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Intense Light Source Enhances High Speed Visualization

Intense Light Source Enhances High Speed Visualization

Product News Tuesday, September 9, 2014: EngNet - Engineering Network

Specialised Imaging, working in conjunction with Cavitar, announces the SI LUX640 laser illumination system - a new innovation to improve the accuracy and sensitivity of high-speed video, ultra high-speed framing camera, Schleiren imaging and Shadowgraph systems.

The SI-LUX640 is based upon proprietary pulsed high-power diode laser illumination technology, which can illuminate an object up to a million times a second. The pulsed light power is typically several hundreds of watts, and the brightness is far greater than with LED light sources. The light pulses produced by the SI-LUX640 are so powerful and short that they can provide precise frozen images of transient events of just 100's of nanoseconds duration.  The intense light emitted by the SI-LUX640 laser illumination system can also be transferred to target object through an integral 2 metre  fibre optic cable. This enables the illumination of even objects and processes that are hard to access.

Incorporating a class 4 laser the SI LUX 640 is our first laser illumination system to offer high power, programmable pulse width in a small lightweight package. Low coherence laser light output and extensive triggering facilities allows the SI-LUX640 to be readily interfaced to almost any high-speed camera system with minimal speckle or fringe effects.

Specialised Imaging (www.specialised-imaging.com) is a knowledgeable, dynamic company focused upon design, manufacture, service and supply of ultra high-speed imaging systems and components for industrial, defence and scientific applications.  The company's continuing policy is to invest in the development of innovative imaging solutions, incorporate the latest technological advances and use improved components wherever possible. A total commitment to quality and a thorough understanding of applications are held as the keys  to the future.