2007•Journal of Vacuum Science & Technology B Microelectronics and Nanometer Structures Processing Measurement and PhenomenaRequires access

Dry etch release processes for micromachining applications

Tongtong Zhu, Petros Argyrakis, Enrico Mastropaolo, Kin Kiong Lee, Rebecca Cheung

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Abstract

The authors report on the comparative study of two dry etch processes for polysilicon sacrificial layer release using vapor phase xenon difluoride (XeF2) continuous etching and inductively coupled plasma (ICP) etching with sulfur hexafluoride (SF6) gas. Test structures of 0.5μm thick polysilicon have been patterned and etch channels varying in widths from 1to500μm have been fabricated successfully for the purpose of comparison. The influence of etch pressure, aperture opening size, and ICP etch power on the undercut etching rate as well as selectivity between mask and substrate have been studied. It has been possible to achieve an undercut etch rate of up to 11.6μm∕min under a pressure of 3Torr in XeF2 etch gas, while for SF6 plasma, an undercut etch rate of 2.56μm∕min at 65mTorr is obtained. Moreover, the optimized process has been employed for the fabrication of silicon carbide (SiC) resonators.

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What this paper is about

The authors report on the comparative study of two dry etch processes for polysilicon sacrificial layer release using vapor phase xenon difluoride (XeF2) continuous etching and inductively coupled plasma (ICP) etching with sulfur hexafluoride (SF6) gas. Test structures of 0.5μm thick polysilicon have been patterned and etch channels varying in widths from 1to500μm have been fabricated successfully for the purpose of comparison. The influence of etch pressure, aperture opening size, and ICP etch power on the undercut etching rate as well as selectivity between mask and substrate have been studied. It has been possible to achieve an undercut etch rate of up to 11.6μm∕min under a pressure of 3Torr in XeF2 etch gas, while for SF6 plasma, an undercut etch rate of 2.56μm∕min at 65mTorr is obtained. Moreover, the optimized process has been employed for the fabrication of silicon carbide (SiC) resonators.

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Available abstract

The authors report on the comparative study of two dry etch processes for polysilicon sacrificial layer release using vapor phase xenon difluoride (XeF2) continuous etching and inductively coupled plasma (ICP) etching with sulfur hexafluoride (SF6) gas. Test structures of 0.5μm thick polysilicon have been patterned and etch channels varying in widths from 1to500μm have been fabricated successfully for the purpose of comparison. The influence of etch pressure, aperture opening size, and ICP etch power on the undercut etching rate as well as selectivity between mask and substrate have been studied. It has been possible to achieve an undercut etch rate of up to 11.6μm∕min under a pressure of 3Torr in XeF2 etch gas, while for SF6 plasma, an undercut etch rate of 2.56μm∕min at 65mTorr is obtained. Moreover, the optimized process has been employed for the fabrication of silicon carbide (SiC) resonators.

Key concepts: Undercut, Dry etching, Etching (microfabrication), Materials science, Xenon difluoride, Reactive-ion etching, Silicon carbide, Inductively coupled plasma

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