An analytical method is developed to determine the frequency response of thermal microsensors on various input actions. The method has the following algorithm. In a microsensor, the domain of modelling is marked out. This domain is divided into the regions with homogeneous parameters. For each region the non-steady-state heat conduction equation is obtained that is solved by means of the time Fourier transform. The heat flux densities between the regions are determined using adjoint boundary conditions in the frequency domain. After that, the analytical expression for the frequency response of the microsensor is obtained. The model is applied to the concrete membrane thermal microsensors, for which the modulus and argument of the frequency ...
Mathematical modelling and characterization of the dynamic response of a microelectromechanical syst...
Mathematical modelling and characterization of the dynamic response of a microelectromechanical syst...
Mathematical modelling and characterization of the dynamic response of a microelectromechanical syst...
An analytical method is developed to determine the frequency response of thermal microsensors on var...
[[abstract]]In this paper, we present a complete electrothermal study of a micromachined active ther...
This work presents an analytical model dedicated to study of the transient response of multipurpose ...
This paper presents the procedure for taking into account the packaging features in the analytical m...
In the current study, it was tried to describe a method for determining thermal characteristics of i...
This paper presents the procedure for taking into account the packaging features in the analytical m...
The Microflown is an acoustic sensor that measures particle velocity instead of pressure, as convent...
A new, computationallly efficient method is presented for processing transient thin-film heat transf...
Mathematical modelling and characterization of the dynamic response of a microelectromechanical syst...
Thermal characterisation of electronic structures in the frequency domain consists of studying the h...
Mathematical modelling and characterization of the dynamic response of a microelectromechanical syst...
Although stationary models for thermal circuits have been widely used, a direct analogy of transient...
Mathematical modelling and characterization of the dynamic response of a microelectromechanical syst...
Mathematical modelling and characterization of the dynamic response of a microelectromechanical syst...
Mathematical modelling and characterization of the dynamic response of a microelectromechanical syst...
An analytical method is developed to determine the frequency response of thermal microsensors on var...
[[abstract]]In this paper, we present a complete electrothermal study of a micromachined active ther...
This work presents an analytical model dedicated to study of the transient response of multipurpose ...
This paper presents the procedure for taking into account the packaging features in the analytical m...
In the current study, it was tried to describe a method for determining thermal characteristics of i...
This paper presents the procedure for taking into account the packaging features in the analytical m...
The Microflown is an acoustic sensor that measures particle velocity instead of pressure, as convent...
A new, computationallly efficient method is presented for processing transient thin-film heat transf...
Mathematical modelling and characterization of the dynamic response of a microelectromechanical syst...
Thermal characterisation of electronic structures in the frequency domain consists of studying the h...
Mathematical modelling and characterization of the dynamic response of a microelectromechanical syst...
Although stationary models for thermal circuits have been widely used, a direct analogy of transient...
Mathematical modelling and characterization of the dynamic response of a microelectromechanical syst...
Mathematical modelling and characterization of the dynamic response of a microelectromechanical syst...
Mathematical modelling and characterization of the dynamic response of a microelectromechanical syst...