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Supplier: Pfaltz & Bauer, Inc.
Description: Lithium Niobate
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Supplier: HG Optronics, Inc.
Description: LiNbO3 is widely used as electro-optic modulators and Q-switches for Nd:YAG, Nd:YLF and Ti:Sapphire lasers as well as modulators for fiber optics. Descriptions: Lithium niobate (LiNbO3, LN) is a multi-purpose material in photonics and optoelectronics fields. It features
- Damage Threshold: 750000 W/cm²
- Features: AR-Coated
- Material: LiNbO3
- Refractive Index: 2.2 to 2.29 n
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Supplier: GFS Chemicals, Inc.
Description: ITEM#:3672 LiNbO3 CAS#:12031-63-9 F.W.:147.84 NFPA#: Specific Gravity: DOT:NR Descriptions: Specification TEST 1. Assay (metals basis) 99.99% Properties No properties.
- Ionic Component: Alkali Metals (Li, Na, K, etc.)
- Other: Other
- State of Matter: Powder
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Supplier: Gelest, Inc.
Description: Safety Packaging Under None
- Inorganic Compounds: OrganoMetallics
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Supplier: Accuris
Description: Lithium tantalate and lithium niobate crystals for surface acoustic wave (SAW) device applications \x96 Specifications and measuring methods
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Supplier: Accuris
Description: Draft BS EN IEC 63541 Lithium tantalate and lithium niobate crystal for surface acoustic wave (SAW) device applications - Specifications and measuring method
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Supplier: El-Cat, Inc.
Description: EL-CAT Inc. is a stocking distributor of Silicon Wafers, Compound Semiconductors and other Crystal Materials for use in electronics.
- Piezoelectric / Electrostrictive Type: Lithium Niobate (LN)
- Thickness / Wall Thickness: 0.0015 inch
- Width / O.D.: 4.32 inch
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Supplier: AENOR
Description: Lithium tantalate and lithium niobate crystals for surface acoustic wave (SAW) device applications - Specifications and measuring methods
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Description: Applies to single crystal wafers intended for manufacturing substrates made of synthetic quartz crystal, lithium niobate, lithium tantalate, lithium tetraborate crystals for surface acoustic wave (SAW) filters and resonators. Lays down specifications and measuring
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Supplier: CASTECH, Inc.
Description: IntroductionBased on the quasi-phase matching theory (QPM), the nonlinear optical crystal Lithium Niobate is made into a periodically inverted domain structure, called Periodically Poled Lithium Niobate (PPLN), to compensate for phase mismatch caused by dispersion, so
- Type: Nonlinear
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Description: Provides specifications for manufacturing piezoelectric single crystal wafers to be used in surface acoustic wave devices. Applies to the manufacture of synthetic quartz, lithium niobate, lithium tantalate, lithium tetraborate, and lanthanum gallium silicate single
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Supplier: Chivine Resources, Inc.
Description: Is the inorganic compound with the formula Nb2O5. It is a colourless insoluble solid that is fairly unreactive. It is the main precursor to all materials made of niobium, the dominant application being alloys, but other specialized applications include capacitors, lithium niobate, and
- Inorganic Compounds: Other
- Ionic Component: Transition Metals (Ti, Fe, Ni, etc)
- Non-Metal Compounds: All Non-Metals, Oxides
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Supplier: Thin-Films Research, Inc.
Description: Custom Designed Optical Coatings : Using computer-aided design and leading-edge technology, we offer state-of-the-art solutions to your optical needs, covering: the Visible, the Ultraviolet, and the Infrared regions of the spectrum. We also design & fabricate application specific optical coatings on
- Coating: Antireflection, Dielectric, Metal
- Regional Preference: North America, United States Only, Northeast US Only
- Substrate Materials: Fiber, Glass
- Wavelength Range: UV, Visible, IR
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Description: IEC 62276:2012 applies to the manufacture of synthetic quartz, lithium niobate (LN), lithium tantalate (LT), lithium tetraborate (LBO), and lanthanum gallium silicate (LGS) single crystal wafers intended for use as substrates in the manufacture of surface acoustic wave
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Supplier: Electro Optical Components, Inc.
Description: This is a low voltage transverse electro-optic modulator using high damage threshold lithium niobate. It has similar characteristics to the EM 200K with an optical range extended further into the infra-red.
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Description: IEC 62276:2016 applies to the manufacture of synthetic quartz, lithium niobate (LN), lithium tantalate (LT), lithium tetraborate (LBO), and lanthanum gallium silicate (LGS) single crystal wafers intended for use as substrates in the manufacture of surface acoustic wave
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Supplier: APITech
Description: platform packages, which are suited for harsh applications. API Technologies has experience with delay lines on various substrates including quartz, lithium tantalate and lithium niobate. All SAW Delay Lines are hermetically sealed to ensure robust performance.
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Supplier: Materion Corporation
Description: Oxide, La2O3 Lead Titanate, PbTiO3 Lead Zirconate, PbZrO3 Lead Zirconate-Titanate, PZT Lithium Niobate, LiNbO3 Magnesium Oxide, MgO Molybdenum Oxide, MoO3 Niobium Pentoxide
- Materials Processed: Oxides
- Type: CVD / Chemical Precursor
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Supplier: CSA Group
Description: IEC 62276:2016 applies to the manufacture of synthetic quartz, lithium niobate (LN), lithium tantalate (LT), lithium tetraborate (LBO), and lanthanum gallium silicate (LGS) single crystal wafers intended for use as substrates in the manufacture of surface acoustic wave
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Supplier: Newport MKS
Description: The M-PY-1550 is the key component of Fiber Optic Gyroscope (FOG) for rotational rate sensing and inertial navigation systems. This Integrated Optic Chip (IOC) device is composed of a polarizer, a Y-junction coupler, and dual electro-optic phase modulators. Based on Lithium Niobate
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Supplier: Picosecond Pulse Labs, Inc.
Description: Lithium Niobate Modulator Drivers General Purpose Linear Lab Amplifier The Picosecond Advantage: Outstanding performance in an easy to use instrument form.Description: The Model 8001 LABware instrument combines a 12.5Gb/s broadband amplifier, a power supply
- Amplifier Type: Other
- Frequency Range: 12000 MHz
- Nominal Impedance: 50 Ohms
- Package Type: Connectorized
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Supplier: OFS
Description: . TruePhase 1550 fiber is made specifically for use with premium photonic devices such as phase-sensitive Lithium Niobate Modulators. Used as a source laser pigtail, TruePhase 1550 fiber preserves the coherence of emitted laser light. Devices at 1550 nm which use longer lengths of
- Fiber Mode: Single Mode
- Fiber Type: Bare Fiber, Polarization Maintaining
- Maximum Attenuation: 0.5000 dB/km
- Operating Temperature: -40 to 85 C
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Supplier: Electro Optical Components, Inc.
Description: Unlike the EM500 range of Pockels cells, the transverse field Pockels cells can be made in a more flexible range of sizes and in a greater choice of materials. The construction usually consists of either one Z-cut crystal in the case of lithium niobate, or two X or Y cut crystals,
- Q-switch Type: Electro-optic
- Wavelength Range: 458 to 1064 nm
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Supplier: Electro Optical Components, Inc.
Description: Unlike the EM500 range of Pockels cells, the transverse field Pockels cells can be made in a more flexible range of sizes and in a greater choice of materials. The construction usually consists of either one Z-cut crystal in the case of lithium niobate, or two X or Y cut crystals,
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Supplier: APITech
Description: SPUDT, Coupled Resonator Filter (CRF), Impedance Element Filter (IEF), Transverse Coupled Resonator Filter (TCRF), Reflective SPUDT, Resonators, Surface Transverse Wave (STW), non-dispersive delay lines and dispersive delay line models (among others). We also stock several piezoelectric materials
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Supplier: SAE International
Description: produced by difference-frequency -generation in a periodically poled lithium niobate (PPLN) crystal using one signal and two pump lasers. The pump lasers were modulated at different frequencies allowing frequency demultiplexing of the laser light transmitted though the spark plug probe
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Supplier: Picosecond Pulse Labs, Inc.
Description: Features 8V Output Amplitude with 2.3W Power Dissipation Temperature compensated for output stability EOM Bias Network Crossing Point Control Adjustable Output Voltage Applications Lithium Niobate Modulator Driver
- Amplifier Type: Other
- Maximum Gain: 26 dB
- Minimum Gain: 26 dB
- Nominal Impedance: 50 Ohms
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Supplier: SPIE
Description: , including theoretical background and current developments in the field of pyroelectric devices. It describes the preparation, structure, properties and figures of merit for practical pyroelectric materials such as triglycine sulfate, lead zirconate titanate, lithium tantalate,
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Supplier: Electro Optical Components, Inc.
Description: wavelength. This simple coating offers good adhesion and high laser damage resistance in most cases. Typically, magnesium fluoride is used for glass and low refractive index substrates such as calcite, whereas yttrium fluoride is used for higher index substrates such as lithium niobate
- Chemistry: Metal / Metal Filled, Other
- Substrate / Surface: Other
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More Information Top
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Ferroelectric Crystals for Photonic Applications
Micro-Structuring and Ferroelectric Domain Engineering of Single Crystal Lithium Niobate . . . . . . . . . . . . . . . . . . . . . . . .
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CRANFIELD UNIVERSITY
An investigation of the photocatalytic properties of lithium niobate and barium titanate .
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Springer Handbook of Crystal Growth
Growth of Lithium Niobate Crystals and Its Characteristics ...............
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Nonlinear Optical Crystals: A Complete Survey
Anybody who disagrees with me can check it by typing the name of any popular nonlinear optical crystal (e.g., BBO, KTP, lithium niobate , and so forth) into www.google.com and comparing the .
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Processing Of Guided Wave Optoelectronic Materials
If you do that, the load resistors have to be either on the silicon or on the lithium niobate .
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OSA | Confocal Raman imaging of optical waveguides in LiNbO3 fabricated by ultrafast high-repetition rate laser-writing
○ Rapid thermal annealing in high repetition rate ultrafast laser waveguide writing in lithium niobate (OE) .
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Photorefractive Optoelectronic Tweezers and Their Applications
4.1 Highly Reduced Iron-Doped Lithium Niobate (LiNbO3). . . . . . .
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