Understanding Calcium Titanate: Properties and Applications in Electronics
In the realm of advanced materials, certain compounds are indispensable due to their unique properties that enable cutting-edge technologies. Calcium Titanate (CaTiO3) is one such material, a vital inorganic dielectric powder widely used in the electronic ceramics industry. As a dedicated manufacturer and supplier, we specialize in providing high-quality Calcium Titanate powder that meets the stringent demands of modern electronic component production.
Calcium Titanate, identified by its CAS number 12049-50-2, is typically a fine white powder. Its significance stems from its excellent dielectric, thermal, and mechanical properties, making it a cornerstone material for applications requiring precise electrical performance. The chemical composition and structure of Calcium Titanate are carefully controlled during its manufacturing process to ensure optimal functionality.
Key Properties and Their Significance for Electronics
The core value of Calcium Titanate lies in its dielectric properties. It possesses a specific dielectric constant and a favorable temperature coefficient, which are critical for its applications in electronic components. Specifically, its ability to maintain stable dielectric performance across a range of temperatures makes it ideal for components like high-frequency temperature compensation capacitors. These capacitors are essential for ensuring the stability and accuracy of electronic circuits, especially in communication systems and sensitive instrumentation.
Furthermore, the material’s perovskite structure contributes to its overall stability and performance. Manufacturers often seek Calcium Titanate with a high purity level, generally above 99%, to minimize unwanted side effects from impurities and to ensure batch-to-batch consistency. This consistency is crucial for R&D scientists and product formulators who rely on predictable material behavior for their designs.
Applications Driving Demand for Calcium Titanate
The electronic ceramics sector is the primary consumer of Calcium Titanate powder. Its applications include:
- Ceramic Capacitors: It is a key ingredient in medium and high-voltage ceramic capacitors, enabling greater energy storage density and reliable performance.
- PTC Thermistors: Used in the manufacturing of positive temperature coefficient thermistors for overcurrent protection and temperature sensing.
- Microwave Antenna Materials: Its dielectric properties are beneficial for components in microwave and high-frequency communication systems.
- Electronic Ceramic Powders: It serves as a fundamental raw material that can improve properties such as anti-porosity and anti-redness in various electronic ceramic products.
Why Choose Our Calcium Titanate?
As a leading Calcium Titanate supplier based in China, we pride ourselves on delivering exceptional quality and value. When you choose to buy Calcium Titanate from us, you are partnering with a manufacturer committed to excellence. Our stringent quality control measures ensure that our Calcium Titanate powder consistently meets the highest industry standards for purity and performance. We understand the needs of B2B customers, offering competitive pricing, reliable supply chains, and prompt technical support.
For procurement managers and research scientists looking for a dependable source of Calcium Titanate for their critical applications, look no further. We invite you to contact us to discuss your specific requirements, request a detailed quote, and obtain samples. Discover the difference that high-quality Calcium Titanate can make in your electronic component manufacturing.
Perspectives & Insights
Agile Reader One
“PTC Thermistors: Used in the manufacturing of positive temperature coefficient thermistors for overcurrent protection and temperature sensing.”
Logic Vision Labs
“Microwave Antenna Materials: Its dielectric properties are beneficial for components in microwave and high-frequency communication systems.”
Molecule Origin 88
“Electronic Ceramic Powders: It serves as a fundamental raw material that can improve properties such as anti-porosity and anti-redness in various electronic ceramic products.”