OV48B2Q 48MP RAW10 MIPI Autofocus Camera Module for High-Detail Embedded Imaging
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OV48B2Q 48MP MIPI autofocus camera module with 8000×6000 resolution, 4K30fps, RAW10 output, PDAF, HDR, D80.1° FOV and 20Pin BTB integration for embedded imaging devices.
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Price is for reference only. Please contact us for the latest quotation.

OV48B2Q 48MP RAW10 MIPI Autofocus Camera Module for High-Detail Embedded Imaging
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OV48B2Q 48MP RAW10 MIPI Autofocus Camera Module for High-Detail Embedded Imaging
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Introduction
SF-SC48B2Q-C6102-B V3.0 is a 48MP MIPI Camera Module designed for embedded devices that require high-resolution RAW imaging, Autofocus and a compact 20Pin BTB connection.
Based on the OV48B2Q CMOS sensor, it supports up to 8000×6000 resolution and 4K at 30fps, together with 4-in-1 pixel technology, PDAF and HDR. The module combines VCM Autofocus with a D80.1° optical configuration and TV distortion below 1.5%, making it particularly relevant to systems that need high image detail without moving toward an ultra-wide optical design.
Its main selection value within the 8K Series is the combination of 48MP RAW10 imaging, standard-angle low-distortion optics and compact 20Pin MIPI integration.
Applications in Real Devices
Embedded AI Recognition Equipment
For AI devices that need access to detailed sensor data before host-side processing, 48MP RAW10 output provides a high-resolution source for recognition, classification and image-analysis pipelines.
The final benefit depends on whether the host ISP and algorithm can make effective use of the additional image detail.
High-Resolution Inspection Devices
For inspection systems observing components, printed information or fine surface features, the 8000×6000 sensor resolution provides additional spatial information for cropping and detailed analysis.
The D80.1° lens direction provides broader scene coverage without moving into the strong distortion characteristics of an ultra-wide lens.
Project Evaluation Guide
Consider This Model When
- 48MP / 8000×6000 native image detail is required.
- RAW10 output is needed for host ISP processing.
- VCM Autofocus is required for variable target distances.
- PDAF and HDR are useful to the imaging architecture.
- A D80.1° standard-angle optical direction matches the scene.
- Low TV distortion is important to the visual task.
- A 20Pin BTB MIPI connection fits the host-board design.
Confirm Before Sampling
- Host processor support for the OV48B2Q sensor and RAW10 data.
- MIPI lane and electrical requirements.
- ISP tuning requirements for HDR, color and Autofocus.
- Working-distance range and Autofocus behavior.
- Required FOV and acceptable distortion.
- 20Pin connector pinout and host-board compatibility.
- FPC direction, module height and enclosure clearance.
- Whether full 48MP capture or 4K30 is the primary operating requirement.
Choosing This Model Within the 8K Camera Module Series
SF-SC48B2Q-C6102-B V3.0 is the 20Pin OV48B2Q Autofocus MIPI direction within the 8K Camera Module Series. Choose it when the project requires 48MP RAW imaging, Autofocus and a relatively standard D80.1° optical configuration, while the host hardware is designed around a compact 20Pin BTB connection.Its key difference from the other OV48B2Q models is not sensor capability alone. Connector structure and optical architecture are the real selection factors: the SP153E-B version provides a 30Pin BTB direction, while SF-SC48B20-3030524548-B uses a much wider D120° optical design with a long FPC structure.
Related Models
OV48B2Q 30Pin MIPI – SF-SC48B2Q-SP153E-B V1.0
Consider this model when the same 48MP OV48B2Q platform is required but the host architecture uses a 30Pin BTB connection.
OV48B2Q D120° Long-FPC – SF-SC48B20-3030524548-B V1.0
Consider this model when the project prioritizes ultra-wide scene coverage and a long-FPC structure rather than the standard D80.1° optical direction.
Key Specifications
| Specification | Details |
|---|---|
| Model | SF-SC48B2Q-C6102-B V3.0 |
| Sensor | OV48B2Q CMOS |
| Resolution | 48MP / 8000 × 6000 |
| Sensor Size | 1/2 inch |
| Pixel Size | 0.8μm × 0.8μm |
| 4K Video | 3840 × 2160 @ 30fps |
| Pixel Technology | 4-in-1 Pixel |
| PDAF | Supported |
| HDR | Supported |
| Output Format | 10bit RAW |
| Focus | VCM Autofocus |
| Field of View | D80.1° |
| TV Distortion | <1.5% |
| Interface | MIPI |
| Connector | 20Pin BTB |
| Module Process | COB |
SincereFirst Customization
Lens and Optical Configuration
The standard optical direction provides approximately D80.1° coverage with TV distortion below 1.5%. FOV, focal length and optical structure can be evaluated when the target size, working distance or enclosure requires a different viewing direction.
Autofocus Configuration
VCM Autofocus is the standard focus architecture. Focusing behavior can be evaluated according to target-distance range, scene contrast and host-side control requirements.
MIPI and 20Pin BTB Integration
The standard design uses a 20Pin BTB MIPI interface. Connector compatibility, pin definition, MIPI configuration and FPC routing should be evaluated together with the target processor and host PCB.
RAW10 and ISP Tuning
RAW10 output allows the host to control the image-processing pipeline. ISP tuning requirements for color, HDR, Autofocus and
application-specific image quality can be evaluated according to the final platform.
Final configuration should be validated with the actual host platform, enclosure, optics, software, and lighting environment before sampling.
FAQ
What is the main reason to choose this 20Pin OV48B2Q version?
Choose it when the host-board architecture specifically benefits from a compact 20Pin BTB connection while the project still requires 48MP RAW10 imaging, Autofocus and standard-angle low-distortion optics.
How should I choose between the 20Pin and 30Pin OV48B2Q modules?
Do not select between them from image resolution because both belong to the same 48MP sensor direction. The more important questions are connector pinout, host-board compatibility, FPC layout and mechanical space.
When is D80.1° preferable to the D120° OV48B2Q version?
D80.1° is more suitable when the device needs a more controlled field of view and lower optical distortion. D120° is more useful when broad scene coverage is more important, but the target will occupy fewer pixels within the frame and stronger distortion must be accepted or corrected.
Does RAW10 mean the module can produce a finished image without ISP development?
No. RAW10 is sensor-level image data. The host platform needs an appropriate sensor driver and ISP pipeline to convert it into the final image quality required by the device.
Why are PDAF and VCM both relevant to Autofocus?
The VCM physically moves the lens, while PDAF provides focusing information that can be used by the Autofocus system. Actual focusing behavior still depends on the sensor driver, lens, actuator control and ISP/software implementation.
Is 48MP always preferable to using the 4K30 mode?
No. Native 48MP capture is useful when maximum detail is required, while 4K30 is more appropriate for continuous video. The host bandwidth, processing capability and actual visual task determine which mode provides more project value.
Evaluate This Module for Your Device
Share your host processor, MIPI/20Pin interface conditions, RAW/ISP requirements, working-distance range, required FOV and available FPC/module space. SincereFirst can evaluate whether this D80.1° Autofocus configuration matches the device before sampling.
Send Inquiry
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