A review of RF transmission lines on silicon substrates is presented. Through measurements and calculated results, it is shown that attenuation is dominated by conductor loss if silicon substrates with a resistivity greater than 2500 Q-cm are used. Si passivation layers affect the transmission line attenuation; however, measured results demonstrate that passivation layers do not necessarily increase attenuation. If standard, low resistivity Si wafers must be used, alternative transmission lines such as thin film microstrip and CPW on thick polyimide layers must be used. Measured results presented here show that low loss per unit length is achievable with these transmission lines
A novel method for increasing effective resistivity in low doped silicon substrates is presented. By...
A novel method for increasing the effective resistivity in low-doped silicon substrates is presented...
The technological downscaling has improved the figures of merit of silicon-based technology, enablin...
The effect of a conductive substrate, such as silicon, on the attenuation of microstrip (MS) lines h...
Loss mechanisms for microstrip and coplanar transmission lines on lossy silicon substrates are analy...
Non-linear behaviour of RF coplanar transmission lines is analyzed for various values of Si substrat...
This chapter mainly focuses on two different silicon (Si)-based substrates: high-resistivity Si subs...
This paper presents a comparative study of the losses of 4 commonly used planar transmission lines (...
Radio-Frequency (RF) losses on High-Resistivity Silicon (HRS) substrates were studied for several di...
chap 13International audienceThis chapter mainly focuses on two different silicon (Si)‐based substra...
Attenuation and epsilon(sub eff) of Coplanar Waveguide (CPW) transmission lines were measured on Sil...
Our research group has been working on CPW line measurements on several silicon substrates. Our main...
The main objective of this paper is to evaluate RF losses and nonlinear behavior of coplanar wave- g...
An optimization scheme for minimizing substrate losses in coplanar strips (CPS) transmission line on...
This paper analyses RF substrate losses and non-linearity on Si-based substrates. Through measuremen...
A novel method for increasing effective resistivity in low doped silicon substrates is presented. By...
A novel method for increasing the effective resistivity in low-doped silicon substrates is presented...
The technological downscaling has improved the figures of merit of silicon-based technology, enablin...
The effect of a conductive substrate, such as silicon, on the attenuation of microstrip (MS) lines h...
Loss mechanisms for microstrip and coplanar transmission lines on lossy silicon substrates are analy...
Non-linear behaviour of RF coplanar transmission lines is analyzed for various values of Si substrat...
This chapter mainly focuses on two different silicon (Si)-based substrates: high-resistivity Si subs...
This paper presents a comparative study of the losses of 4 commonly used planar transmission lines (...
Radio-Frequency (RF) losses on High-Resistivity Silicon (HRS) substrates were studied for several di...
chap 13International audienceThis chapter mainly focuses on two different silicon (Si)‐based substra...
Attenuation and epsilon(sub eff) of Coplanar Waveguide (CPW) transmission lines were measured on Sil...
Our research group has been working on CPW line measurements on several silicon substrates. Our main...
The main objective of this paper is to evaluate RF losses and nonlinear behavior of coplanar wave- g...
An optimization scheme for minimizing substrate losses in coplanar strips (CPS) transmission line on...
This paper analyses RF substrate losses and non-linearity on Si-based substrates. Through measuremen...
A novel method for increasing effective resistivity in low doped silicon substrates is presented. By...
A novel method for increasing the effective resistivity in low-doped silicon substrates is presented...
The technological downscaling has improved the figures of merit of silicon-based technology, enablin...