Fiber Collimator / Focusers
Our Fiber collimators / focusers are designed for laser applications which require pure Gaussian beam. Holmarc Fiber Collimators are available from 5 mm to 40
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Our Fiber collimators / focusers are designed for laser applications which require pure Gaussian beam. Holmarc Fiber Collimators are available from 5 mm to 40
Suitable for Single Mode (SM), Multimode (MM), and Polarization-Maintaining (PM) Fiber AR Coating Options for Visible, NIR, and MIR Wavelength Ranges (See
Used in a wide variety of optical systems, these ruggedized modules are designed to collimate or focus light exiting an optical fiber to a desired beam diameter or spot size a specific distance away.
These collimators are designed for applications that require multimode fibers; we recommend using the AR-coated multimode fiber optic patch cables (see the
Thorlabs'' compact, ultrastable FiberPort micropositioners provide an easy-to-use platform for coupling light into and out of optical fibers.
Large fiber collimators for lidar, free space communications, environmental sensing, interferometry, metrology.
These collimators are designed to connect onto the end of an FC/PC or SMA905 connector and contain an AR-coated aspheric lens. The distance between the
Optical fiber collimator (2000nm 1550nm 1310nm 1064nm 980nm 850nm 780nm 650nm 632nm 630nm 460nm 450nm fiber-optic collimation and focusing
200nm~2500nm Fiber Collimator Lens Diameter 5mm SMA905 FC/PC Fiber This product can be used for fiber collimation or for coupling focusing. The use of
Combine collimators – available from stock for NAs up to 0.275 – with BeamTuning or other beam shaping elements to obtain any desired output beam while
Introduction Collimators are required to transform naturally diverging light-emission from an optical fiber to a parallel beam of light. Most fiber-optic collimators available are designed for thin fibers with low NA.
LightPath Fiber Optic Collimators are used to collimate/focus light exiting a fiber to a desired beam diameter and are available at Edmund Optics.
These collimators are designed to minimize insertion loss for signal passing through the air gap. The lenses can be designed according to the customer requirements.
For single-mode fibers the Gaussian intensity distribution and beam shape are maintained. It is designed for the fiber collimators series 60FC with an outer diameter Ø 12 mm.
Fiber-optic collimators are used to launch the light from an optical fiber into a free space collimated beam with specified beam diameter or spot size. They can also
LightPath ® Optiken zur Kollimation von Faseroptiken können als Paar eingesetzt werden, um Eingangs- und Ausgangslicht von Faseroptiken zu koppeln. Eine optimale Leistung für den
Fiber Collimator for producing a collimated beam (low divergence beam) with Gaussian beam profile exiting a single-mode or polarization-maintaining fiber cable. They can also be used in reverse as an
Fiber-optic Collimator To couple light both into and out of an optical fiber, it is essential to have a collimated light beam. With the help of an optical collimator, the divergence of the light beam can be
As well as coupling and collimating your optical fiber, it also enables you to enlarge or reduce your input beam, creating perfect input conditions for all subsequent
These fiber collimation packages are pre-aligned to collimate light from an FC/APC-terminated fiber with diffraction-limited performance. Because these fiber
Receptacle Style Collimators Features: • High power handling • Rugged and compact design • Low insertion loss • Low backreflection • Wide wavelength
These adjustable collimators are designed specifically for singlemode and polarization maintaining (PM) fiber applications which need to generate a clean
LightPath® Fiber Optic Collimators are designed so that they can be used in pairs to couple the input and output light of optical devices. Optimum performance for
Discover large beam fiber collimators at Sherlan Optics. Get reliable performance, high precision, and quality optics designed for advanced applications.
Each lens in the collimator has a broadband antireflection coating (see the Coatings tab) in order to minimize losses caused by surface reflections. In order to take full advantage of the superior beam
For improved performance, we recommend using these collimators with our AR-coated single mode fiber optic patch cables. These cables feature an
Fiber collimators convert light from an optical fiber into a collimated beam or focuses a free-space beam into a fiber for optical use.