PMS-LFHHH-3520M is a 35mm 10MP C-mount FA lens for 4/3-inch sensors, with a 22mm image circle, F2.0-F22 iris and low distortion.
The POMEAS PMS-LFHHH-3520M is a 35mm fixed focal FA lens designed for C-mount machine vision cameras with sensors up to 4/3 inch. It is rated for 10MP imaging and provides a Ø22 mm effective image circle, an adjustable F2.0-F22 manual iris, and lockable focus and aperture controls.
Compared with the 25mm model used on the same camera and at the same installation distance, the 35mm focal length provides a narrower field of view and places more camera pixels across a smaller inspection region. This makes it suitable for detailed component inspection, label and code reading, assembly verification, edge detection, and part-position checks where wider scene coverage is unnecessary.
Published distortion data is available for 4/3-inch, 1-inch, and 2/3-inch sensors, helping engineers evaluate the lens for geometry-sensitive inspection and calibrated positioning applications.
The PMS-LFHHH-3520M supports machine vision cameras with sensors up to the specified 4/3-inch format.
Its Ø22 mm effective image circle provides the image coverage required for the stated maximum sensor size. This makes the lens suitable for large-format C-mount cameras that cannot be fully covered by conventional 1-inch or 2/3-inch lenses.
The lens may also be used with smaller sensors. A smaller sensor captures a reduced central portion of the lens image and therefore produces a narrower field of view at the same working distance.
The 35mm focal length provides a more concentrated inspection area than 16mm or 25mm lenses used with the same sensor and working distance.
This can help:
Place more camera pixels across a small component
Reduce unnecessary background around the target
Inspect individual labels, connectors, terminals, holes, and edges
Maintain a greater camera-to-object distance for a selected field of view
Improve feature visibility when a shorter focal length captures too much area
A shorter focal length should be selected when the complete object or inspection area cannot fit into the 35mm field of view.
The lens is rated for 10MP machine vision imaging.
The megapixel rating should be evaluated together with the camera sensor dimensions and pixel size. Cameras with the same megapixel count can use different sensor formats and pixel pitches, placing different demands on the optical system.
Before confirming selection, review:
Active sensor dimensions
Camera pixel size
Required horizontal and vertical field of view
Smallest feature to detect
Required inspection accuracy
The product sheet specifies the following distortion values:
4/3-inch sensor: -0.56% at y = 11.0 mm
1-inch sensor: -0.43% at y = 8.0 mm
2/3-inch sensor: -0.23% at y = 5.5 mm
These values are relevant for edge detection, feature localization, part positioning, and calibrated image measurement.
The negative values indicate barrel-type geometric distortion at the stated image heights. Camera calibration and distortion correction should still be used when dimensional accuracy or coordinate positioning is required.
Published lens distortion is not equivalent to guaranteed system measurement accuracy.
The Ø22 mm effective image circle supports the stated 4/3-inch sensor format.
Image-circle diameter is an important compatibility parameter when selecting a lens for a large-format camera. Insufficient coverage may result in dark corners, incomplete use of the sensor, or reduced image quality near the edges.
The actual active sensor diagonal should still be confirmed because cameras using the same nominal optical-format name may have different active dimensions.
The manual F2.0-F22 iris allows the integrator to balance image brightness, exposure time, and depth of field.
Opening the iris allows more light to reach the sensor and may support shorter exposure times. Closing the iris can increase depth of field when the inspected object has moderate height variation, although stronger illumination may then be required.
The final aperture should be selected together with:
Camera exposure time
Object speed
Illumination intensity
Required depth of field
Acceptable image sharpness
The focus and iris adjustments include locking mechanisms.
After focus and aperture have been set, both controls can be secured to help reduce accidental movement during machine installation, camera handling, maintenance, or routine production operation.
This is useful for fixed inspection equipment that requires stable and repeatable image settings.
The product sheet provides complete diagonal, horizontal, and vertical angle-of-view values for three sensor formats.
For a 4/3-inch sensor:
Diagonal: 36.6°
Horizontal: 29.6°
Vertical: 22.4°
For a 1-inch sensor:
Diagonal: 25.9°
Horizontal: 20.8°
Vertical: 15.7°
For a 2/3-inch sensor:
Diagonal: 17.9°
Horizontal: 14.4°
Vertical: 10.8°
These values show how sensor size changes the captured scene even when the lens and working distance remain unchanged.
Model: PMS-LFHHH-3520M
Lens Type: Fixed focal machine vision FA lens
Resolution Rating: 10MP
Focal Length: 35 mm
Maximum Sensor Format: 4/3 inch
Effective Image Circle: Ø22 mm
Aperture Range: F2.0-F22
Camera Mount: C-Mount
Filter Thread: M40.5 × 0.5 mm
Back Focal Length in Air: 18.65 mm
Focus Adjustment: Manual, with locking mechanism
Iris Adjustment: Manual, with locking mechanism
Operating Temperature: -10°C to +50°C
Diagonal: 36.6°
Horizontal: 29.6°
Vertical: 22.4°
Diagonal: 25.9°
Horizontal: 20.8°
Vertical: 15.7°
Diagonal: 17.9°
Horizontal: 14.4°
Vertical: 10.8°
A smaller sensor uses a smaller central portion of the image circle and therefore captures a narrower field of view.
4/3-inch sensor: -0.56% at y = 11.0 mm
1-inch sensor: -0.43% at y = 8.0 mm
2/3-inch sensor: -0.23% at y = 5.5 mm
Applications involving dimensional inspection, coordinate positioning, or accurate edge measurement should include system calibration under the actual installation conditions.
The PMS-LFHHH-3520M is designed for C-mount machine vision cameras with sensors up to 4/3 inch.
It may also be used with compatible 1-inch and 2/3-inch cameras. When installed on a smaller sensor, the camera captures a narrower scene because it records a smaller area of the image circle.
Before confirming compatibility, check:
Camera model
Active sensor width and height
Sensor diagonal
Camera resolution
Pixel size
C-mount interface
Flange and adapter configuration
Camera housing dimensions
Available installation space
Filter requirements
Illumination wavelength
The 10MP rating does not automatically guarantee compatibility with every 10MP camera. Cameras with smaller pixels may require greater optical resolving performance than cameras with larger pixels and the same total resolution.
The Ø48.5 mm upper structure and M40.5 filter thread should also be checked against nearby lighting, brackets, protective covers, and machine components.
The actual linear field of view depends on:
Lens focal length
Active sensor dimensions
Working distance
Sensor aspect ratio
Focusing position
For the same camera:
Increasing the working distance increases the visible object area.
Reducing the working distance decreases the visible object area.
A 35mm lens captures a narrower scene than a 25mm or 16mm lens.
A 4/3-inch sensor captures a wider scene than a 1-inch or 2/3-inch sensor.
A narrower field of view places more camera pixels across the target.
The product sheet does not provide a confirmed focusing range or linear field-of-view values at specific working distances.
To confirm the actual inspection area, provide POMEAS with:
Camera model
Active sensor size
Camera resolution
Pixel size
Available working distance
Required horizontal field of view
Required vertical field of view
Smallest inspection feature
Required accuracy
POMEAS can then evaluate expected field of view, image-circle coverage, and object-side pixel resolution.
The 35mm focal length can concentrate camera pixels on connectors, terminals, switches, electronic components, and selected PCB regions.
Compared with a shorter focal-length lens, it captures less surrounding area and provides more pixel coverage across the defined inspection target.
Application boundary: Very small solder defects, fine circuit traces, and microscopic features must be evaluated using the actual field of view and object-side pixel resolution.
The lens may be used for serial numbers, labels, printed characters, date codes, and machine-readable codes.
Its relatively narrow view can provide more pixels across a label or code than a shorter focal-length lens when the camera position remains unchanged.
Application boundary: Barcode module size, character height, conveyor speed, exposure time, and illumination must be confirmed before readability can be guaranteed.
The PMS-LFHHH-3520M can support inspection of fasteners, clips, seals, connectors, inserted components, and defined assembly positions.
The locking controls help maintain the selected focus and aperture settings after equipment setup.
Application boundary: A shorter focal length may be required when several widely separated inspection regions must fit into one image.
The published distortion data makes the lens relevant for detecting edges, holes, marks, reference features, and part orientation.
Application boundary: Coordinate-based inspection still requires calibration. Object-height changes can alter apparent position and magnification when using a conventional FA lens.
With suitable illumination, the lens may support inspection of scratches, contamination, missing material, print defects, and visible surface anomalies within a defined area.
Application boundary: Lighting type, direction, wavelength, and intensity must be selected according to the material and defect. The lens alone does not create defect contrast.
A 4/3-inch or smaller C-mount sensor is being used
A Ø22 mm image circle is required
A 10MP lens rating matches the camera requirement
A relatively narrow inspection area is needed
A 25mm lens captures more area than necessary
More camera pixels are required on a smaller feature
Published distortion data is required for system evaluation
Manual focus and iris locking are preferred
A wider object or assembly area must fit into one image
Several inspection regions must be captured simultaneously
The available working distance is limited
The 35mm field of view is too narrow
More surrounding context is required in the image
A large object, tray, conveyor, or assembly must fit into one image
Camera installation distance is limited
Multiple products or widely spaced components must be inspected together
Pixel concentration on small features is less important than scene coverage
A conventional FA lens may be suitable for:
Presence and absence inspection
Label and code reading
Assembly verification
Surface inspection
Component-position checks
Part localization
Robot guidance
Calibrated edge detection
A telecentric lens should be considered when:
Dimensional measurement accuracy is the primary objective
Object height changes during inspection
Magnification must remain stable at different depths
Perspective error cannot be accepted
Edge position must remain consistent
The required tolerance is too strict for a conventional FA lens
The PMS-LFHHH-3520M may not be suitable when:
The camera sensor is larger than the specified 4/3-inch format
The camera does not use a compatible C-mount interface
The required field of view is wider than the 35mm lens provides
Several widely separated objects must fit into one image
Strict dimensional measurement is required without calibration
Object-height variation creates unacceptable perspective changes
A confirmed minimum focusing distance is required before mechanical design
Motorized focus or motorized iris control is required
Spectral performance must be guaranteed for a specific wavelength
Yes. The lens is specified for sensors up to 4/3 inch and provides a Ø22 mm effective image circle. The camera must also use a compatible C-mount interface.
Yes. The product sheet provides angle-of-view and distortion data for both formats. Smaller sensors capture a narrower field of view at the same working distance.
The exact linear field of view depends on the camera sensor dimensions and working distance. The product sheet provides angular coverage but does not provide object coverage in millimeters at specific distances.
At the same sensor size and working distance, the 35mm lens provides a narrower field of view and places more camera pixels across a smaller inspection area. The 25mm model is more suitable when wider coverage is required.
It may be used in a calibrated system after the complete camera and lens configuration has been validated against the required tolerance. The product sheet provides distortion values but does not specify guaranteed measurement accuracy. A telecentric lens may be more appropriate for strict metrology.
No. Camera sensor dimensions and pixel size vary between models. Sensor size, pixel pitch, required field of view, and the smallest inspection feature must be reviewed together.
The supplied product sheet does not provide a confirmed focusing range. Submit the camera model, working distance, and required field of view to POMEAS for technical confirmation before completing the mechanical design.
Please provide POMEAS with:
Camera model
Sensor size
Camera resolution
Pixel size
Available working distance
Required field of view
Inspection object
Smallest feature to detect
Accuracy requirement
Object height variation
Illumination method
Available installation space
POMEAS will review sensor coverage, image-circle compatibility, expected field of view, object-side pixel resolution, distortion requirements, and mechanical clearance before recommending the final lens configuration.
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