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Light Sources

  UV/Vis & NIR Deuterium Tungsten Light Sources  


Click on the image to see a typical set-up.

BDS100 is a turn-key fiber coupled UV/Vis/NIR light source providing a spectral output from 200nm to > 1100nm.

The UV lamp is based on RF technology providing the advantage of low heat generation and power consumption.

The light source comes complete with DC power supply, safety shutter, and individual on/off controls for the deuterium and tungsten lamps.  The total power output from the BDS100 is 6 watts which is about 3W for tungsten and about 3W for deuterium.


 
  BPS101 Optical Feedback Controlled High Stability
Tungsten Halogen Light Source
 

Click on the image to see a typical set-up.

The BPS101 is a low-cost-high-performance constant optical intensity halogen tungsten light source featuring a 6V DC power supply and on/off toggle switch.
  • Fiber Coupled
  • Photo Feedback Stabilized
  • Remote Control Port
  • 350nm - 2500nm
  • Portable and Light Weight



Using its optical feedback control the BPS101 can deliver up to one order of magnitude improvement in output power stability compared to conventional sources operated under constant current mode.

A remote control port is provided for versatile remote on/off modulation, operating current monitoring, and external operating current control.  Slow ramp start is built into the source to ensure stability and a long lifetime of operation. The BPS101 needs no fiber alignment and is ideal for spectroscopic applications in Visible and Near IR ranges.



  BPS120 Fiber Coupled 20 W Vis/NIR (Tungsten) Light Source  


Click on the image to see a typical set-up.

The BPS120 series is a fiber coupled constant current operated 20 W tungsten light source featuring a 12V DC power supply and on/off toggle switch.

  • Fiber Coupled
  • 20 W Vis/NIR Tungsten
  • Constant Current Operation
  • 390 - 2900 nm
  • Portable and light weight

By use of high precision operation current control and a gas filled bulb the BPS120 demonstrates a stable output of light.  A remote control port is provided for versatile remote on/off modulation, operating current monitoring, and external operating current control.  Slow ramp start is built into the source to ensure stable and long lifetime operations.

With flexible fiber delivering, the BPS120 is ideal for use with fiber coupled array spectrometers in spectroscopic applications from Visible to NIR.



  SCL Series Portable Spectral Calibration Source  


Click on the image to see a typical set-up.

Portable Spectral Calibration Source High pulse-to-pulse repeatability 2.0 % CV (Max.) featuring a 12V DC Power Supply and on/off toggle switch.
  • Compact and Simple Tools for Calibrating Spectral Instruments.
  • Spectral Ranges from 185nm to 1800nm
  • NIST Traceable Spectral Emission Lines
  • Fiber Coupling and Free Space Connection
  • Excellent Stability
  • Low Power Consumption

The SCL Portable Spectral Calibration Source Series have six unique lamp modules: Argon, Krypton, Mercury, Mercury/Argon, Neon, Xenon.  The calibration spectrum covers UV - NIR.

The Mercury lamp has strong spectral lines throughout the UV-VIS region. The extremely strong output at 254nm is also to be used as a UV illumination source.

The Neon lamp has a large number of lines of mid to high intensity in the 800nm to 3400nm range, which makes it useful for resolution testing in the NIR region. There are also a number of closely spaced lines of similar intensity over this wavelength range.

The Xenon lamp's distribution of lines of moderate intensity between 800nm and 3500nm is useful for calibration in the IR. These emission lines are relatively close to wavelengths used by fiber optic communication systems for data transfer. Testing of fibers and detectors for these systems can be performed without the inherent high cost of lasers for light sources.

The Argon line spectrum features a number of lines of consistent high intensity between 700nm and 1000nm. These lines at such a high intensity are excellent for calibration in that region. There are also several lines spaced less than 1 nm apart that can be used for resolution testing.



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