Home Knowledge Base Thin Film Deposition

Thin Film Deposition is the process of depositing layers of material ranging from a few angstroms to several micrometers thick onto semiconductor wafers — building up the multi-layer structures of transistors and interconnects through precisely controlled chemical and physical methods, where each of the 50-100+ film deposition steps must achieve exact thickness, composition, uniformity, and conformality.

Deposition Method Overview

MethodMechanismTemperatureConformalityApplication
PVD (Sputtering)Physical bombardmentLow (25-400°C)Poor (line-of-sight)Metal films, barrier
CVDChemical reactionMedium (300-800°C)GoodDielectrics, tungsten
PECVDPlasma-enhanced CVDLow (200-400°C)ModerateBEOL dielectrics, SiN
ALDSelf-limiting reactionsLow-Med (100-400°C)ExcellentGate oxide, barriers
EpitaxyCrystal growthHigh (500-1200°C)N/A (crystalline)Si, SiGe, III-V
ECDElectrochemicalLow (25°C)Good (fill)Copper interconnect

PVD (Physical Vapor Deposition / Sputtering)

CVD (Chemical Vapor Deposition)

ALD (Atomic Layer Deposition)

Film Quality Metrics

MetricTargetWhy It Matters
Thickness uniformity< 1% (1σ) across waferDevice performance uniformity
CompositionStoichiometricCorrect dielectric/electrical properties
Stress< 200 MPaPrevent wafer bow, film cracking
Defect density< 0.1/cm²Yield
Step coverage> 95% (for ALD)Conformal coating of 3D features

Thin film deposition is the additive foundation of semiconductor manufacturing — every transistor, contact, and interconnect on a chip is built by depositing precisely controlled layers of material, making deposition technology a critical enabler of continued device scaling and performance improvement.

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