Arc Lamp
See Also: Lamp, Flash Lamp, Flashlamp, Gas Lamp, Fluorescent Lamp, Headlamp, Arc Flash
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Product
Spectral Response SystemsQuantum Efficiency SystemsIPCE Measurement Systems
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QE system provides electronics and software designed for fully automated measurement of external quantum efficiency of solar cells. All systems include probes and a fixed plate sample stage for samples up to 150 mm x 150 mm. The main system components include: custom designed software, measurement electronics, and computer system (Windows 8 operating system). The measurement involves focusing monochromatic light to a spot on the device under test, then accurately measuring the photon flux and current from the test cell. The system utilizes a dual beam configuration with lock-in detection, providing an absolute accuracy of ±3%. The QE system uses a grating monochrometer with silicon/InGaAs/Ge detectors. The system includes automatic order sorting filters and two light sources for monochromatic illumination (a Xenon- arc lamp and a halogen lamp). A single lock-in amplifier is used to measure both the reference detector and test device. The main system comes with all the hardware needed to measure quantum efficiency, a fixed plate sample stage and probes.
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Walk-In Xenon Lamp Weathering Test Chamber
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Xenon is one of the noble gases and is a major component of arc lamps and flash lamp and it also has its importance in general anesthetics. One of the major applications of xenon lamp is that it can be used in research applications to simulate the sunlight.
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Highly Collimated Solar Simulators
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This solar simulator is based on a Fresnel lens to collimate the light beam from the arc lamp source to infinity, which results in highly collimated illumination of the target spot. A 2.5kW xenon ozone free lamp is used as the light source. The spectral distribution of the xenon light source, along with the use of specially calibrated AirMass filters, closely simulates the sun’s true spectral distribution in various conditions on Earth.
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GLORIA-X150A/ Xenon Light Source
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Xe arc lamp light sources are the preferred artificial sources to simulate sunlight. The high color temperature (6000K) of the Xenon lamps is a close match to the solar temperature. This results in very similar solar spectra in the UV and VIS although the source has some Xe emissions lines in the near IR. Application for fluorescence, luminescence and phosphorescence, absorbance and reflectance, photochemistry, photolithography, solar simulation and so on.ct description goes here.
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Compact Deuterium, Tungsten Halogen or Glow Bar Light Source
LSH Illuminator
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Compact lamp housing for a variety of types of light sources from the UV to the IR including deuterium, tungsten halogen and glow barApplications for compact arc lamp housings cover a broad range of scientific, OEM and research applications. Arc lamp illuminators are used for a broad range of applications almost as diverse as the wavelength range across which they emit.
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Light Simulator
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From the review of the scientific development history, reliable and stable artificial light sources have played a very important role in the past century. For example, the artificial solar simulator is an important part of simulating sunlight to ensure accurate performance of PV characterization. With the growth of light sensor applications, more and more requirement of light simulators (or artificial light sources) explored. One of the core technologies of Enlitech is the artificial light sources. We can manipulate different lamp types (short arc lamps, LEDs, filament lamps et. al.) to generate different spectrum-form in different light intensity levels, beam sizes, and wavelength ranges. We have launched different artificial light source products for different applications fields. For instance, SS-X series solar simulators and ILS-30 ambient light simulator are for the PV field, HAAS is highly accurate star light simulator for the space field, and ALS-300 is a general-purpose light source in science research field. These products can not only meet the needs of your application, but also speed up the process of your research or mass-production.
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Forensic Light Source
Mini-CrimeScope Advance
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The Mini-CrimeScope Advance builds on the knowledge and expertise of more than 20 years of Forensic Light Source design. It incorporates the same ease of use and unmatched reliability of its predecessor, along with the latest in arc lamp technology. The result – a unit that is unsurpassed in performance.
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Rubber Testing Equipment
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Dongguan Amade Instruments Technology Co., Ltd
Rubber testing equipment are used to test the physical properties, chemical properties, thermal properties of uncompounded and compounded rubbers at prescribed conditions to help manufactures or researchers in comprehending the characteristics, updating the formula and improving product quality. Including volatile component, ash content, Mooney viscosity, vulcanization curve, Mooney scorch time, hardness, tensile properties, tearing, the compression performance, impact, friction resistance, fatigue resistance, peel strength, vertical & horizontal combustion, smoke density, limiting oxygen index, the flame spread rate, the surface resistance, surface resistivity, volume resistivity, the breakdown voltage, dielectric strength, dielectric loss, antistatic properties, Aging test (UV, Xenon lamp, carbon arc lamp, ozone) etc.
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Product
Solar Simulator Continuous Light
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This type of solar simulator uses Xenon high pressure arc lamps as light source. These lamps have a colour temperature near 5800 K, so it is feasible to filter the light output to an excellent AM 1.5 spectrum. If a tuneability of the spectrum is required, these lamps can be combined with tungsten lamps to achieve multi-source solar simulators. These can be used to measure tandem/triple/multijunction solar cells. They also allow detailed analysis of all types of solar cells using a spectral metric (see : Publication List).
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Solar Simulation
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Sciencetech solar simulators produce high intensity, uniform illumination on a target area. Typically, high power solar simulators use an ellipsoidal reflector to capture light from an arc lamp source inside the reflector, an arrangement that results in a light pattern with a bright outer region and a dark center. This non-uniformity is un- acceptable in many solar simulator applications and as a result, forces many of our solar simulator competitors to use designs involving diffusers to reduce the non-uniformity. This results in a reduction of intensity and a dis- tortion of the spectrum on the target area.
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Firmware Engineering Projects
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Precision Development Consulting Inc
Hand control module for teleprompter, Analog data acquisition and filtering, High-Power Arc Lamp Power Supply Controller and RTP gas flow and Vacuum System controller, Disk drive company test racks, Disk Drive Spindle Motor Tester, Disk Drive Head Stack Tester, Wafer photoresist coating and development system control PC boards, Nuclear Plant secondary water temperature monitor
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Xenon Lamp Weather Resistance Test Chamber
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SN Xenon lamp test chamber adopts the Xenon ARC lamp that can simulate full sunlight spectrum to reproduce destructive light waves existing in different environments so as to provide the corresponding environment simulation and acceleration test for scientific research, product development and quality control.
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Light Sources
LS 150 Xenon Arc Lamp Source
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Model LS-150 is a Patented US Pat. No. 8116017 low cost, high output 150 watt Xe arc lamp based light source. The entire source, power supply, lamp, and optical compartment are housed in an extremely compact enclosure, 9 x 6 x 11 inches. The unit's base allows mounting on inch or metric spaced optical tables with the optics centered over the hole pattern to allow for easy integration with the rest of your setup.
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Product
Arc System
ACQUITY
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The ACQUITY Arc System is a quaternary-based, modern LC system for scientists working with established methods who are looking for the versatility and robustness required to bridge the gap between HPLC and UHPLC while continuing to support validated assays.
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Lamp Testers
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is a pocket-sized tool that takes the guesswork out of troubleshooting fluorescent lighting systems. Quickly determine by process of elimination, whether it’s the bulb, pins, voltage or ballast.
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Arc Flash Monitoring
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Arc fault protection for the fast clearance of arcing faults on BUS bars & within metal clad switchgear & associated cable boxes. The arc is detected using an optical sensor & the signal input to a protection device which alsomonitors the load current on the system.
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Lamp Converters
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PeakTech Prüf- und Messtechnik GmbH
This AC / AC voltage converter is particularly suitable for use with halogen indoor lights and other low-voltage light sources that require an AC voltage source for supply. There is a safe galvanic separation between mains and low voltage according to the isolating transformer standard. This pre-assembled AC / AC converter is equipped with an overtemperature switch that cannot be reset.
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Product
LED Goniophotometer for Lamps
880
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Shenzhen Chuangxin Instruments Co., Ltd.
Be used to measure the luminous intensity distribution curve intensity data spread angle and equivalent luminous flux of luminaries. Computer controls the whole test process automatically with low cost and simple operations.
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Lamp & Fixture Wiring Tester
GT3110GAM LAMPCHEK
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LampChek indicates the lamp and fixture continuity.
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Digital Lamp Cap Torque Meter
CX-L338
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Shenzhen Chuangxin Instruments Co., Ltd.
Lamp Cap Torsion Meter is a newly developed intelligent product with microprocessor built-in.
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Product
Compact Integrated Xenon Lamp
XENON CIXL
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XENON’s Compact Integrated Xenon Lamp (CIXL) is the first product that provides everything a user needs to incorporate the power of Pulsed Light technology into its operations.
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Xenon Lamp Weathering Test Chamber
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Sanwood Environmental Chambers Co ., Ltd.
Sanwood , a 23 years of Bench-top Xenon Lamp Test Chamber, Bench-top Xenon lamp aging test chamber, Bench-top xenon lamp weathering test chamber ,Xenon Lamp Test Chamber, Xenon Test Chamber manufacturers Small, simple and economic xenon test chamber. It uses a low power air-cooling xenon lamp to produce enough big irradiance energy in a small space. Moreover, through a special catoptrical system to ensure every exposure sample get the homogeneous irradiance distribution.
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HCAI-1 High Current Arc Ignition Tester
HCAI-1
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The HCAI-1 High Current Arc Ignition Tester is according to IEC 60950-1:2001, BS EN 60950-1:2001, BS 7002:2000, GB 4943.1-2011
and UL746A, IEC60947.1: 1999, GB/T14048.1-2000, IEC730.1:1993, GB14536.1-2008 and other standards required simulated safety test project. Parts and components of insulating materials or other solid combustible materials that are prone to flame spread in electrical and electronic equipment may ignite due to proximity or contact with electric arc, causing electrical fire and endangering the reliable operation of equipment and personal safety. -
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GB20550-2013 Fluorescent Lamps Initiator Gauge
CX-YGQ
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Shenzhen Chuangxin Instruments Co., Ltd.
GB20550-2013 fluorescent lamps initiator gauge
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Lamp Cap Digital Torque Meter 0-10N Lamp Base Torque Tester
CX-338
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Shenzhen Chuangxin Instruments Co., Ltd.
Torque Meter is a newly developed intelligent product with microproccesor built-in.
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Pulse Start Generator for High Pressure Sodium Lamp
LPSG60662
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The start-up test of the special lights pulse start generator is for lighting class industry such as high pressure sodium, it is according to IEC60662: 2011 and GB/T13259-2005 standard requirements.
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Digital Lamp Cap Torsion Tester
CX-l338
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Shenzhen Chuangxin Instruments Co., Ltd.
Torque Tester is a newly developed intelligent product with microprocessor built-in.
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Product
Compact Goniophotometer For Lamp Spread Angle Tester
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Shenzhen Chuangxin Instruments Co., Ltd.
LCG-1600 Goniophotometrc System carries out measuring methods of fixed location and rotating luminaires. The measured luminaire is installed on the two-dimension rotating table, using “+” laser to make the luminaire lighting center superposed with the rotating center of rotating table. The mechanical equipment allows turning the tested luminaires around a vertical axis and a horizontal axis. When tested luminaires turn around horizontal axis, the detector which is at the same level with rotating table will measure the intensity of each direction at this surface. When rotating with vertical axis, the detector will measure the intensity at the vertical surface. The vertical and horizontal axis can be rotated continuously at ±180° or 0~360°. According to the measurement requirements, the system can be operated in C-γ coordinates. When getting intensity distribution data, computer will calculate other photometric parameters automatically.





























