Capacitors and dielectric isolation
Functional ceramic families for sensing, actuation, capacitors, RF, insulation, electro-optic behavior and energy conversion.

Functional ceramic families for sensing, actuation, capacitors, RF, insulation, electro-optic behavior and energy conversion.
Functional ceramic families for sensing, actuation, capacitors, RF, insulation, electro-optic behavior and energy conversion.
Functional ceramic families for sensing, actuation, capacitors, RF, insulation, electro-optic behavior and energy conversion.
Functional ceramic families for sensing, actuation, capacitors, RF, insulation, electro-optic behavior and energy conversion.
Functional ceramic families for sensing, actuation, capacitors, RF, insulation, electro-optic behavior and energy conversion.
| Control area | Engineering content |
|---|---|
| Representative materials | BaTiO3, PZT-family ceramics, AlN, ZnO, lead-free piezoelectric families and engineered dielectric ceramics. |
| Processing variables | Composition/dopants, calcination, forming, sintering, electrode application, poling, domain state, grain size and packaging interfaces. |
| Failure / degradation modes | Dielectric breakdown, depoling, aging, fatigue, humidity, thermal drift, electrode/interface degradation and lead-content/regulatory constraints where relevant. |
| Verification & qualification | Permittivity/loss, dielectric strength, piezoelectric coefficients, resonance/impedance, polarization, fatigue/aging, thermal stability and package-level calibration. |

Alumina, zirconia and related oxide-ceramic families used where chemical stability, insulation, wear response, optical behavior or high-temperature service are required.
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SiC, Si3N4 and related non-oxide ceramics for wear, thermal management, hot structures, tooling and chemically aggressive environments.
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ZrB2, HfB2 and related ultra-high-temperature ceramic systems for extreme heat flux, reentry, propulsion and hot-structure applications.
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Transparent, insulating, seal, substrate and engineered glass-ceramic families controlled through composition, thermal history and crystallization state.
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