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Digital Light Sources. First introduced in 2001. Used as Calibration/Reference Light sources and for testing CCD, CMOS, and other image sensors, cameras and detectors. High-resolution digital brightness control provides near perfect linearity and uniformity
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Digital Light Sources • First introduced in 2001. • Used as Calibration/Reference Light sources and for testing CCD, CMOS, and other image sensors, cameras and detectors. • High-resolution digital brightness control provides near perfect linearity and uniformity • Spectral and color selections from the UV region to the near infrared, including broadband whites • Nearly zero downtime – runs continuously for thousands of hours • Computer controllable with simple commands that easily integrate into test systems
RS-5A: Single Color Linear Programmable Digital Light Source. Has larger aperture and higher power compared to RS-5. RS-5B: Spectrally Programmable Digital Light Source RS-5H: Spectrally Programmable Hi Power Digital Light Source SynthicolorTM Spectral Programming software for the RS-5B and RS-5H. Note: For uniform output, all light sources should be coupled with a Baffle Illumination tube or an Integrating sphere. Digital Light Source - Products RS-5 RS-5B
EigenliteTMRS-5H High Power Spectrally Programmable Light Source for CMOS and Sensor Testing • The RS-5H is designed to project a uniform illumination at a distance of 5 to 10 cm from the end of the Baffle tube. • Up to 8 channels of LEDs cover the visible range of light. • A total of 208 LEDs are used in each RS-5H. • Channels can be combined to produce unlimited spectrums, CCT and power levels. • The RS-5H can be programmed to set exactly the color, intensity or spectral profile required for almost any measurement. SynthiColor™ Spectral Design & Analysis Software
EigenliteTMRS-5H High Power Spectrally Programmable Light Source for CMOS and Sensor Testing • Computer controllable with simple commands that can easily integrate into existing testers or new test systems. • Available Synthicolor Software allows the user to produce unlimited custom types of spectrums and Illuminants. • Adjustable light-level setting to 1 part in 65,535 in absolute, NIST-traceable, radiometric and photometric units. • Near-perfect linearity and uniformity. Typical RS-5H Integrated with a Tester
EigenliteTMRS-5H High Power Spectrally Programmable Light Source for CMOS and Sensor Testing • Designed to illuminate test areas up to 100mm. Custom illumination areas and configurations available. • 20x longer light-source lifetime compared to tungsten sources. • In addition to long operating lifetime of LEDS. LEDs are operated at less than 50% of rated power levels to further increase reliability. This provides additional Redundancy. • Designed for continuous operation with real-time fault/failure monitoring. • Supported by a fully equipped and NIST traceable Calibration and Test lab. Typical RS-5H Installation
EigenliteTMRS-5H High Power Spectrally Programmable Light Source • APPLICATIONS • Photometric, radiometric and colorimetric calibration and testing of sensors and imaging systems. • Design of illumination sources. • CCD, CMOS and other sensor performance measurements: charge capacity, electronic gain, responsivity, saturation, noise equivalent power, quantum efficiency, non-linearity, equivalent ASA speed, Gamma curves.
Synthicolor Software for RS-5B and RS-5H • In addition to preprogrammed commands for the RS-5B and RS-5H, the Digital Lightsources can also be user controlled using Synthicolor software to produce custom spectrums, color temperatures and illuminance levels.
EigenliteTMRS-5H High Power Spectrally Programmable Light Source – Design and Performance Specifications • Designed with a real time feedback loop that continuously monitors the output of each channel of LEDs using photodetectors. • An additional Master detector monitors total output of the RS-5H. Optional temperature stabilization is available for the Master detector. • There are up to 26 LEDs for each channel. Any decay or failure of LEDs can be compensated by automatically adjusting power to the remaining LEDs. • System is designed with real time fault monitoring with alarms for failures and deviations from normal. • CCT Range: 500k to 10000k. Can be programmable in user defined steps.
EigenliteTMRS-5H High Power Spectrally Programmable Light Source – Design and Performance Specifications • Output non-Uniformity: • +/- 1.5% at 75 mm diameter area • +/- 3% at 100 mm diameter area • Output Power: <1500 lux for broadband power. Maximum power < 4000 lux. • Output Spectral Range: 420 nm to 940 nm. • System settling time when switching to different spectrum/CCTs: 50 ms with complete change of output spectrum and power level. • System stability: +/- 0.5% at temperature range of 18 to 26 deg C. • Illumination distance: 5 to 10 cm from the end of projection tube,
EigenliteTMRS-5H High Power Spectrally Programmable Light Source – Design and Performance Specifications • Programmable using USB, RS232 or IEEE 488 interface. The RS-5H is desgined to be integrated with Tester Systems. • The line of Gamma Scientific Digital Light Source products and the RS-5H come complete with an Automated, Self Test and Self Calibration mode. This unique feature improves the overall performance of the system and compensates for changes in LED performance over time. • Alternative LEDs can also be incorporated into the design to increase the spectral range or accommodate UV and IR applications. LEDs can be user specified based on available LEDs.
EigenliteTMRS-5H High Power Spectrally Programmable Light Source – Mechanical Dimensions Note: Some mechanical dimensions of the RS-5H can be customized to meet tester requirements.
EigenliteTMRS-5H High Power Spectrally Programmable Light Source • RS-5H installed in a CMOS Tester
EigenliteTMRS-5H High Power Spectrally Programmable Light Source Specifications Summary
EigenliteTMRS-5H High Power Spectrally Programmable Light Source – Advantages Over Traditional Tungsten Light Sources • 20x longer light-source lifetime compared to tungsten sources. Various RS-5 LED light sources that are installed for Sensor testing have operated for over 2 years without replacement of LEDs. Since 2001, less than 1% of RS-5 Light Source have had LED failures. Some RS-5 have been in continuous operation on Production lines for over 2 years. • 2. Compared to tungsten light sources, the RS-5H is much easier to align. Uniformity alignment is self contained in the RS-5H. Each time the RS-5H is removed for periodic checking, re-installation on a tester takes only a few minutes.
EigenliteTMRS-5H High Power Spectrally Programmable Light Source – Advantages Over Traditional Tungsten Light Sources • A Tungsten light source exhibits drift over its lifetime. As such periodic maintenance and calibration is required. The RS-5 LED light sources exhibit 10x more stability. This reduces production downtime and also reduces the cost of periodic maintenance. • The RS-5H is programmable and tunable to unlimited types of Spectrums, Color Temperature and Power levels – Tungsten light source systems are limited to available filters. • LED based light sources are smaller in size and produce less heat.
EigenliteTMRS-5H High Power Spectrally Programmable Light Source: Uniformity Test Data 10 cm Uniformity of Illuminance at 3000K Color Temperature
EigenliteTMRS-5H High Power Spectrally Programmable Light Source Uniformity of Illuminance at 1000k Color Temperature
EigenliteTMRS-5H High Power Spectrally Programmable Light Source Short Term Stability at 2500K CCT
EigenliteTMRS-5H High Power Spectrally Programmable Light Source Short Term Stability 4850K
Long Term Stability Long Term Stability EigenliteTMRS-5H High Power Spectrally Programmable Light Source Long Term Stability – 100 hours. Room temperature range during test is 18 to 25 deg C
EigenliteTMRS-5H High Power Spectrally Programmable Light Source – Calibration and Test Options • Calibration of the RS-5H is performed using a high performance NIST traceable Spectroradiometer. • Periodic onsite testing of the RS-5H is possible by using either a Gamma Scientific Photodetector or Spectroradiometer. • The Photodetector will allow testing of Luminance and uniformity • The Spectroradiometer will allow testing of Luminance, Uniformity, Color accuracy and Spectral accuracy.