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Ferdinand-Braun-Institut, Leibniz-Institut fuer Hoechstfrequenztechnik (FBH)

住所 〒12489
Gustav-Kirchhoff-Strasse 4 Berlin Germany
TEL 0049-30-6392-2600
FAX 0049-30-6392-2602
URL https://www.fbh-berlin.com
E-mail
  最終更新日:2019年03月28日

企業PR

The Ferdinand-Braun-Institut develops customized light sources from the NIR to the ultra-violet spectral range: high-power diode lasers with excellent beam quality, UV LEDs, and hybrid laser modules.

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  • Ferdinand-Braun-Institut, Leibniz-Institut fuer Hoechstfrequenztechnik (FBH)

Ferdinand-Braun-Institut, Leibniz-Institut fuer Hoechstfrequenztechnik (FBH) 取り扱い製品

Miniaturized diode laser sources for biomedical and spectroscopy applications

Miniaturized diode laser sources for biomedical and spectroscopy applications

The FBH has developed compact laser modules emitting watt-level power in the yellow spectral range at 561 nm, 574 nm, and 590 nm. They are available in both CW and pulsed operation for photo-coagulation treatments in ophthalmology or use in fluorescence spectroscopy and STED microscopy, respectively.

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Stand-alone PC-controlled pulse laser source for LiDAR applications

Stand-alone PC-controlled pulse laser source for LiDAR applications

The FBH offers flexible laser sources delivering 200 ps to 20 ns pulses. For automotive LiDAR FBH developed, wavelength-stabilized laser diodes (5 ns pulses, 40 W pulse power) near 905 nm with good beam quality and up to 85°C. Further wavelengths and power ranges are possible.

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Compact picosecond laser pulse source PLS 1030

Compact picosecond laser pulse source PLS 1030

The all-in-one pulse laser system delivers ultra-short light pulses from 5-15 ps, any desired repetition rate from the hertz to the MHz range; pulse peak performance reaches > 20 W. The PLS series allows integration of laser chips of any available wavelength from 630-1180 nm.

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Portable Shifted Excitation Raman Difference Spectroscopy (SERDS) – from chips to applications

Portable Shifted Excitation Raman Difference Spectroscopy (SERDS) – from chips to applications

For rapid SERDS measurements, the FBH has demonstrated monolithic dual-wavelength diode lasers emitting light alternatingly on two slightly different wavelengths. These Y-branch DBR diode lasers provide wavelength tuning over several nanometers. Supplemented with battery power supply, electronic measurement equipment and software interface, the system can be used for in situ measurements.

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