Produit ajouté au panier
TECHSPEC® components are designed, specified, or manufactured by Edmund Optics. TECHSPEC® components are designed, specified, or manufactured by Edmund Optics. Learn More

Séparateur de Faisceau Ultrarapide 90R:10T, 12,7 mm de dia., 715 - 980 nm

TECHSPEC® Ultrafast Beamsplitters

×
Stock #13-829 3-4 jours
×
Quantity Selector - Use the plus and minus buttons to adjust the quantity. +
€230,00
Qté 1-4
€230,00
Qté 5+
€204,00
Prix sur Quantité
Demande de Devis
Les prix sont indiqués hors TVA et droits applicables.
Espace téléchargement

Spécifications

Caractéristiques du produit

Type:
Ultrafast Non-Polarizing Beamsplitter

Propriétés physiques et mécaniques

Diamètre (mm):
12.70 +0.00/-0.10
Épaisseur (mm):
3.00 ±0.10
Ouverture Utile (%):
80
Parallélisme (arcsec):
<10

Propriétés optiques

Angle d'Incidence (°):
45
Substrat: Many glass manufacturers offer the same material characteristics under different trade names. Learn More
Fused Silica (Corning 7980)
Qualité de Surface:
10-5
Rapport Réflexion/Transmission (R/T):
90/10
Spécification du Traitement:
Surface 1:
Ravg = 90±3% @ 715 - 980nm
Rp = 83±3% @ 715 - 980nm
Rs = 97±3% @ 715 - 980nm
Surface 2:
Rs <2% @ 650 - 1100nm
Rp <1.5% @ 650 - 1100nm
Gamme de Longeur d'Onde (nm):
715 - 980
GDD Specification:
Transmission: ±65 fs2 @ 715 - 980nm
Reflectivity: ±75 fs2 @ 715 - 980nm
Transmitted Wavefront Distortion:
λ/8 @ 632.8nm
Reflected Wavefront Distortion:
<λ/3 @ 632.8nm

Conformité réglementaire

RoHS:
Certificate of Conformance:

Description Produit

  • Conceptions pour les lasers Ti:saphir et à fibre dopée Yb
  • Rapports de séparation des faisceaux de 90:10, 70:30 et 50:50 (R:T)
  • Valeurs de GDD contrôlées pour la réflexion et transmission

Les Séparateurs de Faisceau Ultrarapides TECHSPEC® sont conçus pour être utilisés avec des lasers à impulsion femtoseconde Ti:saphir et à fibre dopée Yb. Leur surface avant est dotée d'un traitement de séparation des faisceaux non polarisant 90:10, 70:30 ou 50:50 (R:T), tandis que leur surface arrière est dotée d'un traitement antireflets pour minimiser les pertes dues à la réflexion. Chaque traitement a une dispersion contrôlée pour permettre une dispersion prévisible des retards de groupe (GDD) des impulsions transmises ou réfléchies. Les Séparateurs de Faisceau Ultrarapides TECHSPEC sont disponibles avec des tailles standards impériales pour une intégration facile dans les systèmes optiques. Veuillez nous contacter si votre application nécessite un Séparateur de Faisceau Ultrarapide avec une taille ou des spécifications de traitement personnalisées.

Remarque : La flèche sur le bord de ces optiques pointe vers le traitement du séparateur de faisceau.

Informations Techniques

Produits connexes

Montures compatibles

Ressources Techniques

Filter

Une Introduction aux Traitements Optiques

Les traitements optiques s'utilisent pour modifier les propriétés de transmission, de réflexion ou de polarisation d'un composant optique. En savoir plus !

View Now

La microscopie multiphotonique

Multiphoton microscopy is ideal for capturing high-resolution 3D images with reduced photobleaching and phototoxicity compared to confocal microscopy.

View Now

Basics of Ultrafast Lasers

Master the fundamentals of ultrafast lasers and how to choose optics that can withstand their high powers and short pulse durations.

View Now

Miroirs ultrarapides hautement dispersifs

Pulse Compression and Dispersion Compensation for Ultrafast Lasers

View Now

Group Delay Dispersion and White Light Interferometry

Understanding group delay dispersion (GDD) is critical for knowing how ultrafast laser pulses will be stretched or compressed.

View Now

LIDT pour lasers ultrarapides

The short pulse durations of ultrafast lasers make them interact with optical components differently, impacting the optic’s laser damage threshold.

View Now

Dispersion ultrarapide

The short pulse durations of ultrafast lasers lead to broad wavelength bandwidths, making ultrafast systems especially susceptible to dispersion and pulse broadening.

View Now

Ultrafast Lasers – The Basic Principles of Ultrafast Coherence

Advances in laser technology have made it possible to produce pulses ranging from a few femtoseconds to tens of attoseconds. Learn more at Edmund Optics.

View Now

Edmund Optics TPA Ultrafast Autocorrelator by APE (700-1100nm) #11-760

Edmund Optics® manufactures thousands of precision aspheric lenses per month in our asphere manufacturing cell that operates 24 hours a day

View Now

Highly-Dispersive Ultrafast Mirrors for Dispersion Compensation

Learn how Highly-Dispersive Mirrors compensate for dispersion and compress pulse duration in ultrafast laser systems, which is critical for maximizing performance.

View Now

Edmund Optics - UltraFast Innovations - Partnership 2021

Industry-leading laser optics are more available than ever before through the partnership of UltraFast Innovations and Edmund Optics.

View Now

Ultrafast Laser Optics from Edmund Optics - PhotonicsNEXT 2021

Learn about Edmund Optics' ultrafast laser optics capabilities in this interview with Tony Karam from the PhotonicsNEXT Summit in January 2021.

View Now

Combatting thermal lensing in high-power ultrafast laser systems

Ultrafast Mirrors: The importance of high reflectance and dispersion control in ultrafast optics

The right stuff: Lasers and optics for ultrafast microscopy

How does group delay dispersion (GDD) relate to first order and higher order dispersion?

At what pulse duration is a laser considered to be “ultrafast?”

Why is chromatic dispersion important for ultrafast laser systems?

Why do ultrafast highly-dispersive mirrors have such low angles of incidence (AOIs)?

Do the short pulse durations of ultrafast lasers impact the laser induced damage threshold of ultrafast optics?

Que sont les Séparateurs de Faisceau ?

Les séparateurs de faisceau sont des composants optiques utilisés pour séparer la lumière incidente en deux faisceaux distincts selon un rapport déterminé.

View Now

Introduction to Beamsplitters

Beamsplitters do exactly what their name implies: split incident light beams.

View Now

Selecting the Right Beamsplitter

Continuing from where Part I: X-Y Setup ends, learn how to add a Z-axis to an existing X-Y configuration to achieve three degrees of freedom.

View Now

Selecting the Right Beam Expander

Edmund Optics offers both fixed power and zoom beam expanders. Knowing which beam expander is right for your application can greatly improve system efficiency.

View Now

What is a plate or "mirror-type" beamsplitter?

What is a pellicle beamsplitter and when should I use it?

I would like to split light from a circularly polarized laser source into two beams. What happens when it passes through a cube beamsplitter – both non-polarizing and polarizing?

What is the difference between using a cube beamsplitter and a plate (mirror-type) beamsplitter?

When you say a beamsplitter has __% transmission and __% reflection, is that across the entire spectrum?

Is there such a thing as a variable density beamsplitter?

What are some advantages of using one cube beamsplitter type compared to another?

What are some advantages of using one plate beamsplitter type compared to another?

What is the difference between polarizing and non-polarizing beamsplitters?

Séparateur de faisceau

Cube Séparateur de Faisceau

Séparateur de faisceau dichroïque

Pellicule séparatrice de faisceau

Dispersion

Dispersion is the dependence of the phase velocity or phase delay of light on another parameter, such as wavelength, propagation mode, or polarization.

View Now

Miroirs hautement dispersifs

Ultrafast highly-dispersive mirrors are critical for pulse compression and dispersion compensation in ultrafast laser applications, improving system performance.

View Now

Dispersion

La durée d'une impulsion optique émise par un laser.

Does the polarization of light change when it passes through a beamsplitter?

I would like to split light from a circularly polarized laser source into two beams. What happens when it passes through a cube beamsplitter – both non-polarizing and polarizing?

Do you have C-Mount components to make an in-line illumination assembly?

Éclairage axial

Séparateur de Faisceau non Polarisant

Séparateur de faisceau polarisant

Verre Optique

Choosing the right optical glass is important. Find out factors and properties on how to select the right optical glass at Edmund Optics.

View Now

Do you have mounts for square or rectangular optics?

Grandes tendances de l'optique en 2021 - TENDANCES EN OPTIQUE : EPISODE 3

Several of the most interesting trends in optics and photonics of 2021 were the landing of the Perseverance Rover on Mars, Stemmed Mirrors, minimizing thermal lensing in ultrafast laser systems, and developments in ultraviolet lasers.

View Now

Comprendre les spécifications de la qualité de surface

Découvrez les différences entre les spécifications de surfaces de composants optiques MIL-PRF-13830B et ISO 10110-7 en termes de performances et coûts.

View Now

Removing Protective Plastic Coating

A protective plastic coating protects a variety of our flat optics, such as optical windows, optical mirrors, and beamsplitters, from scratches during shipping.

View Now

Parallélisme

Lame séparatrice de faisceau

Transmission

How do I clean my optics?

Laser

Seuil de dommage laser

Ouverture utile

Sites de fabrication d’EO dans le monde entier

Edmund Optics® (EO) fabrique des millions de composants et sous-ensembles optiques de précision chaque année dans ses 5 sites de production mondiaux.

View Now

La métrologie - un élément clé de la fabrication chez EO

Découvrez la métrologie qu'Edmund Optics® utilise pour garantir la qualité de tous les composants et assemblages optiques.

View Now

Qualité de surface

 
Ventes & Conseil d’Experts
1-800-363-1992
ou consulter les numéros d’autres pays
OUTIL DE DEVIS
facile à utiliser
entrer les numéros de stock pour commencer