This paper presents processes for glass micromachining, including sandblast, wet etching, reactive ion etching (RIE), and glass reflow techniques. The advantages as well as disadvantages of each method are presented and discussed in light of the experiments. Sandblast and wet etching techniques are simple processes but face difficulties in small and high-aspect-ratio structures. A sandblasted 2 cm × 2 cm Tempax glass wafer with an etching depth of approximately 150 µm is demonstrated. The Tempax glass structure with an etching depth and sides of approximately 20 μm was observed via the wet etching process. The most important aspect of this work was to develop RIE and glass reflow techniques. The current challenges of these methods are addre...
In this work, an accelerating etching method for glass named thermal electrical modified etching (TE...
Soda-lime glass is a commonly used, cheap and accessible material. Just like any other glass, it off...
Soda-lime glass is a commonly used, cheap and accessible material. Just like any other glass, it off...
A new masking technology for wet etching of glass, to a depth of more than 300µm, is reported. Vario...
This chapter explores the micromachining of fluidic structures in silicon, and presents several exam...
Glass micromachining is currently becoming essential for the fabrication of micro-devices, including...
A new, versatile architecture is presented for microfluidic devices made entirely from glass, for us...
Glass micromachining is currently becoming essential for the fabrication of micro-devices, including...
International audienceTwo dry subtractive techniques for the fabrication of microchannels in borosil...
This thesis introduces important improvements in fabrication of microfluidic devices on silicon and ...
This thesis introduces important improvements in fabrication of microfluidic devices on silicon and ...
This paper is a review of wet and dry etching of one of the most common types of glass: Pyrex. The p...
In this work, an accelerating etching method for glass named thermal electrical modified etching (TE...
In this work we present the not so commonly use of RF sputtered silicon as a masking layer for glass...
In this work we present the not so commonly use of RF sputtered silicon as a masking layer for glass...
In this work, an accelerating etching method for glass named thermal electrical modified etching (TE...
Soda-lime glass is a commonly used, cheap and accessible material. Just like any other glass, it off...
Soda-lime glass is a commonly used, cheap and accessible material. Just like any other glass, it off...
A new masking technology for wet etching of glass, to a depth of more than 300µm, is reported. Vario...
This chapter explores the micromachining of fluidic structures in silicon, and presents several exam...
Glass micromachining is currently becoming essential for the fabrication of micro-devices, including...
A new, versatile architecture is presented for microfluidic devices made entirely from glass, for us...
Glass micromachining is currently becoming essential for the fabrication of micro-devices, including...
International audienceTwo dry subtractive techniques for the fabrication of microchannels in borosil...
This thesis introduces important improvements in fabrication of microfluidic devices on silicon and ...
This thesis introduces important improvements in fabrication of microfluidic devices on silicon and ...
This paper is a review of wet and dry etching of one of the most common types of glass: Pyrex. The p...
In this work, an accelerating etching method for glass named thermal electrical modified etching (TE...
In this work we present the not so commonly use of RF sputtered silicon as a masking layer for glass...
In this work we present the not so commonly use of RF sputtered silicon as a masking layer for glass...
In this work, an accelerating etching method for glass named thermal electrical modified etching (TE...
Soda-lime glass is a commonly used, cheap and accessible material. Just like any other glass, it off...
Soda-lime glass is a commonly used, cheap and accessible material. Just like any other glass, it off...