S5KGM1ST 48MP RAW10 MIPI Autofocus Camera Module for Embedded Imaging Systems
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S5KGM1ST 48MP MIPI autofocus camera module with 4-in-1 pixel, HDR, PDAF, RAW10 output, D79.4° FOV and 30Pin BTB integration for embedded imaging devices.
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Price is for reference only. Please contact us for the latest quotation.

S5KGM1ST 48MP RAW10 MIPI Autofocus Camera Module for Embedded Imaging Systems
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S5KGM1ST 48MP RAW10 MIPI Autofocus Camera Module for Embedded Imaging Systems
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Introduction
SF-SCGM1-A85-B is a 48MP MIPI Camera Module designed for embedded devices that require high-resolution RAW imaging, VCM Autofocus and direct 30Pin BTB integration.
Based on the S5KGM1ST CMOS sensor, it combines a 1/2-inch optical format, 0.8μm pixel size, 4-in-1 pixel architecture, HDR and PDAF with 10bit RAW output. The module uses a D79.4° optical configuration with TV distortion below 1.5%, providing a balanced imaging direction for systems that need useful scene coverage without moving to an ultra-wide lens.
Its main value within the 8K Camera Module Series is the combination of 48MP sensor capability, 4-in-1 imaging, Autofocus and a compact 30Pin RAW MIPI architecture.
Applications in Real Devices
Embedded AI Recognition Devices
For AI systems that need detailed source images before recognition or classification, RAW10 output allows the host processor to retain control over the image-processing pipeline.
The 48MP sensor direction provides additional spatial information when smaller features or cropping flexibility matter to the algorithm.
High-Resolution Inspection Equipment
For embedded inspection devices observing printed details, components or surface features, the 48MP sensor provides a high-detail image source while the D79.4° lens maintains a more controlled view than an ultra-wide configuration.
VCM Autofocus is useful when the inspection distance is not completely fixed.
Smart Imaging Terminals
Devices that encounter objects at different distances can benefit from Autofocus while retaining direct MIPI integration with the main processor.
This makes the module suitable for products where both focus flexibility and host-side image tuning are required.
Compact OEM Embedded Cameras
The 30Pin BTB interface provides a defined connection direction for compact camera assemblies integrated directly into the device mainboard.
Connector placement, FPC routing and available optical height should be evaluated together with the host PCB before the enclosure design is finalized.
Project Evaluation Guide
Consider This Model When
- A 48MP S5KGM1ST sensor platform is preferred.
- RAW10 output is required for host-side ISP processing.
- 4-in-1 pixel operation is relevant to the imaging strategy.
- VCM Autofocus is needed for variable object distances.
- HDR and PDAF need to be supported by the imaging architecture.
- D79.4° coverage with low distortion matches the visual task.
- A 30Pin BTB MIPI interface fits the host-board design.
Confirm Before Sampling
- Host processor support for S5KGM1ST.
- MIPI lane and electrical configuration.
- RAW10 and ISP compatibility.
- How the project intends to use the 48MP and 4-in-1 imaging modes.
- Required Autofocus working-distance range.
- Target size and required FOV.
- 30Pin connector definition and FPC routing.
- Image tuning requirements for HDR, color and focus behavior.
Choosing This Model Within the 8K Camera Module Series
SF-SCGM1-A85-B is the S5KGM1ST 30Pin Autofocus RAW MIPI direction within the 8K Camera Module Series.
Choose this model when the project requires a Samsung 48MP sensor platform with 4-in-1 pixel architecture, RAW10 output and VCM Autofocus, while the hardware uses a 30Pin BTB connection.
Compared with the 30Pin OV48B2Q or IMX582 models in the same Series, the main decision should not be based only on the common 48MP resolution. The sensor platform, ISP support, Autofocus implementation and host-side driver resources are more important when selecting between these MIPI modules.
Related Models
OV48B2Q 48MP 30Pin MIPI – SF-SC48B2Q-SP153E-B V1.0
Consider this model when the project prefers the OV48B2Q sensor platform while retaining RAW10, Autofocus and a 30Pin BTB integration direction.
IMX582 48MP 30Pin MIPI – SF-SC582-M100CE-B
Consider this model when the host platform is better aligned with the IMX582 sensor ecosystem and requires a comparable 48MP RAW MIPI camera architecture.
Key Specifications
| Specification | Details |
|---|---|
| Model | SF-SCGM1-A85-B |
| Sensor | S5KGM1ST CMOS |
| Resolution | 48MP / 8000 × 6000 |
| Sensor Size | 1/2 inch |
| Pixel Size | 0.8μm × 0.8μm |
| Pixel Technology | 4-in-1 Pixel |
| HDR | Supported |
| PDAF | Supported |
| Output Format | 10bit RAW |
| Focus | VCM Autofocus |
| Lens Structure | 6P |
| EFL | 4.74mm |
| F Number | F1.79 ±5% |
| Field of View | D79.4° |
| TV Distortion | <1.5% |
| Interface | MIPI |
| Connector | 30Pin BTB |
| EEPROM | CN24C64AH |
| AF Driver IC | DW9800W |
SincereFirst Customization
Lens and Field of View
The standard optical direction uses a 6P lens with D79.4° coverage. FOV, focal length and lens structure can be evaluated according to working distance, target size and required scene width.
Autofocus Configuration
VCM Autofocus is the standard focus architecture. Focus behavior can be evaluated according to target-distance range, capture sequence and host-side Autofocus control requirements.
30Pin MIPI and FPC Integration
The module uses a 30Pin BTB MIPI direction. Connector definition, FPC routing and host-board compatibility should be confirmed together before the product PCB and enclosure are finalized.
RAW10 and ISP Processing
RAW10 output allows the host to control the final image pipeline. Sensor driver support, HDR processing, Autofocus control and
image tuning can be evaluated according to the selected processor 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 S5KGM1ST instead of another 48MP sensor?
The decision should be based on host-platform support, ISP resources, sensor architecture and image requirements rather than megapixel count alone. If the processor already supports the S5KGM1ST platform, this module can provide a more direct integration path.
What does the 4-in-1 pixel architecture mean for project selection?
It allows groups of sensor pixels to be used together in a combined imaging mode. This provides a different imaging direction from always using the full native sensor resolution, but the exact output strategy depends on sensor configuration and host ISP implementation.
Does the 30Pin connector make this interchangeable with other 30Pin MIPI modules?
No. The same pin count does not guarantee the same pin definition, voltages, MIPI configuration or sensor control. Host-board compatibility must be checked model by model.
Why is the D79.4° FOV useful for this type of module?
It provides a moderate-wide view without the much stronger distortion and reduced target size associated with ultra-wide optics. Whether it is appropriate still depends on working distance and the amount of scene the device needs to capture.
Does RAW10 require more development than a USB camera?
Yes. A RAW MIPI module normally requires sensor driver support, MIPI configuration, ISP processing and image tuning on the host platform. It is intended for deeper embedded integration rather than plug-and-play UVC operation.
How should I choose between this model and the OV48B2Q 30Pin version?
Start with host sensor support and ISP resources. If both are supported, compare optical requirements, Autofocus implementation, mechanical layout and the image characteristics required by the device rather than choosing from resolution alone.
Evaluate This Module for Your Device
Share your host processor, S5KGM1ST driver/ISP status, MIPI and 30Pin conditions, working-distance range, required FOV and image-output requirements. SincereFirst can evaluate whether this 48MP Autofocus RAW configuration matches the device 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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