Skip to main content
Designer and manufacturer of advanced imaging equipment
Friday, 9 October 2026

1.4-megapixel camera, model RA⁠-⁠ASC⁠-⁠0267

Discontinued We no longer make this camera because its sensor is out of production. If you own one, its specifications and guide stay here for you. For a new project, get in touch and we will suggest the right camera.

The design and manufacture of the RA⁠-⁠ASC⁠-⁠0267 area scan camera was completed in July 2017. This camera uses a CCD sensor. The CCD-based 1.4-megapixel (1360x1024) RA⁠-⁠ASC⁠-⁠0267 camera is an excellent choice for specialised high-sensitivity applications in laboratories. Its spectral response and parametric specifications can be viewed in this section.
Spectral response of the RA-ASC-0267 1.4-megapixel camera

Discontinued The sensor of this model is no longer made.

RA⁠-⁠ASC⁠-⁠0267 USB Area Scan Camera ParametersSpecification
SensorArea CCD
Pixel Size4.65 μm x 4.65 μm
Effective PixelsH1360 X V1024 = 1.4M
Total PixelsH1434 X V1050 = 1.5M
CCD Size7.60 mm(H) * 6.20 mm(V)
Spectral Range400 nm to 700 nm
Max Pixel Frequency15 MHz
PGA Gain Resolution6 V/V - 64Steps
Programmable Offset Resolution300 mV - 512Steps±
Power consumption1.5 W
External PowerNot Required
Operational Temperature Range⁦−10⁩ to ⁦+55⁩ °C
Operation SystemsWindows 64-bit And Linux
Communication PortUSB2.0 Port
Multiple CamerasSupported
Device DriverYes
Sample CodesMatlab,LabView,C++,C#,VB.Net,Python

Discontinued The sensor of this model is no longer made.

Camera Selection GuideRA⁠-⁠ASC⁠-⁠0267⁠-⁠I
ProcessorFPGA
Gain Adjust✓
Offset Adjust✓
ADC Resolution8 bit
USB Speed480Mbit/S
On Board RAM✓
Jitter Order< 10 ns
Frame RateMax 8.1 Hz
Operational Temperature Range⁦−10⁩ to ⁦+55⁩ °C
Availability7Days After Order

Selection guide

What this camera is good for

Detailed images of samples and stationary parts in visible light

When the object is still and detail matters, the RA-ASC-0267-I is a good choice. Its CCD has 1360 × 1024 pixels (1.4 megapixels) of 4.65 μm on a 7.60 mm × 6.20 mm area, the largest CCD among our area-scan cameras. It runs at up to 8.1 frames/s and sends 8-bit images over 480 Mbit/s USB. It is built for microscopy, specimen documentation and inspecting parts that stop at a station.

Sensor
Area CCD
Effective pixels
H1360 X V1024 = 1.4M
Pixel size
4.65 μm × 4.65 μm
Frame rate
Max 8.1 Hz
Spectral range
400 nm to 700 nm
ADC resolution
8 bit
Interface
USB2.0 Port
Operating temperature
⁦−10⁩ to ⁦+55⁩ °C
  • Microscopy and specimen documentation

    Behind a 10× objective, the camera sees 0.76 mm × 0.62 mm of the specimen, and each 4.65 μm pixel corresponds to 0.465 μm on the sample. Pixels are the same size in both directions, so detail is recorded equally well horizontally and vertically.

  • Low-light lab imaging

    At 8.1 frames/s each frame lasts 123 ms. In that time the 21.6 μm² pixel collects enough light even from dim scenes. With 64-step gain and 512-step offset, you fit the signal into the 256 levels of the 8-bit converter.

  • Measuring stationary parts

    With a 76 mm field of view, each pixel sees 56 μm of the part across 1360 pixels. The scale is the same horizontally and vertically, so distances and diameters are measured with one scale in any direction.

  • Station-based part inspection

    Where the part stops for inspection, the camera delivers each 1.4-megapixel image in under 125 ms. The data stream is about 90 Mbit/s, well within the 480 Mbit/s USB link.

What the specs mean in practice

A larger sensor means a longer focal length for the same field of view: about 1.75 times that of the RA-ASC-0229-I with its 4.34 mm sensor. The lens must also cover an image circle larger than the 9.8 mm sensor diagonal. The 4.65 μm pixel has up to 123 ms per frame to collect light, so it gives a good signal in low light. The 8.1 frames/s limit makes the use clear. The object has to be practically still during exposure, or the image blurs. So this camera belongs at an inspection station or on a microscope, not on parts moving past it. The 8-bit output has 256 levels, set to the scene brightness with gain and offset. The 400 to 700 nm response works well with ordinary white light sources.

Before you order

Focal length is roughly working distance × sensor width ÷ field-of-view width. With a 7.60 mm sensor, a 76 mm field at 400 mm calls for a 40 mm lens. On a microscope, pick an adapter whose image circle is larger than 9.8 mm. The lighting must give enough signal within the 123 ms frame and, for measurement, be uniform and flicker-free. The -I version includes an FPGA, gain and offset adjustment, an 8-bit converter, 480 Mbit/s USB and on-board RAM. It runs from -10 to +55 °C and ships 7 days after order. If you need more frames per second, look at the RA-ASC-0134-I, a CMOS camera running at 72 frames/s.

Talk to us about choosing a model

Where our equipment is used

Organizations, universities, industries and companies that have used our products

  • Hedayat Hooshmand Nozhan Sepehr