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AN2657 Datasheet(PDF) 5 Page - STMicroelectronics

Part # AN2657
Description  An innovative verilog model for predicting
PDF  18 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

AN2657 Datasheet(HTML) 5 Page - STMicroelectronics

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AN2657
Model description and parameter extraction
5/18
Nonlinear current generator
The nonlinear current generator controlled by Vgs and Vds is the most important factor used
to calculate the static and dynamic current of the device. Moreover, the static current is
required to define the working region of the MOS.
Table 1 reports all the parameters required to extract the equations of the current generator.
To get the generator current equation, a set of equations must be defined. An important
parameter to consider is the threshold voltage of the device shown in Equation 2.
Equation 2
Moreover, a new threshold voltage formula is necessary to describe the weak and strong
inversion region in a single equation (Equation 3).
Equation 3
To describe both regions, a new gate voltage can be defined as in Equation 4.
Equation 4
Table 1.
Parameters required for the extraction of the current generator equations
Name
Description
VT0
Threshold voltage [V]
ETA
Drain induce barrier lowering (DIBL) [V-1]
KP0
Transconduttance [A*V-2]
THETA
Mobility degradation [V-VGTHETA]
VGTHETA
Mobility degradation exponent [-]
THETA2..9
From 2nd to 9th degradation polynomial factor [V-2]
XN
Slope subthreshold current [V-1]
DEL
Body effect linearization coefficient [-]
DELVG
Body effect linearization coefficient independent of Vgs [V-1]
L0
Critical length [m]
L
Channel length [m]
EPS
Output conductance factor if L0>L [m]
KE
Output conductance factor if L0<L [Vm]
DT_KP
Mobility thermal coefficient [-]
DT_VT
Thermal coefficient of threshold voltage [°C-1]
V
TH
V
T0
η V
DS
DVVT
T
T
NOM
–
()
⋅
+
⋅
–
=
-
VR
V
TH
2XNU
TH
⋅⋅
–
=
U
TH
KT
⋅
q
--------------
=
V
gg
V
TH
2XNU
TH
e
V
gs
VR
–
2XN
U
TH
⋅
⋅
-------------------------------------
⋅⋅
⋅
+
V
gs
⎩
⎪
⎨
⎪
⎧
=



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