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| Datasheet: Thermal Image Analysis Software: Altair | The ALTAIR software suite offers powerful and sophisticated features for scientists and engineers who want to acquire, display and process infrared images. The ALTAIR suite is composed of several software tools allowing to achieve simple and conventional tasks as to more complex focal plane array management features. | 05/16/2008 | 507.0 KB |
| Datasheet: Infrared Image Analysis Software: Velocity | Velocity is a powerful real-time image capture and analysis software for the PV-320 series of infrared cameras. Built using LabVIEW, Velocity features a highly intuitive user interface and a library of powerful tools that enables the sophisticated thermal analysis of a wide range of objects and materials. | 05/16/2008 | 169.4 KB |
| Flyer: IK-HD1 3CCD HDTV Camera | Flyer: IK-HD1 3CCD HDTV Camera | 05/15/2008 | 1.66 MB |
| Brochure: IK-TF9C 3CCD Color Camera | Brochure: IK-TF9C 3CCD Color Camera | 05/15/2008 | 1.24 MB |
| Brochure: IK-HD1 3CCD HDTV Camera | Brochure: IK-HD1 3CCD HDTV Camera | 05/15/2008 | 1.25 MB |
| Datasheet: IPLEX FX Scope Units | The applicability of the latest IPLEX FX videoscope system is now further extended with the introduction of a new range of longer length scope units. | 05/15/2008 | 1.42 MB |
| Datasheet: LIMO 350 W Pump Modules | The LIMO300-F600-DL940 and LIMO350-F400-DL940 fiber-coupled high-power diode lasers emit 300 W out of a 600 µm fiber core and 350 W out of a 400 µm fiber core, respectively. The compact and cost-effective diode laser devices are optimized for pumping Yb lasers, e.g. Yb:YAG disc lasers. Thus, the spectral width is limited to 4 nm. | 05/12/2008 | 143.5 KB |
| Datasheet: Homogeneous Laser Illumination For Sophisticated Metrology | Micro-optic homogenizers are the basis of new laser sources for illumination. The generated, homogeneous illuminated fields are used in metrology, e.g. medicine or chemical analysis. | 05/12/2008 | 1.04 MB |
| Brochure: Optical Pumping With High-Power Diode Lasers | Improve your signal-to-noise ratio for Nuclear Magnetic Resonance (NMR) and Magnetic Resonance Tomography (MRT) portable Xe129-Polarizer. | 05/12/2008 | 783.2 KB |
| Measuring Laser Output Flux | Measuring Laser Output Flux | 05/09/2008 | 81.9 KB |
| Measuring Diode Laser Output Flux | Measuring Diode Laser Output Flux | 05/09/2008 | 77.7 KB |
| Tech Note: Guide To Fluorescence And Color | This technical note is intended to present an overview of the general principles associated with measuring fluorescent color. It will address the chemistry and physics of what causes fluorescent pigments to work and give a few examples of applications for the pigments. | 05/09/2008 | 226.7 KB |
| Technical Guide: Reflectance Spectroscopy | Reflectance Spectroscopy is a versatile tool that allows us to accurately measure the flux per wavelength of light reflected from a sample. Whether the sample be specular, diffuse, or something in between, reflectance spectroscopy can give you information about the material's chemical composition or formulation that is not available by other methods of analysis. This Technical Guide looks at the types of reflectance measurements from materials and the information that can be gained from each. | 05/09/2008 | 7.35 MB |
| Application Note: Quantitation of Single Beam Substitution Correction In Reflectance Spectroscopy Accessories | The single beam substitution correction, sometimes known as single beam substitution error, is the systematic, predictable, and non-random error inherent in single beam integrating spheres measuring reflectance or transmittance. The error is caused by the difference in the throughput of the sphere when the reference makes up a portion of the sphere wall and when the sample is substituted for the reference. In reflectance measurements the throughput and corresponding measured reflectance is usually lower when the sample is present since a reference material of high reflectance (nearly 100%) is used. In transmittance measurements the throughput and the measured transmittance is usually higher when the sample is present since an open port (which has zero reflectance when viewed from inside the sphere) is typically used as a reference. | 05/09/2008 | 637.4 KB |
| Application Note: Choosing The Right Sphere Size For Your Application — The Integrating Sphere Reflectance Accessory | This article is designed to aid UV-VIS and UV-VIS-NIR Spectrophotometer users in determining the most suitable integrating sphere accessory for their sample measurement needs. It will present the operating features of both the 60 mm and the 150 mm diameter integrating sphere reflectance accessories. Sphere coatings, sphere efficiency, signal throughput, spectrum noise level, port fraction, measurement accuracy, and design options are discussed. | 05/09/2008 | 572.9 KB |
| Application Note: Absolute Specular Reflectance Measurements At Fixed Angles | With the widespread use of anti-reflective optical coatings, multilayer dielectric coatings, solar controlling thin films, and laser mirrors, specular reflectance measurements have become even more important for research and QC applications. | 05/09/2008 | 58.5 KB |
| White Paper: Spectrally Selective Metal Applications | DSI has developed dichroic hybrid coatings that can be applied to metal. This application is designed to reflect specific wavelengths and couple the unwanted light into the metal substrate. The coating is constructed using two optical coatings. | 05/08/2008 | 77.2 KB |
| Datasheet: Photo IC Diode: S10604 Illuminance Sensor | Hamamatsu Corporation's chip-on-board-type illuminance sensor, the S10604, is a RoHS-compliant, energy-saving sensor ideal for large-screen TV brightness control, as a backlight dimmer in liquid-crystal displays on cell phones, and in other applications where the level of the ambient light is measured | 05/01/2008 | 606.1 KB |
| Datasheet: High Brightness Diode Laser Module - High Brightness Fiber-Coupled Series (4.5-7.8 W) | A passively cooled fiber-coupled high brightness diode laser module. The standard wavelengths are 808 nm and 975 nm / 976 nm. | 05/01/2008 | 171.5 KB |
| Collimated Passively Cooled Diode Laser On An Industry Standard Mount | JENOPTIK Laserdiode GmbH, the leader in quality of high-power diode lasers, has introduced its new passively cooled diode laser on an industry standard mount. | 05/01/2008 | 272.1 KB |
| Datasheet: Passively Cooled Diode Laser On An Industry Standard Mount (qcw) | JENOPTIK Laserdiode GmbH, the leader in quality of high-power diode lasers, has introduced its new passively cooled diode laser on an industry standard mount. | 05/01/2008 | 181.8 KB |
| Datasheet: Collimated Passively Cooled cw And qcw Diode Lasers On CS-Mount | A passively cooled high-power diode laser on an industry standard mount (CS-mount) or on another heatsink based on the principle of head conduction. The standard wavelengths are 808 nm, 915 nm, 938 nm and 976 nm. | 05/01/2008 | 272.1 KB |
| Datasheet: Passively Cooled qcw Diode Lasers With And Without Collimation | A passively cooled high-power diode laser on an industry standard mount (CS-mount) or on another heatsink based on the principle of head conduction. The standard wavelengths are 808 nm, 915 nm, 938 nm and 976 nm. | 04/30/2008 | 177.5 KB |
| Collimated Passively Cooled cw And qcw Diode Lasers | A passively cooled high-power diode laser on an industry standard mount (CS-mount) or on another heatsink based on the principle of head conduction. The standard wavelengths are 808 nm, 915 nm, 938 nm and 976 nm. | 04/30/2008 | 273.5 KB |
| Datasheet: Passively Cooled cw And qcw Diode Lasers With 40 W cw | A passively cooled high-power diode laser on an industry standard mount (CS-mount) or on another heatsink based on the principle of head conduction. The standard wavelengths are 808 nm, 915 nm, 938 nm and 976 nm. | 04/30/2008 | 305.3 KB |