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Thermal isolation is assured using back etching of bulk silicon.
Zirconia layers are suitable for thermal barrier coatings due to their high thermal isolation.
The boundary conditions are assumed to be either thermal isolation or isothermal.
New technology of low stress polyimide has been used for MTC thermal isolation.
The membrane is suspended over a bulk-micromachined silicon channel for improved thermal isolation.
A sonotrode design utilizing ceramic to enhance thermal isolation was also explored.
Because of its small thermal capacity and effective thermal isolation, the sensor element is very sensitive.
In such arrays, thermal isolation is engineered by supporting the absorber and thermometer on a membrane.
Some examples are the heat transfer in glass fabrication and in thermal isolation materials.
At sub-Kelvin temperatures the thermal isolation between the electrons and the lattice in metals causes the incoming radiation to heat the normal electrons in the absorber and the TES without the need for micromachined thermal isolation structures.
Vacuum seal-off tests were performed and high vacuum for thermal isolation could be kept for 25 days.
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