HD Image ESP32 Camera Module Series for Embedded Vision Devices
¥1.00
Explore 2MP to 5MP ESP32 camera modules with DVP interfaces, Fixed Focus, VCM Autofocus, M12 lenses and wide-angle options for embedded vision projects.
—————————————————————————————–
Price is for reference only. Please contact us for the latest quotation.

HD Image ESP32 Camera Module Series for Embedded Vision Devices
¥1.00Request a Call Back

HD Image ESP32 Camera Module Series for Embedded Vision Devices
¥1.00Ask a Question
Introduction
ESP32 Camera Module Series provides 2MP, 3MP and 5MP DVP camera options for embedded vision devices using ESP32 platforms. The Series covers moderate, wide and ultra-wide viewing angles, Fixed-Focus and VCM Autofocus configurations, and both compact and M12 lens structures. Instead of selecting a camera by resolution alone, developers can compare the models according to scene coverage, target distance, lens structure and focus requirements.
Applications in Real Devices
Robotics and Mobile Vision
ESP32-based robotics may need basic visual feedback for environmental observation, object positioning or remote monitoring without moving to a larger imaging platform. Different models in this Series allow developers to balance resolution, scene coverage and focus behavior according to how much of the environment must be visible and whether the target distance changes during operation.
Compact IoT Imaging Devices
Compact connected devices often have limited camera space and processing resources. The 24-pin DVP structure provides a direct embedded-camera route, while 2MP to 5MP options allow resolution to be selected according to the actual image-detail requirement.
Wide-Area Visual Monitoring
Wide and ultra-wide models can capture more of the surrounding scene from one camera position. These routes are useful when scene coverage matters more than concentrating pixels on a small distant target.
Interactive Object Capture
VCM Autofocus can be evaluated when objects appear at different distances and one Fixed-Focus position cannot cover the normal operating range.
How to Choose the Integration Direction
Resolution
Choose 2MP for basic embedded imaging, 3MP when additional image detail is required without moving directly to 5MP, or 5MP when the device needs more spatial detail.
Field of View
The Series ranges from moderate D68.7°–D76.6° views to D130°–D150° wide-angle configurations. Select according to how much scene the device needs to capture from one camera position.
Focus Configuration
Most models use Fixed Focus for predictable target distances. SF4V564085AFBY-ESP provides a VCM Autofocus route for applications with changing working distances.
Lens Structure
SF4V2640BA-ESP-M12 provides an M12 lens structure for projects where lens flexibility matters. Other models use more compact fixed-lens structures.
DVP and ESP32 Integration
All seven models use a 24-pin gold-finger DVP route. Pin definition, ESP32 hardware configuration, software support and available processing resources should be checked before sampling.
Featured Models
Model | Sensor | Main Device Direction | Reason to Consider |
|---|---|---|---|
| SF5G2145BC-ESP V1.0 | GC2145 | Basic ESP32 Imaging | Consider this model when 2MP resolution and D73° coverage are sufficient and the main target is around the calibrated 40cm focus position. |
| SF4V2640BA-ESP-M12 | OV2640 | ESP32 Robotics and Lens- Flexible Prototypes | Consider this model when an ESP32 project needs an M12 lens structure, D130° coverage and a 20cm-to-infinity working range. |
| SF4V2640BA-ESP-S V1.0 | OV2640 | Compact Wide-Area ESP32 Devices | Consider this model when compact optics, D135° coverage and closer 10cm-to-infinity imaging matter more than M12 lens flexibility. |
| SF3V3660BY-ESP | OV3660 | General ESP32 Embedded Imaging | Consider this model when 2MP detail is insufficient but the project does not require the larger image data or wider optics of the 5MP routes. |
| SF4V564088BY-ESP | OV5640 | Higher-Detail ESP32 Monitoring | Consider this model when 5MP detail is required with a moderate D76.6° view and a stable Fixed-Focus operating range. |
| SF4V564088BYC-ESP C2.0 | OV5640 | Wide-Area ESP32 Vision | Consider this model when one camera position must capture a very broad D150° scene and a Fixed-Focus optical route is appropriate. |
| SF4V564085AFBY-ESP | OV5640 | Variable-Distance ESP32 Object Imaging | Consider this model when 5MP detail is required and target distance changes enough that one Fixed-Focus setting is insufficient. |
SincereFirst Customization
Lens and FOV
Different models cover moderate, wide and ultra-wide viewing angles. Lens parameters can be evaluated according to the target scene, device opening and required visible area.
Focus Configuration
Fixed Focus is the standard direction for most models, while a VCM Autofocus route is available for variable-distance applications. Focus selection should follow the actual target-distance range.
FPC and 24-Pin Connector
FPC structure, cable direction and 24-pin gold-finger connection can be evaluated according to the ESP32 board position and enclosure layout.
DVP and Platform Integration
DVP pin assignment, host configuration and software support should be reviewed with the intended ESP32 platform before sampling.
FAQ
How should I choose between the 2MP, 3MP and 5MP models?
Start with the visual task rather than the highest available resolution. Use 2MP when basic scene observation is sufficient, 3MP when additional detail is needed, and 5MP when smaller features or larger capture areas must retain more image information.
When does a wide-angle ESP32 camera become the wrong choice?
Wide-angle optics are less suitable when the target is small and distant because the target occupies fewer pixels in the image. A narrower optical route may provide better useful detail in that situation.
What normally causes integration problems even when the module is marked ESP32 compatible?
Pin assignment, DVP timing, power rails, available GPIO resources, memory, frame-buffer requirements and software support can still differ between ESP32 designs. These conditions should be checked before the hardware layout is finalized.
What information should be provided before selecting a model?
Provide the ESP32 platform, target size, target distance, required scene width, focus requirement and available camera space. These conditions usually determine the correct model more reliably than resolution alone.
Evaluate a ESP32 Camera Module for Your Device
Share your ESP32 platform, target distance, required FOV, resolution, focus requirement and available camera space for model selection before sampling.
Send Inquiry
- 4K Camera Module (26)
- 4K FPC Camera Module (11)
- 4K USB Camera Module (13)
- Camera Module Connectors (1)
- Endoscope Camera Module (1)
- ESP32 Camera Module (1)
- FPC Camera Module (16)
- DVP Camera Module (2)
- MIPI Camera Module (14)
- Medical imaging module (3)
- Raspberry Pi Camera Module (6)
- USB Camera Module (15)
- 4K Camera Module
- 5MP Camera Module
- 8MP Camera Module
- 12MP Camera Module
- 13MP Camera Module
- 16MP Camera Module
- AI Camera Module
- Auto Focus Camera Module
- Camera Module
- Cmos Camera Module
- Cmos Camera Sensor
- Cmos Mipi Camera Module
- Cmos USB Camera Module
- Cmos UVC Camera Module
- Custom Camera Module
- DVP Camera Module
- Embedded Camera Module
- ESP32 Camera Module
- Fixed Focus Camera Module
- FPC Camera Module
- HD Camera Module
- HDMI Camera Module
- HDR Camera Module
- IMX219 Camera Module
- IMX274 Camera Module
- IMX298 Camera Module
- IMX317 Camera Module
- IMX377 Camera Module
- IMX415 Camera Module
- IMX577 Camera Module
- IMX678 Camera Module
- IMX708 Camera Module
- Industrial Camera Module
- MIPI Camera Module
- OEM Camera Module
- OV5640 Camera Module
- PCB Board
- Raspberry Pi Camera Module
- UHD Camera Module
- USB2.0 Camera Module
- USB3.0 Camera Module
- USB Camera Module
- UVC Camera Module
- UVC USB Camera Module
- Wide Angle Camera Module
Related Products
Explore SincereFirst 4K camera modules across MIPI FPC and USB integration directions. Compare real-device requirements, host processing, frame rate, optics, structure, and project evaluation needs.
—————————————————————————————–
Price is for reference only. Please contact us for the latest quotation.

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.
-7-450x253.jpg)

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.
Explore SincereFirst 4K MIPI FPC camera modules with RAW output, 4K@30fps and 4K@60fps options, Fixed Focus and autofocus, wide FOV, Raspberry Pi support, and project-level optical evaluation.
—————————————————————————————–
Price is for reference only. Please contact us for the latest quotation.
Explore SincereFirst 4K USB camera modules with USB 2.0 and USB 3.0 Type-C, 4K@15fps to 4K@60fps, MJPG/YUY2/H.264, autofocus, Fixed Focus, compact structures, and HDMI options.
—————————————————————————————–
Price is for reference only. Please contact us for the latest quotation.
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.
—————————————————————————————–
Price is for reference only. Please contact us for the latest quotation.
SincereFirst 0.1MP-200MP FPC Cmos MIPI DVP Camera Modules CSI Camera Modules










