Raspberry Pi FPC Camera Module Series for Embedded Vision Devices
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Explore Raspberry Pi FPC camera modules from 5MP to 12MP with Autofocus, Fixed Focus, wide-angle, telephoto and PCB adapter options for embedded vision projects.
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Price is for reference only. Please contact us for the latest quotation.

Raspberry Pi FPC Camera Module Series for Embedded Vision Devices
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Raspberry Pi FPC Camera Module Series for Embedded Vision Devices
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Introduction
Raspberry Pi vision devices may need very different camera configurations depending on viewing distance, scene width and internal structure. The SincereFirst Raspberry Pi FPC Camera Module Series covers 5MP to 12MP MIPI camera routes with Autofocus, Fixed Focus, wide-angle and telephoto optics. Models are also available with direct FPC integration or a PCB adapter structure, helping developers evaluate the camera according to the actual robotics, observation or embedded imaging requirement rather than resolution alone.
Applications in Real Devices
Robotics and Mobile Vision
Robotics systems often observe objects at changing distances while the camera or platform moves. Autofocus models can be evaluated where the target position changes, while wide-angle optics help increase scene coverage. The final Raspberry Pi board, camera connector, software environment and focus-control route should be confirmed before sampling.
Long-Distance Observation
Some Raspberry Pi projects need to observe a smaller target farther from the device rather than capture a broad scene. A telephoto Fixed-Focus route can provide a narrow field of view for this requirement, provided that mounting stability and target distance are well controlled.
Wide-Area Embedded Imaging
Wide-angle modules can support embedded observation devices that need more scene coverage from a limited mounting position. Fixed Focus may suit predictable distances, while Autofocus can be considered when near-to-far subjects are expected.
Prototype and OEM Development
FPC modules allow direct camera integration, while selected configurations can also use a PCB adapter. This gives developers different mechanical routes between early Raspberry Pi prototyping and a more integrated OEM structure.
How to Choose the Integration Direction
Resolution
Choose 5MP when cost and basic Autofocus imaging are the priority, 8MP for a telephoto route, or 12MP when more image detail and wide-angle coverage are required.
Focus Type
Use VCM Autofocus when working distance changes. Fixed Focus is more relevant when the target plane or observation distance remains predictable.
Optical Coverage
The Series includes medium FOV, narrow telephoto and D120° wide-angle directions. Select the lens according to what the device actually needs to see.
FPC or PCB Adapter
Direct FPC integration reduces additional board structure. A PCB adapter configuration can be considered when the project needs an intermediate connection board during prototype or system integration.
Host Integration
Raspberry Pi board version, camera connector, FPC orientation, RAW format and software support should be checked before model selection.
Featured Models
Model | Sensor | Product Direction | Reason to Consider |
SF3V5640BA-RP | OV5640 | Raspberry Pi robotics and general embedded vision | Consider this model when 5MP resolution is sufficient and the project prioritizes VCM Autofocus and a straightforward MIPI FPC route. |
SF3X219BA-RP V1.1 | IMX219 | Long-distance Raspberry Pi observation | Consider this model when the target occupies a small area at a longer viewing distance and a 46mm / D5.65° telephoto route is required. |
SF4V708BA-RP V1.0 FF | IMX708 | Fixed-position wide-area vision devices | Consider this model when the device requires 12MP detail and D120° coverage with a stable Fixed-Focus optical configuration. |
SF4V708BA-RP V1.0 FF + PCB | IMX708 | Raspberry Pi prototypes and adapter-board integration | Consider this model when the same 12MP wide-angle Fixed-Focus route is required together with a standard PCB adapter. |
SF4V708BA-RP V1.0 | IMX708 | Robotics and variable-distance embedded vision | Consider this model when D120° scene coverage and VCM Autofocus are both required as target distance changes. |
SincereFirst Customization
Lens and FOV
Medium-angle, telephoto and wide-angle optical routes are available across the Series. Lens selection can be evaluated according to target size, viewing distance and enclosure opening.
Focus Configuration
Depending on the model, VCM Autofocus or Fixed Focus can be selected. The final configuration should match whether the working distance changes during normal operation.
FPC and Connector
FPC length, contact direction, connector route and internal cable layout can be evaluated according to the selected Raspberry Pi board and enclosure structure.
PCB Adapter
Selected IMX708 configurations can be supplied with or without a PCB adapter. The structure can be chosen according to prototype, connector and internal mounting requirements.
RAW and Host Integration
RAW format, camera connector, host software and sensor-control requirements can be reviewed with the target Raspberry Pi platform before sampling.
Sample Validation
The final configuration should be tested with the actual host, enclosure, optics, lighting, software, and operating mode before production decisions.
FAQ
Should I choose Autofocus or Fixed Focus?
Choose Autofocus when the camera-to-target distance changes frequently. Fixed Focus is more suitable when the device operates around a predictable observation distance.
Which model is intended for long-distance viewing?
SF3X219BA-RP V1.1 uses a 46mm Fixed-Focus telephoto lens with D5.65° coverage and is the narrow-FOV option in this Series.
What is the difference between the two IMX708 Fixed-Focus versions?
SF4V708BA-RP V1.0 FF uses the camera-module route without the PCB adapter as standard. SF4V708BA-RP V1.0 FF + PCB includes the PCB adapter as its standard structure.
Are all Raspberry Pi boards automatically compatible?
No. The Raspberry Pi board, camera connector, FPC route, software and sensor-control environment should be confirmed before sampling.
Evaluate a Raspberry Pi Camera Module for Your Device
Share your Raspberry Pi board, target distance, required FOV, focus type, connector route and enclosure limits for model selection and project evaluation.
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.











