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Fabricant de PCB LTCC | Haute température & Circuits haute fréquence | UGPCB

AperçuPCB LTCC

LTCC PCB stands for Low Temperature Co-fired Ceramic Circuit imprimé, un type spécialisé de PCB known for its advanced material composition and exceptional performance in various electronic applications. This technology combines ceramic substrates with metallic conductors, fired at relatively low temperatures to create a robust and versatile circuit imprimé.

Composition des matériaux

LTCC PCBs are primarily made of ceramic powders mixed with glass frits and organic binders. The ceramic substrate provides excellent thermal stability, while the metallic conductors (usually silver, cuivre, or gold) offer high conductivity. The material selection allows for fine feature resolution and precision in manufacturing.

Caractéristiques de performance

LTCC PCBs exhibit several notable performance characteristics:

High thermal conductivity and low thermal expansion coefficient, ensuring stable operation over a wide temperature range.
Excellent electrical insulation properties due to the ceramic substrate.
High reliability and durability, suitable for harsh environments.
Fine line resolution and tight tolerance capabilities, enabling complex circuit designs.

Caractéristiques clés

Here are some key features of LTCC PCBs:

Processus de production

The production of LTCC PCBs involves several key steps:

Tape casting: Ceramic slurry is cast into thin sheets to form the substrate layers.
Forage laser: Precision laser drilling creates vias for interconnection.
Impression d'écran: Conductive inks are printed onto the ceramic substrate to form circuits and components.
Stacking and lamination: The layers are precisely aligned and laminated together.
Sintering: The assembled PCB is fired at low temperatures to sinter the ceramic and metallic components together, forming a solid and durable circuit board.
Inspection and testing: Final inspections and electrical tests ensure the quality and performance of the LTCC PCB.

Scénarios d'application

LTCC PCBs are ideal for various high-performance applications, y compris:

High-frequency microwave circuits: Leveraging their low loss and high-frequency characteristics.
Électronique automobile: Providing reliable performance in harsh environments.
Aerospace and defense systems: Offering high-temperature stability and ruggedness.
Medical electronics: Ensuring durability and reliability in critical healthcare devices.
Télécommunications: Supporting high-speed signal transmission and compact designs.

Conclusion

LTCC PCBs offer a unique combination of material properties, fabrication de précision, and versatile application capabilities. Their advanced features make them an excellent choice for demanding electronic systems requiring high performance, fiabilité, and stability.

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