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品牌: PicoQuant

應用: 光學量測

HydraHarp 400 TCSPC計數積分模組(Time bin width 1ps, USB介面)

Goods number:
最大頻道數65536(解析度1ps)

支援TCSPC

可選擇4或8個訊號輸入口

應用: 時間解析螢光系統內積分器、FLIM、LIDAR、TOF、SMS

產品敘述

Multichannel Picosecond Event Timer & TCSPC Module

  • Compact box with USB 3.0 connection and modular, scalable design (patented)
  • Up to 8 independent input channels and common sync channel (up to 150 MHz)
  • 65536 histogram bins per channel, minimum width 1 ps
  • Count rate up to 12.5 million counts/sec per channel
  • Adjustable input delay for each channel with 1 ps resolution
  • Multi-stop capability for efficiency at slow repetition rates
  • Histogrammer measurement ranges from 65 ns to 2.19 s
  • Time tagging with sustained count rates up to 40 Mcps
  • External synchronization signals for (fluorescence lifetime) imaging or other control events
  • External reference clock input and output
  • Drivers and demo code for custom programming

詳細規格

The HydraHarp 400 can be used for various applications that can make use of a multi-channel TCSPC and/or time tagging system with independent channels, such as:

  • Time-Resolved Fluorescence
  • Fluorescence Lifetime Imaging (FLIM)
  • Phosphorescence Lifetime Imaging (PLIM)
  • Fluorescence Correlation Spectroscopy (FCS)
  • Fluorescence Lifetime Correlation Spectroscopy (FLCS)
  • Foerster Resonance Energy Transfer (FRET)
  • Stimulated Emission Depletion Microscopy (STED)
  • Dual Focus Fluorescence Correlation Spectroscopy (2fFCS)
  • Pulsed Interleaved Excitation (PIE)
  • Fluorescence Anisotropy (Polarization)
  • Single Molecule Spectroscopy / Detection
  • Singlet Oxygen
  • Time-Resolved Photoluminescence (TRPL)
  • TRPL Imaging
  • Lanthanide Upconversion
  • Bunch Purity
  • LIDAR/Ranging/SLR
  • Antibunching
  • Diffuse Optical Tomography and Imaging
  • Coincidence Correlation
  • Quantum Communication
  • Quantum Entanglement
  • Quantum Teleportation
  • Quantum Information Processing
  • Positron Annihilation Lifetime Spectroscopy (PALS)
  • Time response characterization of optoelectronic devices
  • Intensity interferometry
  • Time Interval Analysis (TIA)
  • Thomas-Bollinger single photon method
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