Manuals >Netlist Translator for SPICE & Spectre >Chapter 8: Translating a Model
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HICUM_Model:HICUM Bipolar Transistor Model

The SPICE Q model is translated to the ADS NPN or PNP BJT_Model. For translation information on the BJT device, refer to BJT Device.

For more information on the ADS model, place the model in a schematic and choose Edit > Component > Edit Component Parameters to view the model parameters. You can also click Help in the component editor dialog box for additional information.

Example SPICE Command Line:
.model hicum NPN level=8
SPICE Dialect and Netlist Syntax:

Spice2/3:

Does not exist.

PSpice:

Does not exist.

HSpice:

.model mname NPN | PNP LEVEL=8[param=value]*

ADS Netlist Syntax:

model mname HICUM NPN=[0|1] PNP=[0|1] [param=value]*

ADS Schematic Symbol:
Model Parameters:

For information on parameter format, refer to Using Parameter Mapping Tables to Understand a Translation.
Table 8-6. HICUM_Model Parameters 
ADS
Unit
Default
Spice2/3
PSpice
HSpice
C10


3.76e-32
x
x
3.76e-32
Qp0


2.78e-14
x
x
2.78e-14
Ich
A
2.09e-02
x
x
2.09e-02
Hfe


1.0
x
x
1.0
Hfc


1.0
x
x
1.0
Hjei


0.0
x
x
0.0x
Hjci


1.0
x
x
1.0
Mcf


1.0
x
x
1.0x
Alit


0.45
x
x
0.45
Cjei0
F
8.11e-15
x
x
8.11e-15
Vdei
V
0.95
x
x
0.95
Zei


0.5
x
x
0.5
Aljei


1.8
x
x
1.8
Cjci0
F
1.16e-15
x
x
1.16e-15
Vdci
V
0.8
x
x
0.8
Zci


0.333
x
x
0.333
Vptci
V
416
x
x
416
T0
s
4.75e-12
x
x
4.75e-12
Dt0h
s
2.1e-12
x
x
2.1e-12
Tbvi
s
40e-12
x
x
40e-12
Tef0
s
1.8e-12
x
x
1.8e-12
Gtfe


1.4
x
x
1.4
Thcs
s
3.0e-11
x
x
3.0e-11
Alhc


0.75
x
x
0.75
Fthc


0.6
x
x
0.6
Alqf


0.225
x
x
0.225
Rci0
ohms
127.8
x
x
127.8
Vlim
V
0.7
x
x
0.7
Vpt
V
5.0
x
x
5.0
Vces
V
0.1
x
x
0.1
Tr
s
1.0e-9
x
x
1.0e-9
Ibeis
A
1.16e-20
x
x
1.16e-20
Mbei


1.015
x
x
1.015
Ireis
A
1.16e-6
x
x
1.16e-6
Mrei


2.0
x
x
2.0
Ibcis
A
1.16e-20
x
x
1.16e-20
Mbci
V
1.015
x
PS
1.015
Favl
V^-1
1.186
x
x
1.186
Qavl


1.11e-14
x
x
1.11e-14
Rbi0
ohms
0
x
x
0
Fdqr0


0.0
x
x
0.0
Fgeo


0.73
x
x
0.73
Fqi


0.9055
x
x
0.9055
Fcri


0.0
x
x
0.0
Latb


3.765
x
x
3.765
Latl


0.342
x
x
0.342
Cjep0
F
2.07e-15
x
x
2.07e-15x
Vdep
V
1.05
x
x
1.05
Zep


0.4
x
x
0.4
Aljep


2.4
x
x
2.4
Ibeps
A
3.72e-21
x
x
3.72e-21
Mbep


1.015
x
x
1.105
Ireps
A
1e-30
x
x
1e-30
Mrep


2.0
x
x
2.0
Ibets
A
0
x
x
0
Abet


0.0
x
x
0.0x
Cjcx0
F
5.393e-15
x
x
5.393e-15
Vdcx
V
0.7
x
x
0.7
Zcx


0.333
x
x
0.333
Vptcx
V
100
x
x
100
Ccox
F
2.97e-15
x
x
2.97e-15
Fbc


0.1526
x
x
0.1526
Ibcxs
A
4.39e-20
x
x
4.39e-20
Mbcx


1.03
x
x
1.03
Ceox
F
1.13e-15
x
x
1.13e-15
Rbx
ohms
0
x
x
0
Re
ohms
0
x
x
0
Rcx
ohms
0
x
x
0
Itss
A
0.0
x
x
0.0
Msf


0.0
x
x
0.0
Msr


1.0
x
x
1.0
Iscs
A
0.0
x
x
0.0
Msc


0.0
x
x
0.0
Tsf


0.0
x
x
0.0
Cjs0
F
3.64e-14
x
x
3.64e-14
Vds
V
0.6
x
x
0.6
Zs


0.447
x
x
0.447
Vpts
V
1000
x
x
1000
Rsu
ohms
0
x
x
x
Csu
F
0
x
x
0
Kf


1.43e-8
x
x
1.43e-8
Af


2.0
x
x
2.0
Krbi


1.17
x
x
1.17
Vgb
V
1.17
x
x
1.17
Alb
K^-1
6.3e-3
x
x
6.3e-3
Zetaci


1.6
x
x
1.6
Alvs
K^-1
1e-3
x
x
1e-3
Alt0
K^-1
0
x
x
0
Kt0
K^-1
0
x
x
0
Alces
K^-1
0.4e-3
x
x
0.4e-3
Zetarbi


0.588
x
x
0.588
Zetarbx


0.2060
x
x
0.2060
Zetarcx


0.2330
x
x
0.2330
Zetare


0
x
x
0
Alfav
K^-1
8.25e-5
x
x
8.25e-5
Alqav
K^-1
1.96e-4
x
x
1.96e-4
Tnom
C
0
x
x
0
Rth
ohms
0
x
x
0
Cth
F
0
x
x
0


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