MULTILAYER CERAMIC RF DEVICES
Product Overview
TAIYO YUDEN’s Multilayer Ceramic RF Devices (LTCC) are designed for a wide range of high-performance applications, offering a compact, low-profile package that is perfect for LTE, 5G, Connectivity (UWB, Wi-Fi), IoT, and more. These advanced RF devices include a diverse portfolio of products such as Diplexers, Triplexers, Band Pass Filters, Low Pass Filters, High Pass Filters, Couplers, and Antennas; each engineered with precision and reliability that have made TAIYO YUDEN the trusted choice of customers for decades.
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With the proven track record, TAIYO YUDEN's LTCC RF solutions deliver exceptional performance across various wireless communication systems. Whether designing for next-generation networks or cutting-edge IoT devices, TAIYO YUDEN’s LTCC RF components provide the ideal solution to meet the evolving demands of modern connectivity.
Product Features
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Exceptional Performance: Engineered with dedicated materials and optimized designs, offering proven, high-quality performance for decades.
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Superior Miniaturization: Achieves outstanding miniaturization with a compact, small footprint, while maintaining superior performance through the use of proprietary technologies.
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Low Loss & High Attenuation: Designed for minimal signal loss and superior attenuation, ensuring optimal performance in demanding applications.
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Standard 50Ω impedance for both input and output: No additional external components are required to match impedance when integrating the device into a circuit.
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Made in Japan: Manufactured with precision in Japan, ensuring the highest standards of quality.
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MSL1: Meets MSL1 (Moisture Sensitivity Level 1) requirements for enhanced handling and durability.
Specification
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Case Size: Various dimensions are available from 1.0mm x 0.5mm to 2.5mm x 2.0mm
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Operating Temperature: -40 to +85℃, -40 to +90℃
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Available Categories:
o Band Pass Type
o Low Pass Type
o High Pass Type
o Diplexers
o Triplexers
o Couplers

Product Details, Specifications: Ceramic RF Devices (TY-Compas)
