SPC-130EMN
  • SPC-130-EMN, SPC-130-EMNX, SPC-130-EMNXX TCSPC Modules
  • PCI
  • Timing Precision (jitter, RMS) 2.5 ps


Catalog
Specification
  SPC-130-EMN SPC-130-EMNX SPC-130-EMNXX
Photon Channel
Principle Constant Fraction Discriminator (CFD)
Discriminator Input Bandwidth 4 GHz
Time Resolution (FWHM/RMS, electr.) < 6.6 ps / 2.5 ps < 3.5 ps / 1.6 ps < 3 ps / 1.1 ps
Variance in Time of IRF  max. < 1 ps over 50 s
Optimum Input Voltage Range -30 mV to -500 mV
Min. Input Pulse Width 200 ps
Threshold 0 to -250 mV
Zero Cross Adjust -100 mV to 100 mV
Syncronisation Channel
Principle Constant Fraction Discriminator (CFD)
Discriminator Input Bandwidth 4 GHz
Optimum Input Voltage Range -30 mV to -500 mV
Min. Input Pulse Width 200 ps
Threshold 0 to -250 mV
Frequency Range 0 to 150 MHz
Frequency Divider 1, 2, 4
Zero Cross Adjust -100 mV to 100 mV
Time-to-Amplitude Converters / ADCs
Principle Ramp Generator / Biased Amplifier
TAC Range 50 ns to 5 µs 25 ns to 2.5 µs 12.5 ns, 25 ns, 50 ns
Biased Amplifier Gain 1 to 15
Biased AmplifierOffset 0 % to 50 % of TAC Range
Time Range incl. Biased Amplifier 3.3 ns to 5 µs 1.67 ns to 2.5 µs 0.834 ns to 50 ns
Min. Time Channel Width 813 fs 405 fs 203 fs
ADC Principle Flash ADC with Error Correction
Diff. Nonlinerarity < 0.5 % RMS, typ. < 1 % peak-peak
Data Acquisition Histogram Mode
Method on-board 2-dim. histogramming process
Online Display Decay curves (waveforms)
Dead Time 100 ns, independent of computer speed
Saturated Count Rate 10 MHz
Sustained Count Rate 10 MHz
Max. useful Count Rate (50 % loss) 5 MHz
Max. Number of curves in memory 65536 16384 4096 1024 256 64
Number of Time Channels / Curve 4 16 64 256 1024 4096
Max. Counts / Channel 16 bits
Overflow Control none, stop, repeat and correct
Collection Time 0.1 µs to 100,000 s
Diplay Interval Time 0.1 µs to 100,000 s
Repeat Time 0.1 µs to 100,000 s
Curve Control (Internal Sequencing) Programmable Hardware Sequencer
Input Curve Control (Routing) 4 bit, TTL
Input Count Enable Control 1 bit, TTL
Input External Event Markers 4 bit, TTL
Input Experiment Trigger TTL
Data Acquisition FIFO / Parameter-Tag Mode
Method Time and wavelength tagging of individual photons and continuous writing to disk
Online Display Decay functions, FCS, Cross-FCS, PCH MCS Traces
FCS Calculation Multi-tau algorithm, online calculation and online fit
Number of counts of decay/ waveform recording unlimited
Dead Time 100 ns
Saturated Count Rate, Peak 10 MHz
Sustained Count Rate (bus transfer limit) typ. 4 MHz
Output Data Format (ADC / Macrotime / Routing) 2012-12-04
FIFO Buffer Capacity (Photons) 2 * 106
Macro Timer Resolution, Internal Clock 25 ns, 12 bit, overflows marked by MOTF entry in data stream
Input Macro Timer Resolution, Clock from Sync 10 ns to 100 ns, 12 bit, overflow marked by MOTF entry in data stream
Input Curve Control (external Routing) 4 bit, TTL
Input Count Enable Control 1 bit, TTL
Input Experiment Trigger TTL
Operation Environment
PC System Windows 8 / 10, > 8 GB RAM, 64 bit operating system recommended
PC Interface PCI
Power Consumption approx. 12 W from +5 V, 0.7 W from +12 V
Dimensions 240 mm x 130 mm x 15 mm


Application
  • Fluorescence Correlation – FCS
  • Fluorescence Cross Correlation
  • Antibunching Experiments
  • NIRS
  • fNIRS
  • DCS – Diffuse Correlation
  • Multi-Dimensional TCSPC
  • Classic TCSPC


제품정보
  • Fluorescence Decay Recording
  • Phosphorescence Decay Recording
  • Photon Correlation
  • Single-Molecule Spectroscopy
  • Free Instrument Software for Windows 8/10 (Realtime Calculation and Fitting of FCS Curves)
  • Parallel Operation of Up to 4 Modules
  • Available as Multi-Module Package e.g. SPC-132-EMN, SPC-133-EMN and SPC-134-EMN

경기도 하남시 조정대로 150 하남지식산업센터(ITECO) 그린존 O213호
Tel : 02.486.7930 / Fax : 02.486.7931 / E-mail : kos@kosinc.co.kr
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