Difference between revisions of "ASML 5500 Mask Making Guidelines"

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(linked to Digidat/Toppan order form & quote)
(removed toppan academic quote)
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# Use commercial mask/reticle houses: Photronics, Toppan, Compugraphics, etc. Instruct vendor that this will be used on an ASML 5500/300 system. They have all outer templates to make your mask match our system. You just provide them the data you want printed at wafer scale (1X) and they'll insert it into the template.
 
# Use commercial mask/reticle houses: Photronics, Toppan, Compugraphics, etc. Instruct vendor that this will be used on an ASML 5500/300 system. They have all outer templates to make your mask match our system. You just provide them the data you want printed at wafer scale (1X) and they'll insert it into the template.
## [[Media:Digidat-Toppan Mask order form (UCSB ASML 5500).docx|Toppan Order Form via Digidat]] & [[Media:Toppan UCSB quotation 041116.pdf|Quote with Submission instructions]]
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## [[Media:Digidat-Toppan Mask order form (UCSB ASML 5500).docx|Toppan Order Form via Digidat]]
  +
## Academic users may use the UCSB-specific quote for pricing. Industrial users will have to get their own pricing.
# Reduction is 4X in ASML, mask makers will scale data to 4X size, which will determine price. Scale your mask critical dimensions and tolerances accordingly.
 
  +
### Email [[Brian Thibeault]] or [[Demis D. John]] for info.
# Masks must be Quartz, should be 0.25” thick.
 
 
# Reduction is 4X, mask makers will scale data to 4X size, which will determine price. Scale your mask critical dimensions and tolerances accordingly.
 
# Masks must be Quartz, 6" x 6" x 0.25” thick.
 
# Layer-to-layer alignment marks are provided by a calibration mask in our system. No need to put alignment marks on your mask.
 
# Layer-to-layer alignment marks are provided by a calibration mask in our system. No need to put alignment marks on your mask.
 
# Field Sizes Available (Wafer Scale, 1x):
 
# Field Sizes Available (Wafer Scale, 1x):
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## For 0.4 to 0.57 NA: 22mm in X, 22mm in Y
 
## For 0.4 to 0.57 NA: 22mm in X, 22mm in Y
 
## Other rectangular sizes available, that fit within the lens/aperture intersection:
 
## Other rectangular sizes available, that fit within the lens/aperture intersection:
### 21mm x 23mm
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### 21mm x 23mm (''X'' width x ''Y'' height)
 
### 20mm x 24mm
 
### 20mm x 24mm
 
### 19mm x 25mm
 
### 19mm x 25mm

Revision as of 19:03, 26 February 2018

  1. Use commercial mask/reticle houses: Photronics, Toppan, Compugraphics, etc. Instruct vendor that this will be used on an ASML 5500/300 system. They have all outer templates to make your mask match our system. You just provide them the data you want printed at wafer scale (1X) and they'll insert it into the template.
    1. Toppan Order Form via Digidat
    2. Academic users may use the UCSB-specific quote for pricing. Industrial users will have to get their own pricing.
      1. Email Brian Thibeault or Demis D. John for info.
  2. Reduction is 4X, mask makers will scale data to 4X size, which will determine price. Scale your mask critical dimensions and tolerances accordingly.
  3. Masks must be Quartz, 6" x 6" x 0.25” thick.
  4. Layer-to-layer alignment marks are provided by a calibration mask in our system. No need to put alignment marks on your mask.
  5. Field Sizes Available (Wafer Scale, 1x):
    1. The full field useable exposure area is limited to the intersection of a 31mm diameter circle and a rectangle of dimensions 22mm x 27mm. See the schematic below for an illustration.
       Schematic of lens/aperture illumination
      Schematic of lens/aperture illumination. Fit a rectangle within this field to get the aforementioned rectangular field sizes.
    2. For High Resolution 0.63 NA: 21mm in X, 21mm in Y
    3. For 0.4 to 0.57 NA: 22mm in X, 22mm in Y
    4. Other rectangular sizes available, that fit within the lens/aperture intersection:
      1. 21mm x 23mm (X width x Y height)
      2. 20mm x 24mm
      3. 19mm x 25mm
      4. 18mm x 25.5mm
      5. 17mm x 26mm
      6. 16mm x 26.5mm
      7. 15mm x 27mm
    5. In general, 250nm resolution will resolve over the entire field. Anything smaller than this may not resolve closer to the edges of the field where lens quality degrades, and will also have a smaller viable process window (tolerance of exposure/bake/develop parameters). A number of users have shot ~150nm features.
  6. Spacing between mask-plate fields : 1mm of Chrome between fields (at wafer scale) in order for the reticle masking blades to blank off unwanted areas.