DocumentCode
1873873
Title
Fast ambient switching for the multiple-step rapid thermal processing of wafers using a furnace-based RTP system
Author
Liu, Yong ; Hebb, Jeff ; Willis, James
Author_Institution
Axcelis Technol. Inc., Beverly, MA, USA
fYear
2001
fDate
2001
Firstpage
306
Lastpage
314
Abstract
A new proprietary rapid thermal processing (RTP) method has been developed and implemented for the fast switching of a gas ambient surrounding a wafer inside a RTP furnace operated in the low pressure or atmospheric pressure regime. By controlling the gas flow pattern around a semi-conductor wafer, the effective volume of process gas interacting with the wafer has been reduced by a factor of 33. Thus, real-time gas sequencing can be realized so that multiple rapid thermal processing steps, involving dry and wet rapid thermal oxidation (RTO), rapid thermal nitridation (RTN), rapid thermal annealing (RTA) and chemical vapor deposition (CVD), can be carried out sequentially in a single RTP cycle. Experimental data from ion implant anneal and thermal oxide thin film growth will be presented to illustrate the major technical challenges and solutions associated with the integration of the new method into the Summit™ RTP systems. Using this approach, the benefits of rapid thermal processing with high productivity and quick ambient switching is realized.
Keywords
chemical vapour deposition; furnaces; ion implantation; nitridation; oxidation; rapid thermal annealing; rapid thermal processing; chemical vapor deposition; fast ambient switching; furnace system; gas flow pattern; ion implantation; multiple-step rapid thermal processing; rapid thermal annealing; rapid thermal nitridation; rapid thermal oxidation; semiconductor wafer; thermal oxide; thin film growth; Chemical vapor deposition; Furnaces; Heating; Lamps; Optical feedback; Optical films; Rapid thermal annealing; Rapid thermal processing; Steady-state; Temperature control;
fLanguage
English
Publisher
ieee
Conference_Titel
Advanced Thermal Processing of Semiconductors 9th Internationa Conference on RTP 2001
Print_ISBN
0-9638251-0-4
Type
conf
DOI
10.1109/RTP.2001.1013784
Filename
1013784
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