of minimally invasive diagnostic and therapeutic equipment such as otolaryngological endoscopes, oral inspection mirrors, bronchoscopes, urethroscopes, and arthroscopes, supporting adaptation to 1080P high-definition display terminals.
Industrial Precision Testing: Used for internal wear monitoring of precision gearboxes, flow channel defect detection of hydraulic valve blocks, cleanliness inspection of semiconductor packaging molds, and damage assessment of micro-bearing raceways.
Electronic Manufacturing Services: Compatible with visual inspection of BGA solder joints on PCB boards, assembly verification of mobile phone middle frame components, foreign object inspection of connector terminals, and wear observation of carbon brushes in drone gimbal motors.
Automotive Maintenance and Diagnosis: Visual detection of carbon deposits in engine combustion chambers, crack detection of turbocharger blades, judgment of blockages in transmission valve body oil circuits, and sealing inspection of cooling pipes in new energy vehicle battery packs.
Special Maintenance Operations: Micro-crack detection at the root of aero-engine blades, corrosion screening of the inner wall of nuclear power plant heat exchange tubes, and internal cleanliness verification of hydraulic control modules on oil drilling platforms.
Product Name | 3.9mm Mini Flexible Endoscope Camera Module |
Basic tolerance | ±0.1mm |
DSP | USB |
Sensor | OH01A10 |
Focusing Range | 10-80mm |
Focal Length | 1.08mm |
F Number | 4.0 |
Resolution: | 720P Max 60fps |
TV Distortion | <-10% |
Diameter | 3.9mm |
It adopts the OH01A10 sensor, which has both high sensitivity and low noise characteristics, supporting stable 720P@60fps HD output.
The standard diameter of the camera module part is 3.9mm. If you have requirements for custom cable lengths and specific packaging forms, please contact us, and we can evaluate and provide customized lens solutions.
The module uses a standard USB 2.0 interface. It can achieve plug-and-play functionality on most mainstream operating systems, and usually no additional driver is required, making integration and use very convenient.
This is the OH01A10 Sensor 3.9mm Mini Flexible Endoscope Camera Module, a professional-grade device for the medical and precision testing fields. Equipped with OmniVision's high-sensitivity OH01A10 sensor, the module supports 720P high-definition resolution and 60fps high frame rate video output. Combined with a 1.08mm short focal length lens, a 10-80mm wide focusing range, an F4.0 large aperture, and an 85° wide-angle design, it can capture clear details of the inspection area in all directions. Its optical system adopts a multi-layer coated lens, paired with high-brightness LED fill lights, enabling it to output low-noise and high-fidelity images even in complex environments. It features a built-in USB interface DSP image processor that performs real-time noise reduction and color optimization, while innovative electronic image stabilization technology effectively offsets image blurring caused by handheld jitter. The module's flexible conduit supports ±180° bidirectional bending, and the 3.9mm ultra-fine lens can easily penetrate narrow spaces larger than 4mm, with excellent IP67-rated waterproof and dustproof performance to adapt to harsh working conditions such as humidity and oil stains. The module adopts a separate structural design, connected to the DSP board via wire bonding, and outputs through a USB2.0 interface, supporting the UVC protocol for plug-and-play functionality. Manufactured with precision through SMT technology and AA (Active Alignment) manufacturing process, the product strictly complies with four international certification standards: RoHS, CE, FCC, and REACH. The accompanying professional software supports functions such as image freezing, providing efficient and reliable technical support for medical diagnosis, industrial testing, and other scenarios. | ![]() |
Next-Generation Pixel Technology for Enhanced Imaging: The PureCel®Plus-S architecture significantly improves quantum efficiency, boosting the signal-to-noise ratio (SNR) compared to traditional FSI technology under the same lighting conditions. It effectively suppresses motion artifacts, and the 60fps high-speed acquisition ensures no motion blur in dynamic scenes.
Miniaturized Separate Architecture: The 3.9mm ultra-thin lens features a separate layout from the DSP board, supporting custom cable lengths and capable of accessing narrow cavities with an aperture of <4mm. The Steel Shell has corrosion-resistant and wear-resistant properties, and the waterproof and dustproof structure can cope with complex working conditions such as humidity and oil stains.
Driver-Free Cross-Platform Compatibility: Complies with the UVC protocol standard, enabling direct deployment on Windows, macOS, and Linux systems without the need to install dedicated drivers. This significantly shortens the software integration cycle of medical equipment and reduces development costs.
Integrated Lighting: Four 0402 micro LEDs adopt a constant current drive design, providing sufficient brightness and uniform light distribution in the field of view, effectively reducing vignetting and improving the accuracy of diagnosis and testing.
Process Assurance: Manufactured through SMT + AA precision processes, certified by international standards including RoHS, CE, FCC, and REACH, ensuring stable and reliable structure and a longer service life.
Medical Device Integration: Suitable for the front-end image acquisition unit of minimally invasive diagnostic and therapeutic equipment such as otolaryngological endoscopes, oral inspection mirrors, bronchoscopes, urethroscopes, and arthroscopes, supporting adaptation to 1080P high-definition display terminals.
Industrial Precision Testing: Used for internal wear monitoring of precision gearboxes, flow channel defect detection of hydraulic valve blocks, cleanliness inspection of semiconductor packaging molds, and damage assessment of micro-bearing raceways.
Electronic Manufacturing Services: Compatible with visual inspection of BGA solder joints on PCB boards, assembly verification of mobile phone middle frame components, foreign object inspection of connector terminals, and wear observation of carbon brushes in drone gimbal motors.
Automotive Maintenance and Diagnosis: Visual detection of carbon deposits in engine combustion chambers, crack detection of turbocharger blades, judgment of blockages in transmission valve body oil circuits, and sealing inspection of cooling pipes in new energy vehicle battery packs.
Special Maintenance Operations: Micro-crack detection at the root of aero-engine blades, corrosion screening of the inner wall of nuclear power plant heat exchange tubes, and internal cleanliness verification of hydraulic control modules on oil drilling platforms.
Product Name | 3.9mm Mini Flexible Endoscope Camera Module |
Basic tolerance | ±0.1mm |
DSP | USB |
Sensor | OH01A10 |
Focusing Range | 10-80mm |
Focal Length | 1.08mm |
F Number | 4.0 |
Resolution: | 720P Max 60fps |
TV Distortion | <-10% |
Diameter | 3.9mm |
It adopts the OH01A10 sensor, which has both high sensitivity and low noise characteristics, supporting stable 720P@60fps HD output.
The standard diameter of the camera module part is 3.9mm. If you have requirements for custom cable lengths and specific packaging forms, please contact us, and we can evaluate and provide customized lens solutions.
The module uses a standard USB 2.0 interface. It can achieve plug-and-play functionality on most mainstream operating systems, and usually no additional driver is required, making integration and use very convenient.
