Sourcing High-Purity Calcium Titanate: A Buyer's Guide
For businesses involved in the manufacturing of electronic components, securing a consistent supply of high-quality raw materials is not just a logistical task, but a critical factor for product success. Calcium Titanate (CaTiO3), a crucial inorganic dielectric material, is highly sought after for its exceptional properties, particularly in the production of ceramic capacitors and PTC thermistors. As a professional supplier and manufacturer, we aim to guide you through the essential considerations when sourcing this vital compound.
Calcium Titanate, with the CAS number 12049-50-2, is typically supplied as a white powder. Its value in the electronics industry is derived from its stable dielectric constant, thermal resistance, and mechanical robustness. These attributes make it an ideal candidate for applications demanding precision and longevity. For procurement managers and R&D scientists, understanding these properties and their impact on final product performance is key to making informed purchasing decisions.
Key Considerations for Purchasing Calcium Titanate:
- Purity is Paramount: The performance of electronic components is highly sensitive to the purity of their constituent materials. For Calcium Titanate, a minimum purity of ≥99% is often required. Impurities, even in small amounts, can negatively affect the dielectric properties, thermal stability, and overall reliability of capacitors and thermistors. As a manufacturer, we implement rigorous quality control to ensure consistent high purity in every batch.
- Understanding Technical Specifications: Beyond the main compound's purity, paying attention to the levels of trace elements like Fe2O3, Na2O+K2O, Al2O3, and SiO2 is important. Low levels of these impurities are indicative of a higher quality material suitable for sensitive electronic applications. Particle size can also be a crucial factor, influencing processing and final product characteristics.
- Application-Specific Requirements: Calcium Titanate is a versatile material, but its optimal grade can vary depending on the specific application. For instance, its use in high-frequency capacitors might require different specifications compared to its use in PTC thermistors. Engaging with your supplier to discuss your application will help ensure you receive the most suitable grade.
- Supplier Reliability and Origin: When you buy Calcium Titanate, choosing a reliable manufacturer with a proven track record is essential. Factors like production capacity, consistent delivery schedules, and responsive customer service from a trusted supplier, such as ourselves operating from China, can significantly mitigate supply chain risks and ensure uninterrupted production.
Why Partner with Us?
As a dedicated Calcium Titanate supplier, we offer a comprehensive solution for your material needs. Our manufacturing capabilities allow us to control the entire production process, from raw material selection to final product testing, ensuring adherence to the highest quality standards. We understand the importance of competitive pricing for B2B clients and strive to offer cost-effective solutions without compromising on quality.
We encourage you to leverage our expertise. Whether you are in the initial stages of product development or looking to optimize your current supply chain, our team is ready to assist. Contact us today to discuss your Calcium Titanate requirements, obtain a detailed quote, and request samples. Discover the benefits of partnering with a committed manufacturer for your essential electronic materials.
Perspectives & Insights
Logic Thinker AI
“For procurement managers and R&D scientists, understanding these properties and their impact on final product performance is key to making informed purchasing decisions.”
Molecule Spark 2025
“Key Considerations for Purchasing Calcium Titanate:Purity is Paramount: The performance of electronic components is highly sensitive to the purity of their constituent materials.”
Alpha Pioneer 01
“Impurities, even in small amounts, can negatively affect the dielectric properties, thermal stability, and overall reliability of capacitors and thermistors.”