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INNOVA 70C Ion Laser

INNOVA 70C Ion Laser

--> INNOVA 70C I-70C is an ion laser pared to its essential functionality. It is an entry-level device ideally suited for light industrial and scientific applications such as flow visualization, microscopy, and spectroscopy. I-70C features a compact laser head and an aluminum resonator for rapid…

PowerLocker® Wavelength Stabilization Gratings

PowerLocker® Wavelength Stabilization Gratings

--> PowerLocker® Wavelength Stabilization Gratings Coherent’s PowerLocker wavelength stabilization gratings are volume holographic gratings (VHGs, also known as Volume Bragg Gratings, or VBGs) that lock a laser diode’s emission wavelength into a narrowed optical spectrum. This increases the spectral…

Fiber Coupling Unit

Fiber Coupling Unit

--> Fiber Coupling Unit The Fiber Coupling Unit (FCU) is an interface between the high-power laser and the fiber optic cable. Contact Us About This Product See Related Products Close PRICE HERE Tech Spec Max. Power (CW) 4.5 kW Focal lengths 50, 60, 70, 85, 100 mm Max. collimated beam Ø18 mm (incl.…

Fiber-to-Fiber Coupler Air-cooled

Fiber-to-Fiber Coupler Air-cooled

--> Fiber-to-Fiber Coupler Air-cooled The air-cooled Fiber-to-Fiber Coupler (FFC ac) accommodates input power up to 4.5 kW. Contact Us About This Product See Related Products Close PRICE HERE Tech Spec Max. Power (CW) 4.5 kW Magnification 0.6 / 1.0 / 1.2 Max. NA 0.09 / 0.18 / 0.18 Optics material…

Fiber-to-Fiber Coupler

Fiber-to-Fiber Coupler

--> Fiber-to-Fiber Coupler Water-cooled The Fiber to Fiber Coupler (FFC wc) connects a laser beam from one fiber optic cable to another. The FFC wc is an eye-safe stand-alone unit with one fiber input and one fiber output. The FFC wc is water-cooled to handle high power levels (up to 12 kW). The FFC…

Fiber-to-Fiber Optic Switch Air-cooled

Fiber-to-Fiber Optic Switch Air-cooled

--> Fiber-to-Fiber Optic Switch Air-cooled The Fiber to Fiber Optic Switch Air-cooled (FFS ac) a stand-alone unit sealed terminated with a safety cube. With the FFS ac, one laser source can be time-shared between several fiber optic cables. The FFS ac has one fiber input and up to four fiber…

QCR Fiber Optic Cable

QCR Fiber Optic Cable

--> QCR Fiber Optic Cable QCR fiber cables are robust, compact and air-cooled, making them suitable for robotic applications. The QCR interface accommodates standard clamping adapters. Contact Us About This Product See Related Products Close PRICE HERE Tech Spec AR-coating 1030-1090 nm Fiber core…

QCS Fiber Optic Cable

QCS Fiber Optic Cable

--> QCS Fiber Optic Cable QCS cable delivers high-quality transmission for diffraction-limited fiber lasers. The QCS fiber optic cable produces a collimated beam. Contact Us About This Product See Related Products Close PRICE HERE Tech Spec AR-coating 1030-1090 nm, 1530-1570 nm Fiber core dimension…

Collimating Units

Collimating Units

--> Collimating Units A collimating unit is used at the exit side of a fiber optic cable. The function of this assembly is to bring the transmitted laser light into a parallel beam. Different versions for different NA of the emitted laser light are available. Contact Us About This Product See…

Fiber-to-Fiber Optic Switch Water-cooled

Fiber-to-Fiber Optic Switch Water-cooled

--> Fiber-to-Fiber Optic Switch Water-cooled The Fiber-to-Fiber Optic Switch (FFS wc) is a stand-alone unit terminated with a beam dump. With the FFS wc, one laser source can be time- or energy-shared between several fiber optic cables. The FFS wc has one fiber input and up to four fiber outputs.…

Focusing Units

Focusing Units

--> Focusing Units These assemblies focus the parallel beam from the collimating unit onto the workpiece. The size of the focused spot and the depth of focus are given by the combination of collimating optics, focusing optics and beam quality. The focusing units come either with a fixed or a…

Intermediate Optics

Intermediate Optics

--> Intermediate Optics Intermediate optics can be mounted between the collimating assembly and the focusing unit to accommodate application-specific beam delivery. The beam bending cube turns the collimated beam path 90 degrees. The twin-spot optics divides the laser beam into two parts, resulting…

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Risk factors: Except for the historical information contained here, many of the matters discussed in this Web site are forward-looking statements, based on expectations at the time they were made, that involve risks and uncertainties that could cause our results to differ materially from those expressed or implied by such statements. These risks are detailed in the “Factors That May Affect Future Results” section of our latest 10-K or 10-Q filing. Coherent assumes no obligation to update these forward-looking statements.


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