Epitaxy is a process strongly dependent on wafer temperature. Unfortunately, the performance of the pyrometers in charge of sensing wafer temperature deteriorate with the usage. This represents the major maintenance issue for epitaxy process engineers who have to frequently calibrate pyrometers emissivity coefficient. At the present state the change of the emissivity coefficient is heuristically based on fab tradition and process engineers experience. We present a statistical tool to map the relationship between change in the temperature readings and emissivity adjustments. The module has been tested on real industrial dataset
Pyrometer is a favorite method to do remote temperature measurement in research and development. One...
The application of non-intrusive optical devices, such as infrared pyrometers able to measure the te...
Within a variety of industrially relevant high temperature production processes such as welding, hea...
A detailed study of an emissivity-correcting pyrometer instrument for measuring wafer surface temper...
Emissivity is an important property of the materials used in technologies such as MultiJet Fusion an...
Industrial processes such as smelting and sintering require stable and precise temperature control o...
This work has established uncertainty limits for the EUO filament pyrometers, digital pyrometers, tw...
A novel method for converting electromagnetic spectral radiance information into temperature measure...
Pyrometers are commonly used for high temperature measurement, but their accuracy is often limited b...
In order to solve the problem of non-contact temperature measurements on an object with varying emis...
Accurate surface temperature measurement within powder bed fusion (PBF) systems during fabrication r...
Accurate surface temperature measurement within powder bed fusion (PBF) systems during fabrication r...
The authors argue that the use of pyrometers can be recommended for a limited number of tasks. The m...
A method for correcting pyrometric temperature measurements of high temperature objects with unknown...
During the galvanneal process, zinc-coated steel sheet is rapidly annealed in order to improve the c...
Pyrometer is a favorite method to do remote temperature measurement in research and development. One...
The application of non-intrusive optical devices, such as infrared pyrometers able to measure the te...
Within a variety of industrially relevant high temperature production processes such as welding, hea...
A detailed study of an emissivity-correcting pyrometer instrument for measuring wafer surface temper...
Emissivity is an important property of the materials used in technologies such as MultiJet Fusion an...
Industrial processes such as smelting and sintering require stable and precise temperature control o...
This work has established uncertainty limits for the EUO filament pyrometers, digital pyrometers, tw...
A novel method for converting electromagnetic spectral radiance information into temperature measure...
Pyrometers are commonly used for high temperature measurement, but their accuracy is often limited b...
In order to solve the problem of non-contact temperature measurements on an object with varying emis...
Accurate surface temperature measurement within powder bed fusion (PBF) systems during fabrication r...
Accurate surface temperature measurement within powder bed fusion (PBF) systems during fabrication r...
The authors argue that the use of pyrometers can be recommended for a limited number of tasks. The m...
A method for correcting pyrometric temperature measurements of high temperature objects with unknown...
During the galvanneal process, zinc-coated steel sheet is rapidly annealed in order to improve the c...
Pyrometer is a favorite method to do remote temperature measurement in research and development. One...
The application of non-intrusive optical devices, such as infrared pyrometers able to measure the te...
Within a variety of industrially relevant high temperature production processes such as welding, hea...