Product Description

Product name: IGBT Dispensing and Curing Assembly Line
Product brand: HOLS
Product size: For precise dimensions and specifications, please reach out directly to our dedicated customer service team.
Appliable industry: Perfectly engineered for New energy vehicles, Semiconductor technology, and the cutting-edge Healthcare sector.
Working process: Seamlessly transition from one stage to the next: retrieve product from the former workstation → undergo curing in a high-temperature oven → swiftly lower product temperature in the cooling furnace → perform automatic cleaning and dust removal → proceed with vacuum dispensing → undergo a second high-temperature oven curing → move again to the cooling furnace → advance product to the subsequent stage.
The IGBT module, a paramount component, showcases its versatility across rail transit, photovoltaic power generation, and automotive electronics. It stands as the prevailing choice among switching devices. New energy vehicles demand IGBTs with exceptional power processing capabilities, minimizing energy wastage and heat dissipation, thereby enhancing vehicle performance. As a critical element of power electronics, the reliability of IGBT modules is fundamental to secure device operation, necessitating advanced packaging techniques. The packaging process encompasses screen printing, mounting, bonding, functional testing, and more, each demanding sophisticated technology and precision equipment.
Curing applications are indispensable across diverse industries. Depending on production requirements, a batch or conveyor oven can be employed for the curing process, which leverages heat to induce a chemical reaction, ensuring adhesives, finishes, plastics, or epoxies achieve an optimal cure. This results in materials or coatings that are more durable, resistant to temperature, humidity, and corrosion. Industrial curing ovens guarantee exceptional temperature consistency, ensuring every component receives the best possible cure.
Our Advantages
Advantages:
1. Degassing technique: With low-viscosity materials, self-degassing occurs naturally; for high-viscosity products, our advanced vacuum degassing methodology enhances and expedites the process efficiently.
2. Vacuum potting technology: This sophisticated technology prevents air entrapment by operating in a vacuum, significantly bolstering product performance and integrity.
3. Effectively reduce voids: Our meticulously designed production line and processes are engineered to minimize voids, thereby optimizing the performance of our products.
Application: Harness the power of our technological prowess across various sectors and applications.
Company Profile



Worldwide office distribution: Our global presence ensures that you can access our premium services and support no matter where you are.
