Waferpedia

Comparison ledger

P 5000 Clusterversus6510

Applied Materials P 5000 Cluster, Tegal 6510, side by side. Every value shown is drawn from the cited encyclopedia entries.

Side-by-side comparison of selected equipment models
Attribute
P 5000 ClusterApplied Materials
6510Tegal
OEMApplied MaterialsTegal
CategoryEtchEtch
Wafer size100mm100mm
Process node—down to 90nm
Introduced——
Production run——
Lifecycle——
Lifecycle milestones——
Control system——
Generation——
FamilyApplied Materials P 5000 ClusterTegal 6510
Specifications
Chamber AMetal etch, not usable (needs new chamber)[1]—
Chamber BDielectric etch, fully functional[1]—
Chamber CPolysilicon etch, not functioning, gas flow issues, new helium seals required[1]—
Chamber DNot used, status unknown[1]—
ConfigurationWith:[1]one or two HRē etch modules on a high-vacuum cluster platform[3]
Wafer size4-inch/100mm wafer kit[1]100mm – 200mm[3]
Chamber TypeCluster tool with four chambers[2]—
Etch Type (Chambers A, B, C)Magnetically-Enhanced Reactive Ion Etch (MERIE)[2]—
Endpoint DetectionOptical endpoint detection[2]—
Chamber A FunctionMetal etch[1]—
Chamber B FunctionDielectric etch[1]—
Chamber C FunctionPolysilicon etch[1]—
Tool type—high-density CCP plasma etch tool[3]
RF power—dual-frequency RF power application[3]
Plasma confinement—magnetic plasma confinement[3]
Optimization node—optimized for device design rules down to 90nm[3]
Process type—High-density CCP plasma etch[3]
RF configuration—Dual-frequency RF power application[3]
Magnetic confinement—Yes[3]
Modules—One or two HRe etch modules on a high-vacuum cluster platform[3]
Design rule—90nm[3]

Plan your fab

Building a Etch process? Get a complete equipment list.

Open the fab equipment planner →
Sources (4)Every fact above is drawn from these public sources
  1. [1]inventory listing
  2. [2]nnci.netnnci.net
  3. [3]web.archive.orgweb.archive.org
  4. [4]web.archive.orgweb.archive.org