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Radiometric Detectors
Radiometric detectors are built by using selected, stability tested high-grade Si-photovoltaic cells. They are all equipped with individually produced and matched color glass filters. They are available in different sizes for irradiance and radiant flux measurement, both in temperature stabilized laboratory and general purpose form.
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Photometric Radiometric Transmitters
HD2021T6 / HD2021T7
The transmitters allow converting the photometric quantity “equivalent veiling luminance” – HD2021T7 – or a photometric quantity Luminance (cd/m2) – HD2021T6 – into a current (4…20 mA) or a voltage (0…10 V) signal according to the version chosen. If the acquisition station is far from the probe (>50m), it is necessary to use the current output version.The probe is used for the control of street lighting, in particular, the measurement of equivalent veiling luminance is essential to determine the threshold luminance at the entrance of the tunnels (UNI 11095:2011).
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Photometric Radiometric Transmitters
HD2021T Series
The serie HD2021T allows to convert photometric and radiometric quantities, such as illuminance (Lux) and irradiance (W/m²) in the UVA, UVB, UVC spectral regions and in the 400 … 1050nm band, into a 0 …10Vdc voltage signal. The series is suitable to be installed either indoor and outdoor.
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Radiometric Detectors - Clinical
Designed for use in regulated environments. It comes with 5 or 10 detectors (each with 550-sample capacity), and 5 and 10 detectors (each with 1,000-sample capacity).
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Radiometric Detectors - Research
Analyzing drug pathways, protecting lab environments, and assessing environmental contamination require instruments with the highest possible sensitivity and specificity. Radiometric detection has long been and still remains to be today, the gold standard for these applications.
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Radiometric Probe for Irradiance
LPUVB02
Amplified radiometric probe for outdoor use for measuring IRRADIANCE in the UVB spectral range (peak at 305 nm).
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Radiometric Probe for Irradiance
LPUVA02
Amplified radiometric probe for outdoor use for measuring IRRADIANCE in the UVA spectral range (315...400 nm).
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PAR Quantum Radiometric Probe
LP471PAR02
Quantum-radiometric probe for measuring the PHOTONS FLOW in the chlorophyll field PAR (photosynthetically Active Radiation 400…700 nm), μmol m-²s-¹ measure, opaline quartz diffuser for cosine correction.
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PAR Quantum Radiometric Probe
LP471PAR
Quantum-radiometric probe for measuring the PHOTONS FLOW in the chlorophyll field PAR (photosynthetically Active Radiation 400nm…700 nm), μmol m-²s-¹ measure, cosine correction diffuser.
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Effective Irradiance Radiometric Probe
LP471BLUE
The radiometric probe LP471BLUE measures the IRRADIANCE (W/m2) in the spectral range of Blue light.
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UV Index Radiometric Probes
LPUVI02… Series
The radiometer LPUVI02 measures the global effective irradiance on a flat surface (Watt /m² effective), according to the requirements of the WMO for the measurement of UV-index.
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Radiometric Drone Thermal Camera
FLIR Vue Pro R
The Vue Pro R gives drone operators and certified thermographers the power to gather accurate, non-contact temperature measurements from an aerial perspective. Every still image the Vue Pro R saves contains accurate, calibrated temperature data embedded in every pixel, adding even more value to your sUAS operations and services than ever. Vue Pro R adds fully radiometric data-gathering to sUAS applications like building and roof inspections, power grid inspections, infrastructure analysis, precision agriculture, and public safety.
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Radiometric Probe for Photons Flow
LPPAR03… Series
The probe LPPAR03 measures the ratio between the number of photons that strike a surface in one second, in the 400 nm…700 nm spectral range and the surface area (m²). This quantity is defined as PAR: Photo-synthetically Active Radiation.
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Radiometric Probe for UVA Irradiance
LPUVA03…Series
The LPUVA03 probe measures irradiance (W/m²) defined as the ratio between the radiant flux (W) passing through a surface and the surface area (m²) in the UVA (315 nm…400 nm) spectral range. Thanks to a new type of photodiode, LPUVA03 is blind to visible and infrared light.
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Radiometric Probe for UVB Irradiance
LPUVB03BLAV
The LPUVB03BLAV probe measures global irradiance (W/m²) on a surface area (m²) in the UVB (280 nm…315 nm) spectral region. In particular, the spectral sensitivity is focused at 305 nm, with a bandwidth (FWHM) of 5 nm. The global irradiance is the result of the sum of direct solar irradiance and of diffused irradiance incident on a planar surface.
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HAAS-1200 Accurate Array Spectroradiometer (Advanced Industry Grade)
HAAS-1200
Hangzhou Everfine Photo-E-Info Co., LTD
HAAS-1200 quickly and accurately measures the spectral power distribution in the range of 380nm-1000nm, and achieves the photometric, colorimetric and radiometric parameters of various luminairs and lighting sources according to the requirements of the International Commission on Lighting (CIE) standard publications.
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HAAS-3000/2000 High Accuracy Array Spectroradiometer (Laboratory Grade)
HAAS-3000
Hangzhou Everfine Photo-E-Info Co., LTD
HAAS-3000/2000 High Accuracy Array Spectroradiometer delivers various photometric, colorimetric and radiometric parameters as required by CIE standards.Measurement parameters are luminous flux (with integrating sphere), relative spectral power distribution, chromaticity coordinate, CCT(correlated colour temperature), CRI (color rendering index), SDCM (standard deviation of color matching), color purity, peak wavelength, dominant wavelength, etc.
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High Definition LWIR Science-Grade Camera
FLIR X8580 SLS™
The FLIR X8580 SLS is a high-speed, high definition longwave IR camera designed for scientists and engineers who need to capture detailed imagery of fast events, perform custom radiometric measurements, or detect points of failure in composites, solar cells, and electronics. This thermal imaging camera combines 1280 × 1024 resolution from the SLS detector with high-speed frame rates to offer shorter snapshot speeds and wider temperature bands for crisp stop motion imagery of high-speed events. With a four-position motorized filter wheel and support for FLIR motorized focus lenses, the X8580 SLS will provide high quality recordings, save time, and mitigate frustration in dynamic acquisition environments.
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High Definition MWIR Science-Grade Camera
FLIR X8580™
The FLIR X8580 midwave IR camera is designed for scientists and engineers who need to capture detailed imagery of high-speed events, perform custom radiometric measurements, or detect points of failure in composites, solar cells, and electronics. This thermal imaging camera combines 1280 × 1024 HD resolution with fast frame rates and integration times, allowing researchers to record stop motion on fast-moving subjects or rapid temperature changes—whether in the lab or on the test range. With a four-position motorized filter wheel and support for FLIR motorized focus lenses, the X8580 will provide higher quality recordings, save time, and mitigate frustration in dynamic acquisition environments.
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High-Speed LWIR Science-Grade Camera
FLIR X6980 SLS™
The FLIR X6980 SLS is an extraordinarily fast longwave IR camera designed for scientists and engineers who need to capture high-speed imagery for accurate thermal analysis and custom radiometric measurements. This thermal imaging camera combines 640 × 512 resolution from the SLS detector with the fastest high-speed frame rates to offer the shorter snapshot speeds and wider temperature bands needed to record crisp stop motion images of high-speed events. With a four-position motorized filter wheel and support for FLIR motorized focus lenses, the X6980 SLS will provide high quality recordings, save time, and mitigate frustration in dynamic acquisition environments.
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High-Speed MWIR Science-Grade Camera
FLIR X6980™
The FLIR X6980 is an extraordinarily fast midwave IR camera designed for scientists and engineers who need to capture high-speed imagery for accurate thermal analysis and custom radiometric measurements. This thermal imaging camera combines 640 × 512 resolution with blazing-fast frame rates, allowing researchers to record stop motion on fast-moving subjects or rapid temperature changes—whether in the lab or on the test range. With a four-position motorized filter wheel and support for FLIR motorized focus lenses, the X6980 will provide higher quality recordings, save time, and mitigate frustration in dynamic acquisition environments.
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Imaging Colorimeters & IR Testing Cameras
Instrument Systems Optische Messtechnik GmbH
The fast, spatially resolved acquisition of photometric, colorimetric and radiometric values with the aid of imaging systems has gained enormously in importance.
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Industrial Intelligent Spectrometer
OHSP-250 Series
Hangzhou Hopoo Optoelectronics Technology Co., Ltd
Radiometric color measurement is an important application of spectrometers. LED manufacturers use color measurement to classify LEDs (classification criteria: good or bad functions, color brightness standards, etc.) to ensure product consistency and quality stability. Screen display manufacturers use radiometric measurements to calibrate screen colors to determine if they are within the standard range. LED radiation measurement is also very useful in horticulture, because LEDs are also a major part of plant research and greenhouse light sources; in addition, in biomedical applications, such as therapeutic instrument measurement.
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Instrument Systems LED Measurement Accessories
Konica Minolta Sensing Americas, Inc
It’s critical to use the appropriate LED measurement equipment and accessories when evaluating an LED’s various photometric and radiometric quantities. Because all of the test adapters Instrument Systems designs are compliant with CIE 127:2007, users are assured of compatibility between measurements. Instrument Systems has a diverse array of LED Measurement Equipment.
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Irradiance Probe
LP471RAD
Radiometric probe for measuring the IRRADIANCE in the spectral range 400 nm…1050 nm, cosine correction diffuser.
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Light Measurement Sensors
Gamma Scientific offers a catalog of professional light intensity measurement devices for photometric and radiometric applications. These devices are typically utilized by laboratories, OEM’s, value-added resellers and other groups seeking to accurately measure light intensity and brightness. Browse our light intensity measurement device catalogs to find the right photometry or radiometry solution today.
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On-Site Testing
Radiometrics Midwest Corporation
At Radiometrics we understand that some products are just to big to bring to us. Radiometrics will travel to you and perform in-situ testing at your facility or your clients location.
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Optical Power Meter
PM203
The PM203 optical power meter can be used to measure the radiometric power in a beam of monochromatic or narrow band light. Using the internal calibration table the micro-processor controlled PM203 displays directly the optical power in Watts or dBm or the calibration wavelength.
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5-in-1 Moisture Meter with METERLiNK®
FLIR MR77
The FLIR MR77 has everything you need for moisture remediation or HVAC: a pinless moisture sensor and pin probe, a temperature and relative humidity sensor, and an IR thermometer. The meter includes Bluetooth® for remote viewing and sharing, as well as METERLiNK® technology to wirelessly embed readings into radiometric infrared images on compatible FLIR thermal cameras. Made with field-replaceable sensors, the MR77 is engineered to help you get more done in less time.
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Aerospace
Radiometrics Midwest Corporation
Working with the Radio Technical Commission for Aeronautics, Radiometrics staff has not only been involved with EMC testing of aircraft and aircraft components, but has also been involved with development of the RTCA/DO160 "Environmental Conditions" standard and RTCA/DO-199 investigation for "Potential Interference to Aircraft Electronic Equipment from Devices Carried Aboard".