Waferpedia

Comparison ledger

MLA150versusMA100 / 150e Gen2

Heidelberg Instruments MLA150, SUSS MicroTec MA100 / 150e Gen2, side by side. Every value shown is drawn from the cited encyclopedia entries.

Side-by-side comparison of selected equipment models
Attribute
MLA150Heidelberg Instruments
MA100 / 150e Gen2SUSS MicroTec
OEMHeidelberg InstrumentsSUSS MicroTec
CategoryLithographyLithography
Wafer size150mm150mm
Process node——
Introduced——
Production run——
Lifecycle——
Lifecycle milestones——
Control system——
Generation—Gen2
FamilyHeidelberg Instruments MLA150SUSS MicroTec MA100 / 150e Gen2
Cited variants—
Specifications
OEMHeidelberg Instruments GmbH[1]—
Machine typeMask-Less Aligner[1]—
Light source405 nm or 375 nm laser diodes[1]—
Exposure area150 x 150 mm[1]—
Top-side alignmentYes[1]—
Backside alignmentYes[1]—
Real-time autofocusYes[1]—
Layout input formats.gds, .cif, .dxf[1]—
Minimum feature sizeabout 1 um[1]—
Minimum substrate size5 x 5 x 0.1 mm[1]—
Maximum substrate size220 x 220 x 8 mm; 200 x 200 x 12 mm[1]—
Substrate capacityup to 8" x 8"[2]—
Exposure time at maximum write speed9 minutes for 100 x 100 mm2; 16 minutes for 150 x 150 mm2[2]—
Alignment accuracy500 nm[2]—
Maximum substrate size (MLA150-1)220 x 220 x 8 mm[1]—
Maximum substrate size (MLA150-2)200 x 200 x 12 mm[1]—
Minimum feature size (source1)1 µm[1]—
Minimum feature size (source2)600 nm[2]—
Uniformity< 120 nm[1]—
Front-side alignment accuracy< 500 nm[1]—
Back-side alignment accuracy (MLA150-2)< 1000 nm[1]—
Maximum exposure area150 x 150 mm[1]—
405 nm laser power8000 mW[1]—
375 nm laser power (MLA150-1)2800 mW[1]—
375 nm laser power (MLA150-2)7200 mW[1]—
Writing time with 405 nm laser (100 mm wafer, Fast mode)< 9 min[1]—
Writing time with 375 nm laser (100 mm wafer, Fast mode, MLA150-1)< 32 min[1]—
Writing time with 375 nm laser (100 mm wafer, Fast mode, MLA150-2)< 9 min[1]—
Exposure time for 100x100 mm² (max write speed)9 min[2]—
Exposure time for 150x150 mm² (max write speed)16 min[2]—
Substrate size (source2)Up to 8" x 8"[2]—
Laser wavelengths405 nm and 375 nm[2]—
Exposure methodNon-contact[2]—
Data input formatsMultiple standards (e.g., GDS, CIF, DXF)[1]—
AutofocusReal time, pneumatic[1]—
Environment controlTemperature stabilization, charcoal filters[1]—
Laser power (405 nm)8000 mW[1]—
Laser power (375 nm) - MLA150-12800 mW[1]—
Laser power (375 nm) - MLA150-27200 mW[1]—
Write time (100 mm wafer, 405 nm fast mode)< 9 min[1]—
Write time (100 mm wafer, 375 nm fast mode) - MLA150-1< 32 min[1]—
Write time (100 mm wafer, 375 nm fast mode) - MLA150-2< 9 min[1]—
Write time (150 x 150 mm)16 minutes[2]—
Write time (100 mm wafer typical)about 30min[4]—
Write time (50 mm x 50 mm)approx. 4 mins[3]—
Linewidth variation (stitching)≤100nm[4]—
Write grid (address unit) - High Quality40 nm[4]—
Write grid (address unit) - Fast Mode100 nm[4]—
Grayscale capability8-bit grayscale bitmap or layer-structured DXF[4]—
High aspect ratio modeAvailable (reduced NA for thick resists >100µm)[1]—
Substrate thickness maximum8 mm (MLA150-1); 12 mm (MLA150-2)[1]—
ModelMLA150[1]—
TypeMask-less aligner[1]Automated system[5]
Exposure source405 nm or 375 nm laser diodes[1]—
AlignmentTop-side and back-side alignment[1]—
Substrate sizeUp to 8" x 8"[2]—
Tool typeMask-less aligner[1]—
Backside alignment accuracy< 1000 nm[1]—
Direct-write exposureExposes the design directly onto a wafer without a photomask[2]—
Wafer size—up to 150 mm[5]
Function—Mask Alignment, Exposure[5]

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Sources (5)Every fact above is drawn from these public sources
  1. [1]epfl.chepfl.ch
  2. [2]pnf.uchicago.edupnf.uchicago.edu
  3. [3]cns1.rc.fas.harvard.educns1.rc.fas.harvard.edu
  4. [4]wiki.nanotech.ucsb.eduwiki.nanotech.ucsb.edu
  5. [5]hilpert.chhilpert.ch