AMAT 0021-84842 high-precision Chamber Component
AMAT 0021-84842 is a high-precision Chamber Component / Mechanical Assembly manufactured by Applied Materials.
This part is a critical mechanical sub-assembly used primarily in the Endura, Centura, and Producer series platforms.
It is engineered to maintain the structural and vacuum integrity of the process chamber during high-temperature and high-vacuum semiconductor fabrication cycles.
As a specialized AMAT hardware component, the 0021-84842 is designed to withstand corrosive chemistries and extreme thermal cycling common in CVD (Chemical Vapor Deposition) and Etch processes.
Technical Parameter Table
| Parameter | Specification |
| Part Number | 0021-84842 |
| Component Category | Chamber Hardware / Mechanical Assembly |
| Material Composition | High-Purity Aluminum / Stainless Steel (Process Dependent) |
| Surface Finish | Electropolished or Anodized (for corrosion resistance) |
| Vacuum Rating | Ultra-High Vacuum (UHV) Compatible |
| Operating Temperature | Up to 450°C (Platform Dependent) |
| Compatibility | AMAT 200mm and 300mm Chambers |
| Weight | Precision Balanced for Robotic Interface |
Related Models
The 0021-84842 works in conjunction with various chamber liner and pedestal assemblies:
AMAT 0021-XXXXX Series: Various chamber body and lid components.
AMAT 0020-XXXXX: High-precision vacuum seals and O-ring kits.
AMAT 0040-series: Associated sensor mounting brackets and hardware.
AMAT 0010-series: Main chamber manifold and gas box assemblies.
Application Cases
Thin Film Deposition: Acts as a structural support or shielding component in PECVD chambers to ensure uniform gas distribution and plasma confinement.
Wafer Processing: Utilized in the Endura PVD systems to maintain the precise gap between the target and the wafer pedestal.
Chamber Sealing: Integrated into the upper or lower chamber assemblies to provide a leak-tight environment necessary for sub-mTorr vacuum levels.
Thermal Management: Helps dissipate heat from the chamber walls to prevent the “hot spots” that can lead to film non-uniformity.
Product Advantages and Features
Material Purity: Manufactured from semiconductor-grade alloys to prevent metal ion contamination on the wafer surface.
Precision Machining: Held to micron-level tolerances to ensure perfect alignment with robotic wafer handlers and slit valves.
Corrosion Resistance: Specially treated surfaces prevent degradation when exposed to aggressive cleaning gases like NF3 (Nitrogen Trifluoride).
Thermal Stability: Engineered for low coefficient of thermal expansion (CTE) to minimize mechanical stress during rapid heat-up and cool-down cycles.
Vacuum Integrity: Every unit undergoes helium leak testing to ensure it meets AMAT’s stringent ultra-high vacuum specifications.
Installation and Maintenance
Installation
Cleanroom Protocol: Ensure the part is handled only in a Class 100 or better environment. Use lint-free gloves to prevent skin oils from causing outgassing in the vacuum.
Alignment: Use the integrated dowel pins or alignment marks to seat the component into the chamber body. Improper seating can cause vacuum leaks or robotic crashes.
Torque Specs: Tighten all mounting bolts according to the AMAT Service Manual using a calibrated torque wrench to ensure even pressure on vacuum seals.
Maintenance
Preventative Maintenance (PM): Inspect the surface for pitting or “flaking” during standard wet cleans.
Cleaning: Clean only with approved high-purity solvents (e.g., electronic-grade IPA) and DI water. Do not use abrasive pads that could damage the surface finish.
Seal Replacement: Always replace associated O-rings or metal seals when this assembly is removed and reinstalled.
Unique Product Description
The AMAT 0021-84842 is the “Invisible Backbone” of the semiconductor process chamber.
While electronic modules handle the logic, this mechanical assembly ensures that the physical environment—the vacuum, the heat, and the chemistry—remains perfectly controlled.
It is a testament to Applied Materials’ engineering, designed to survive the brutal conditions of a 24/7 high-volume fab while maintaining the atomic-level precision required for the world’s most advanced microchips.