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Prizmatix UHP-T Red LED System at 630nm

  • Collimated Configuration
  • With Fiber Coupler Adaptor (FCA) featuring fiber coupled configuration
  • Image 3
UHP-T-630-DI System
630 nm
Collimated Power:
>1.2 Watt


Prizmatix Ultra High Power (UHP) LEDs can be used for both microscopy or fiber-coupled applications and are an excellent replacement of conventional lamps and laser sources. All Prizmatix Microscope LEDs are equipped with the microscope adapter of your choice and are easy to mount on the epifluorescence port of your microscope. The UHP-T-DI-LED series provides 60% more power than the UHP Series, up to an impressive 5 watts of collimated power!  

The modular design allows you to combine LEDs to create a multi-wavelength light source at any time. They can also be easily connected to a Fiber Coupler Adaptor and can be used with a full range of other components and accessories such as a Liquid Light GuideBeam CombinerFilter WheelBeam Switcher and more.

The Ultra High Power UHP-T-630-DI provides up to 1.2 watts of collimated red light and the LED drivers support CW or fast TTL triggered operation. 

Technical Details: Prizmatix Product Page

Download Spec Sheetspdf-small.gifUHP-T-DI LEDs


The following components are included in this System. Components may also be purchased individually. 

Key Features

  • Compatible with Prizmatix Optogenetics Toolbox and modular Microscope-LED Light Source products families
  • Fiber coupler available
  • Liquid Light Guide available
  • Single chip Ultra High Power LED
  • Optically isolated TTL input for external triggering (no shutter needed)
  • LED spectrum can be narrowed by optional band pass filter
  • Excellent for fluorescence excitation
  • Long life (no lamp or laser tube replacement required)
  • Computer control via USB and LabView software (optional)
  • Stable precisely adjustable power
  • Speckle free
  • Rapid warm up time


  • Fluorescence Microscopy Cy5, Alexa Fluor 633
  • Whole body imaging
  • Photo activation (PA)
  • Fluorescence recovery after photo bleach (FRAP)
  • Fluorescence in-situ hybridization (FISH)
  • Bio analysis
  • Machine vision

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