Following the recent development of the Graphene Base Transistor (GBT), a new electrical compact model for GBT devices is proposed. The transistor model includes the quantum capacitance model to obtain a self-consistent base potential. It also uses a versatile transfer current equation to be compatible with the different possible GBT configurations and it account for high injection conditions thanks to a transit time based charge model. Finally, the developed large signal model has been implemented in Verilog-A code and can be used for simulation in a standard circuit design environment such as Cadence or ADS. This model has been verified using advanced numerical simulation
Transistors (GFET) have shown outstanding RF performance; therefore, they have attracted considerabl...
A model of carrier density and drain current for monolayer graphene field-effect transistors (GFET) ...
The working principles of the hot-electron graphene base transistor (GBT) for analog terahertz opera...
Following the recent development of the Graphene Base Transistor (GBT), a new electrical compact mod...
none6noA simulation study aimed at investigating the main features in dc and small-signal operating ...
The behavioural model of a graphene field-effect transistor (GFET) is proposed. In this approach the...
The present paper provides an accurate drift-diffusion model of the graphene field-effect transistor...
We present a circuit-compatible compact model of the intrinsic capacitances of graphene field-effect...
Graphene-based capacitors and Graphene base transistors (GBTs) featuring innovative engineered tunne...
Graphene, a one-dimensional array of carbon atoms, is a unique material which has yet to be fully ut...
We examined the DC and RF performance of the graphene base transistor (GBT) in the ideal limit of un...
We propose a semiempirical graphene field effect transistor (G-FET) model for analysis and design of...
Current–Voltage Model for Graphene Solution-Gated Field-Effect Transistors implemented in MATLAB bas...
A simulation study of the graphene base heterojunction transistor (GBHT) is presented based on a nov...
Graphene is a 2-dimensional nanomaterial which can be used in field-effect transistors (GFETs), with...
Transistors (GFET) have shown outstanding RF performance; therefore, they have attracted considerabl...
A model of carrier density and drain current for monolayer graphene field-effect transistors (GFET) ...
The working principles of the hot-electron graphene base transistor (GBT) for analog terahertz opera...
Following the recent development of the Graphene Base Transistor (GBT), a new electrical compact mod...
none6noA simulation study aimed at investigating the main features in dc and small-signal operating ...
The behavioural model of a graphene field-effect transistor (GFET) is proposed. In this approach the...
The present paper provides an accurate drift-diffusion model of the graphene field-effect transistor...
We present a circuit-compatible compact model of the intrinsic capacitances of graphene field-effect...
Graphene-based capacitors and Graphene base transistors (GBTs) featuring innovative engineered tunne...
Graphene, a one-dimensional array of carbon atoms, is a unique material which has yet to be fully ut...
We examined the DC and RF performance of the graphene base transistor (GBT) in the ideal limit of un...
We propose a semiempirical graphene field effect transistor (G-FET) model for analysis and design of...
Current–Voltage Model for Graphene Solution-Gated Field-Effect Transistors implemented in MATLAB bas...
A simulation study of the graphene base heterojunction transistor (GBHT) is presented based on a nov...
Graphene is a 2-dimensional nanomaterial which can be used in field-effect transistors (GFETs), with...
Transistors (GFET) have shown outstanding RF performance; therefore, they have attracted considerabl...
A model of carrier density and drain current for monolayer graphene field-effect transistors (GFET) ...
The working principles of the hot-electron graphene base transistor (GBT) for analog terahertz opera...