Surface Analysis (KLA/Tencor Surfscan): Difference between revisions
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|location=Bay 5 |
|location=Bay 5 |
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|description = Surface Analysis |
|description = Surface Analysis |
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|manufacturer = KLA/Tencor |
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|manufacturer = Tencor |
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===Operating Procedures=== |
===Operating Procedures=== |
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**''This is the procedure Staff uses to calibrate particle counts on our deposition tools. After the scan is complete you need to press ENTER on a small laptop. The Data will be saved on: Desktop/Local Disk(C)/Users/Public/Public Documentation] The data will be saved as a photo.'' |
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*[https://wiki.nanofab.ucsb.edu/w/images/a/a7/SURFSCAN_6200_122123_small_substrates.pdf Surfscan 6200 [Small samples, and 2inch and 3inch wafers]] * |
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**''This is the procedure Staff uses to calibrate particle counts on our deposition tools.'' |
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**'' Very detailed instructions |
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===Other Documentation=== |
===Other Documentation=== |
Latest revision as of 23:04, 20 November 2024
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About
This system uses a laser-based scattering method to count size and distribution of particles (or other scattering defects) on a flat wafer surface.
It can scan wafers in size from 4 to 8 inches. Piece-parts are more difficult but can be scanned with a custom recipe.
4-inch wafers are the most standard size to measure.
For measuring very low particle counts accurately, purchase "low particle count" (LPC) wafers from a Silicon wafer vendor, and keep the wafers in the case and clean at all times until use.
Documentation
Operating Procedures
- Wafer Scanning Instructions
- This is the procedure Staff uses to calibrate particle counts on our deposition tools. After the scan is complete you need to press ENTER on a small laptop. The Data will be saved on: Desktop/Local Disk(C)/Users/Public/Public Documentation] The data will be saved as a photo.
- Surfscan SOP for small substrates (You must water-mount your small sample or wafer (2inch or 3 inch) to a carrier wafer)
- Wafer Particle Count - Process Traveler
- Very detailed instructions
Other Documentation
- Operations Manual
- For detailed measurement info, it is highly recommended that you read the manual.
Examples
Gain 4: Small Particles
(0.160µm – 1.60µm) |
Gain 2: Large Particles
(1.60µm – 28.0µm) |
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Gain 4: Small Particles
(0.160µm – 1.60µm) |
Gain 2: Large Particles
(1.60µm – 28.0µm) |
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