EQ-99X LDLS Broadband Laser-Driven Light Source
Description
Advanced imaging and analytical spectroscopy applications in the life sciences and materials sciences need light sources capable of providing extremely high brightness across broad wavelength range. Traditionally, multiple lamps (Tungsten/Halogen, Xenon-arc, Deuterium) have been used to cover this broad spectral range. However, combining multiple lamps is costly and optically inefficient, and the use of electrodes within these lamps limits their ability to achieve the high brightness or power needed for the most demanding applications. Furthermore, traditional electrode-driven light sources have short life, need to be changed frequently, and during their life the lamp output declines constantly. To address these problems, Energetiq has developed a revolutionary single-light source technology called the LDLS™ Laser-Driven Light Source that enables extreme high brightness with a relatively flat spectrum, from 170nm through visible into the near infrared, combined with life-time an order of magnitude longer than traditional lamps. The LDLS technology is fully embodied in the compact EQ-99X - a high brightness, high stability broadband source that is specifically designed for demanding imaging and spectroscopy applications. The Energetiq EQ-99X offers excellent spatial and power stability for highly repeatable measurements across the broad spectrum. Utilizing a patented laser-driven bulb technology and ultra-clean construction, the EQ-99X is ideal for applications requiring ultra-long lamp life combined with high broadband brightness.
- • UV-Vis-NIR Spectroscopy
- • Monochromator Source
- • Thin-Film Measurements
- • Optical Component Testing
- • Environmental Analysis
- • Materials Characterization
- • Gas Phase Measurements
- • Advanced Imaging/Illumination
- • Applications requiring long lamp life
EQ-99X LDLS Broadband Laser-Driven Light Source
Specifications |
|
---|---|
Spectral Output: | 170-2100nm |
Numerical Aperture: | 0.47 |
Typical Bulb Life: | >9000 hrs |
Features
CW laser plasma discharge
- 100μm - 200μm plasma size
Very high brightness across spectrum
- UV-Vis-NIR (170nm - 2100nm)
Eliminates need for multiple lamps
- Replaces D2/Tungsten/Xenon Arc
Excellent spatial and power stability
- Repeatable measurements
Ultra-clean construction
- Improved stability & extended life
Electrodeless operation for long life
- Reduced cost of ownership
Applications
UV-Vis-NIR Spectroscopy
Monochromator Source
Thin-Film Measurements
Optical Component Testing
Environmental Analysis
Materials Characterization
Gas Phase Measurements
Advanced Imaging/Illumination
Applications requiring long lamp life
For pricing, technical or any other questions please contact the supplier
- No registration required
- No markups, no fees
- Direct contact with supplier
-
Ships from:
United States
-
Sold by:
-
On FindLight:
since 2017
Frequently Asked Questions
The EQ-99X LDLS Broadband Laser-Driven Light Source is a single-light source technology that provides high brightness across a broad wavelength range, from 170nm through visible into the near infrared.
The EQ-99X LDLS Broadband Laser-Driven Light Source is ideal for advanced imaging and analytical spectroscopy applications in the life sciences and materials sciences, including UV-Vis-NIR Spectroscopy, Monochromator Source, Thin-Film Measurements, Optical Component Testing, Environmental Analysis, Materials Characterization, Gas Phase Measurements, and Applications requiring long lamp life.
The EQ-99X LDLS Broadband Laser-Driven Light Source features a CW laser plasma discharge, very high brightness across the spectrum, eliminates the need for multiple lamps, excellent spatial and power stability, ultra-clean construction, and electrodeless operation for long life.
The EQ-99X LDLS Broadband Laser-Driven Light Source eliminates the need for multiple lamps, provides high brightness and power needed for demanding applications, and has a lifetime an order of magnitude longer than traditional lamps.
The EQ-99X LDLS Broadband Laser-Driven Light Source provides high brightness across a broad wavelength range, has excellent spatial and power stability for highly repeatable measurements, and has a long lamp life combined with high broadband brightness. Additionally, it reduces the cost of ownership due to its electrodeless operation.