OCT cross sectional imaging - oct imaging
Sony IMX183quantum Efficiency
Optical Density (OD) is defined as the logarithm to the base ten of the ratio of the power of the incident beam to that of the exiting beam. The optical density can be convert to transmittance using the following equations:
Model:MARS5470S-5GC/GMSensor Vendor:SonySensor:IMX 183Shutter: Rolling ShutterSensor Size:1"Sensor Type:CMOSResolution:5472 px x 3468 pxPixel size:2.4 μm x 2.4 μmFrame Rate:5fpsMono/Color:Color and MonoOperating System:Windows,LinuxConformity:GigE Vision and GenICamDriver , SDK:Mars Series Camera Secondary Development Kit(iCentral)or Third-party Software meeting with GigE Vision Protocol
Sony imx183specs
Neutral Density filters can be stacked in series to produce higher densities. The total optical density is the sum of the individual densities. The total transmittance of a stack of neutral density filters is the product of the transmittance of each filter.
Choose products to compare anywhere you see 'Add to Compare' or 'Compare' options displayed. Compare All Close
Sony imx183price
Sony IMX183datasheet
These ND filters attenuate by absorption (and Fresnel reflection, the constant reflection from the air-glass interfaces). The absorption is iconic in anature so this type of density filter follows the Beer and Bouguer"s Laws.
This industrial camera uses a Sony IMX183 sensor with a 5472 x 3648 pixel resolution to deliver high-definition images. Suitable for machine vision, quality control, product inspection, etc.
Sony IMX183Sensor size
Yes, opt-in. By checking this box, you agree to receive our newsletters, announcements, surveys and marketing offers in accordance with our privacy policy
Shop and browse all of our standard Neutral Density Filter models, or select a product series below for more information on our products and capabilities.
The metallic ND filters use a thin coating of inconel on a glass or fused silica substrate. The inconel material contains a number of different elements such as nickel (Ni), chromium (Cr), cobalt (Co), and iron (Fe). Careful control of the alloy composition and vacuum deposition produces coatings which are spectral neutral over a wide wavelength range. The metallic ND filters are generally more neutral comparing to the absorptive type of ND filters. UV Fused silica substrate are useful in the ultraviolet spectrum, while the cost effective B 270 optical glass substrate provides excellent performance in the visible and Near-IR spectrum range. Always use these filters with the reflective side facing the radiation source. The metallic ND filters withstand higher power and thermal shock better comparing to the absorptive type. These filters are spectrally neutral beyond 2 µm.
Solid glass absorptive ND filters are relatively neutral in the 400 to 700 nm range. They are usable from 350 nm to 2500 nm, but the transmittance is different from that expected from the density value. Since most of the incident energy is absorbed, there filters produce fewer problems from multiple reflected beams comparing to the metallic type, but they are intended only for use with lower power sources.
NOTE: Do not place ND filters in series with their surfaces parallel. Parallel surfaces may cause multiple internal surface reflections which can combine to cause an increase in transmittance; this is especially true of the metallic type filters.
Neutral density (ND) filters are used to equally attenuate the intensity of a light beam over a wide wavelength range. ND filters range from colorless to gray in appearance. Metallic neutral density filters provide a relatively consistent degree of attenuation over a wide spectral band. We offer a variety of catalog ND filters for UV/VIS applications including absorptive, metallic on glass or fused-silica, and variable linear or circular, as well as filters for infrared applications.