

0.9mm M7 miniature wide angle lens with up to 140° FOV, VGA resolution, F2.5 aperture and 7.4mm T.T.L. for compact vision modules.
M700911008025 is 0.9mm Ultra-Wide Angle CCTV lens with F2.5 aperture, and M7x0.35 mount for specialized surveillance or imaging applications.
| IMAGE FORMAT | 1/9″, 1/10″ |
| FOCAL LENGTH | 0.9mm |
| F.O.V.@OV6930 | 115°(D=1.73) |
| 80°(H=1.22) | |
| 80°(V=1.22) | |
| F.O.V.@OV7675 | 140°(D=2.0) |
| 110°(H=1.6) | |
| 80°(V=1.2) | |
| RESOLUTION | VGA |
| DISTORTION | <-48% |
| APERTURE | F2.5 |
| MOUNT | M7x0.35 |
| M.O.D. | 0.2m |
| T.T.L. | 7.4mm |
| STRUCTURE | 4P |
This 0.9mm M7 wide angle lens is designed for compact camera modules requiring an exceptionally broad field of view in a miniature optical package. Supporting 1/9″ and 1/10″ image formats, it delivers up to 140° diagonal FOV with VGA resolution, making it suitable for panoramic sensing, embedded vision, and space-constrained imaging applications.
The lens provides different field-of-view performance depending on the image sensor. Engineers selecting a miniature wide angle lens can use the Sensor Guide to evaluate sensor format and optical compatibility.
This 0.9mm M7 ultra wide angle lens is designed for applications where maximizing scene coverage is more important than maintaining low geometric distortion. Its extremely short focal length and wide viewing angle allow a miniature camera module to capture a large area from a relatively limited installation position.
For compact embedded vision systems, the lens can provide broad visual coverage where conventional focal lengths would require a larger camera enclosure or multiple imaging modules. Its 140° diagonal FOV with the OV7675 sensor is particularly useful for applications requiring a wide perspective from a very small camera assembly.
The lens is also suitable for miniature panoramic sensing, compact monitoring modules, robotics perception, and visual awareness systems installed inside confined equipment. The <-48% distortion is characteristic of this wide-angle optical design and should be considered when the application requires geometric correction or image dewarping.
For applications where field of view must be calculated according to sensor size and installation distance, engineers can use the FOV Calculator to estimate the required optical configuration.
For broader embedded camera development requirements, the M7/M6/Miniature Lens range provides additional compact mounting options.
Designed for ultra-wide-angle embedded vision, miniature panoramic imaging, and compact environmental sensing applications.
Q: What is the focal length of this M7 wide angle lens?
A: The lens has a 0.9mm focal length, providing an exceptionally wide viewing angle for miniature camera modules.
Q: What field of view does the 0.9mm lens provide?
A: With the OV6930 sensor, the lens provides 115° diagonal, 80° horizontal, and 80° vertical FOV. With the OV7675 sensor, it provides up to 140° diagonal, 110° horizontal, and 80° vertical FOV.
Q: Is this M7 lens a wide angle lens?
A: Yes. Its 0.9mm focal length, up to 140° diagonal FOV, and <-48% distortion indicate a strong ultra-wide-angle optical design.
Q: Is this lens suitable for wide angle applications?
A: Yes. Wide-angle imaging is one of its primary characteristics. The very short focal length enables broad scene coverage from a compact camera module.
Q: What sensor sizes are compatible with this lens?
A: The lens is designed for 1/9″ and 1/10″ image formats, with specific FOV performance depending on the selected image sensor.
Q: What is the distortion of this wide angle lens?
A: The specified distortion is below -48%. This relatively high barrel distortion is associated with the lens’s ultra-wide-angle optical design and should be considered when image correction is required.
Q: What is the mounting specification?
A: The lens uses an M7 × 0.35 mount, making it suitable for miniature camera modules and space-constrained embedded optical systems.
Q: What applications are suitable for this 0.9mm M7 lens?
A: It can be used for miniature panoramic imaging, embedded vision, robotics perception, compact monitoring modules, IoT cameras, and other applications requiring a very wide field of view in a small optical package.
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