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Irradiance
The incident of EMR on a surface.
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UVC Irradiance Probe
LP471UVC
Radiometric probe for measuring the IRRADIANCE in the UVC spectral range 220 nm…280 nm, peak at 260 nm, quartz diffuser for cosine correction.
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Pyranometers Spectrally Flat Class A with Shadow Ring
LPPYRA13… Series
The pyranometers LPPYRA13 measure the irradiance on a flat surface (W/m²).
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Irradiance Probe
LPUVB01
The LPUVB01 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 UVB (280 nm …315 nm) spectral range.
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Flash Solar Power Meter
OAI’s Flash Solar Power Meter is a versatile measurement tool used for measuring the irradiance (in Suns) from Flash Solar Simulators. Flash Solar Simulators are commonly used in the production of solar panels. Integrated into the solar cell production line, this meter calibrates the flash solar simulator allowing for constant and repeatable irradiance output. By sampling at speeds up to 4000 Hz, the flash pulse temporal profile can be recorded in the meter’s memory and downloaded to a USB 2.0 port on a PC for further analysis.
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Dual Band Radiometer
UVS-AB-T
The UVS-AB-T measures UV-A irradiance and UV-B irradiance.The dual band UVS-AB-T measures the irradiance in two spectral bands with a single sensor providing separate outputs for each band
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PV Accelerating Tester
King Design Industrial Co., Ltd.
*Spectrum mis-match: IEC 60904-9 class A*Non-uniformity <5%*Instability <5% ( within 30 mins)*Irradiance range: 800 W/m2 ~ 1200W/m2*Effective range: 30cm x 30cm; 1.1m x 1.4m*(customize accepatble)*Temperature:40℃ ~ 90℃*Humidity: 20% ~ 85%
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UVA Irradiance Probe
LP471UVA
Radiometric probe for measuring the IRRADIANCE in the UVA spectral range 315 nm…400 nm, peak at 360 nm, quartz diffuser for cosine correction. For non-destructive testing ISO 3059:2001, EN 571-1, ASTM E1417.
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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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Combined Illumincance and Irradiance Probe
LP471P-A
Combined probe for measuring ILLUMINANCE (lux), with standard photopic response, and IRRADIANCE (μW/cm²) in the UVA spectral range (315…400 nm, with peak at 360 nm).
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Pyranometer with Silicon Photodiode
LP471SILICONPYRA
Pyranometer with silicon photodiade for GLOBAL SOLAR IRRADIANCE measurement.
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UVB Irradiance Probe
LP471UVB
Radiometric probe for measuring the IRRADIANCE in the UVB spectral range 280 nm…315 nm, peak at 305 nm, quartz diffuser for cosine correction.
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Radiative Transfer Numerical Model
HydroLight
The HydroLight radiative transfer numerical model computes radiance distributions and related quantities (irradiances, reflectances, diffuse attenuation functions, etc.) in any water body.
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Lamp-Based Calibration Light Sources
Lamp-based calibration light sources from Gamma Scientific are used for optical calibration of light measurement instruments including spectroradiometers, photometers and radiometers. All of our calibration light sources meet rigid quality standards for use in the most challenging testing environments. A wide range of light sources is available to serve as precision standards of radiant flux and white-light standards of spectral irradiance or luminance.
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Daystar Solar Meter
DS-05A
Daystar's DS-05A solar meter brings 'point and read' simplicity to the measurement of solar irradiance. Just turn the meter on, point the sensor at the sun and obtain a reading in Watts/m2.
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Radiometer
X1-1-RCH-116-4
The X1-1 radiometer from Gigahertz-Optik features an RCH-116-4 detector and is ideal for measurement of the irradiance of high power LEDs in the UV-A and blue light range. The device can accurately measure irradiance levels of up to 40,000 mW/cm². One of the outstanding features of the RCH-116-4 detector is its proven concept of a passive radiation absorber coupled to a UV sensor. This provides stability even in high temperature and intense UV radiation environments. In addition to the passive radiation absorber, the device also has a cosine-corrected field of view. The sensor’s housing also serves as a handle. The battery-powered X1-1 optometer supports a usable dynamic range from less than 1 mW/cm² to 40,000 mW/cm² thanks to its high-end signal amplifier. It can be used to perform precise measurements of up to 5 standard LED wavelengths for which the detector was calibrated for active irradiance. In addition to the CW measurement function, the device also has a dose measurement function. The radiometer can be used with other detectors from the RCH series. e.g. for gas discharge lamps. Remote control of the device is possible via its user software and a software development kit is offered for integration of the device in the user’s own software.
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Power Meters
Rk-5700
The Rk-5700 Series Power Meters accept a wide variety of probes – pyroelectric, silicon, and thermopile – enabling them to perform absolute radiometry, total laser power (cw and average), and irradiance measurements from the UV to far-IR, pW to kW. Integrated lock-in amplifier circuitry allows for synchronous detection of chopped optical signals, improving both S/N ratio and background rejection. The dual channel Rk-5720 simultaneously measures Channel A, Channel B, and the ratio B/A. An IEEE-488 GPIB computer interface, Analog Outputs, Background Cancel, and Autorange are all standard features.
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Portable CCD Spectroradiometer
LMS-6000
The Portable CCD Colorimeter Spectroradiometer has the following versions which can measure different parameters: • LMS-6000: illuminance (lux), E(Fc), Ee(W/m2), Tc (K), Duv Correlated Color Temperature (CCT), Chromaticity Coordinates, CRI, Purity, Peak Wavelength, Dominant Wavelength, Half Bandwidth, Center Wavelength, Centroid Wavelength, Total Color Difference, Brightness Difference, Red-Green Degree, Yellow-Blue Degree, CCT Difference, SDCM Diagram, Spectrum Diagram • LMS-6000L: cd/m2, fL, Tc (K), Duv Correlated Color Temperature (CCT), Chromaticity Coordinates, CRI, Purity, Peak Wavelength, Dominant Wavelength, Half Bandwidth, Center Wavelength, Centroid Wavelength, Total Color Difference, Brightness Difference, Red-Green Degree, Yellow-Blue Degree, CCT Difference, SDCM Diagram, Spectrum Diagram • LMS-6000P: LMS-6000 Parameters+PAR, PPFD, YPFD, Blue-purple irradiance Eb, Yellow-green irradiance Ey, Red-orange irradiance Er, Ratio of red and blue radiation Erb_Ratio • LMS-6000S: LMS-6000 Parameters+PAR, PPFD, YPFD, Blue-purple irradiance Eb, Yellow-green irradiance Ey, Red-orange irradiance Er, Ratio of red and blue radiation Erb_Ratio, Rf and Rg according to TM-30 • LMS-6000F: LMS-6000 Parameters+Flicker test • LMS-6000B: LMS-6000 Parameters+Blue Light Hazard Weighted Irradiance according to GB/T20145, CIE S009/E:2002 • LMS-6000BF: LMS-6000 Parameters+Flicker test, Blue Light Hazard Weighted Irradiance according to GB/T20145, CIE S009/E:2002
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Total Effective Irradiance Probe
LP471A-Uveff
The combined probe LP471A-UVeff measures the Total Effective Irradiance (W/m²) weighted according to the UV action curve (CEI EN 60335-2-27).
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Net Irradiance Meter
LPNET07
LPNET07 measures the net radiation across a surface, from near ultraviolet to far infrared.
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Optical Meters
The Gamma Scientific range of light meters includes handheld and benchtop models. Configuration options include a wide range of sensors and calibrations in units including: Luminous Flux (lumens) or Radiant Flux (Watts), Illuminance (lux, foot-candle) or Irradiance (W/cm2 ), Luminous Intensity (candela) or Radiant Intensity (W/sr), Luminance (cd/m2 , foot-Lambert) or Radiance (W/m2 sr), or Pulse Energy (Joules). Cooled sensors and reference standard detectors are also available.
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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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Halogen & Deuterium Halogen Light Sources
Avantes Deuterium light sources are known for their stable output ad are used for UV absorption or reflection measurements. These can also be used as irradiance calibration sources due to their high stability. The standard AvaLight-DH-S mixes the halogen light with the Deuterium light, thus producing a wide spectral range light source. The output spectrum of Deuterium light sources exhibits several peaks, with a prominent peak at 656 nm. The AvaLight-DH-S-BAL incorporates a dichroic beam splitter installed to minimize these peaks, providing a smooth spectrum from 200-2500 nm.
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Laser-Driven Light Source (LDLS)
EQ-77
Based on the highly successful Laser-Driven Light Source (LDLS)technology, the EQ-77 offers the highest radiance and irradiance availablein a truly broadband white light source. The EQ-77 features a compact lamp house, with clean construction that ensures long life and ultimate stability. With a 170nm-2100nm wavelength range, and a choice of source dual-beam output or a single-beam output with retro-reflector, the EQ-77 is flexible for a broad variety of applications. Researchers using light for imaging and analytical spectroscopy in a variety of applications in the life sciences and materials sciences need light sources capable of providing extreme high brightness and power across a broad wavelength range.
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Power Probes
RkP-500 Series
The RkP-500 Series probes take advantage of synchronous detection (chopper/lock-in amplifier) technology to offer unparalleled background noise rejection, S/N ratio, and sensitivity. Total power, average power, and irradiance can be measured. The probes can be mounted directly onto the Rk-570C Optical Chopper to form an integrated measurement system, or the chopper can be operated remotely from the probe.
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Photovoltaic Array Simulator, 15 kW, 1500 VDC
N8900APV Series
The PV simulators are autoranging, programmable DC power sources that simulate the output characteristics of a photovoltaic array under different environmental conditions (temperature, irradiance, age, cell technology, etc.) enabling you to quickly and comprehensively test inverter MPPT algorithms and inverter efficiency. The DG8900 SAS control software creates and downloads solar I-V curves to a single output solution. For multiple outputs choose the DG9000 SAS control software which can be used with up to 12 N8900APV sources.
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LED Solar Simulator
LumiSun-50
The LumiSun-50™ is a high power, multi-wavelength LED solar simulator that meets IEC 60904-9 Class AAA for spectral match, uniformity of irradiance, and temporal stability. The LumiSun-50 achieves a spatially uniform illumination field from a chip-on-board (COB), multiple-wavelength LED die array. The field of illumination is 50 x 50 mm at a working distance of 200 mm. The LumiSun-50 includes a driver/controller which individually provides constant current to each die in the COB array. Total irradiance of 1.1 sun units is provided and can be decreased to 0.1 suns. The LED light source of the LumiSun-50 is contained within an air-cooled housing that can rotate the angular beam alignment. Adjustment and setting of the optimum light path working distance is visually facilitated by a converging pair of red dot laser pointers.
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Sunlite Solar Simulators
- Gen III Optics for High Efficiency Illuminati- Infinitely Adjustable Irradiance, Reproducibly Settable- Class A AM1.5G Spectral Match- ASTM Class A stability- 50×50 mm Class B uniformity- Manual Shutter Included, Electronic - Shutter Optional- Uninterrupted testing with the prealigned lamps- HEPA filtered air cooling
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MOCVD Systems
TurboDisk Family
A rapidly developing technology with multiple proof-of-concept scale installations (1 MW or less), with many more larger-scale projects gaining momentum worldwide within regions with high direct normal irradiance (DNI). As/P MOCVD is proving to be the technology of choice in building the critical compound semiconductor layers for CPV devices. Veeco, supplying best-in-class MOCVD equipment, provides the critical enabling As/P MOCVD technology to reduce the production costs of triple junction solar cells and provides manufacturers with the ability to easily ramp production in a modular system with unmatched reliability and throughput at the lowest cost.
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Module Testing Station
QuickSun® 550CE
QuickSun 550CE is certified by TÜV Rheinland and a detailed test report is included with every simulator proving Class A+A+A+ performance with respect to spectrum, irradiance non-uniformity and short term instability (STI). Long term instability (LTI) is also within Class A+ tolerances during the 40 ms long flash pulse. IV characteristics are recorded with an electronic load and proprietary electronics unit which measures voltage, current and irradiance signals when module is swept e.g. from short circuit to open circuit or vice versa.
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*Irradiance And Dosage Sensors
This sensor family provides cosine corrected irradiance measurement in W/cm² and dosage measurement in J/cm². The sensors are calibrated over their entire spectral range, and are thus ideal for irradiance and dosage measurement of UV, VIS and IR LED based light sources