Barium zirconate titanate (PbZrₙTi₁₋ₙO₃) offers superior piezoelectric properties, optimized dielectric performance, and exceptional thermal stability. Designed for electronic applications, it ensures high-efficiency energy conversion, extended lifespan, and reliable functionality.
Product Overview
Barium zirconate titanate (PbZrₙTi₁₋ₙO₃) is a titanate ceramic material known for its excellent dielectric and piezoelectric properties. It is widely used in various electronic and electrical applications. The material typically consists of zirconium (Zr), titanium (Ti), and barium (Ba), and its performance can be optimized by adjusting the zirconium-titanium ratio. Barium zirconate titanate has a high dielectric constant, good thermal stability, and strong mechanical strength, making it suitable for use in high-frequency electronic devices, sensors, capacitors, and other piezoelectric devices.
Features
- High Dielectric Constant: Provides excellent electrical performance with a high dielectric constant.
- Excellent Piezoelectric Properties: Exhibits a strong piezoelectric effect, making it ideal for use in sensors, actuators, and transducers.
- Good Thermal Stability: The material performs well in high-temperature environments due to its good thermal stability.
- Strong Mechanical Properties: It has high compressive strength and resistance to mechanical stress, ensuring long-term stability.
- Adjustable Composition: The zirconium-titanium ratio can be adjusted to optimize electrical properties for specific applications.
Applications
- Electronic Devices: Used in capacitors, transformers, frequency tuners, and other electronic components.
- Sensors and Actuators: Widely used in piezoelectric sensors such as pressure sensors, accelerometers, and ultrasonic transducers.
- High-Frequency Devices: Ideal for use as a dielectric material in high-frequency circuits and microwave technologies.
- Energy Conversion: Used in piezoelectric energy harvesting and conversion devices.
- Smart Devices: Plays an important role as a sensing component in smart devices and automation systems.