PhotoSonus T in Vilnius, Vilnius County, Lithuania
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Specifications
- Condition
- new
- Signal
- 1 cm-1
- Idler
- 1 cm-1
- Sh (optional)
- 330 - 660 nm
- Opo
- 150 mJ
- Sh
- 2 cm-1
- Linewidth 5)
- < 10 cm-1
- Press duration 7)
- 3 - 5 ns
- Typical beam diameter 8)
- 7 mm
- Typical beam divergence 9)
- < 2 mrad
- Signal beam
- horizontal
- Idler beam
- vertical
- Sh beam
- vertical
- Pump wavelength
- 532 nm
- Press duration
- 4 - 6 ns
- Beam quality
- "Hat-Top in near field. Close to Gaussian in far field
- Beam divergence
- < 0.6 mrad
- Pulse energy stability (stddev)
- < 2.5 %
- Pulse repetition rate
- 10 Hz
- Unit size (w × l × h mm)
- 456 × 821 × 270 mm
- Power supply size (w × l × h)
- 330 × 490 × 585 mm
- Umbilical length
- 2.5 m
- Water consumption (max 20 °c) 11)
- < 10 l/min
- Room temperature
- 18 - 27 °C
- Relative humidity
- 20 - 80 % (non-condensing)
- Power requirements 8)
- 200 - 240 V AC, single phase, 50/60 Hz
- Power consumption
- < 1.5 kW
- Cleanliness of the room
- not worse than ISO Class 9
- -sh
- Efficient second harmonic generator for 330 - 660 nm range.
- -er
- Extended OPO signal range (for T+ model only).
- -fbc
- Fiber bundle coupled output.
- -attn
- Pulse energy attenuator.
- -h
- Additional output for 1064 nm pump wavelength.
- -em
- OPO energy meter.
- -aw
- Water-air cooled power supply.
- Subcategory
- Lasers
- Subcategory 2
- Machinery
- Listing ID
- 97566056
Description
High Energy Table-Top Tunable Wavelength Lasers for Photoacoustic Imaging
PhotoSonus T is desktop version of high energy tunable laser source for photo-acoustic imaging. It features high output energies for imaging larger volumes of tissue.
Hands-free, automated wavelength tuning from 330 to 2600 nm
Ultra-wide OPO signal tuning range from 660 to 1320 nm
Up to 230 mJ in range 660 - 2600 nm, 35 mJ in range 330 - 660 nm
Narrow linewidth across tuning range
3 - 5 ns pulse duration
Remote control via key pad or PC
Separate output port for 532 nm beam. Output for 1064 nm is optional
OPO pump energy monitoring
Fast wavelength switching within entire signal or idler ranges
Photoacoustic imaging
Flash photolysis
Photobiology
Remote sensing
Non-linear spectroscopy
High pulse energy (up to 230 mJ) is highly beneficial for photoacoustics imaging applications
Superior tuning resolution (1 - 2 cm-¹) allows recording of high quality spectra
High integration level saves space in the laboratory