The author discusses the suitability of various glass types for different applications, and in particular for absolute capacitive pressure sensors. Some process induced effects which can affect the yield and performance of such devices are investigated and solutions suggested for improving these properties. Effects considered include electrolysis and process induced compositional changes. These can manifest themselves as bowed or warped assemblies, degraded bonds and metallized layers, and poor sensitivity and temperature stability of the resulting devices. Some solutions to these problems are discussed.
Infra-red video sequences were taken of directly bonded silicon wafer pairs undergoing the razor blade crack length test for bond strength in a specially designed jig. A series of tests were carried out under controlled atmospheres of nitrogen at various relative humidities. Analysis of the video images showed that the crack continues to propagate rapidly for several minutes after the blade has stopped moving, and that the presence of moisture has a strong positive influence on the rate of crack propagation under static loading. A new Maszara protcol is suggested based on modelling crack growth using our experimentally derived constants.
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