OV5640 CMOS Sensor 5MP Autofocus DVP Camera Module for ESP32 Object Imaging
$1.00
OV5640 5MP ESP32 camera module with VCM Autofocus, D68.7° optics, a 10cm-to-infinity working range and a 24-pin DVP interface.
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Price is for reference only. Please contact us for the latest quotation.

OV5640 CMOS Sensor 5MP Autofocus DVP Camera Module for ESP32 Object Imaging
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OV5640 CMOS Sensor 5MP Autofocus DVP Camera Module for ESP32 Object Imaging
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Introduction
SF4V564085AFBY-ESP is a 5MP DVP camera module for ESP32 devices where important subjects appear at changing distances. Its VCM focus structure covers a stated 10cm-to-infinity working range, while the D68.7° lens provides a more controlled field of view than the wide and ultra-wide alternatives in the Series. The model is positioned for projects where focus flexibility matters more than maximum scene coverage.
Applications in Real Devices
Variable-Distance Object Capture
Interactive devices and robotics platforms may encounter objects at substantially different distances during normal use. A Fixed-
Focus camera can become limiting when one optical setting cannot keep the important target acceptably sharp across that range. The VCM route provides focus adjustment from approximately 10cm to infinity, while the D68.7° field of view keeps more image area concentrated on the target than the ultra-wide models. Autofocus behavior should be tested under representative lighting and target contrast.
Interactive ESP32 Devices
The module can support devices that capture objects or users at different positions rather than operating around one fixed focus plane.
Mobile Vision Prototypes
The AF route can be evaluated when device motion or changing subject distance makes Fixed Focus less practical.
Project Evaluation Guide
Consider This Model When
- Important targets appear at changing distances.
- 5MP detail is required.
- D68.7° coverage matches the scene.
- VCM focus control can be supported.
Confirm Before Sampling
- Minimum and maximum target distance.
- ESP32 focus-control implementation.
- Lighting and target contrast.
- DVP and 24-pin mapping.
- Available processing resources.
Choosing This Model Within the ESP32 Camera Module Series
SF4V564085AFBY-ESP is the variable-distance 5MP route in the Series. Projects with a predictable target range and moderate FOV can compare SF4V564088BY-ESP. Projects requiring maximum environmental coverage rather than focus flexibility can evaluate SF4V564088BYC-ESP C2.0.
Related Models
OV5640 – SF4V564088BY-ESP: Fixed-Focus alternative for stable working distances with D76.6° standard coverage.
OV5640 – SF4V564088BYC-ESP C2.0: Ultra-wide Fixed-Focus alternative when broad D150° environmental coverage is more important than Autofocus.
Key Specifications
| Specification | Details |
|---|---|
| SincereFirst Model | SF4V564085AFBY-ESP |
| Sensor | OV5640 CMOS |
| Resolution | 5MP / 2592 × 1944 |
| Video Output | 1080P@30FPS |
| Sensor Size | 1/4 inch |
| Pixel Size | 1.4μm × 1.4μm |
| Interface | 24-Pin Gold-Finger DVP |
| Focus Type | VCM Autofocus |
| EFL | 0.95 ±5%mm |
| F.No | F2.8 ±5% |
| Field of View | D68.7° |
| Working Distance | 10cm–Infinity |
| TV Distortion | <1.5% |
| Platform | ESP32 compatible |
SincereFirst Customization
Lens and FOV
The standard configuration provides D68.7° coverage. Alternative optical directions can be evaluated according to target size and scene width.
VCM Autofocus Configuration
VCM focus is used for the 10cm-to-infinity operating direction. Focus behavior should be evaluated with representative targets, lighting and host control.
FPC and Connector
FPC orientation and 24-pin connection can be coordinated with the ESP32 board and enclosure layout.
DVP and Focus Integration
DVP signal mapping, focus control and host-side capture should be reviewed together because Autofocus adds an integration requirement beyond basic Fixed-Focus imaging.
Final configuration should be validated with the actual host
platform, enclosure, optics, software, and lighting environment before sampling.
FAQ
When does Autofocus provide enough value to choose this model over the Fixed-Focus OV5640 version?
Autofocus becomes useful when important targets routinely appear at different distances. If nearly all targets remain around one predictable range, a Fixed-Focus version may provide a simpler integration route.
Why should Autofocus be tested inside the final device instead of only on a bench?
Lighting, target contrast, movement and host-side focus control can all change real focusing behavior. A representative device test gives a more useful result than an open-module demonstration.
Is Autofocus automatically better than an ultra-wide Fixed-Focus camera for robotics?
No. They solve different problems. Autofocus handles changing target distance, while ultra-wide optics increase environmental coverage. The correct choice depends on whether focus flexibility or scene width is the main requirement.
What information should be provided before evaluating an AF sample?
Provide the minimum and maximum target distances, subject size, typical lighting, required FOV, ESP32 platform and available camera space.
Evaluate This Module for Your Device
Share your target-distance range, scene width, ESP32 platform and focus requirements for project evaluation.
Send Inquiry
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