OV48B2Q 48MP D120° Wide-Angle MIPI Camera Module for Broad Scene Coverage
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OV48B2Q 48MP MIPI camera module with D120° wide-angle optics, RAW10 output, HDR, PDAF, long-FPC design and 24Pin BTB interface for wide-area embedded imaging.
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Price is for reference only. Please contact us for the latest quotation.

OV48B2Q 48MP D120° Wide-Angle MIPI Camera Module for Broad Scene Coverage
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OV48B2Q 48MP D120° Wide-Angle MIPI Camera Module for Broad Scene Coverage
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Introduction
SF-SC48B20-3030524548-B V1.0 is a 48MP MIPI Camera Module developed for embedded devices that need substantially wider scene coverage without giving up high native image detail.
Based on the OV48B2Q CMOS sensor, it supports 8000×6000 resolution, 4K at 30fps, 4-in-1 pixel technology, HDR, PDAF and 10bit RAW output. Its defining configuration is the D120° × H96° × V73.8° wide-angle lens combined with a long-FPC structure and 24Pin BTB MIPI connection.
Compared with the D80.1° OV48B2Q models in the same Series, this version is intended for projects where capturing more of the surrounding scene from a constrained camera position matters more than keeping optical distortion to a minimum.
Applications in Real Devices
Wide-Area Equipment Observation
When one camera position needs to cover a large internal or external working area, D120° coverage reduces the amount of scene excluded from the frame.
The 48MP sensor preserves additional image information within that wider view, although the target size within the frame should still be checked carefully.
Robotic and Mobile Vision Devices
Robotic equipment may have limited mounting positions but still need broader visual awareness around the camera.
The wide-angle optical direction provides more scene context, while MIPI RAW output allows the host platform to apply its own ISP and image-processing pipeline.
Project Evaluation Guide
Consider This Model When
- A D120° wide-angle view is needed from one camera position.
- 48MP / 8000×6000 native detail is required.
- RAW10 output is needed for host ISP processing.
- HDR and PDAF are part of the imaging requirement.
- A long-FPC structure helps solve the internal device layout.
- A 24Pin BTB MIPI connection matches the host architecture.
- Broad scene coverage is more important than minimizing lens distortion.
Confirm Before Sampling
- Actual scene width and working distance.
- Smallest target that must remain usable within the D120° image.
- Whether the specified wide-angle distortion is acceptable or requires host-side correction.
- Host processor and OV48B2Q RAW10 support.
- MIPI electrical configuration and 24Pin connector definition.
- Required FPC routing, bend area and available internal path.
- Focus architecture and intended focus range.
- Whether native 48MP capture or 4K30 is the primary operating mode.
Choosing This Model Within the 8K Camera Module Series
SF-SC48B20-3030524548-B V1.0 is the wide-angle long-FPC OV48B2Q direction within the 8K Camera Module Series.
Choose this model when the project needs more than a standard 48MP MIPI camera: the camera position is mechanically constrained, broad scene coverage is important, and the sensor head must be connected to the host through a longer flexible structure.
Related Models
OV48B2Q D80.1° 20Pin MIPI – SF-SC48B2Q-C6102-B V3.0
Consider this model when lower optical distortion and a more conventional FOV are more important than maximum scene coverage, and the host uses a 20Pin BTB connection.
OV48B2Q D80.1° 30Pin MIPI – SF-SC48B2Q-SP153E-B V1.0
Consider this model when the same OV48B2Q RAW platform is required with standard-angle optics and a 30Pin BTB host architecture.
Key Specifications
| Specification | Details |
|---|---|
| Model | SF-SC48B20-3030524548-B V1.0 |
| 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 |
| HDR | Supported |
| PDAF | Supported |
| Output Format | 10bit RAW |
| Focus | VCM Autofocus* |
| Field of View | D120° × H96° × V73.8° |
| TV Distortion | < −14.12% |
| Interface | MIPI |
| Connector | 24Pin BTB |
| Mechanical Direction | Long-FPC Design |
SincereFirst Customization
Wide-Angle Lens and FOV
The standard direction provides D120° × H96° × V73.8° coverage. A different optical configuration can be evaluated when the project needs a larger target image, narrower scene coverage or reduced distortion.
FPC and Mechanical Layout
The long-FPC structure is intended for devices where the optical opening and host PCB are physically separated. FPC length, routing direction, bend area and connector position can be evaluated around the actual enclosure architecture.
MIPI and 24Pin BTB Integration
The standard direction uses a 24Pin BTB MIPI connection. Pin definition, host compatibility and MIPI configuration should be confirmed before the main-board layout is finalized.
Focus and RAW Image Processing
The required focus configuration and RAW10 imaging pipeline should be evaluated together with working distance, host ISP
support and any wide-angle distortion correction required by the final application.
Final configuration should be validated with the actual host platform, enclosure, optics, software, and lighting environment before sampling.
FAQ
When is D120° more useful than the D80.1° OV48B2Q modules?
Choose D120° when the device needs to see substantially more of the scene from one camera position. D80.1° is generally more suitable when keeping the target larger in the frame and controlling distortion are more important.
Does the 48MP sensor compensate for the smaller target size caused by the wider FOV?
It can provide more native pixels to work with, but it does not remove the optical trade-off. A wider FOV still makes the same target occupy a smaller proportion of the frame. Target distance and minimum required target pixels should be checked before selection.
Is the listed negative distortion value a problem?
The negative value indicates barrel-type distortion associated with the wide-angle optical configuration. Whether it is acceptable depends on the visual task. Some recognition or observation systems can tolerate it, while measurement-oriented systems may require correction or a narrower lens.
Why choose a long-FPC design?
A long FPC is useful when the sensor needs to sit near the camera opening while the host connector must remain farther inside the device. It solves a mechanical-layout problem rather than changing the sensor’s image capability.
Can this module be connected directly to any MIPI processor?
No. Sensor driver support, MIPI electrical configuration, RAW10 handling, connector pinout and ISP compatibility all need to match the host platform.
When should I choose one of the standard-angle OV48B2Q versions instead?
Choose the D80.1° versions when the project does not need extreme scene coverage and places greater value on lower distortion, a larger target image or a more conventional short-FPC connector architecture.
Evaluate This Module for Your Device
Share your scene width, target size and distance, acceptable distortion, host processor, 24Pin MIPI conditions and required FPC routing. SincereFirst can evaluate whether the D120° long-FPC configuration or a narrower OV48B2Q module is more suitable before sampling.
Send Inquiry
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Description:
The Sony IMX678 is an advanced CMOS image sensor designed primarily for security and surveillance applications. It boasts an 8.4 MP resolution with a pixel pitch of 2.0 µm, offering high-quality imaging performance. Built on the STARVIS 2 platform, it integrates cutting-edge technologies such as DOL HDR, Clear HDR, and NIR Enhanced to enhance image clarity in various lighting conditions.
This 1/1.8-inch format sensor measures 8.86 mm diagonally and provides a square pixel array with 8.40 million effective pixels. Its efficient power consumption is supported by a triple power supply configuration, which includes analog 3.3 V, digital 1.1 V, and interface 1.8 V. This setup ensures optimal performance while minimizing energy use.
Incorporating these technologies, the IMX678 is ideal for high-performance MIPI camera module applications, especially in scenarios demanding clear and stable images. Its capability to function effectively at 60fps makes it a perfect fit for 8MP camera modules and surveillance systems that require fast frame rates. Additionally, its low power consumption makes it a suitable option for long-term surveillance applications.
With its ability to deliver outstanding image quality even under challenging conditions, the Sony IMX678 sensor also supports higher-end solutions such as 4K camera modules, making it a versatile choice for both basic and advanced security systems. This sensor’s combination of high resolution, powerful HDR capabilities, and low power requirements positions it as a premium option for modern surveillance and imaging solutions.
key features:
High Resolution: The Sony IMX678 features an 8.4 MP resolution with a 2.0 µm pixel pitch
Imaging Technologies: It incorporates DOL HDR, Clear HDR, and NIR Enhanced technologies, even in low light environments also clear.
Power Consumption: The sensor operates with a triple power supply (3.3 V analog, 1.1 V digital, 1.8 V interface) and maintains low power usage.
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FAQ
Q1: Are you factory or trade company? A1: We are factory and have our own production line with 10 levels of dust-free workshops professional trained production workers.
Q2: What can you customize with our camera module? A2: FPC length, module shape, module head size, lens holder, imaging direction, pinout, connector, VCM, lens, Firmware and so on.
Q3: What is your camera module custom requirements flow? A3: Camera module / Board camera customized process insight With hundreds of camera module application, the standard camera modules can’t meet each specific requirement, so customization process comes with necessity and popularity, the hardware and firmware modification, including module dimension, lens view angle, auto/fixed focus type and lens filter, to empower the innovation. Non-recurring engineering completely covers the research, development, design for producing a new product. For saving the developing time and cost, SINCERE FIRST provides the custom camera module service based on our standard camera module solution. · Customized requirements flow 1. You can provide drawings or samples, as well as request documentation and developed by our engineering staff. 2.Communication or Meeting 3. We will communicate with you in detail to determine somewhat product you need and try to set the most suitable product for you according to your needs. 4.Sample Development 5.Determine the details of the development sample and the delivery time. Communicate at any time to ensure smooth progress. 6. Sample Testing 7. Test and age on your application, feedback test results, no need to modify, mass production.
Q4: What operating system does your camera module support? A4: Our camera module can support Windows, Mac-IOS, Android and Self-developed Software.
Q5: Which software / development platform do your camera modules support? A5: Arduino, ESP32, Raspberry Pi, NVIDIA, Ambarella, RK(Rockchip), MTK(MediaTek Inc.), Qualcomm, ATI Q6: How long does it take to develop a new camera module? A6: Typically around 7–10 days from start date.
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