HTCC & LTCC

High-Temperature Co-Fired Ceramics (HTCC) and Low-Temperature Co-Fired Ceramics (LTCC) are advanced ceramic materials used extensively in high-frequency RF and microwave applications. These ceramics provide a platform for miniaturized and highly integrated electronic components essential for modern communication technologies.

Industrial Applications

Integrated passive devices and modules in smartphones and other consumer electronics, where miniaturization and performance are key.

Compact, high-frequency filters for optical communication systems, utilizing its low-loss dielectric properties.

Sensors and control circuits in renewable energy systems, where reliability and compactness are crucial.

Material Properties

Density

2.52 g/cm³

Hardness

9.5 (Mohs scale)

Thermal Conductivity

30-42 W/m·K

Thermal Expansion

4.5-5.0 ppm/°C

Electrical Resistivity

10¹⁴ ohm·cm

Fracture Toughness

2.5-3.5 MPa·m¹/²

Flexural Strength

400-450 MPa

Our Production Technologies

Our sustainable production technologies and advanced ceramics set us apart, offering unparalleled protection and performance in the defense industry. We focus on delivering solutions that enhance safety while maintaining efficiency and reliability.

Sustainable Quality

KIM Technologies offers a complete range of services—from evaluation and design to manufacturing and integration—ensuring top-tier support at every stage. Our expertise covers ballistic materials, armor systems, and cutting-edge logistics support.

  • Evaluation: All evaluations are completed in our fully equipped labs under one roof with consistent quality.
  • Design & Simulation: We perform ballistic, conceptual, compliance, and human factor engineering analysis.
  • Manufacturing: All ceramics are produced in-house, ensuring compatibility across the value chain.
  • ILS: We offer full support in ILS management, including MTA, FMECA, and RCM.

Contact Our Experts.

Have questions regarding our advanced ceramics or need a custom solution? Our experts are here to help.