• Lithium Tantalate LiTaO3 Crystal wafer High-Frequency SAW Filters High Piezoelectric Coefficient
  • Lithium Tantalate LiTaO3 Crystal wafer High-Frequency SAW Filters High Piezoelectric Coefficient
  • Lithium Tantalate LiTaO3 Crystal wafer High-Frequency SAW Filters High Piezoelectric Coefficient
  • Lithium Tantalate LiTaO3 Crystal wafer High-Frequency SAW Filters High Piezoelectric Coefficient
Lithium Tantalate LiTaO3 Crystal wafer High-Frequency SAW Filters High Piezoelectric Coefficient

Lithium Tantalate LiTaO3 Crystal wafer High-Frequency SAW Filters High Piezoelectric Coefficient

Product Details:

Place of Origin: China
Brand Name: ZMSH

Payment & Shipping Terms:

Minimum Order Quantity: 1pcs
Payment Terms: T/T
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Detail Information

Material: LiTaO3 Wafers Cutting Angle: X/Y/Z Etc
Diameter/size: 2”/3”/4” /6”/8”LT Wafer Tol(±): <0.20 Mm
TTV: <3µm Warp: <40µm
Highlight:

High Piezoelectric Coefficient LiTaO3 Crystal wafer

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SAW Filters LiTaO3 Crystal wafer

Product Description

Lithium Tantalate (LiTaO3) Crystal wafer High-Frequency SAW Filters High Piezoelectric Coefficient

 


 

Introduce

Lithium Tantalate (LiTaO₃) is a ferroelectric crystal that has attracted significant interest due to its exceptional electro-optic properties. It boasts a wide range of applications, including optical waveguides, acoustic devices, frequency filters, and even medical ultrasonic imaging.

 

Lithium Tantalate LiTaO3 Crystal wafer High-Frequency SAW Filters High Piezoelectric Coefficient 0Lithium Tantalate LiTaO3 Crystal wafer High-Frequency SAW Filters High Piezoelectric Coefficient 1

 

 


 

Crystal Structure and Properties  


Lithium Tantalate LiTaO3 Crystal wafer High-Frequency SAW Filters High Piezoelectric Coefficient 2

Lithium Tantalate (LiTaO₃) crystallizes in a perovskite structure, analogous to other ferroelectric crystals such as barium titanate (BaTiO₃) and strontium titanate (SrTiO₃). It exhibits optical transparency across the visible to mid-infrared spectrum and possesses optical birefringence. With a high Curie temperature of 610°C and a large electro-optic coefficient of 30 pm/V, LiTaO₃ is an attractive material for diverse electro-optic applications. Additionally, its significant piezoelectric coefficients enable bidirectional conversion between electrical signals and mechanical vibrations.

 

 


Crystal Substrates and Wafers

Lithium Tantalate LiTaO3 Crystal wafer High-Frequency SAW Filters High Piezoelectric Coefficient 3Lithium Tantalate (LiTaO₃) crystal substrates and wafers are typically produced via the ​​Czochralski method​​, which involves melting the material in a crucible and slowly pulling a single crystal from the melt. These crystals can be further processed into substrates or wafers using techniques such as slicing, grinding, and polishing.

 

Lithium Tantalate substrates are commonly used as bases for devices like ​​Surface Acoustic Wave (SAW) filters​​ and resonators, while wafers are employed in waveguide devices such as modulators and switches.

 

 


Specification

Material LiTaO3 wafers
Curie Temp 603±2℃
Cutting Angle X/Y/Z etc
Diameter/size 2”/3”/4” /6”/8”LT wafer
Tol(±) <0.20 mm
Thickness 0.18 ~ 0.5mm or more
Primary Flat 16mm/22mm /32mm
TTV <3µm
Warp <40µm
Surface Type Single Side Polished /Double Sides Polished
Polished side Ra <0.5nm
Back Side Criteria General is 0.2-0.5µm or as customized
Edge Criteria R=0.2mm or Bullnose
Optical doped Zn/MgO etc
Wafer Surface Criteria Contamination, None
Particles ¢>0.3 µ m <= 30
Scratch , Chipping None
Defect No edge cracks, scratches, saw marks, stains
Packaging Qty/Wafer box 25pcs per box

 

 

 


​Applications
Lithium Tantalate (LiTaO₃) crystal substrates and wafers are widely utilized across diverse fields. One major application is in ​​acoustic devices​​, such as ​​Surface Acoustic Wave (SAW) filters​​ and resonators, where the piezoelectric properties of LiTaO₃ are leveraged. These devices are extensively employed in telecommunications, radar systems, and other wireless communication technologies. Another critical application lies in ​​electro-optic devices​​, such as modulators and switches. LiTaO₃ is highly valued for these applications due to its large electro-optic coefficient, enabling low-voltage modulation of light signals. Such devices find use in telecommunications, optical sensing, and high-speed communication systems.

Lithium Tantalate LiTaO3 Crystal wafer High-Frequency SAW Filters High Piezoelectric Coefficient 4

 

LiTaO₃ is also utilized in ​​medical ultrasonic imaging​​. Its high piezoelectric coefficient allows efficient conversion of electrical signals into mechanical vibrations, which are then used to generate images of internal organs.

Lithium Tantalate LiTaO3 Crystal wafer High-Frequency SAW Filters High Piezoelectric Coefficient 5

 


Q&A

Q1: What are the advantages of LiTaO₃ compared to quartz?
A1: LiTaO₃ has higher piezoelectric coefficients and electromechanical coupling, ideal for high-frequency and high-sensitivity applications.

 

Q2: How does LiTaO₃ perform in high-temperature environments?
A2: With a Curie temperature of 665°C, it maintains stable piezoelectric properties under high heat.

 

Q3: How to select the crystal cut (e.g., 36° YX-cut)?
A3: Depends on target frequency and device type. For example, 36° YX-cut is used in high-frequency SAW filters.

 

 

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