IntroductionWhen you look through an endoscope camera, the first thing you notice is how much you can see. Some show a wide area; others zoom in on a small spot. That “how much” is called the field of view (FOV). For endoscope cameras used in medical diagnosis, industrial inspection, or plumbing, ch
In the development of embedded endoscope devices, portable inspection instruments, and wireless vision systems, camera module selection often requires trade-offs among transmission stability, connection reliability, optical suitability, and system expandability. When the inspection scenario involves
In industrial on-site maintenance, automotive diagnostics, and laboratory auxiliary detection, imaging system selection often faces a practical dilemma: operators need quick deployment and intuitive observation, but are unwilling to spend time installing drivers, debugging software, or configuring c
IntroductionEver used an endoscope where bright areas turned completely white and dark areas were pitch black? That’s a dynamic range problem. Dynamic range is the camera’s ability to capture detail in both the brightest and darkest parts of a scene at the same time. It’s a key image quality spec, y
In the fields of minimally invasive medical procedures, precision industrial inspection, and micro-instrument development, the probe diameter is often the first threshold determining inspection feasibility. When the inner diameter of the target channel falls below 2mm, traditional endoscope modules
IntroductionWhen you look through an endoscope—for a medical procedure, industrial inspection, or plumbing check—the smoothness of the video matters. A choppy, laggy image makes it hard to see what you’re doing. That’s where frames per second (FPS) comes in. FPS measures how many images the camera c
Learn how frame rate affects endoscope video quality in an Endoscope Camera Module, UVC endoscope camera module, USB endoscope camera, or TV Endoscope Camera Module. Explore how fps influences smoothness, motion handling, bandwidth, and live inspection performance.
Learn the latest technologies in endoscope cameras, including miniaturized Endoscope Camera Module design, HD and 4K imaging, AI-assisted visualization, and advanced optics from today’s Endoscope Camera Module Manufacturer and Endoscope Camera Module Brand landscape.
Learn what a 4K endoscope camera module is and how it differs from standard HD endoscope systems. Explore Endoscope Camera Module design, image detail, optics, lighting, and OEM selection for a 4k endoscope camera project.
IntroductionEver used an endoscope to look inside a pipe or a body cavity, only to find bright spots completely white and dark areas pitch black? That’s a dynamic range problem. High Dynamic Range (HDR) solves it. HDR lets an endoscope camera capture detail in both the brightest and darkest parts of
IntroductionWhen shopping for an endoscope camera—for medical diagnostics, industrial inspection, or DIY projects—you’ll see two terms: HD and Full HD. But what’s the actual difference? Is Full HD always better? The answer depends on your application, lighting, and budget. At Sincere, we’ve been man
IntroductionWhen selecting an endoscope camera—for medical procedures, industrial inspection, or plumbing diagnostics—one of the first questions is: what resolution do I need? Higher resolution sounds better, but it comes with trade-offs in cost, low-light performance, and physical size. The “best”
IntroductionIn industrial pipeline inspection, precision electronics repair, automotive diagnostics, and medical observation, selecting the right imaging system involves balancing multiple engineering constraints: extremely narrow channels, short working distances, and limited lighting, while requir
IntroductionIn industrial inspection, equipment maintenance, and medical support, visual inspection tools are evolving along two clear trajectories: continuous miniaturization of the probe diameter and wireless connectivity. When 4.5mm-class miniature imaging modules are combined with WiFi technolog
Learn what affects endoscope image quality, including sensor performance, lens design, lighting, working distance, and image processing. Explore how to choose the right Endoscope Camera Module or HD Endoscope Camera Module from a reliable Endoscope Camera Module Manufacturer.
Industry Overview: The Growing Need for Miniaturized ImagingIn industrial manufacturing, automotive maintenance, precision electronics repair, and medical research, inspection targets are becoming increasingly confined, while the demand for accurate detection continues to rise. Microchannels in pipe
Endoscope camera modules have become essential components across a wide range of industries. Whether used for medical diagnostics, industrial inspections, or specialized research applications, these miniature imaging devices allow users to see inside spaces that would otherwise remain inaccessible.
Learn what affects the typical lifespan of an Endoscope Camera Module. Explore how handling, cleaning, storage, heat, and application conditions influence the service life of an Endoscope Camera or Endoscope Module in OEM projects.
Learn what a forward-view endoscope camera module is, how it works, and how it compares with a Side-View endoscope camera module. Explore OEM endoscope camera solutions for inspection, maintenance, and hard-to-reach internal viewing applications.
Endoscope camera modules are among the most widely used optical imaging components in both medical and industrial fields. Whether you are designing a diagnostic device, inspecting machinery, or developing a new surgical tool, understanding how these modules work and what options are available is ess
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SF-G2013EJ23+SF-WiFiE3
SINCEREFIRST
| This BF2013 CMOS Sensor DVP Interface 23Pin Wireless Wifi Endoscope Camera Module, is a high-reliability imaging component built around the BF2013 sensor, featuring a fixed-focus optical design and tailored for embedded endoscope devices, portable detection instruments, and wireless WiFi endoscope solutions. Its core advantage lies in the adoption of the standard DVP parallel digital output interface and 23PIN gold finger connector—this combination significantly enhances data transmission stability and connection reliability, with the gold finger connector’s low contact resistance and long plug-and-play life ensuring stable electrical connection even in narrow spaces, while also enabling direct docking with main controls or WiFi adapter modules for flexible deployment. The optical system is professionally optimized for endoscopic scenarios: a 20–60mm standard endoscopic depth of field covers the most commonly used working distances for endoscopy, allowing clear close-range imaging without additional focusing adjustments to meet the needs of most detection scenarios, while the D88° large field of view expands single-frame coverage, reducing the number of probe movements and improving detection efficiency and completeness. The 4.8mm maximum image circle further ensures comprehensive imaging without blind spots in limited spaces. Structurally, the module adopts a 0.1mm steel sheet and PI double-layer reinforcement scheme, with dimensional tolerance strictly controlled at ±0.03mm, effectively guaranteeing mechanical strength and assembly accuracy, making it suitable for long-term stable operation in complex industrial and maintenance scenarios. In terms of control, parameter configuration is completed through the IIC bus (SDA/SCL), and LED lighting and power management are independently led out, further enhancing system expandability and adaptability to different application requirements. Notably, the module can seamlessly dock with the SF-WiFiE3 WiFi adapter board to build a wireless visual endoscope system, breaking the limitations of wired transmission and facilitating on-site and outdoor detection. Integrating high-stability digital output, reliable structure, endoscope-specific optics, and wireless expansion capabilities, this product becomes an ideal imaging solution for portable endoscopy, industrial detection, automobile maintenance, and precision electronic inspection. | ![]() |
Integrated Imaging Architecture: Deeply integrates the BF2013 CMOS sensor with ISP (Image Signal Processor), reducing signal transmission links, minimizing image loss, and reducing module size. It is suitable for scenarios sensitive to device size, such as minimally invasive medical procedures and industrial inspection in narrow spaces.
Wireless Visual Output: Integrates wireless WiFi image transmission to eliminate the constraints of traditional wired connections, enhancing flexibility during endoscopic operations and convenience in on-site setup.
Flexible Image Control: Supports programming via a simple two-wire serial interface. Users can flexibly adjust parameters such as exposure, white balance, and color saturation, and it supports multiple data output formats to meet diverse image processing requirements.
Compact Design: With a lens diameter of only 3.5mm, it facilitates integration into minimally invasive endoscopic devices or other ultra-narrow pipeline vision systems.
Medical Electronic Bronchoscope: Integrated into electromagnetic navigation bronchoscopes for real-time positioning and inspection of peripheral pulmonary nodules. The high frame rate supports dynamic tracking during surgery.
Industrial Pipeline Endoscope: Used for inspecting cracks (detectable down to approximately 0.2mm) and corrosion in confined spaces such as aircraft fuel tanks and engine pipelines. Its wireless feature enables easy pairing with crawling robots.
Portable On-Site Inspector: Can quickly set up inspection systems in temporary settings such as disaster sites, used to assess internal damage to building structures or conduct search and rescue in narrow spaces.
Product Name | Endoscope Camera Module |
Features | Smallest Endoscope Camera Module |
Length | 0402 LED |
Sensor | BF2013 |
Focusing Range | 20-66mm |
Fov(D) | 88° |
Focal Length | 3.75mm |
Keyword | cmos camera module |
Circle | 4.8mm |
TV Distortion | 0402 White Led |
| Interface | Connect WiFi Board |
| WiFi Board Aperture | F2.8 |
The camera module itself outputs image data via a DVP interface and requires a dedicated WiFi transmission board to enable wireless streaming to display terminals.
Yes. The integrated LED illumination combined with a high-sensitivity CMOS sensor ensures reliable imaging performance under low-light conditions.
Image parameters such as exposure and white balance can be configured and adjusted via the two-wire serial interface using the corresponding command set.
