OV50C40 50MP RAW10 MIPI Autofocus Camera Module for Embedded Vision Systems
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OV50C40 50MP MIPI autofocus camera module with 8192×6144 resolution, 4-in-1 pixel, PDAF, HDR, RAW10 output, D76.4° FOV and BTB integration for embedded imaging systems.
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Price is for reference only. Please contact us for the latest quotation.

OV50C40 50MP RAW10 MIPI Autofocus Camera Module for Embedded Vision Systems
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OV50C40 50MP RAW10 MIPI Autofocus Camera Module for Embedded Vision Systems
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Introduction
SF-SC50C40-H900-B V1.0 is a 50MP MIPI camera module designed for embedded systems requiring higher-resolution imaging, RAW10 output and direct processor integration.
Based on the OV50C40 CMOS sensor, it supports 8192×6144 resolution with 4-in-1 pixel technology, PDAF and HDR. The module integrates VCM Autofocus with a D76.4° optical configuration and BTB MIPI interface, providing a balanced imaging direction for devices that need detailed image capture while maintaining a controlled field of view.
Compared with 48MP solutions in the 8K Camera Module Series, this model provides a 50MP sensor direction for projects where additional native image detail is valuable.
Applications in Real Devices
Embedded AI Vision Devices
AI vision systems often require detailed image sources before recognition, classification or analysis.
The OV50C40 50MP sensor combined with RAW10 output provides a flexible input for host-side ISP processing and application-specific image algorithms.
Industrial Embedded Inspection Equipment
For inspection devices capturing components, printed information or surface details, higher native resolution can provide additional image information for analysis and cropping.
The D76.4° optical direction provides a controlled view suitable for applications where extreme wide-angle coverage is not required.
Project Evaluation Guide
Consider This Model When
- 50MP image capture is required.
- RAW10 output is needed for embedded ISP processing.
- VCM Autofocus is required.
- PDAF and HDR are valuable to the imaging task.
- D76.4° optical coverage matches the target scene.
- Direct MIPI integration is preferred over USB/UVC.
- A BTB MIPI interface fits the host architecture.
Confirm Before Sampling
- Host processor MIPI compatibility.
- OV50C40 driver and ISP support.
- RAW10 processing capability.
- Required Autofocus range.
- Target size, working distance and FOV requirement.
- BTB connector and FPC compatibility.
- Whether 50MP capture or video operation is the primary requirement.
- Image tuning requirements for HDR and color reproduction.
Choosing This Model Within the 8K Camera Module Series
SF-SC50C40-H900-B V1.0 is the 50MP OV50C40 MIPI Autofocus direction within the 8K Camera Module Series.
Choose this model when the project requires a 50MP sensor platform with RAW10 output, Autofocus and direct embedded integration.
Compared with 48MP models, this module provides an additional resolution direction. However, the final selection should still consider sensor support, ISP capability, optical requirements and mechanical integration rather than choosing only by megapixel number.
Related Models
50MP IMX766 MIPI Autofocus – SF4X766AY1
Consider this model when the project prefers the Sony IMX766 sensor platform with 50MP resolution and a different MIPI integration direction.
50MP IMX989 Large Sensor MIPI Autofocus – SF4X989AFBY V2.0
Consider this model when the project requires a larger sensor format and larger pixel size for higher-end imaging requirements.
Key Specifications
| Specification | Details |
|---|---|
| Model | SF-SC50C40-H900-B V1.0 |
| Sensor | OV50C40 CMOS |
| Resolution | 50MP / 8192 × 6144 |
| Sensor Size | 1/2.5 inch |
| Pixel Size | 1.0μm × 1.0μm |
| Pixel Technology | 4-in-1 Pixel |
| PDAF | Supported |
| HDR | Supported |
| Output Format | 10bit RAW |
| Focus | VCM Autofocus |
| Field of View | D76.4° |
| TV Distortion | <1.5% |
| Interface | MIPI |
| Connector | 30Pin BTB |
| FPC Structure | Irregular FPC |
SincereFirst Customization
Lens and Optical Configuration
The standard optical direction provides approximately D76.4° coverage. Lens parameters, FOV and optical structure can be evaluated according to working distance, target size and image requirements.
Autofocus Configuration
VCM Autofocus is the standard focus direction. Focus performance can be evaluated according to the target-distance range, scene contrast and host-side control requirements.
MIPI and FPC Integration
The module uses a BTB MIPI interface with an irregular FPC structure. Connector definition, FPC routing and host-board compatibility can be evaluated according to the device mechanical design.
RAW10 and ISP Processing
RAW10 output allows the host platform to control the image-processing pipeline. Sensor driver support, HDR processing and
ISP tuning can be evaluated according to the target processor.
Final configuration should be validated with the actual host platform, enclosure, optics, software, and lighting environment before sampling.
FAQ
Why choose a 50MP OV50C40 module instead of a 48MP camera module?
The difference is not only the pixel count. The OV50C40 provides a different sensor platform with 50MP resolution and 1μm pixel size. The final choice should consider host support, optics and application requirements.
Does higher resolution always improve the final image?
No. Image quality depends on the complete system, including sensor, lens, lighting, ISP processing and working distance. Higher resolution is useful only when the system can resolve and use the additional detail.
What is the value of RAW10 output in embedded devices?
RAW10 gives the host platform access to sensor data before final image processing, allowing manufacturers to implement their own ISP tuning and image algorithms.
How should I choose between this model and an IMX766 50MP module?
Start with host platform compatibility and image requirements. If both sensors are supported, compare optical configuration, ISP resources, FPC design and required image characteristics.
Is Autofocus necessary for every embedded camera?
No. Autofocus is valuable when the target distance changes. If the device always observes a fixed plane, a Fixed Focus design may provide a simpler solution.
Why does the module use an irregular FPC structure?
The FPC shape is part of the mechanical integration design. An irregular structure can help fit specific device layouts where a standard straight connection is unsuitable.
Evaluate This Module for Your Device
Share your host processor, MIPI requirements, RAW/ISP capability, working-distance range, required FOV, FPC layout limitations and image-quality target. SincereFirst can evaluate whether the OV50C40 50MP Autofocus configuration matches the device before sampling.
Send Inquiry
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