Comparison ledger
Heidelberg Instruments MLA150, Raith EBPG5000, side by side. Every value shown is drawn from the cited encyclopedia entries.
| Attribute | MLA150Heidelberg Instruments | EBPG5000Raith |
|---|---|---|
| OEM | Heidelberg Instruments | Raith |
| Category | Lithography | Lithography |
| Wafer size | 150mm | 150mm |
| Process node | — | sub-10 nm |
| Introduced | — | — |
| Production run | — | — |
| Lifecycle | — | — |
| Lifecycle milestones | — | — |
| Control system | — | — |
| Generation | — | — |
| Family | Heidelberg Instruments MLA150 | Raith EBPG5000 |
| Cited variants | ||
| Specifications | ||
| OEM | Heidelberg Instruments GmbH[1] | — |
| Machine type | Mask-Less Aligner[1] | — |
| Light source | 405 nm or 375 nm laser diodes[1] | — |
| Exposure area | 150 x 150 mm[1] | — |
| Top-side alignment | Yes[1] | — |
| Backside alignment | Yes[1] | — |
| Real-time autofocus | Yes[1] | — |
| Layout input formats | .gds, .cif, .dxf[1] | — |
| Minimum feature size | about 1 um[1] | less than 8 nm[3] |
| Minimum substrate size | 5 x 5 x 0.1 mm[1] | — |
| Maximum substrate size | 220 x 220 x 8 mm; 200 x 200 x 12 mm[1] | — |
| Substrate capacity | up to 8" x 8"[4] | — |
| Exposure time at maximum write speed | 9 minutes for 100 x 100 mm2; 16 minutes for 150 x 150 mm2[4] | — |
| Alignment accuracy | 500 nm[4] | — |
| 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[4] | — |
| Uniformity | < 120 nm[1] | — |
| Front-side alignment accuracy | < 500 nm[1] | — |
| Back-side alignment accuracy (MLA150-2) | < 1000 nm[1] | — |
| Maximum exposure area | 150 x 150 mm[1] | — |
| 405 nm laser power | 8000 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[4] | — |
| Exposure time for 150x150 mm² (max write speed) | 16 min[4] | — |
| Substrate size (source2) | Up to 8" x 8"[4] | — |
| Laser wavelengths | 405 nm and 375 nm[4] | — |
| Exposure method | Non-contact[4] | — |
| Data input formats | Multiple standards (e.g., GDS, CIF, DXF)[1] | — |
| Autofocus | Real time, pneumatic[1] | — |
| Environment control | Temperature stabilization, charcoal filters[1] | — |
| Laser power (405 nm) | 8000 mW[1] | — |
| Laser power (375 nm) - MLA150-1 | 2800 mW[1] | — |
| Laser power (375 nm) - MLA150-2 | 7200 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[4] | — |
| Write time (100 mm wafer typical) | about 30min[6] | — |
| Write time (50 mm x 50 mm) | approx. 4 mins[5] | — |
| Linewidth variation (stitching) | ≤100nm[6] | — |
| Write grid (address unit) - High Quality | 40 nm[6] | — |
| Write grid (address unit) - Fast Mode | 100 nm[6] | — |
| Grayscale capability | 8-bit grayscale bitmap or layer-structured DXF[6] | — |
| High aspect ratio mode | Available (reduced NA for thick resists >100µm)[1] | — |
| Substrate thickness maximum | 8 mm (MLA150-1); 12 mm (MLA150-2)[1] | — |
| Model | MLA150[1] | — |
| Type | Mask-less aligner[1] | — |
| Exposure source | 405 nm or 375 nm laser diodes[1] | — |
| Alignment | Top-side and back-side alignment[1] | direct write mark detection and alignment software[2] |
| Substrate size | Up to 8" x 8"[4] | — |
| Tool type | Mask-less aligner[1] | Ebeam lithography tool/system[2] |
| Backside alignment accuracy | < 1000 nm[1] | — |
| Direct-write exposure | Exposes the design directly onto a wafer without a photomask[4] | — |
| 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] |
| 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] |
| 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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