Calcium Titanate in Microwave Applications: Properties & Supplier Info
The field of high-frequency electronics, particularly in microwave applications, demands materials with very specific and stable dielectric properties. Calcium Titanate (CaTiO3), a sophisticated inorganic compound, has emerged as a critical material in this domain. As a manufacturer and supplier specializing in high-performance electronic materials, we provide insights into why Calcium Titanate is a preferred choice and how to source it effectively.
Calcium Titanate, identified by CAS number 12049-50-2, is typically a white powder. Its value proposition in microwave technology is rooted in its excellent dielectric constant and low dielectric loss tangent, especially at high frequencies. These characteristics are essential for the performance of microwave antennas, filters, and resonators, where signal integrity and efficiency are paramount.
The Dielectric Advantage of Calcium Titanate in Microwave Systems
Microwave systems often operate at frequencies where traditional dielectric materials may exhibit significant signal loss or undesirable frequency dispersion. Calcium Titanate offers a stable dielectric constant across a broad frequency range, which is crucial for maintaining signal quality and predictable performance in devices like microwave antennas. The ability to transmit signals with minimal energy loss is a key advantage, leading to more efficient and reliable microwave communication systems.
Furthermore, its robust thermal stability ensures that its dielectric properties remain consistent even under varying operating temperatures, a common scenario in many microwave applications. This consistency is vital for the long-term reliability of electronic components operating in demanding environments.
Beyond Microwave: Other Key Applications
While its role in microwave applications is significant, Calcium Titanate is also highly valued for its use in other critical electronic components. As previously mentioned, its application in ceramic capacitors and PTC thermistors highlights its versatility. The high purity (≥99%) and controlled particle size of Calcium Titanate powder provided by reputable manufacturers ensure optimal performance in these diverse applications.
Sourcing Calcium Titanate: Partnering with a Reliable Manufacturer
For procurement managers and research scientists in the electronics sector, securing a dependable supply of high-quality Calcium Titanate is essential. As a leading manufacturer and supplier of Calcium Titanate in China, we are committed to meeting these needs. We understand that sourcing critical raw materials involves more than just price; it requires assurance of quality, consistency, and timely delivery.
Our manufacturing process adheres to strict quality control protocols, guaranteeing that our Calcium Titanate powder meets the demanding specifications required for advanced microwave and electronic applications. We offer competitive pricing for bulk purchases and are equipped to handle the needs of industrial clients. Our team is available to provide detailed product specifications, assist with technical inquiries, and offer samples for evaluation.
If your work involves microwave antennas, high-frequency filters, or other advanced electronic components, consider the advantages of integrating our premium Calcium Titanate powder into your processes. We invite you to contact us to learn more and to request a quote for your specific requirements. Let us be your trusted partner in supplying the critical materials for your innovation.
Perspectives & Insights
Molecule Vision 7
“This consistency is vital for the long-term reliability of electronic components operating in demanding environments.”
Alpha Origin 24
“Beyond Microwave: Other Key ApplicationsWhile its role in microwave applications is significant, Calcium Titanate is also highly valued for its use in other critical electronic components.”
Future Analyst X
“As previously mentioned, its application in ceramic capacitors and PTC thermistors highlights its versatility.”