LiNbO3 (Lithium Niobate) Sputtering Target

  • High Electro-optic Coefficient: LiNbO₃ has a high electro-optic coefficient, enabling efficient modulation of light in waveguides, modulators, and telecommunications devices.
  • Excellent Piezoelectric Properties: LiNbO₃’s strong piezoelectric response makes it ideal for use in SAW devices, sensors, and actuators, providing high sensitivity and control.
  • Nonlinear Optical Capabilities: LiNbO₃ is widely used for frequency conversion and other nonlinear optical applications due to its strong nonlinear optical response.
  • Ferroelectric Behavior: LiNbO₃’s ferroelectric properties are valuable in memory devices and data storage, enabling the development of non-volatile memory technologies.
  • Stable and Durable Thin Films: LiNbO₃ thin films exhibit high thermal and chemical stability, making them suitable for use in demanding environments and high-performance applications.

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Description

Material LiNbO3
Purity 99.9% – 99.9999% / 3N 3N5 4N 4N5 5N 5N5 6N
Shape disc, plate, sheet, rod, customized
Size can be customized (contact us)
Package vacuum bag or customer’s request
Place of Origin China
MOQ 1pcs
Supply Ability 10000pcs per month
Lead Time Qty: 1-100, Time: 3-10 days

Qty: >100, Time: to be negotiated

 

Lithium niobate (LiNbO₃) sputtering targets are widely used in thin-film deposition processes for applications in optics, electronics, and telecommunications due to their excellent piezoelectric, ferroelectric, and electro-optic properties. LiNbO₃ is highly valued for its performance in devices requiring high-frequency modulation, nonlinear optics, and signal processing.

Key Applications:

  • Optical Waveguides: LiNbO₃ is used to fabricate optical waveguides, which are critical components in integrated photonics, modulators, and laser systems. Its high electro-optic coefficient allows for efficient modulation of light, making it essential in fiber-optic communication systems.
  • Surface Acoustic Wave (SAW) Devices: LiNbO₃ thin films are used in surface acoustic wave (SAW) devices, which are widely used in signal processing, filters, and sensors. LiNbO₃’s piezoelectric properties enable efficient generation and detection of acoustic waves, making it an ideal material for these applications.
  • Electro-optic Modulators: LiNbO₃ is the preferred material for electro-optic modulators, which control the intensity, phase, and polarization of light. These modulators are essential in telecommunications, laser systems, and signal processing devices.
  • Nonlinear Optics: LiNbO₃ exhibits strong nonlinear optical properties, making it an excellent choice for frequency doubling (second harmonic generation) and other nonlinear optical processes. This is valuable in laser systems and other optical technologies requiring wavelength conversion.
  • Ferroelectric Memory: LiNbO₃’s ferroelectric properties allow it to be used in non-volatile memory devices. Thin films of LiNbO₃ can be used in ferroelectric random-access memory (FeRAM) and other data storage devices.
  • Piezoelectric Sensors and Actuators: Due to its excellent piezoelectric properties, LiNbO₃ is used in sensors, actuators, and transducers that require precise control and high sensitivity in a wide range of applications, including medical ultrasound devices and micro-electromechanical systems (MEMS).

Features of LiNbO₃ Sputtering Targets:

  • High Electro-optic Coefficient: LiNbO₃ has a high electro-optic coefficient, enabling efficient modulation of light in waveguides, modulators, and telecommunications devices.
  • Excellent Piezoelectric Properties: LiNbO₃’s strong piezoelectric response makes it ideal for use in SAW devices, sensors, and actuators, providing high sensitivity and control.
  • Nonlinear Optical Capabilities: LiNbO₃ is widely used for frequency conversion and other nonlinear optical applications due to its strong nonlinear optical response.
  • Ferroelectric Behavior: LiNbO₃’s ferroelectric properties are valuable in memory devices and data storage, enabling the development of non-volatile memory technologies.
  • Stable and Durable Thin Films: LiNbO₃ thin films exhibit high thermal and chemical stability, making them suitable for use in demanding environments and high-performance applications.

Customization Options:

  • Target Sizes: LiNbO₃ sputtering targets are available in various shapes and sizes, including planar and rotary designs, to accommodate different sputtering systems.
  • Purity Levels: High-purity LiNbO₃ targets (up to 99.99%) are available for high-precision deposition in advanced optical and electronic devices.
  • Doping: LiNbO₃ sputtering targets can be customized with dopants to enhance specific properties such as optical transparency, conductivity, or electro-optic performance, depending on the application.

LiNbO₃ (Lithium Niobate) sputtering targets from Tinsan Materials are used in optical waveguides, SAW devices, electro-optic modulators, and nonlinear optics. Customizable high-purity LiNbO₃ targets for advanced thin-film deposition in photonics and telecommunications.

If you have specific requirements, such as dimensions, purity, or application details, please contact us to match your needs.