Home Knowledge Base Chemical Vapor Deposition (CVD)

Chemical Vapor Deposition (CVD) is the thin film deposition technique that forms solid materials on a substrate through chemical reactions of gaseous precursors — producing conformal, high-quality dielectric, semiconductor, and metallic films essential for CMOS fabrication, with variants (LPCVD, PECVD, MOCVD, HDPCVD) optimized for different temperature ranges, film quality, and conformality requirements across the entire front-end and back-end process flow.

CVD Fundamentals

Gaseous precursors flow over a heated substrate. At the surface, precursors decompose and/or react to form a solid film, with volatile byproducts pumped away. Unlike PVD (physical process — sputtering atoms), CVD is a chemical process where film composition is controlled by precursor chemistry, temperature, and pressure.

CVD Variants

Key CVD Films and Applications

FilmPrecursorsProcessApplication
SiO₂ (TEOS)TEOS + O₂LPCVD/PECVDIMD, PMD, spacer
Si₃N₄SiH₂Cl₂ + NH₃LPCVDHardmask, etch stop, spacer
SiN:HSiH₄ + NH₃PECVDPassivation, stress liner
PolysiliconSiH₄LPCVDGate, local interconnect
SiGeSiH₄ + GeH₄RPCVDS/D epi, pFET channel
Tungsten (W)WF₆ + H₂CVDContact/via plug fill
Low-k SiCOHDEMS + O₂PECVDAdvanced IMD (k=2.5-3.0)
Carbon hardmaskC₂H₂ or C₃H₆PECVDEUV patterning hardmask

CVD vs. ALD

CVD deposits ~1-100 nm per minute (much faster than ALD's ~0.1 nm per cycle). Used when conformality at extreme AR is not required. ALD replaces CVD for films requiring atomic-level thickness control (gate dielectrics, barrier layers, DRAM capacitor dielectrics). Many processes use CVD for bulk deposition + ALD for the critical interface layers.

CVD is the chemical kitchen of semiconductor fabrication — the deposition technique that forms the majority of thin films in a chip, from the gate dielectric that controls transistors to the interlayer dielectrics that insulate interconnects, providing the material building blocks that ALD cannot economically deposit at sufficient thickness.

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