Waferpedia

Comparison ledger

EBPG5000versusMA6-BA6

Raith EBPG5000, SUSS MicroTec MA6-BA6, side by side. Every value shown is drawn from the cited encyclopedia entries.

Side-by-side comparison of selected equipment models
Attribute
MA6-BA6SUSS MicroTec
OEMRaithSUSS MicroTec
CategoryLithographyLithography
Wafer size150mm150mm
Process nodesub-10 nm—
Introduced——
Production run——
Lifecycle——
Lifecycle milestones——
Control system——
Generation——
FamilyRaith EBPG5000SUSS MicroTec MA6-BA6
Cited variants
  • EBPG5000ES[1]
  • EBPG5200 (also known as EBPG5000 Plus)[2]
  • EBPG5200 (EBPG5000 Plus)[2]
Specifications
Tool typeEbeam lithography tool/system[1]advanced direct write ebeam lithography system[4]
Feature capabilitysmaller than 10 nm features[1]—
Placement accuracyless than 20 nm[1]—
Electron gun100 keV thermal field emission gun[1]—
Beam typeGaussian beam[1]—
Pattern generator50 MHz[1]—
Alignmentdirect write mark detection and alignment software[1]—
Wafer holders50 mm, 100 mm, and 150 mm wafers[1]—
Mask holders5 inch masks and smaller piece parts[1]—
Writing capability155 mm[2]—
Maximum wafer sizeup to 6 inches[2]—
Maximum mask sizeup to 6 inches[2]—
Minimum feature sizeless than 8 nm[2]—
Field sizevariable field size to 1 mm at all kVs[2]—
Acceleration voltage100 keV[1]—
Gun typethermal field emission[1]—
Pattern generator frequency50 MHz[1]—
Overlay accuracy<20 nm[1]—
Wafer sizes supported50 mm, 100 mm, 150 mm[1]—
Mask size supported5 inch[1]—
Temperature control21°C ± 0.1°C[1]—
Electron source typeThermal Field Emission gun (TFE)[1]—
Beam energy (EPFL EBPG5000ES)100 keV[1]—
Pattern generator frequency (EPFL EBPG5000ES)50 MHz[1]—
Minimum feature size (EPFL EBPG5000ES)smaller than 10 nm[1]—
Substrate support (EPFL EBPG5000ES)holders for 50 mm, 100 mm, 150 mm wafers, 5‑inch masks and smaller piece parts[1]—
Operating temperatures21 °C ± 0.1 °C (cleanroom environment)[1]—
Model identifier (UChicago)Raith EBPG5200 E-Beam lithography system (also called EBPG5000 Plus)[2]—
Wafer size (UChicago model)up to 6″ wafers[2]—
Mask size (UChicago model)up to 6″ masks[2]—
Minimum feature size (UChicago model)less than 8 nm[2]—
Operating voltages (UChicago model)20, 50, and 100 kV[2]—
Pattern generator frequency (UChicago model)50 / 100 MHz[2]—
Minimum feature (EPFL EBPG5000ES)smaller than 10 nm[1]—
Electron source (EPFL EBPG5000ES)100 keV thermal field emission gun[1]—
Pattern generator (EPFL EBPG5000ES)50 MHz[1]—
Substrate holders (EPFL EBPG5000ES)50 mm, 100 mm, 150 mm wafers; 5-inch masks; smaller piece parts[1]—
Cleanroom environmentcustom cleanroom maintained at 21°C ± 0.1°C[1]—
Minimum feature (PNF EBPG5200)less than 8 nm[2]—
Writing capability (PNF EBPG5200)155 mm[2]—
Substrate sizes (PNF EBPG5200)wafers up to 6 in; masks up to 6 in[2]—
Acceleration voltages (PNF EBPG5200)20, 50, and 100 kV[2]—
Pattern generator (PNF EBPG5200)50 / 100 MHz[2]—
Field size (PNF EBPG5200)variable field size to 1 mm at all kVs[2]—
Electron source (PNF EBPG5200)Thermal Field Emission gun[2]—
Feature sizesmaller than 10 nm features[1]—
Gun100 keV thermal field emission gun[1]—
BeamGaussian beam[1]—
Holdersholders for 50 mm, 100 mm, and 150 mm wafers; 5 inch masks and smaller piece parts[1]—
Wafer sizeup to 6 inch wafers[2]—
Mask sizeup to 6 inch masks[2]—
System name—JBX 6300FS[4]
Wafer capacity—up to 150mm wafers[4]
Feature size capability—sub-10 nm features[4]
Optical configuration—a fifth lens can be used to get a smaller beam spot size[4]

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Sources (4)Every fact above is drawn from these public sources
  1. [1]epfl.chepfl.ch
  2. [2]pnf.uchicago.edupnf.uchicago.edu
  3. [3]lab.kni.caltech.edulab.kni.caltech.edu
  4. [4]cnf.cornell.educnf.cornell.edu