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MicroTime 100

- Confocal time-resolved photoluminescence microscope with single-photon sensitivity.
- Based on TCSPC with lifetimes from a few ps to ms.
- Broad excitation (375–1060 nm) and detection (400–1050 nm).
- Intuitive acquisition & powerful analysis via SymPhoTime 64 software.

 

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Description

MicroTime 100 is a compact and flexible confocal microscope. It is an ideal time-resolved photoluminescence imaging setup for various materials science applications including solar cells, light emitting diodes (LEDs), single emitters characterization, and in general semiconductor research. MicroTime 100 is based on a conventional upright microscope body (BX43) that permits easy access to a wide range of sample shapes and sizes. For further flexibility, a BXFM body together with a specialized stand can be employed.

Specifications

Microscope
Confocal
Upright (BX43 body or BXFM body with specialized stand)
Objectives selected according to user applications, from simple air to immersion, long-distance, or specialized IR objectives
Illumination sources:
A transmission illumination unit is included in the BX43.
Widefield epi illumination (optional)
Camera for top illumination (optional)
Gooseneck side-on illumination (optional)
Scanners:
XYZ piezo objective scanner with 80 x 80 x 80 µm scan range at nominal 0.3 nm resolution positioning accuracy
Large area scanning table with 7.5 x 7.5 cm scan range at nominal 0.6 µm positioning accuracy (optional)
Excitation Sources
Picosecond diode lasers with adjustable output power and repetition rates up to 80 MHz
375 to 1060 nm excitation wavelengths
Pulsed, burst, CW operation mode
Laser Combining Unit (LCU) combining up to 5 excitation sources
Detectors
Single Photon Avalanche Diodes (SPADs)
Hybrid-Photomultiplier Tubes (Hybrid-PMTs)
NIR-PMT with > 1400 nm detection range with FluoTime 300 coupling (optional)
Exit port for coupling to FluoTime 300 or spectrograph (optional)
Up to four parallel detection channels
Data Acquisition
Accessible lifetime ranges from < 30 ps to > 5 ms
Software
SymPhoTime 64
NovaFLIM

Application

Solar Cells and Photovoltaics Research
Characterization of Light-Emitting Diodes (LEDs)
Research of Nanoparticles and TMDs
Antibunching
Characterization of semiconductors

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