Waferpedia

Comparison ledger

R10versusEBPG5000

Nikon R10, Raith EBPG5000, side by side. Every value shown is drawn from the cited encyclopedia entries.

Side-by-side comparison of selected equipment models
Attribute
R10Nikon
OEMNikonRaith
CategoryLithographyLithography
Wafer size150mm150mm
Process node—sub-10 nm
Introduced1986—
Production run1973–1979—
LifecycleDiscontinued—
Lifecycle milestones1979 Movie camera business discontinued—
Control system——
Generationi-line—
FamilyNikon R10Raith EBPG5000
Cited variants
  • Nikon R8 SUPER ZOOM[1]
  • EBPG5000ES[2]
  • EBPG5200 (also known as EBPG5000 Plus)[3]
  • EBPG5200 (EBPG5000 Plus)[3]
Specifications
wafer size150 mm[4]—
exposure wavelengthi-line (365 nm)[4]—
introduced1986[4]—
technology generationi-line[4]—
TypeSilent super 8 cartridge movie camera[5]—
LensCine Nikkor Zoom, f: 1.4, F: 7-70 mm, zooming ratio 10x[5]—
Lens optical construction10-group 14-element zoom lens[1]—
FocusingManual, split image; macro focusing yes[5]—
ZoomingAuto with 2 speeds and manual[5]—
Filter size67 mm[5]—
ViewfinderSingle-lens reflex with adjustable eyepiece; viewfinder information includes aperture scale[5]—
Exposure controlAuto and manual; TTL Electric Eye; EE lock yes; exposure compensation +/-2 stops[5]—
Film speedAuto between 10/16 and 400/650 ASA (daylight/tungsten)[5]—
FilterBuilt-in 85A filter, coupled with movie light socket[5]—
Filming speeds18, 24, 54 fps, single frame[5]—
Shutter opening angleVariable shutter; positions 0°, 40°, 80° and 160°[5]—
FadingAuto and manual fade-in/fade-out[5]—
Rewinding / reverse filming100 frames approx, double exposure and lap dissolve; reverse filming 100 frames approx[5]—
SoundDouble system, sound recording with synchronized tape recorder[5]—
ConnectorsRemote control socket yes; movie light socket Kodak type with filter control; flash synchronization socket yes[5]—
Power source6 x AA batteries only; film drive motor DC micromotor[5]—
Weight1930 g[5]—
Dimensions68 x 260 x 200 mm[5]—
Tripod socket1/4"[5]—
MakerMade in Japan by Nippon Kogaku[5]—
Tool type—Ebeam lithography tool/system[2]
Feature capability—smaller than 10 nm features[2]
Placement accuracy—less than 20 nm[2]
Electron gun—100 keV thermal field emission gun[2]
Beam type—Gaussian beam[2]
Pattern generator—50 MHz[2]
Alignment—direct write mark detection and alignment software[2]
Wafer holders—50 mm, 100 mm, and 150 mm wafers[2]
Mask holders—5 inch masks and smaller piece parts[2]
Writing capability—155 mm[3]
Maximum wafer size—up to 6 inches[3]
Maximum mask size—up to 6 inches[3]
Minimum feature size—less than 8 nm[3]
Field size—variable field size to 1 mm at all kVs[3]
Acceleration voltage—100 keV[2]
Gun type—thermal field emission[2]
Pattern generator frequency—50 MHz[2]
Overlay accuracy—<20 nm[2]
Wafer sizes supported—50 mm, 100 mm, 150 mm[2]
Mask size supported—5 inch[2]
Temperature control—21°C ± 0.1°C[2]
Electron source type—Thermal Field Emission gun (TFE)[2]
Beam energy (EPFL EBPG5000ES)—100 keV[2]
Pattern generator frequency (EPFL EBPG5000ES)—50 MHz[2]
Minimum feature size (EPFL EBPG5000ES)—smaller than 10 nm[2]
Substrate support (EPFL EBPG5000ES)—holders for 50 mm, 100 mm, 150 mm wafers, 5‑inch masks and smaller piece parts[2]
Operating temperatures—21 °C ± 0.1 °C (cleanroom environment)[2]
Model identifier (UChicago)—Raith EBPG5200 E-Beam lithography system (also called EBPG5000 Plus)[3]
Wafer size (UChicago model)—up to 6″ wafers[3]
Mask size (UChicago model)—up to 6″ masks[3]
Minimum feature size (UChicago model)—less than 8 nm[3]
Operating voltages (UChicago model)—20, 50, and 100 kV[3]
Pattern generator frequency (UChicago model)—50 / 100 MHz[3]
Minimum feature (EPFL EBPG5000ES)—smaller than 10 nm[2]
Electron source (EPFL EBPG5000ES)—100 keV thermal field emission gun[2]
Pattern generator (EPFL EBPG5000ES)—50 MHz[2]
Substrate holders (EPFL EBPG5000ES)—50 mm, 100 mm, 150 mm wafers; 5-inch masks; smaller piece parts[2]
Cleanroom environment—custom cleanroom maintained at 21°C ± 0.1°C[2]
Minimum feature (PNF EBPG5200)—less than 8 nm[3]
Writing capability (PNF EBPG5200)—155 mm[3]
Substrate sizes (PNF EBPG5200)—wafers up to 6 in; masks up to 6 in[3]
Acceleration voltages (PNF EBPG5200)—20, 50, and 100 kV[3]
Pattern generator (PNF EBPG5200)—50 / 100 MHz[3]
Field size (PNF EBPG5200)—variable field size to 1 mm at all kVs[3]
Electron source (PNF EBPG5200)—Thermal Field Emission gun[3]
Feature size—smaller than 10 nm features[2]
Gun—100 keV thermal field emission gun[2]
Beam—Gaussian beam[2]
Holders—holders for 50 mm, 100 mm, and 150 mm wafers; 5 inch masks and smaller piece parts[2]
Wafer size—up to 6 inch wafers[3]
Mask size—up to 6 inch masks[3]

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Sources (5)Every fact above is drawn from these public sources
  1. [1]imaging.nikon.comimaging.nikon.com
  2. [2]epfl.chepfl.ch
  3. [3]pnf.uchicago.edupnf.uchicago.edu
  4. [4]en.wikipedia.orgen.wikipedia.org
  5. [5]filmkorn.orgfilmkorn.org