Raman, spectrometer, spectral diagnostics
TRS Detection System
By measuring the fluorescence lifetime of atom and molecule radiation to obtain the lifetime of excited state, transition probability, collision cross section and other relevant information.

Product Specifications
TRS Detection System
6 specification rows
Specifications
| Parameter | Value |
|---|---|
| Diode laser | Modulation available; |
| Monochromator | Wavelength range 200-1100nm; |
| Photoelectric probe | Si substrate photoelectric detector, reaction rate 1ns; |
| Oscilloscope | Acquisition rate 50MHz; |
| Others | Sample, sample stage, photoelectric detector, signal projector, guide rail, fiber, fiber holder and light barrier; |
Product variants
- The typical application of time-resolved spectroscopy is by measuring the fluorescence lifetime of atom and molecule radiation to obtain the excited state lifetime, transition probability, collision cross section, reaction speed, energy transfer and other relevant information. This system is based on the time domain analysis system of the fluorescence lifetime testing application. It works by using pulse laser to excite samples to generate fluorescence radiation, then measuring the evolution relation of the fluorescence intensity over time. Usually the fluorescence lifetime is at nanosecond level, some phosphor and rare earth compounds samples have longer radiation lifetime is up to millisecond level.
Need this configured?
Share wavelength range, measurement target, detector needs, sample geometry, software and interface requirements, and we will qualify the matching configuration.