

5MP 2.4mm M12 Wide Angle Lens with 150° diagonal FOV, F2.8 aperture, 3.99mm BFL, 0.2m M.O.D., and 7G+IRCF construction for compact wide-area imaging.
S02412514828F – 2.4mm High-Resolution Wide Angle Lens with Built-In Filter, 5-Megapixel M12/S-Mount HD lens, fixed F2.8 aperture Security Surveillance Lens.
| IMAGE FORMAT | Max Φ7.5mm |
| FOCAL LENGTH | 2.4mm |
| F.O.V.(AR1335) | 150°(D=5.76) |
| 120°(H=4.63) | |
| 86°(V=3.43) | |
| DISTORTION | <-39% (H) |
| RESOLUTION | 5 MP |
| APERTURE | F2.8 |
| MOUNT | M12x0.5 |
| IRIS | Fixed |
| M.O.D. | 0.2m |
| B.F.L. | 3.99mm |
| T.T.L. | 29.29mm |
| STRUCTURE | 7G+IRCF |
This 5MP 2.4mm M12 Ultra Wide Angle Lens is designed for compact cameras that require a broad field of view with 5MP imaging capability. With a 150° diagonal FOV on the AR1335 sensor, F2.8 aperture, 0.2m minimum object distance, and 3.99mm back focal length, it provides wide-area image coverage for embedded vision, smart security, robotics, and environmental perception applications.
The M12×0.5 mount supports compact camera integration, while the 7G optical construction with IRCF provides a practical optical configuration for visible-light imaging systems. For more information about M12 optical solutions, explore our M12 Lenses.
For selecting a suitable focal length according to sensor size and required coverage, see our Lens Selection Guide or use the Focal Length Calculator.
This 2.4mm M12 Wide Angle Lens is designed for applications where wide-area coverage is more important than geometric accuracy. Its 150° diagonal FOV allows a compact camera to capture a large surrounding area without requiring a long-distance installation position.
Designed for wide-area smart security and environmental perception applications, the lens can be integrated into compact monitoring cameras, embedded vision modules, and robotic perception systems where a broad scene needs to be captured within a limited installation space.
Typical applications include:
Because the horizontal distortion is specified as < -39%, this lens is better suited to scene coverage and environmental perception than precision measurement applications where accurate object geometry is critical. For applications requiring controlled geometric distortion, explore our Low Distortion Lens solutions.
The lens can be integrated into:
For broader application requirements, see our Machine Vision Solutions, Robotics Vision Solutions, and Smart Security Solutions.
Q: What is the maximum field of view of this 2.4mm M12 lens?
A: The lens provides a 150° diagonal FOV, with 120° horizontal and 86° vertical coverage when used with the specified AR1335 sensor.
Q: Is this lens suitable for fisheye applications?
A: Yes. Its 150° diagonal FOV and strong wide-angle characteristics make it suitable for fisheye-style wide-area imaging and environmental perception applications.
Q: Is this a low-distortion M12 lens?
A: No. The specified horizontal distortion is below -39%, so the lens should be selected for wide-area coverage rather than precision measurement or applications requiring highly controlled image geometry.
Q: What sensor is this lens designed for?
A: The listed FOV specification is based on the AR1335 sensor. The maximum supported image format is Φ7.5mm.
Q: What does the 3.99mm B.F.L. mean for camera integration?
A: A 3.99mm back focal length provides a relatively short optical distance between the rear optical system and the image plane, which can be useful for compact camera module integration.
Q: Does the IRCF specification mean the lens is IR corrected?
A: No. IRCF refers to an IR cut filter component. It should not be interpreted as an IR-corrected optical design. If infrared imaging requires refocusing control across visible and near-infrared wavelengths, an explicitly IR-corrected lens should be selected.
Q: Can this lens be customized for OEM projects?
A: TOWIN can evaluate customized optical requirements such as focal length, sensor format, field of view, mechanical dimensions, and optical performance according to the project requirements. Contact our engineering team to discuss a specific camera design.
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