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Supplier: Shanghai Optics
Description: deposited on BK7 substrates but the l/20 mirrors use synthetic quartz resulting in significantly better thermal stability. A broad selection of sizes is offered as standard. Other sizes can be supplied on request. Mirrors up to 1 inch in diameter have a ground rear surface but
- Mirror Materials: BK7 Glass
- Mirror Types: Flat Mirror, Laser Mirror
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Supplier: Rocky Mountain Instrument/RMI Laser
Description: For your applications that are not covered by our standard mirrors, we offer the following Mirror Blanks which can be coated to your specifications: Plane Mirror Blanks Concave Spherical Mirror Blanks Convex Spherical Mirror Blanks Mirror Blanks are
- Mirror Coatings: Uncoated
- Mirror Materials: BK7 Glass, Copper, Fused Silica, UV Grade Fused Silica, Other Mirror Material
- Mirror Shape: Round
- Mirror Types: Flat Mirror, Spherical Mirror, Other
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Supplier: Edmund Optics Inc.
Description: Aluminum Substrate Mirrors Ideal for LWIR Laser Applications Aluminum and Gold Coating Options These aluminum substrate, diamond turned Metal Mirrors are available with either a protected aluminum or gold coating, and are ideal for LWIR (greater than 2000nm
- Diameter/Width: 76.2 mm
- Mirror Coatings: Protected Aluminum
- Mirror Materials: Other Mirror Material
- Mirror Shape: Round
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Supplier: Edmund Optics Inc.
Description: Aluminum Substrate Mirrors Ideal for LWIR Laser Applications Aluminum and Gold Coating Options These aluminum substrate, diamond turned Metal Mirrors are available with either a protected aluminum or gold coating, and are ideal for LWIR (greater than 2000nm
- Diameter/Width: 38.1 mm
- Mirror Coatings: Protected Gold
- Mirror Materials: Other Mirror Material
- Mirror Shape: Round
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Supplier: Edmund Optics Inc.
Description: Aluminum Substrate Mirrors Ideal for LWIR Laser Applications Aluminum and Gold Coating Options These aluminum substrate, diamond turned Metal Mirrors are available with either a protected aluminum or gold coating, and are ideal for LWIR (greater than 2000nm
- Diameter/Width: 50.8 mm
- Mirror Coatings: Protected Gold
- Mirror Materials: Other Mirror Material
- Mirror Shape: Round
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Supplier: Edmund Optics Inc.
Description: Aluminum Substrate Mirrors Ideal for LWIR Laser Applications Aluminum and Gold Coating Options These aluminum substrate, diamond turned Metal Mirrors are available with either a protected aluminum or gold coating, and are ideal for LWIR (greater than 2000nm
- Diameter/Width: 50.8 mm
- Mirror Coatings: Protected Aluminum
- Mirror Materials: Other Mirror Material
- Mirror Shape: Round
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Supplier: Argyle International, Inc.
Description: Spherical and flat Aluminum, silver, gold, or dielectric Substrates of glass, metal, Pyrex®, Zerodur®, or other materials. Round, elliptical, or rectangular Custom designs Argyle International offers custom
- Mirror Coatings: Protected Aluminum, Dielectric, Protected Gold, Silver
- Mirror Materials: BK7 Glass, Fused Silica, Optical Crown Glass, Pyrex?, UV Grade Fused Silica, Zerodur?, Other Mirror Material
- Mirror Types: Flat Mirror, Spherical Mirror
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Supplier: Shanghai Optics
Description: Like household mirrors, copper and aluminum optical mirrors are designed to reflect light. Unlike the typical mirror, however, which is painted with a thin layer of metal on the back of a glass substrate, optical mirrors are coated on the front, rendering them more
- Mirror Materials: Copper
- Mirror Types: Flat Mirror, Laser Mirror
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Supplier: OptoSigma Corp.
Description: resonator. —¦By using an ion beam sputtering (IBS), high quality and dense coating with few defects has been coated. —¦With a special polishing technique, the low-scattering substrate of surface flatness Ra<0.1nm is used. —¦The mirror coating with
- Diameter/Width: 12.7 to 50 mm
- Mirror Coatings: Dielectric
- Mirror Materials: Fused Silica
- Mirror Shape: Round
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Supplier: Zygo Corporation
Description: ZYGO's Optics business segment can custom manufacture precision CLEARCERAM® mirrors to your exact specifications. CLEARCERAM® mirrors are made from a glass-ceramic substrate which features ultra-low thermal expansion over a wide range of temperatures. The material is
- Mirror Materials: Other Mirror Material
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Supplier: Qioptiq
Description: Mirrors for multimedia-, show- and projection systems No polarization and light effects Long-life High stability due to patented Sputter technique Substrate: heat-resistant Borosilicate glass SILFLEX-VIS: Extremly high reflection in the VIS (R
- Diameter/Width: 25 to 160 mm
- Mirror Shape: Rectangular / Square
- Mirror Types: Flat Mirror
- Wavelength Range: 200 to 700 nm
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Supplier: OptoSigma Corp.
Description: It is a mirror of aluminum coating on one side of the substrate. As a line up, there are mirrors of large size of 200mm or more. —¦For visible and near-infrared light applications. —¦For large aperture optical system.
- Diameter/Width: 200 to 300 mm
- Mirror Coatings: Enhanced Aluminum
- Mirror Materials: Other Mirror Material
- Mirror Shape: Rectangular / Square
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Supplier: OptoSigma Corp.
Description: Gold (Au) coated reflection mirrors have high reflectance in a wide infrared range. —¦Chromium (Cr) is deliberately undercoated to better reinforce the adhesion of gold to the substrate. —¦Gold mirrors with silicon substrates have higher durability than
- Diameter/Width: 20 to 50 mm
- Mirror Coatings: Bare Gold
- Mirror Materials: BK7 Glass, Pyrex?, Other Mirror Material
- Mirror Shape: Round
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Supplier: ECOPTIK (CHANGCHUN) LTD
Description: A dielectric mirror, also known as a Bragg mirror, is a type of mirror composed of multiple thin layers of dielectric material, typically deposited on a substrate of glass or some other optical material. By careful choice of the type and thickness of the dielectric
- Mirror Coatings: Other Mirror Coating
- Mirror Materials: BK7 Glass, Fused Silica, Other Mirror Material
- Mirror Shape: Other
- Mirror Types: Flat Mirror, Spherical Mirror, Other
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Supplier: Changchun Yutai Optics Co., Ltd.
Description: to coating layers of dielectric films on optical substrates, and are designed to achieve the highest possible reflectance, usually at specific wavelengths.These coatings can be tailored for most any angle. Specially Dielectric HR Mirrors are suitable for the application of laser
- Mirror Coatings: Dielectric
- Mirror Materials: Fused Silica, Other Mirror Material
- Mirror Shape: Round, Rectangular / Square, Elliptical
- Mirror Types: Flat Mirror, Spherical Mirror
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Supplier: Foctek Photonics, Inc.
Description: FOCtek offers dielectric coated mirrors and metal coated mirrors which are made of substrate such as Bk7, K9, Fused Silica, CaF2, Sapphire and so on.
- Diameter/Width: 10 to 50.8 mm
- Mirror Coatings: Dielectric, Other Mirror Coating
- Mirror Materials: BK7 Glass, Fused Silica, Other Mirror Material
- Surface Flatness: ?/10, Other
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Supplier: Abrisa Technologies
Description: ultra-thin substrates offering the advantage of virtually no beam or image translation. Ultra-thin, lightweight mirrors and optics are ideal for use in unmanned drones and UAV’s, hand-held surgical devices, compact LiDAR systems, head-mounted AR displays and other portables, and
- Diameter/Width: 200 to 595 mm
- Mirror Materials: Other Mirror Material
- Mirror Shape: Other
- Mirror Types: Flat Mirror
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Supplier: Advanced Optics, Inc.
Description: Precision grade optical mirrors are made from highly polished glass substrates and coated to reflect light of a specific wavelength. Our optical mirrors can be manufactured from a variety of materials including: BOROFLOAT® 33 SUPREMAX® 33 Fused silica
- Mirror Coatings: Uncoated, Bare Aluminum, Protected Aluminum, Bare Gold, Protected Gold, Silver, Other Mirror Coating
- Mirror Materials: Fused Silica, Zerodur?, Other Mirror Material
- Mirror Shape: Round
- Mirror Types: Flat Mirror
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Supplier: Changchun Sunday Optics Co., Ltd.
Description: Optical Mirrors are used for beam turning, interferometry, imaging, or illumination.Using polished glass or metal as the substrate, the light beam hits the surface to form mirror reflection.In order to obtain as much reflected light as possible, the substrate is often
- Diameter/Width: 2 to 800 mm
- Mirror Coatings: Bare Aluminum, Bare Gold, Silver
- Mirror Materials: BK7 Glass, Other Mirror Material
- Mirror Shape: Round
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Supplier: Rocky Mountain Instrument/RMI Laser
Description: Mirrors are used in a wide range of beam steering, focusing and collimating applications. RMAX Mirrors utilize multi-layer, dielectric thin films. Laser-Line RMAX Mirrors are designed for high reflectance at a single laser wavelength. High power coating designs are standard for
- Mirror Materials: BK7 Glass, Fused Silica, UV Grade Fused Silica, Other Mirror Material
- Mirror Shape: Round
- Mirror Types: Laser Mirror
- Surface Flatness: ?/4, ?/20, Other
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Supplier: OptoSigma Corp.
Description: A mirror with high surface accuracy is realized by optimizing the conditions of the substrate material, thickness and coating. A surface accuracy of λ/10 after coating is guaranteed. —¦A surface accuracy (after coating) higher than that of existing dielectric
- Diameter/Width: 12.7 to 50.8 mm
- Mirror Coatings: Dielectric
- Mirror Materials: Fused Silica
- Mirror Shape: Round
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Supplier: Rocky Mountain Instrument/RMI Laser
Description: Mirrors are used in a wide range of beam steering, focusing and collimating applications. Broadband RMAX Mirrors provide high reflectance over a broad spectral range. They are also useful in narrowband applications in which it is necessary to vary the angle of incidence.
- Mirror Materials: BK7 Glass, Fused Silica, UV Grade Fused Silica, Other Mirror Material
- Mirror Shape: Round
- Mirror Types: Flat Mirror, Other
- Surface Flatness: ?/4, ?/20, Other
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Supplier: Zygo Corporation
Description: , the material properties of silicon carbide, which make the material attractive from a design standpoint, have often precluded its use when low cost and rapid delivery of an optical mirror were required. It is normally expensive to produce a lightweighted, super-polished SiC
- Mirror Materials: Other Mirror Material
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Supplier: Shanghai Optics
Description: images. They will, however, have a wider field of view. Coating and Substrate Convex Spherical Mirrors are manufactured from high quality BK7 Grade A optical glass, Corning Fused Silica 7980, JGS1, JGS2. BK7, Schott borosilicate-crown glass, has a high refractive index homogeneity and
- Mirror Coatings: Enhanced Aluminum, Protected Gold
- Mirror Materials: BK7 Glass, Fused Silica, Optical Crown Glass, UV Grade Fused Silica
- Mirror Types: Spherical Mirror
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Supplier: Qioptiq
Description: Designed for imaging systems No spherical aberration High-precision flatness Substrates are fabricated from low expansion material Aluminum coatings with a protective SiO2 overcoating (RAL) Mirror radii = 2 • f
- Diameter/Width: 100 mm
- Focal Length: 660 mm
- Mirror Coatings: Protected Aluminum
- Mirror Types: Parabolic Mirror
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Supplier: Advanced Optics, Inc.
Description: In addition to our in-stock optical mirrors, Advanced Optics provides custom fabrication and free engineering services. Our capabilities allow us to: Drill holes. Produce beveled substrates. Fabricate custom sizes and shapes. Manufacture polished concave and convex lenses. Supply
- Diameter/Width: 3.17 to 203 mm
- Mirror Coatings: Uncoated, Bare Aluminum, Enhanced Aluminum, Protected Aluminum, Dielectric, Bare Gold, Protected Gold, Silver, Other Mirror Coating
- Mirror Materials: BK7 Glass, Fused Silica, Optical Crown Glass, Pyrex?, UV Grade Fused Silica, Zerodur?, Other Mirror Material
- Mirror Shape: Round, Rectangular / Square, Elliptical, Other
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Supplier: EKSMA OPTICS
Description: . Laser Damage Threshold: >2J/cm2, 8 ns pulse, 1064 nm typical for BK7 substrates; >5J/cm2 8 ns pulse, 1064 nm typical for UVFS substrates Back side antireflection coated: R<0.5% Parallelism: 30 arcsec
- Diameter/Width: 12.7 to 25.4 mm
- Mirror Materials: BK7 Glass, UV Grade Fused Silica
- Mirror Shape: Round
- Mirror Types: Laser Mirror, Other
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Supplier: Abrisa Technologies
Description: substrate when a more opaque look is needed, as when hiding TVs and surveillance equipment. Semi-Transparent Mirrors are available in sizes of up to 126” x 88” and in thicknesses of 4mm and 6mm. Custom OEM thicknesses are also available upon request. The mirrors can be
- Mirror Materials: Other Mirror Material
- Mirror Shape: Rectangular / Square
- Mirror Types: Flat Mirror
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Supplier: Qioptiq
Description: Designed for illumination systems Substrates are fabricated from low expansion material Aluminum coatings with a protective SiO2 overcoating (RAL) Mirror radii = 2 • f The matching aspheric lenses are stated in the table.
- Diameter/Width: 22.4 to 50 mm
- Mirror Coatings: Protected Aluminum
- Mirror Shape: Round
- Mirror Types: Spherical Mirror
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Supplier: Daheng New Epoch Technology, Inc.
Description: These are precision flat mirrors with a metallic gold coating. The gold layer is protected both underneath and above with dielectric layers which ensures good adhesion to the substrate and allows cleaning by normal laboratory methods. These mirrors have very high reflectivity
- Diameter/Width: 20 to 40 mm
- Mirror Coatings: Dielectric
- Mirror Materials: BK7 Glass
- Mirror Shape: Round
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Supplier: Qioptiq
Description: . Ideal for high-energy Ti:Sapphire and microscopy applications Dispersion-free mirrors and beamsplitters Substrate material fused silica Wavefront ?/10 flatness (p-v at 633 nm, after coating with power subtracted) Surface Quality 20-10 Damage threshold ~ 2 J/cm2 for 500 fs laser
- Diameter/Width: 25.4 mm
- Mirror Shape: Round
- Mirror Types: Laser Mirror
- Surface Flatness: ?/10
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Description: DBC ceramic substrate, short for Direct Bonded Copper Ceramic Substrate, is an advanced material composed of a ceramic substrate (typically Al2O3 or AlN) and copper, tightly joined together through a hypo-eutectic process. This unique combination of materials results in a
- Applications: Other
- Performance Features: Metallized / Silvered (Electrode, Mirror)
- Shape / Form: Specialty / Other
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Supplier: Changchun Sunday Optics Co., Ltd.
Description: Optical Mirrors are used for beam turning, interferometry, imaging, or illumination.Using polished glass or metal as the substrate, the light beam hits the surface to form mirror reflection.In order to obtain as much reflected light as possible, the substrate is often
- Diameter/Width: 2 to 800 mm
- Mirror Coatings: Bare Aluminum, Bare Gold, Silver
- Mirror Materials: BK7 Glass, Other Mirror Material
- Mirror Shape: Round
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Supplier: Alluxa, Inc.
Description: UV Mirror filter has reflection that is greater than 85% from 220 nm to 250 nm. This unmounted UV mirror filter is coated on a 1.04 mm thick fused silica substrate and is 25.4 mm in diameter. Alluxa mirror filters deliver superior performance and durability over
- Diameter/Width: 23.5 mm
- Mirror Materials: Fused Silica
- Mirror Shape: Round
- Thickness: 1.04 mm
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Supplier: EKSMA OPTICS
Description: Protected Silver (Ag) Mirrors feature higher reflectance than aluminium throughout the visible and near-infrared spectral region. Our protected silver mirrors has excellent durability. *Laser Induced Damage Threshold results are measured according to ISO 21254-2: 1000-on-1 test
- Diameter/Width: 12.7 to 76.2 mm
- Mirror Coatings: Other Mirror Coating
- Mirror Materials: BK7 Glass, UV Grade Fused Silica, Zerodur?
- Mirror Shape: Round, Rectangular / Square
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Supplier: EKSMA OPTICS
Description: . LIDT - 0.25 J/cm2 at 1064 nm, 50 Hz, 11 nsec pulses* LIDT - 0.1 J/cm2 at 355 nm, 50 Hz, 5.7 nsec pulses* Average Reflection >86% for 300 nm – IR BK7, UVFS, Zerodur® substrates available Round, Square and Flat or Spherical Mirrors available OEM capabilities - please contact for
- Diameter/Width: 12.7 to 76.2 mm
- Mirror Coatings: Protected Aluminum
- Mirror Materials: BK7 Glass, UV Grade Fused Silica, Zerodur?
- Mirror Shape: Round, Rectangular / Square
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Supplier: HG Optronics, Inc.
Description: HG Optronics.,INC. can provide Metal Coated Mirror,Dielectric Coated Mirror and Dichroic Mirror which are made of substrate such as BK7, Optical glass, Fused Silica, CaF2 and so on. 1.1. What Metallic Coated types can HG OPTRONICS supply? HG OPTRONICS mainly offers
- Mirror Coatings: Protected Aluminum, Protected Gold, Other Mirror Coating
- Mirror Materials: BK7 Glass, Fused Silica, Pyrex?
- Mirror Shape: Round
- Surface Flatness: ?/4, Other
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Supplier: EKSMA OPTICS
Description: .0 J/cm2 at 1064 nm, 50 Hz, 11 nsec pulses* Average Reflection >98% for 900 nm – IR BK7, UVFS, Zerodur® substrates available Round, Square and Flat or Spherical Mirrors available OEM capabilities - please contact for special pricing Test samples are available on request Bare Gold
- Diameter/Width: 12.7 to 76.2 mm
- Mirror Coatings: Protected Gold
- Mirror Materials: BK7 Glass, UV Grade Fused Silica, Zerodur?
- Mirror Shape: Round, Rectangular / Square
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Supplier: Rainbow Research Optics, Inc.
Description: Your One-Stop Source for Laser Optics Highest Damage Threshold (LDT) Coatings Laser Quality Substrates Rainbow Research Optics, Inc. (RROI) specializes in manufacturing standard and custom laser optics for laser systems including CO2, Nd:YAG,
- Mirror Coatings: Bare Aluminum, Protected Aluminum, Dielectric, Bare Gold, Protected Gold, Silver
- Mirror Materials: BK7 Glass, Fused Silica, UV Grade Fused Silica, Other Mirror Material
- Mirror Shape: Round, Rectangular / Square
- Mirror Types: Laser Mirror
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Description: DPC ceramic substrates are typically composed of aluminium nitride or alumina ceramic materials, to which a copper layer is directly bonded on one or both sides. DPC ceramic substrates are frequently used in applications like electronic packaging and power electronics because they are
- Applications: Electrical / HV Parts, Electronics / RF-Microwave
- Performance Features: Metallized / Silvered (Electrode, Mirror)
- Specialty Ceramic Type: Aluminum Nitride
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Supplier: Shanghai Optics
Description: as external or internal reflectors with a wide angle of incidence. Right Angle Mirror Substrate and Coatings Our right angle mirrors are manufactured from BK7, Schott optical borosilicate-crown glass, and have an enhanced aluminum, protected silver, or protected gold coating.
- Mirror Coatings: Enhanced Aluminum, Protected Gold, Silver
- Mirror Materials: BK7 Glass, Optical Crown Glass
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Supplier: Daheng New Epoch Technology, Inc.
Description: These laser line mirrors are designed for high reflectance with high laser damage threshold at specific laser wavelengths, suitable for laser cavities or other laser grade substrates using physical vapor deposition (PVD) technologies. These coatings are extremely durable, making them
- Diameter/Width: 20 to 40 mm
- Mirror Coatings: Dielectric
- Mirror Materials: BK7 Glass
- Mirror Shape: Round
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Supplier: CILAS
Description: Cilas invented the Stack Array Mirror technology which is the most widely used in adaptive optics systems. An actuators matrix bonded to a thin Reflective Coated Substrate. The actuators are made of PZT stack. If an electric field is applied in the same direction than the
- Mirror Assembly: Yes
- Mirror Materials: Other Mirror Material
- Mirror Shape: Rectangular / Square
- Mirror Types: Other
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Description: have lower reflectance and laser damage threshold, therefore metallic coated mirrors are the economical option for applications requiring a wide rejection range and less strict reflectance standards. Three metal materials are utilized to coat the mirror substrates: Aluminum (Al)
- Mirror Coatings: Enhanced Aluminum, Protected Gold, Silver, Other Mirror Coating
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Description: DBC (Direct Bonded Copper) is comprised of an insulating layer of ceramic substrate such as Al2O3 (aluminum oxide) and AlN (aluminum nitride) and copper connections to ensure electrical conductivity at high temperatures. For maximum reliability and performance, modules must exhibit excellent
- Applications: Battery / Fuel Cell, Construction & Building / Architectural, Electrical / HV Parts, Electronics / RF-Microwave
- Performance Features: Metallized / Silvered (Electrode, Mirror)
- Specialty Ceramic Type: Aluminum Nitride
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difference of raw materials. For example, the current market is mainly divided into aluminium substrate, ceramic substrate and copper substrate. At the same time, on the basis of ordinary aluminium substrate, mirror aluminium substrate is gradually emerging in the current market. Aluminum (read more)
Browse Industrial Ceramic Materials Datasheets for 3X Ceramic Parts Company Limited -
-engineered substrate for optical accuracy and stability Applications: Spectroscopy and hyperspectral imaging Laser systems for research, medical, and industrial applications Aerospace and defense optical systems Scientific (read more)
Browse Optical Mirrors Datasheets for Suzhou Jiujon Optics Co., Ltd -
material does Yutai Optics use as substrates for hot mirrors? In general, Yutai Optics recommends borofloat glass, BK7(K9) or fused silica as the substrate for hot mirrors. What are the applications of hot (read more)
Browse Optical Mirrors Datasheets for Changchun Yutai Optics Co., Ltd. -
optical substrates, and are designed to achieve the highest possible reflectance, usually at specific wavelengths.These coatings can be tailored for most any angle. Specially Dielectric HR Mirrors are suitable for the application of laser (read more)
Browse Optical Lenses Datasheets for Changchun Yutai Optics Co., Ltd. -
Substrate Options SiC, Zerodur®, fused silica, lightweight composites Mirror Geometries Flat, spherical, parabolic, freeform High (read more)
Browse Optical Mirrors Datasheets for Avantier Inc. -
Using advanced techniques like super polishing and ion beam figure (IBF), these mirrors ensure stable, reliable, and efficient laser operation. Customizable dimensions, coatings, and substrates allow seamless integration into environmental monitoring, precision (read more)
Browse Optical Mirrors Datasheets for CASTECH, Inc. -
Precision High-Reflectivity Mirrors for Advanced Laser Applications Exceptional Reflectivity: Achieves R > 99.999% at 1550 ± 50 (read more)
Browse Optical Mirrors Datasheets for CASTECH, Inc. -
Laser optics include lenses, filters, mirrors, and beamsplitters. - Substrates: BK7, H-K9L, Sapphire, fused silica, CaF2, MgF2, ZnSe, ZnS, GaAs, Ge, Si. - Dielectric coatings improve mirror reflectivity. - Careful selection of substrates and coatings for optical performance. - Narrow band transmission/reflectance important for most laser applications. - Ultrashort pulse lasers require broad transmission ranges. (read more)
Browse Optical Mirrors Datasheets for Avantier Inc. -
generated holograms to verify that everything is as it should be. Depending on substrate, some freeform optics are also produced by precision molding, followed by CNC-powered fine polishing. The freeform lens/mirror substrate opinions include metal materials, plastic materials, germanium (read more)
Browse Aspheric Lenses Datasheets for Avantier Inc.
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Rapid Scanning Applications Drive Mirror Design (.pdf)
CTI Chief Scientist David Brown has developed several scanning mirrors for high speed applications using a variety of substrate materials and various "lightweighting" approaches. The optimum method however is a design approach that integrates the mirror, its mounting, and the motor into a system
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Optical Thin Films on Complex Substrate Geometries Enabled by Enhanced Deposition Technology
A proprietary low pressure chemical vapor deposition (LPCVD) coating process permits the manufacture of various thin film optical coatings, such as single-band, dual-band and broadband anti-reflection (AR) filters, cold mirrors, hot mirrors, bandpasses and other dichroic filter designs. This IsoDyn
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Anti-Reflection Coatings
Optical coatings can be critical in an application. Coatings are used to either increase the transmission of light by reducing back reflections (as in the case of lenses, windows, etc.) or to increase the reflectivity of light (as in the case of mirrors). Different coatings can achieve different
More Information Top
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Astronomical Optics and Elasticity Theory
415 8.2 Density and Thermal Constants of Mirror Substrates . . . . . . . . . . . . .
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MEMS/NEMS
It does not require any additional actuators used for the elevation of the mirror substrate .
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EUV Lithography
The Zerodur mirror substrate was figured to better than λ/100 (λ = 632.8 nm) and smoothed to x-ray tolerances using a proprietary technique.
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Low Thermal Expansion Glass Ceramics
But Schott was well aware that the development of a telescope mirror substrate material and its realization in the form of large castings depended not only on the corresponding demand but equally on the willingness of an institution to supply sufficient funding.
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Optical Bistability In Air-Spaced Fabry-Perot Etalons Caused By Thermal Expansion
We demonstrated optical bistability in air -spaced Fabry -Perot etalons caused by thermal expansion of the mirror substrates and a concomitant reduction in mirror separation.
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Scanning Motion; Opto-Mechanical Considerations
Now, the optical engineer might mean, the mirror facesheet, and the mechanical engineer might mean, the mirror assembly, which is comprised of, the mirror facesheet, the mirror substrate , and the mirror connector (shaft).
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Mirror Figure-Of-Merit And Material Index-Of-Goodness For High Power Laser Beam Reflectors
… frequency deformations, which are usually modelled as spherical aberrations3; following Holt, 4 we will assume that they can be compensated for by means of refocussing procedures and, thus, can be ignored in the context of assessing the performance of HEL mirror substrates .
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Design And Fabrication Of Aluminum Mirrors For A Large Aperture Precision Collimator Operating At Cryogenic Temperatures
This paper covers the development of the optical system mechanical requirements; the choice of the mirror substrate material; the detail mechanical design and tolerancing of these substrates; their fabrication and testing; and the mounting, alignment, and proposed testing of all the optical …
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Fabrication of an optical beam scanning array integrating mirror and lens arrays by passive self-alignment using precisely formed through-holes
The mirror arrays consist of a mirror substrate with 35 single-axis-rotational mirrors and an electrode substrate for actuating the corresponding mirror by electrostatic force.
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Photonic Microsystems
Optical MEMS based on Silicon-on-Insulator materials, on the other hand, use mirror sub- strates that typically are tens of microns in thickness, so in these technologies mir- ror curvature is generally not a problem.
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