When manufacturing circuit boards for high temperature applications, understanding the glass transition temperature (Tg) is crucial. The Tg indicates the point at which the PCB material transitions from a rigid state to a soft, rubbery state under heat stress. Exceeding this Tg value can compromise the PCB's performance, causing material expansion and potentially leading to mechanical stress and micro cracks due to varying thermal expansion coefficients of different materials.
At Technotronix, we specialize in High Tg PCBs (high temperature printed circuit boards) designed to withstand elevated temperatures. These PCBs utilize FR-4 substrate material renowned for its superior heat resistance, mechanical durability, and chemical stability. This makes High Tg PCBs ideal for applications requiring robust performance in demanding thermal environments.
Our PCB fabrication process emphasizes precision and quality, ensuring that each High Tg PCB meets rigorous industry standards. From material selection to final assembly, our experienced team ensures that thermal management considerations are integrated into every aspect of the manufacturing process.
High Tg printed circuit boards are widely used across various industries, including automotive, aerospace, and industrial equipment, where reliability under high temperatures is paramount. By choosing Technotronix for your High Tg PCB board’s needs, you benefit from our expertise in PCB fabrication services tailored to deliver superior thermal performance and longevity. Contact us today to discuss your specific requirements and discover how our High Tg PCB solutions can enhance the reliability and durability of your products.
We offer high Tg printed circuit boards that offer flawless performance in high temperature applications. With over 4 decades of experience in the industry, we are armed with the following capabilities:
High Tg materials are known to:
High Tg PCBs, therefore, offer:
High Tg PCBs find extensive application in a wide range of industries that operate at relatively high temperatures including but not limited to: Engine controllers, Oil drilling equipment, Medical diagnostic instruments, Inverters, Wi-Fi Boosters, Computer systems, Ac Power Supplies.
At Technotronix, we specialize in high Tg printed circuit boards designed to deliver flawless performance in high temperature applications. With over four decades of experience in the industry, we have honed our capabilities to provide superior PCB solutions tailored to meet diverse customer needs.
Our high Tg PCBs are crafted from flame-retardant epoxy materials renowned for their ability to withstand high temperatures without compromising performance. This ensures reliability and longevity in demanding thermal environments, making them ideal for applications where temperature resilience is critical.
Key to our offerings is the mechanical strength and dimensional stability of our printed circuit boards. We prioritize using materials and manufacturing processes that enhance durability and ensure consistent performance under varying thermal conditions.
We offer a comprehensive array of surface treatment options to meet specific application requirements:
In addition to surface treatments, we offer multi-layered PCBs with a minimum size of 1015mm and a maximum size of 500600mm. This flexibility allows us to accommodate both compact and larger-scale PCB designs, meeting varied project requirements effectively.
Our high Tg printed circuit boards are available with a wide range of solder mask options, including different colors and materials. Solder masks not only protect the PCB from environmental factors but also aid in ensuring accurate assembly and soldering processes.
Quality is paramount at Technotronix. Our circuit boards are manufactured under strict adherence to ISO 9001:2015 and AS9100 Rev. D quality management standards, guaranteeing consistency and reliability in every board we produce. These certifications underscore our commitment to delivering products that meet the highest industry standards for quality and performance.