Specific Process Knowledge/Etch/Etching of Silicon Nitride: Difference between revisions
(24 intermediate revisions by 7 users not shown) | |||
Line 1: | Line 1: | ||
'''Unless anything else is stated, everything on this page, text and pictures are made by DTU Nanolab.''' | |||
'''All links to Kemibrug (SDS) and Labmanager Including APV and QC requires login.''' | |||
'''Feedback to this page''': '''[mailto:labadviser@nanolab.dtu.dk?Subject=Feed%20back%20from%20page%20http://labadviser.nanolab.dtu.dk/index.php/Specific_Process_Knowledge/Etch/Etching_of_Silicon_Nitride click here]''' | |||
'''Feedback to this page''': '''[mailto:labadviser@ | |||
<!-- Replace "http://labadviser.danchip.dtu.dk/..." with the link to the Labadviser page--> | <!-- Replace "http://labadviser.danchip.dtu.dk/..." with the link to the Labadviser page--> | ||
== Comparing silicon nitride etch methods at | == Comparing silicon nitride etch methods at DTU Nanolab == | ||
There are a broad | There are a broad variety of silicon nitride etch methods at DTU Nanolab. The methods are compared here to make it easier for you to compare and choose the one that suits your needs. | ||
*[[Specific Process Knowledge/Etch/Wet Silicon Nitride Etch|Wet Silicon Nitride Etch]] | *[[Specific Process Knowledge/Etch/Wet Silicon Nitride Etch|Wet Silicon Nitride Etch]] | ||
*[[Specific Process Knowledge/Etch/AOE (Advanced Oxide Etch)/Silicon Nitride Etch using AOE|Etch of Silicon Nitride using AOE]] | *[[Specific Process Knowledge/Etch/AOE (Advanced Oxide Etch)/Silicon Nitride Etch using AOE|Etch of Silicon Nitride using AOE]] | ||
*[[Specific Process Knowledge/Etch/IBE | *[[Specific Process Knowledge/Etch/IBE⁄IBSD Ionfab 300|IBE/Ion Beam Etching using IBSD Ionfab 300]] | ||
*[[Specific_Process_Knowledge/Etch/ICP_Metal_Etcher/silicon_nitride|Silicon nitride etch using the ICP metal]] | |||
==Compare the methods for Silicon Nitride etching== | ==Compare the methods for Silicon Nitride etching== | ||
Line 30: | Line 26: | ||
![[Specific Process Knowledge/Etch/Wet Silicon Nitride Etch|Wet Silicon Nitride Etch]] | ![[Specific Process Knowledge/Etch/Wet Silicon Nitride Etch|Wet Silicon Nitride Etch]] | ||
![[Specific Process Knowledge/Etch/Wet Silicon Oxide Etch (BHF)|BHF]] | ![[Specific Process Knowledge/Etch/Wet Silicon Oxide Etch (BHF)|BHF]] | ||
![[Specific Process Knowledge/Etch/ | ![[Specific Process Knowledge/Etch/ASE_(Advanced_Silicon_Etch)|ASE]] | ||
![[Specific Process Knowledge/Etch/AOE (Advanced Oxide Etch)|AOE (Advanced Oxide Etch)]] | ![[Specific Process Knowledge/Etch/AOE (Advanced Oxide Etch)|AOE (Advanced Oxide Etch)]] | ||
![[Specific Process Knowledge/Etch/IBE⁄IBSD Ionfab 300|IBE/IBSD Ionfab 300]] | ![[Specific Process Knowledge/Etch/IBE⁄IBSD Ionfab 300|IBE/IBSD Ionfab 300]] | ||
![[Specific Process Knowledge/Etch/ICP Metal Etcher|ICP Metal]] | |||
|- | |- | ||
Line 41: | Line 39: | ||
| | | | ||
*Isotropic etch | *Isotropic etch | ||
*Well suited for removing all nitride on a wafer surface (nitride strip) without a mask. High selectivity Si<sub>3</sub>N<sub>4</sub>/Si (>100) and Si<sub>3</sub>N<sub>4</sub>/SiO<sub>2</sub> (>20) @ | *Well suited for removing all nitride on a wafer surface (nitride strip) without a mask. High selectivity Si<sub>3</sub>N<sub>4</sub>/Si (>100) and Si<sub>3</sub>N<sub>4</sub>/SiO<sub>2</sub> (>20) @ 160 C. | ||
| | | | ||
*Isotropic etch | *Isotropic etch | ||
Line 52: | Line 50: | ||
| | | | ||
*Primarily for pure physical etch by sputtering with Ar-ions | *Primarily for pure physical etch by sputtering with Ar-ions | ||
| | |||
*Anisotropic etch: vertical sidewalls | |||
|- | |- | ||
Line 71: | Line 71: | ||
*Silicon Nitride | *Silicon Nitride | ||
*Aluminium | *Aluminium | ||
*Metals if they cover less than 5% of the wafer area | *Metals if they cover less than 5% of the wafer area | ||
| | | | ||
*Photoresist | *Photoresist | ||
Line 82: | Line 82: | ||
| | | | ||
*Any material that is accepted in the machine | *Any material that is accepted in the machine | ||
| | |||
*Resists | |||
*other materials from the allowed list of materials | |||
|- | |- | ||
Line 88: | Line 91: | ||
!Etch rate range | !Etch rate range | ||
| | | | ||
*Si<sub>3</sub>N<sub>4</sub> @ 160 <sup>o</sup>C: ~26 Å/min | |||
*Si<sub>3</sub>N<sub>4</sub> @ 160 <sup>o</sup>C: ~ | |||
| | | | ||
*PECVD nitride: ~ | *PECVD nitride: ~40.0-100.0 nm/min | ||
*Stoichiometric LPCVD nitride: ~0.65-8 nm/min <!-- Copyrigth issues kabi (''Yannick Seis, KU, 2019'')--> | |||
| | | | ||
* | *Probably betweeb 20-300 nm/min depending on the process parameters | ||
| | | | ||
*Process dependent. | *Process dependent. | ||
Line 100: | Line 103: | ||
*Process dependent. | *Process dependent. | ||
*Has not been tested yet. | *Has not been tested yet. | ||
| | |||
*Process dependent | |||
*60-65 nm/min has been tested | |||
|- | |- | ||
Line 106: | Line 112: | ||
!Substrate size | !Substrate size | ||
| | | | ||
*<nowiki>#</nowiki>1-25 | *<nowiki>#</nowiki>1-25 4" and 6" wafers | ||
| | | | ||
*<nowiki>#</nowiki>1-25 | *<nowiki>#</nowiki>1-25 4"-6" wafers | ||
| | | | ||
*As many small samples as can be fitted on the 100mm carrier | *As many small samples as can be fitted on the 100mm carrier (bad/no cooling!) | ||
*<nowiki>#</nowiki>1 100mm wafer (or smaller with carrier) | *<nowiki>#</nowiki>1 100mm wafer (or smaller with carrier) | ||
*<nowiki>#</nowiki>1 150mm wafer (only when the system is set up for 150mm) | *<nowiki>#</nowiki>1 150mm wafer (only when the system is set up for 150mm) | ||
Line 124: | Line 130: | ||
*<nowiki>#</nowiki>1 150 mm wafers with special carrier | *<nowiki>#</nowiki>1 150 mm wafers with special carrier | ||
*<nowiki>#</nowiki>1 200 mm wafer | *<nowiki>#</nowiki>1 200 mm wafer | ||
| | |||
*Set up for 150mm wafers | |||
*Smaller samples can be processes when fixed to a 150mm carrier wafer. | |||
|- | |- | ||
|-style="background:WhiteSmoke; color:black" | |-style="background:WhiteSmoke; color:black" | ||
Line 147: | Line 156: | ||
*E-beam resists | *E-beam resists | ||
*DUV resists | *DUV resists | ||
*Other metals if they cover less than 5% of the wafer area | *Other metals if they cover less than 5% of the wafer area | ||
*Quartz/fused silica | *Quartz/fused silica | ||
| | | | ||
Line 173: | Line 182: | ||
*Polymers | *Polymers | ||
*Capton tape | *Capton tape | ||
| | |||
*Silicon | |||
*Silicon Oxide | |||
*Silicon Nitride | |||
*Silicon Oxynitride | |||
*Photoresist | |||
*E-beam resists | |||
*DUV resists | |||
*Aluminium (Al, Al2O3, AlN) | |||
*Chromium | |||
*Titanium (Ti, TiW, TiN, TiO2) | |||
*Tungsten (W) | |||
*Molybdynem | |||
*Quartz/fused silica | |||
|- | |- | ||
|} | |} | ||
<br clear="all" /> | <br clear="all" /> |
Latest revision as of 11:18, 14 February 2023
Unless anything else is stated, everything on this page, text and pictures are made by DTU Nanolab.
All links to Kemibrug (SDS) and Labmanager Including APV and QC requires login.
Feedback to this page: click here
Comparing silicon nitride etch methods at DTU Nanolab
There are a broad variety of silicon nitride etch methods at DTU Nanolab. The methods are compared here to make it easier for you to compare and choose the one that suits your needs.
- Wet Silicon Nitride Etch
- Etch of Silicon Nitride using AOE
- IBE/Ion Beam Etching using IBSD Ionfab 300
- Silicon nitride etch using the ICP metal
Compare the methods for Silicon Nitride etching
Wet Silicon Nitride Etch | BHF | ASE | AOE (Advanced Oxide Etch) | IBE/IBSD Ionfab 300 | ICP Metal
| |
---|---|---|---|---|---|---|
Generel description |
|
|
|
|
|
|
Possible masking materials |
|
|
|
|
|
|
Etch rate range |
|
|
|
|
|
|
Substrate size |
|
|
|
|
|
|
Allowed materials |
|
|
|
|
|
|