Magnesium Titanate (MgTiO₃)
Magnesium Titanate (MgTiO₃)
Magnesium Titanate (MgTiO₃)
Magnesium Titanate (MgTiO₃)

Magnesium Titanate (MgTiO₃)

  • element:Mg (Magnesium), Ti (Titanium), O (Oxygen)
  • purity:High purity
  • shape:Customizable
  • specification:Customizable based on customer requirements
  • packaging:Custom packaging options available based on customer needs

Magnesium titanate (MgTiO₃) offers exceptional dielectric properties, optimized thermal stability, and superior mechanical strength. Designed for electronic and ceramic applications, it ensures reliable performance, extended durability, and efficient energy transmission.

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Product Overview

Magnesium titanate (MgTiO₃) is an important ceramic material, widely used in the field of electronic ceramics, particularly in the manufacture of capacitor ceramic substrates and microwave dielectric resonators. It has a spinel structure and is made from titanium dioxide and magnesite through a solid-state synthesis process. With a relative dielectric constant of about 20 and low dielectric loss, it performs well in high-frequency and high-temperature environments, ensuring good stability and reliability.

Features

  • Spinel Structure: The excellent crystal structure provides stable electrical properties.
  • Moderate Dielectric Constant: With a relative dielectric constant of around 20, it is suitable for applications requiring stable dielectric performance.
  • Low Dielectric Loss: The dielectric loss tangent value of (1–3)×10⁻⁴ ensures efficient energy transmission.
  • Good Sintering Performance: The titanium-to-magnesium ratio is optimized to enhance sintering performance, meeting various usage requirements.
  • Thermal Stability: The material exhibits good thermal stability, making it suitable for high-temperature applications and ensuring long-term reliable performance.

Applications

  • Ceramic Capacitors: Widely used in the manufacture of capacitor ceramic substrates, providing high stability and reliability.
  • Microwave Dielectric Resonators: Applied in microwave technology and high-frequency signal processing, suitable for high-frequency devices.
  • Precision Electronic Ceramics: Used as a base material in various high-precision electronic products.
  • High-Temperature Electrical Equipment: Ideal for use as a dielectric material in high-temperature electrical equipment, ensuring stable electrical performance.
  • Electronic Components: Acts as a key dielectric material in various electronic components, enhancing the stability and performance of the equipment.
ProjectDataMethod
Particle Size (μm)0.8-2.0 (adjustable)Laser measurement
Moisture Content (wt%)<0.1At 105℃ (1 hour)
Loss on Ignition (wt%)<0.5At 800℃ (1 hour)
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