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Supplier profile:

FYLA LASER

We Laser The New Industry

FYLA LASER S.L.
Ronda Guglielmo Marconi 12
CP 46980, Paterna
Spain

Tel.:+34 60797 10 21
E-mail:
Website:www.fyla.com
Social media:

Company Description

At FYLA we create and commercialize leading fiber laser technology by joining singularity, quality, and profitability for our clients and stakeholders. From science to industry, over the last few years, FYLA has become a trusted partner to its customers worldwide. FYLA's lasers have a direct impact on the growth of the new industry, meeting the requirements of a wide range of applications, ranging from diagnostics and imaging to semiconductor and optical communications. At FYLA, we proudly aim at leading the industry transformation using advanced photonics to support the development of new sectors and applications.

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Video: Discover a novel concept in multiphoton microscopy: deep imaging, simultaneous excitation of differnet fluorophores, compact, simple and cost-effective. Play video

Products

ProductEncDescription
femtosecond lasersS Efemtosecond lasers from FYLA LASER

The FYLA SCH is a revolutionary laser for multiphoton and SHG microscopy. With a broadband spectrum (900–1180 nm), multiple fluorophores can be imaged simultaneously without the need of wavelength tuning and hence in a much simpler and faster fashion. Delivering the shortest pulses on the sample plane (of the range of 15–20 fs), FYLA┬┤s SCH offers extraordinary peak powers (>200 kW) and the highest levels of brightness at reduced average power, improving photobleaching and photodamage to the sample.

This all-fiber fiber laser is an unparalleled illumination source for multiphoton and SHG microscopy, massively simplifying and reducing the cost of the optical set-up while improving brightness and ensuring excellent image resolution.

fiber lasersS Efiber lasers from FYLA LASER

At FYLA we develop ultrafast fiber lasers with pulse durations in the range of nanoseconds, picoseconds, and femtoseconds. Our lasers are used in a lot of applications, from microscopy (as two-photon microscopy, SHG, single molecule fluorescence, OCT) up to characterization of the semiconductors, providing a greater level of robustness, higher lifetimes, and a cost-effective solution.

fluorescence microscopesS E

Higher multiphoton microscopy brightness, multiple simultaneous label excitation, and simpler microscopy configuration can be achieved with the FYLA SCH all-fiber laser from FYLA. A new concept in multiphoton microscopy which provides the shortest pulses (15 fs) and the highest peak power at the sample plane. With the enhanced photon flux of the SCH laser, higher two-photon excitation efficiencies at lower average power can be achieved, leading to reduced photodamage to live samples.

A plug and play, compact and robust fiber laser with a broad bandwidth (200 nm) which enables the simultaneous excitation of multiple blue, green and red labels. Tuning is not required which enormously simplifies the optical set-up of the multiphoton microscope and reduces the ownership cost.

high-power fiber lasers and amplifiersS Ehigh-power fiber lasers and amplifiers from FYLA LASER

The FYLA PS50 is a fiber laser system generating ultrashort and ultra-intense pulses (up to 50 W of average power), 1064 nm central wavelength and linearly polarized emission with optic-temporal tunable properties: it offers several user functionalities such as tunability of the pulse temporal width from 400 fs to 20 ps and tunability of repetition rate from single shot up to 1 MHz. Due to these properties this laser is a versatile tool for industry and science.

high-power lasersS Ehigh-power lasers from FYLA LASER

The FYLA PS50 is a fiber laser system generating ultrashort and ultra intense pulses (up to 50 W of average power), 1064 nm central wavelength and linearly polarized emission with optic-temporal tunable properties: it offers several user functionalities such as tunability of the pulse temporal width from 400 fs to 20 ps and tunability of repetition rate from single shot up to 1 MHz. Due to these properties this laser is a versatile tool for industry and science.

laser applicationsS E

At FYLA we develop ultrafast fiber lasers with pulse durations in the range of picosecond and femtosecond. Our lasers are used in a lot of applications, from microscopy (as two-photon microscopy, SHG, single molecule fluorescence, OCT) up to characterization of the semiconductors, providing a greater level of robustness, higher lifetimes, and a cost-effective solution.

laser microscopesS E

At FYLA we develop ultrafast fiber lasers with pulse durations in the range of picoseconds and femtoseconds. Our lasers are used in a lot of applications, from microscopy (as two-photon microscopy, SHG, single molecule fluorescence, OCT) up to the characterization of the semiconductors, providing a greater level of robustness, higher lifetimes, and a cost-effective solution.

laser spectroscopy equipmentS Elaser spectroscopy equipment from FYLA LASER

The FYLA SCT is a highly stable picosecond supercontinuum fiber laser delivering over 1 W of average power across the 450–2300–nm spectral range and more than 30 mW in the visible range. It is a very versatile illumination source with a broadband spectrum that can be used for multiple applications including absorption/transmission measurements for material characterization, VIS, NIR and IR spectroscopy, single molecule spectroscopy and fluorescence excitation.

lasersS Elasers from FYLA LASER

At FYLA we develop ultrafast fiber lasers with pulse durations in the range of picoseconds and femtoseconds. Our lasers are used in a lot of applications, from microscopy (as two-photon microscopy, SHG, single molecule fluorescence, OCT) up to characterization of the semiconductors, providing a greater level of robustness, higher lifetimes, and a cost-effective solution.

mode-locked fiber lasersS Emode-locked fiber lasers from FYLA LASER

At FYLA we develop ultrafast fiber lasers with pulse durations in the range of picosecond and femtosecond. Our lasers are used in a lot of applications, from microscopy (as two-photon microscopy, SHG, single molecule fluorescence, OCT) up to characterization of the semiconductors, providing a greater level of robustness, higher lifetimes, and a cost-effective solution.

OEM laser modulesS E

At FYLA we develop ultrafast fiber lasers with pulse durations in the range of picoseconds and femtoseconds. Our lasers are used in a lot of applications, from microscopy (as two-photon microscopy, SHG, single molecule fluorescence, OCT) up to characterization of the semiconductors, providing a greater level of robustness, higher lifetimes, and a cost-effective solution.

picosecond lasersS Epicosecond lasers from FYLA LASER

The FYLA SCT is a pulsed high power supercontinuum fiber laser delivering over 1 W of average power across the 450–2300 nm spectral range and more than 30 mW in the visible range. It is a very versatile illumination source with a broadband spectrum that can be used for multiple applications including absorption/transmission measurements for material characterization, VIS, NIR and IR spectroscopy, single molecule spectroscopy and fluorescence excitation.

pulsed lasersS Epulsed lasers from FYLA LASER

At FYLA we develop pulsed fiber lasers with pulse durations in the range of picoseconds and femtoseconds. Our lasers are used in a lot of applications, from microscopy (as two-photon microscopy, SHG, single molecule fluorescence, OCT) up to characterization of the semiconductors, providing a greater level of robustness, higher lifetimes, and a cost-effective solution.

research and developmentS

FYLA LASER is a company doing research, development and manufacturing of fibre technology, focusing on communications, imaging, metrology and biosciences equipment. Come to us with a problem and we will find a solution!

semiconductor fabrication equipmentSsemiconductor fabrication equipment from FYLA LASER

The FYLA SCT is a highly stable picosecond supercontinuum fiber laser delivering over 1 W of average power across the 450–2300 nm spectral range and more than 30 mW in the visible range. It is a very versatile illumination source with a broadband spectrum that can be used for multiple applications including absorption/transmission measurements for material characterization, VIS, NIR and IR spectroscopy, single molecule spectroscopy and fluorescence excitation.

supercontinuum sourcesS Esupercontinuum sources from FYLA LASER

The FYLA SCT is a highly stable picosecond supercontinuum fiber laser delivering over 1 W of average power across the 450–2300 nm spectral range and more than 30 mW in the visible range. It is a very versatile illumination source with a broadband spectrum that can be used for multiple applications including absorption/transmission measurements for material characterization, VIS, NIR and IR spectroscopy, single molecule spectroscopy and fluorescence excitation.

time-resolved spectroscopy equipmentS Etime-resolved spectroscopy equipment from FYLA LASER

The FYLA SCT is a highly stable picosecond supercontinuum fiber laser delivering over 1 W of average power across the 450–2300 nm spectral range and more than 30 mW in the visible range. It is a very versatile illumination source with a broadband spectrum that can be used for multiple applications including absorption/transmission measurements for material characterization, VIS, NIR and IR spectroscopy, single molecule spectroscopy and fluorescence excitation.

ultrafast lasersS Eultrafast lasers from FYLA LASER

At FYLA we develop ultrafast fiber lasers with pulse durations in the range of picosecond and femtosecond. Our lasers are used in a lot of applications, from microscopy (as two-photon microscopy, SHG, single molecule fluorescence, OCT) up to characterization of the semiconductors, providing a greater level of robustness, higher lifetimes, and a cost-effective solution.

white light sourcesS Ewhite light sources from FYLA LASER

The FYLA SCT is a highly stable picosecond supercontinuum fiber laser delivering over 1 W of average power across the 450–2300 nm spectral range and more than 30 mW in the visible range. It is a very versatile illumination source with a broadband spectrum that can be used for multiple applications including absorption/transmission measurements for material characterization, VIS, NIR and IR spectroscopy, single molecule spectroscopy and fluorescence excitation.