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Supplier: Fiberoptics Technology, Inc.
Description: All fiber is made from the highest purity glass available. The same fiber used in our products is available to assemble your own product or just experiment with an idea. Standard Features: •Bundles up to 60 feet in length (18M). NA of .25, .44, .55, or .66 in active
- Fiber Core Size: 37 µm
- Numerical Aperture: 0.25
- Fiber Type: Bare Fiber, Graded Index, Metallized, Polarization Maintaining
- Fiber Mode: Multimode
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Supplier: Fiberoptics Technology, Inc.
Description: All fiber is made from the highest purity glass available. The same fiber used in our products is available to assemble your own product or just experiment with an idea. Standard Features: •Bundles up to 60 feet in length (18M). NA of .25, .44, .55, or .66 in active
- Fiber Core Size: 25 µm
- Numerical Aperture: 0.55
- Fiber Type: Bare Fiber, Graded Index, Metallized, Polarization Maintaining
- Fiber Mode: Multimode
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Supplier: Fiberoptics Technology, Inc.
Description: All fiber is made from the highest purity glass available. The same fiber used in our products is available to assemble your own product or just experiment with an idea. Standard Features: •Bundles up to 60 feet in length (18M). NA of .25, .44, .55, or .66 in active
- Fiber Core Size: 50 µm
- Numerical Aperture: 0.66
- Fiber Type: Bare Fiber, Graded Index, Metallized, Polarization Maintaining
- Fiber Mode: Multimode
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Supplier: Fiberoptics Technology, Inc.
Description: All fiber is made from the highest purity glass available. The same fiber used in our products is available to assemble your own product or just experiment with an idea. Standard Features: •Bundles up to 60 feet in length (18M). NA of .25, .44, .55, or .66 in active
- Fiber Core Size: 37 µm
- Numerical Aperture: 0.44
- Fiber Type: Bare Fiber, Graded Index, Metallized, Polarization Maintaining
- Fiber Mode: Multimode
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Supplier: HG Optronics, Inc.
Description: Er3+, Yb3+ co-doped phosphate glass is a well-known and commonly used active medium for lasers emitting in the “eye-safe” spectral range of 1,5-1,6 µm. As an eye-safe wavelength laser, 1540um ,Er3+/Yb3+ co-doped phosphate glass lasers have attracted much attention for their
- Damage Threshold: 750,000 W/cm²
- Refractive Index: 1.532 n
- Surface Flatness: λ/8
- Surface Quality: 10-5 Scratch / Dig
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Supplier: Edmund Optics Inc.
Description: Power Delivery By High Brightness Fiber Visible and Infrared Wavelengths Stand-Alone System Compact, TEC with Forced Air Cooling These systems provide up to 450mW of continuous power and combine a high brightness glass fiber coupled to a laser diode with a thermoelectric cooler,
- Wavelength Range: 645 to 655 nm
- Laser Power: 150 milliwatts
- Operating Voltage: 100 to 240 volts
- Operating Temperature Range: 10 to 30 C
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Supplier: Edmund Optics Inc.
Description: Power Delivery By High Brightness Fiber Visible and Infrared Wavelengths Stand-Alone System Compact, TEC with Forced Air Cooling These systems provide up to 450mW of continuous power and combine a high brightness glass fiber coupled to a laser diode with a thermoelectric cooler,
- Wavelength Range: 685 to 695 nm
- Laser Power: 300 milliwatts
- Operating Voltage: 100 to 240 volts
- Operating Temperature Range: 10 to 30 C
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Supplier: Edmund Optics Inc.
Description: Power Delivery By High Brightness Fiber Visible and Infrared Wavelengths Stand-Alone System Compact, TEC with Forced Air Cooling These systems provide up to 450mW of continuous power and combine a high brightness glass fiber coupled to a laser diode with a thermoelectric cooler,
- Wavelength Range: 665 to 675 nm
- Laser Power: 300 milliwatts
- Operating Voltage: 100 to 240 volts
- Operating Temperature Range: 10 to 30 C
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Supplier: Edmund Optics Inc.
Description: Power Delivery By High Brightness Fiber Visible and Infrared Wavelengths Stand-Alone System Compact, TEC with Forced Air Cooling These systems provide up to 450mW of continuous power and combine a high brightness glass fiber coupled to a laser diode with a thermoelectric cooler,
- Wavelength Range: 935 to 945 nm
- Laser Power: 450 milliwatts
- Operating Voltage: 100 to 240 volts
- Operating Temperature Range: 10 to 30 C
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Supplier: MTI Instruments Inc.
Description: The MTI-2100 features advanced fiber-optic non-contact sensor using reflectance electronic technologies for precise measurements of displacement, active vibration control, position, and distance for dynamic measurement in cryogenic, vacuum | high pressure, or in high magnetic field and
- Frequency Range: 500,000 Hz
- Operating Temperature: 50 to 110 F
- Sensor Technology: Fiber Optic, Ultrasonic
- Sensor Input: Proximity / Displacement
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Supplier: Teknor Apex Company
Description: Filler / Reinforcement: Glass Fiber / Fully toughened Material Status Commercial: Active Availability Asia Pacific Europe North America Filler / Reinforcement Glass Fiber Additive Impact Modifier Features Impact Modified Appearance Black Natural Color Forms Pellets
- Tensile Strength (Break): 12,500 psi
- Melt Flow Index (MFI): 10 g / 10 minutes
- Filler: Fiber Glass
- Process Type: Molding Resin
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Supplier: Teknor Apex Company
Description: Material Status Commercial: Active Availability Asia Pacific Europe North America Filler / Reinforcement Glass Fiber Forms Pellets Processing Method Injection Molding
- Deflection Temperature (@ 264 psi, 1.8 MPa): 491 F
- Tensile Strength (Break): 33,000 psi
- Filler: Fiber Glass
- Process Type: Molding Resin
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Supplier: Teknor Apex Company
Description: Material Status Commercial: Active Availability Asia Pacific Europe North America Filler / Reinforcement Glass Fiber Forms Pellets Processing Method Injection Molding
- Tensile Strength (Break): 26,500 psi
- Filler: Fiber Glass
- Process Type: Molding Resin
- Form / Shape: Pellets
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Supplier: Teknor Apex Company
Description: Material Status Commercial: Active Availability Asia Pacific Filler / Reinforcement Glass Fiber, 20% Filler by Weight Forms Pellets Processing Method Injection Molding
- Tensile Strength (Break): 11,900 psi
- Melt Flow Index (MFI): 5 g / 10 minutes
- Filler: Fiber Glass
- Type: Molding Resin, Thermoplastic
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Supplier: Gradient Lens Corporation
Description: The high quality, 7' long Luxxor Light Guide can be used with any Hawkeye or Hawkeye Blue borescope and is required for all Luxxor light sources. Light is transmitted through glass fiber optics which are surrounded by a protective stainless steel coil. High light coupling efficiency is
- Length: 2,133.5988478566196 mm
- Diameter: 4 mm
- Wavelength Range: 380 to 700 nm
- Acceptance Angle: 80 degrees
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Supplier: Tri-Tronics Company, Inc.
Description: For documentation and other Digital Fiber Sensors, please see our Digital Fiber Sensor Marketing Page. Technical Features Model Specific Light Source: • Red Connection: • 4-Pin M8 connector Family Specific SUPPLY VOLTAGE & CURRENT • 8-30 Vdc • 28ma @ 24Vdc, 49ma @ 12Vdc • Reverse
- Operating Distance: 8 to 60 inch
- Operating Temperature: 41 to 131 F
- Electrical Output: Current
- Features: Photoelectric Sensors
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Supplier: Tri-Tronics Company, Inc.
Description: For documentation and other Digital Fiber Sensors, please see our Digital Fiber Sensor Marketing Page. Technical Features Model Specific Light Source: • Infrared Connection: • 4-Pin M8 connector Family Specific SUPPLY VOLTAGE & CURRENT • 8-30 Vdc • 28ma @ 24Vdc, 49ma @ 12Vdc • Reverse
- Operating Distance: 8 to 60 inch
- Operating Temperature: 41 to 131 F
- Electrical Output: Current
- Beam Type: Infrared
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Supplier: Tri-Tronics Company, Inc.
Description: For documentation and other Digital Fiber Sensors, please see our Digital Fiber Sensor Marketing Page. Technical Features Model Specific Light Source: • Red • NPN Connection: • 4-Pin M8 connector Family Specific SUPPLY VOLTAGE & CURRENT • 8-30 Vdc • 28ma @ 24Vdc, 49ma @ 12Vdc • Reverse
- Operating Distance: 8 to 60 inch
- Operating Temperature: 41 to 131 F
- Electrical Output: Current
- Features: Photoelectric Sensors
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Supplier: Tri-Tronics Company, Inc.
Description: For documentation and other Digital Fiber Sensors, please see our Digital Fiber Sensor Marketing Page. Technical Features Model Specific Light Source: • Red Connection: • 4-Pin M8 connector Family Specific SUPPLY VOLTAGE & CURRENT • 8-30 Vdc • 28ma @ 24Vdc, 49ma @ 12Vdc • Reverse
- Operating Distance: 8 to 60 inch
- Operating Temperature: 41 to 131 F
- Electrical Output: Current
- Beam Type: Infrared
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Supplier: Universal Fibre Optics
Description: A small stainless steel end fitting with clear glass window for sheathed polymer fibre of 1.5mm to 2mm active diameter.
- Maximum Cable Diameter: 1.5 to 2 mm
- Features: Other
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Supplier: OSI Optoelectronics
Description: FCI-InGaAs-XXX-CCER with active area sizes of 70µm, 120µm, 300µm, 400µm, 500µm are part of OSI Optoelectronics' high speed IR sensitive photodiodes mounted on gull wing ceramic substrates with glass windows. These devices have a glass window attached to the ceramic where
- Sensitivity: 0.95 A/W
- Spectral Response Range: 1,100 to 1,650 nm
- Active Area Diameter or Length: 0.07 mm
- Rise Time: 0.2 ns
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Supplier: Thin-Films Research, Inc.
Description: active devices, such as Lithium Niobate Integrated Optic devices, Mercury Cadmium Telluride sensors, etc.
- Coating: Antireflection, Dielectric
- Materials: Fiber, Glass, Metal
- Wavelength Range: IR, UV, Visible
- Features: North America, Northeast US Only, United States Only
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Supplier: Micromeritics
Description: support surfaces of catalysts and to determine the high surface areas of adsorbents or the microporosity and hydrogen storage capacity of various nano materials. Materials with low surface areas such as powdered metals, glass fibers, and natural organic materials can also be analyzed.
- Delivery: Classroom (On Campus / Trainer's Facility)
- Type: Course, Product Training
- Technology / Subject Expertise: Testing / Test Methods
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Supplier: Micromeritics
Description: support surfaces of catalysts and to determine the high surface areas of adsorbents or the microporosity and hydrogen storage capacity of various nano materials. Materials with low surface areas such as powdered metals, glass fibers, and natural organic materials can also be analyzed.
- Delivery: Classroom (On Campus / Trainer's Facility)
- Type: Course, Product Training
- Technology / Subject Expertise: Testing / Test Methods
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Supplier: Newport MKS
Description: The 818-BB-27 High Speed UV Enhanced Silicon Optical Detector consists of a silicon detector with an enhanced ultraviolet response, making it well suited for the fourth harmonic Nd:YAG, YLF or Glass Lasers and Excimer Lasers. Additionally, its large 2.55 mm active diameter and 3 ns
- Receiver Rise Time: 3 ns
- Bandwidth: 0 to 118 MHz
- Features: Other
- Receiver Type: PIN
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Supplier: Newport MKS
Description: The 818-BB-31 High Speed Photodetector consists of a free-space 1000 to 1600 nm biased InGaAs detector with a 0.10 mm active diameter and a <175 ps rise time. The detector utilizes an FC input connector for use with fiber optic signals. It includes a built-in bias supply consisting of
- Receiver Rise Time: 0.175 ns
- Bandwidth: 0 to 2,000 MHz
- Features: Other
- Receiver Type: PIN
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Supplier: Newport MKS
Description: comes with an external 24 VDC power supply. UV-Enhanced Silicon Free Space Detector The 818-BB-27 consists of a silicon detector with an enhanced ultraviolet response, making it well suited for the fourth harmonic Nd:YAG, YLF or Glass Lasers and Excimer Lasers. Additionally, its large
- Receiver Rise Time: 0.028 ns
- Bandwidth: 0 to 10,000 MHz
- Features: Other
- Receiver Type: PIN
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Supplier: Newport MKS
Description: for the fourth harmonic Nd:YAG, YLF or Glass Lasers and Excimer Lasers. Additionally, its large active area and fast response time make it an excellent general-purpose biased detector for the 200 to 1100 nm wavelength region. To attain its fast response, this detector comes with a 24
- Receiver Rise Time: 0.025 ns
- Bandwidth: 0 to 15,000 MHz
- Features: Other
- Receiver Type: PIN
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Supplier: Custom Processing Services, Inc.
Description: for enhanced adhesion. Silanation is used to promote adhesion of filler particles, glass fibers, and ceramic surfaces. Batching services are provided. Loss in Weight batching automated PLC controlled up tp 10 components very tight weight tolerances
- Materials Processed: Abrasives, Adhesives / Sealants, Aluminum / Aluminum Alloy, Carbon / Graphite, Ceramics, Coatings / Paint, Cobalt / Cobalt Alloy, Copper / Copper Alloy, Elastomers / Rubber, Ferrous / Iron Based (Steel, Stainless), Foods / Beverages, Glass / Fiberglass, Metals / Elements, Minerals, Nickel / Nickel
- Chemicals Processed: Acetylenes, Alcohols, Catalysts / Initiators, Chemical Agents / Additives, Cleaners / Surface Active Agents, Cosmetics / Soaps, Filler / Extenders, Inorganic Chemicals, Lubricants / Greases, Monomers and Intermediates, Organic Chemicals, Pharmaceuticals / Drugs, Pigments / Dyes, Polymers, Reagents,
- Services Offered: Blending / Mixing, Compounding, Process Optimization, Research and Development, Trial Facility Leasing, Warehousing / Distribution
- Waste, Scrap or Environmental Source: Brownfield / Plant Sites, Landfills, Mines / Mining Waste, Slag / By-products, Used Products / Goods
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Supplier: ASTM International
Description: examination. 1.6 This guide summarizes the application of NDT methods to fiber- and fabric-reinforced polymeric matrix composites. The composites of interest are primarily, but not exclusively limited to those containing high modulus (greater than 20 GPa (3×106 psi)) fibers.
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Supplier: ASTM International
Description: those containing high modulus (greater than 20 GPa (3x106 psi)) fibers. Furthermore, an emphasis is placed on composites with continuous (versus discontinuous) fiber reinforcement. 1.7 This guide is applicable to PMCs containing, but not limited to, bismaleimide, epoxy, phenolic,
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Supplier: Shenzhen Jewellok Technology Co., Ltd.
Description: UHP diaphragm valves with metal-to-metal seals further prevents atmospheric exposure, maintaining the integrity of sensitive precursors and reagents. Managed by sophisticated PLC-controlled automation, these systems provide precise, repeatable blending of active ingredients and solvents.
- Body Material: Stainless Steel
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data centers by facilitating the connection of an entire rack-scale system in a 1RU panel, requiring only 24 physical connections to serve 3,456 fibers. Deployment time will also be reduced thanks to the connector design’s self-cleaning capability that actively cleans fiber end (read more)
Browse Fiber Channel Connectors Datasheets for Amphenol Communications Solutions -
to 5 layers can be performed. The active exposure time regulation of the CCD array allows fast and stable measurements on varying surfaces, even with dynamic measurement processes of up to 25 kHz. Their extremely compact design simplifies installation in environments with limited space. A fiber optic cable is not required here. Direct integration into the PLC is possible via the integrated Industrial Ethernet interface. (read more)
Browse Proximity Sensors Datasheets for Micro-Epsilon Group -
next-generation, ultra-compact turnkey marking system built on advanced MOPA fiber laser, electronics, and high-speed scanning technology. Designed for short-run and precision manufacturing environments, it offers seamless integration into production lines with high efficiency and reliability. Powered (read more)
Browse Laser Engraving and Laser Marking Machines Datasheets for World Star Tech -
manufacturers to optimize marking across a wide range of materials and applications. At the heart of the system is a 25 W, 1064 nm MOPA fiber laser with adjustable pulse widths from 2–500 ns and frequency control from 1–4000 kHz. Unlike conventional (read more)
Browse Laser Engraving and Laser Marking Machines Datasheets for World Star Tech -
. This capability is particularly valuable when marking compact components where available marking space is limited. Manufacturers can place more information in a smaller area while maintaining code quality and readability. Powered by MOPA fiber laser technology, NEXGEN enables marking (read more)
Browse Marking and Engraving Equipment Datasheets for World Star Tech
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High-power neodymium-glass waveguide laser
…loss of their advantages), by increasing the number of active fibers in the cord, is not very effective because of the large scattering of the pump light by the fibers, which prevents effective excitation of the entire cord of active glass fibers .
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Passively cooled 405 W ytterbium fibre laser utilising a novel metal coated active fibre
The all- glass active fibre used in these experiments was drawn from a custom preform manufactured by Heraeus GmbH.
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OSA | 3-Dimensional heat analysis in short-length Er3+/Yb3+ co-doped phosphate fiber laser with upconversion
P. Polynkin, V. Temyanko, J. Moloney, and N. Peyghambarian, âDramatic change of guiding properties in heavily Yb-doped, soft- glass active fibers caused by optical pumping,â Appl. Phys. Lett. 90, 2411061â2411063 (2007).
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New high-power waveguide neodymium laser for medical applications
…loss of their advanteges), by increasing the number of active fibers in the cord, is not very effective because of the large scattering of the pump light by the fibers, which prevents effective excitation on the entire cord of active glass fibers .
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Potential for using mid-infrared light for non-invasive, early-detection of skin cancers in vivo
The next steps are electromagnetic wave and radiative modeling of chalcogenide glass active fiber devices to provide guidance to the best device designs, optimizing glass formulations and improving purity of sometimes complex glass formulations to give low optical loss of fibers across…
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Er-Yb femtosecond ring fiber oscillator with 1.1-W average power and GHz repetition rates
Abstract—We report an all-fiber passively mode-locked fem- tosecond laser oscillator based on the heavily doped Er–Yb phosphate– glass active fiber .
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A double clad ytterbium fibre laser operating at 400°C
2.1 All- glass active fibre .
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All-Fiber Picosecond Laser System at 1.5 $mu$m Based on Amplification in Short and Heavily Doped Phosphate-Glass Fiber
We report a simple all-fiber alternative to these complex techniques that utilizes a rapid amplification of pulses in a short and heavily doped phosphate- glass active fiber .
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Development of Eye-Safe Fiber Lasers Near 2 μm
pumped by a single-mode laser beam at 793 nm, germanate glass active fiber has been successfully used for building single- frequency fiber lasers in a wide wavelength range, for example from 1740 to 2020 nm, as shown in Fig. 5.
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All-fiber source of high-power picosecond pulses at 1.5μm using short heavily-doped phosphate-fiber amplifier
We report an all-fiber system for generating picosecond pulses at 1.5µm, that utilizes the heavily doped phosphate- glass active fiber as a gain medium.
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