This paper focuses on the comparison of the RF performances of various advanced trap-rich (TR) siliconon-insulator (SOI) and porous silicon (PSi) substrates. The PSi substrates are produced by electroporisification starting either from cheap standard resistivity (10 Q·cm) silicon (PSi-S) or from the most widespread highly doped milliohm-centimeter Si wafers (PSi-M). Through small-signal RF measurements, it is shown that TR-enhanced high-resistivity silicon and both types of PSi are acceptable for RF applications, showing high effective resistivities and low RF substrate losses. What is more the substrate effective permittivity is decreased in the PSi substrates providing higher coupling isolation at high frequencies. Furthermore, large-sign...
Performance of RF integrated circuit (IC) is directly linked to the analog and high frequency charac...
International audienceTo study the effect of various n-type substrates on high-frequency inductor pe...
HR-SOI technology is currently addressing mobile challenges allowing heterogeneous integration on a ...
This paper analyses RF substrate losses and non-linearity on Si-based substrates. Through measuremen...
Porous silicon substrate is very promising for next generation wireless communication requiring the ...
The interest of 5G in centimeter and millimeter waves relies on large blocks of available spectra an...
This paper focuses on the comparison of various advanced substrates such as trap-rich (TR), porous s...
This paper focuses on the comparison of various advanced substrates such as trap-rich (TR), porous s...
For the last five years the semiconductor industry has evolved from a quest to get more logic and co...
The interest of porous silicon (PSi) for RF applications has been widely demonstrated in many previo...
International audienceTo study the influence of localized porous silicon regions on radiofrequency p...
This chapter mainly focuses on two different silicon (Si)-based substrates: high-resistivity Si subs...
chap 13International audienceThis chapter mainly focuses on two different silicon (Si)‐based substra...
International audienceThe increasing expansion of telecommunication applications leads to the integr...
International audienceThis article provides guidelines to design porous silicon (PS) layers regardin...
Performance of RF integrated circuit (IC) is directly linked to the analog and high frequency charac...
International audienceTo study the effect of various n-type substrates on high-frequency inductor pe...
HR-SOI technology is currently addressing mobile challenges allowing heterogeneous integration on a ...
This paper analyses RF substrate losses and non-linearity on Si-based substrates. Through measuremen...
Porous silicon substrate is very promising for next generation wireless communication requiring the ...
The interest of 5G in centimeter and millimeter waves relies on large blocks of available spectra an...
This paper focuses on the comparison of various advanced substrates such as trap-rich (TR), porous s...
This paper focuses on the comparison of various advanced substrates such as trap-rich (TR), porous s...
For the last five years the semiconductor industry has evolved from a quest to get more logic and co...
The interest of porous silicon (PSi) for RF applications has been widely demonstrated in many previo...
International audienceTo study the influence of localized porous silicon regions on radiofrequency p...
This chapter mainly focuses on two different silicon (Si)-based substrates: high-resistivity Si subs...
chap 13International audienceThis chapter mainly focuses on two different silicon (Si)‐based substra...
International audienceThe increasing expansion of telecommunication applications leads to the integr...
International audienceThis article provides guidelines to design porous silicon (PS) layers regardin...
Performance of RF integrated circuit (IC) is directly linked to the analog and high frequency charac...
International audienceTo study the effect of various n-type substrates on high-frequency inductor pe...
HR-SOI technology is currently addressing mobile challenges allowing heterogeneous integration on a ...