Nonlinear mass sensors based on electronic feedback and methods of using the same
A device and method for sensing including a sensor having a functional surface layer located to interact with a material to be sensed, the sensor having an output that produces a signal responsive one or more of inertia, stiffness, acceleration, pressure, radiation, chemical compounds, and biological compounds; and further including electronics including: an input coupled to the sensor to receive a first signal therefrom; and a non-linearity provider that applies one or more non-linear operations to the input signal to generate a non-linear second signal.
1. A method for mass sensing, wherein the mass sensing comprises: obtaining a first linear signal generated through contacting a material to be sensed with a functional surface layer of a mass sensor; applying one or more non-linear electrical operations through a non-linearity feedback subsystem to said first linear signal to generate a second non-linear signal, wherein said one or more non-linear electrical operations are capable of generating bifurcation in said second non-linear signal when said one or more non-linear electrical operations are applied to the first linear signal; and wherein the second non-linear signal is summed to an excitation signal to excite the mass sensor.
2. The method of claim 1 , wherein said second non-linear signal comprises cubic non-linearity.
3. The method of claim 1 , said first linear signal is passed through a filter subsystem before said one or more non-linear electrical operations.
4. The method of claim 1 , wherein said second non-linear signal is combined with the said first linear signal to generate a third non-linear signal, wherein said third non-linear signal is adjustable through adding a gain or an attenuation of said second non-linear signal to provide a desired range of said third non-linear signal.