In the world of medical diagnostics and precision industrial inspection, "space" is a luxury that engineers rarely have. When you are designing a tool to navigate a human artery or a jet engine turbine, every tenth of a millimeter matters.As a Camera Module manufacturer with over 30 years of experti
IntroductionIf you're designing something that needs to see into tight spaces—a medical scope, an industrial inspection tool, or even a DIY gadget—size is everything. The camera module has to fit through whatever opening you have. Too big, and it won't go where it needs to. Too small, and you might
What is an Endoscope Camera Module? A Complete Technical OverviewIn the fields of modern medicine and industrial maintenance, the ability to see into inaccessible spaces is not just a convenience—it is a necessity. At the heart of this capability lies a remarkably sophisticated piece of technology:
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
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This 3.1mm diameter 1MP ES101 CMOS image sensor LED bare endoscope camera module is a professional micro imaging optical solution focusing on high-frame-rate and high-definition imaging. Equipped with Ruixin Micro ES101 color sensor, it supports excellent high-frame-rate output capabilities of 1000×1000@60FPS and 1000×800@75FPS, which can clearly capture fast-moving targets in practical applications such as medical endoscopic operations and industrial precision testing. It has 1MP pixels and 1000x1000 high-definition resolution, with a sensor size of 1/9 inch and a pixel size of 1.4μm×1.4μm. The output format supports 10bit/8bit RAW, reserving sufficient space for post-image processing; it adopts a manual focus design, combined with a 140° ultra-large field of view, which can flexibly adapt to different observation distance and range requirements; the bare module lens diameter is only 3.1mm, which can easily extend into narrow observation spaces, and integrates 6 white LED lights to provide stable fill light and ensure imaging clarity in low-light environments. In terms of structure and compatibility, the module adopts a Separated design, connects to the DSP board through a Type-C interface supporting MIPI 1Lane rate, and then outputs through the Type-C interface, compatible with USB2.0 rate and UVC protocol, and adaptable to a variety of terminal devices; the production process adopts SMT process and AA process to ensure product consistency and stability, and has passed multiple international testing and certifications such as CE, FCC, RoHS, and Reach, which can meet the market access requirements of many places around the world. | ![]() |
Plug and Play: Adopting standard Type-C interface and UVC protocol, it has excellent cross-platform compatibility without complex drivers. It supports 10bit RAW data output, providing original data depth for subsequent image processing.
High Integration: The 3.1mm diameter lens module integrates sensor and LED fill light, with small size and low invasiveness; the 140° wide-angle field of view covers a large range, reducing blind areas. The Separated design takes into account the miniaturization of the probe and the flexibility of system heat dissipation and integration.
Low-Cost Compatibility: The Separated structure + Type-C dual-interface design supports MIPI 1Lane, USB2.0 rate and UVC protocol, adapts to a variety of DSP boards and terminal devices, simplifies the integration process; SMT + AA process improves mass production yield and reduces mass application costs.
Product Name | Separate endoscope camera module |
Sensor | ES101 CMOS Sensor |
Sensor Size | 1/9 Inch |
Pixel | 1.4µm×1.4µm |
Resolution | 1000x1000 |
Interface | USB 2.0 |
Diameter | 3.1mm |
FOV | 140° |
Output Format | 10bit/8bit RAW |
LED | 6Pcs LED |
Arthroscope: In minimally invasive surgeries such as knee and shoulder joints, the high frame rate can clearly show the dynamic changes of cartilage fragments, ligaments and the precise operation of surgical instruments. The 75FPS smooth image helps doctors make complex and rapid movement judgments in the narrow joint cavity.
Neuroendoscope: In delicate neurosurgical operations such as transsphenoidal pituitary tumor resection, high-fluidity and delay-free images are crucial for safe navigation and operation around important nerves and blood vessels, which can improve the safety and accuracy of the operation.
Non-Sedation Otoscope: When examining uncooperative children, the high frame rate can compensate for sudden head movements, providing clear tympanic membrane visualization images without the use of sedatives, improving outpatient efficiency and safety.
Engine Borescope: The 140° wide-angle lens with 60FPS frame rate allows maintenance personnel to inspect rotating compressor blades through a single probe hole, detecting microcracks when the blades pass by without engine disassembly.
Yes, it uses a standard Type-C interface and USB2.0 UVC protocol for true plug-and-play connectivity with Windows, Android, and medical tablets—no driver installation required.
Six white LEDs are built into the 3.1mm diameter lens module, providing self-contained illumination. This eliminates external light guides and reduces invasiveness in narrow spaces.
The module supports both YUV (uncompressed) and MJPEG (compressed) video output formats, allowing users to choose based on their image quality and bandwidth requirements.
This 3.1mm diameter 1MP ES101 CMOS image sensor LED bare endoscope camera module is a professional micro imaging optical solution focusing on high-frame-rate and high-definition imaging. Equipped with Ruixin Micro ES101 color sensor, it supports excellent high-frame-rate output capabilities of 1000×1000@60FPS and 1000×800@75FPS, which can clearly capture fast-moving targets in practical applications such as medical endoscopic operations and industrial precision testing. It has 1MP pixels and 1000x1000 high-definition resolution, with a sensor size of 1/9 inch and a pixel size of 1.4μm×1.4μm. The output format supports 10bit/8bit RAW, reserving sufficient space for post-image processing; it adopts a manual focus design, combined with a 140° ultra-large field of view, which can flexibly adapt to different observation distance and range requirements; the bare module lens diameter is only 3.1mm, which can easily extend into narrow observation spaces, and integrates 6 white LED lights to provide stable fill light and ensure imaging clarity in low-light environments. In terms of structure and compatibility, the module adopts a Separated design, connects to the DSP board through a Type-C interface supporting MIPI 1Lane rate, and then outputs through the Type-C interface, compatible with USB2.0 rate and UVC protocol, and adaptable to a variety of terminal devices; the production process adopts SMT process and AA process to ensure product consistency and stability, and has passed multiple international testing and certifications such as CE, FCC, RoHS, and Reach, which can meet the market access requirements of many places around the world. | ![]() |
Plug and Play: Adopting standard Type-C interface and UVC protocol, it has excellent cross-platform compatibility without complex drivers. It supports 10bit RAW data output, providing original data depth for subsequent image processing.
High Integration: The 3.1mm diameter lens module integrates sensor and LED fill light, with small size and low invasiveness; the 140° wide-angle field of view covers a large range, reducing blind areas. The Separated design takes into account the miniaturization of the probe and the flexibility of system heat dissipation and integration.
Low-Cost Compatibility: The Separated structure + Type-C dual-interface design supports MIPI 1Lane, USB2.0 rate and UVC protocol, adapts to a variety of DSP boards and terminal devices, simplifies the integration process; SMT + AA process improves mass production yield and reduces mass application costs.
Product Name | Separate endoscope camera module |
Sensor | ES101 CMOS Sensor |
Sensor Size | 1/9 Inch |
Pixel | 1.4µm×1.4µm |
Resolution | 1000x1000 |
Interface | USB 2.0 |
Diameter | 3.1mm |
FOV | 140° |
Output Format | 10bit/8bit RAW |
LED | 6Pcs LED |
Arthroscope: In minimally invasive surgeries such as knee and shoulder joints, the high frame rate can clearly show the dynamic changes of cartilage fragments, ligaments and the precise operation of surgical instruments. The 75FPS smooth image helps doctors make complex and rapid movement judgments in the narrow joint cavity.
Neuroendoscope: In delicate neurosurgical operations such as transsphenoidal pituitary tumor resection, high-fluidity and delay-free images are crucial for safe navigation and operation around important nerves and blood vessels, which can improve the safety and accuracy of the operation.
Non-Sedation Otoscope: When examining uncooperative children, the high frame rate can compensate for sudden head movements, providing clear tympanic membrane visualization images without the use of sedatives, improving outpatient efficiency and safety.
Engine Borescope: The 140° wide-angle lens with 60FPS frame rate allows maintenance personnel to inspect rotating compressor blades through a single probe hole, detecting microcracks when the blades pass by without engine disassembly.
Yes, it uses a standard Type-C interface and USB2.0 UVC protocol for true plug-and-play connectivity with Windows, Android, and medical tablets—no driver installation required.
Six white LEDs are built into the 3.1mm diameter lens module, providing self-contained illumination. This eliminates external light guides and reduces invasiveness in narrow spaces.
The module supports both YUV (uncompressed) and MJPEG (compressed) video output formats, allowing users to choose based on their image quality and bandwidth requirements.
