Product Documentation
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Product Version 17.4-2020, June 2020

Index of PSpice symbol and part properties

The following index lists every symbol/part property that can be used with PSpice, its associated symbol/part, what libraries the symbol/part can be found in, and a brief description of what the property is used for. This list should be used when preparing a circuit for simulation by setting up property assignments for symbols/parts that are placed in Capture. The properties are listed alphabetically for easy searching.

Property

Symbol(s)/Part(s)

PSpice Library

Description

Required

Default

Units

AC

VPWL, VSIN, VPWL_F_RE_FOREVER, VPWL_RE_N_TIMES, VPULSE, VPWL_ENH, VPWL_RE_FOREVER, VPWL_FILE, VSFFM, VSRC, VPWL_F_RE_N_TIMES, VSTIM

SOURCE

AC magnitude (used in AC sweep analysis only)

No

0

V

AC

IPWL, ISIN, IPWL_F_RE_FOREVER, IPWL_RE_N_TIMES, IPULSE, IPWL_ENH, IPWL_RE_FOREVER, IPWL_FILE, ISFFM, ISRC, IPWL_F_RE_N_TIMES, ISTIM

SOURCE, SOURCSTM

AC magnitude (used in AC sweep analysis only)

No

0

A

AC

IPRINT, VPRINT1, VPRINT2

SPECIAL

Print AC sweep results for signal to output file (Y|N)

No

N

none

ACMAG

IAC

SOURCE

AC magnitude (used in AC sweep analysis only)

Yes

0

A

ACPHASE

IAC

SOURCE

AC phase (used in AC sweep analysis only)

No

0

Degrees

ACMAG

VAC

SOURCE

AC magnitude (used in AC sweep analysis only)

Yes

0

V

ACPHASE

VAC

SOURCE

AC phase (used in AC sweep analysis only)

No

0

Degrees

AD

MbreakN4, MbreakN, MbreakN3, MbreakP4, MbreakP, MbreakP3, Mbreak P4, MbreakN3

BREAKOUT

Drain diffusion area

No

DEFAD

m^2

AGD

ZbreakN

BREAKOUT

Gate-drain overlap area

No

5.0e-6

m^2

ANALYSIS

PRINT1, WATCH1

SPECIAL

Analysis type (AC|DC|TRAN)

No

TRAN

none

AREA

DbreakCR, JbreakN, QbreakP3, DbreakW, JbreakP, QbreakP4, QbreakL, QbreakN3, QbreakN4, QbreakN, QbreakP, DbreakZ, Dbreak, Bbreak, ZbreakN

BREAKOUT

Area value (for scaling)

No

1.0

none

ARM_MASS

Relay_SPDT_phy

ANL_MISC

Contact arm mass (moment)

Yes

0.5

g*cm*sec*sec

AS

MbreakN4, MbreakN, MbreakN3, MbreakP4, MbreakP, MbreakP3, Mbreak P4, MbreakN3

BREAKOUT

Source diffusion area

No

DEFAS

m^2

ASSERTION

HOLD<SIZE>

DIG_MISC

Assert hold violation when low to high or high to low (LH|HL)

Yes

LH

none

ASSERTION

SETUP<SIZE>

DIG_MISC

Assert setup violation when low to high or high to low (LH|HL)

Yes

LH

none

BACKEMF

BLDCMTR

MIX_MISC

Back EMF constant

Yes

0.12

Volt*sec/rev

BIT

VECTOR<SIZE>

SPECIAL

Bit position within a single hex or octal digit (see .VECTOR)

No

none

none

C

TLOSSY, TLURC<SIZE>, TLUMP<SIZE>

ANALOG, TLINE

Capacitance value per unit length of transmission line

Yes

1

F

C

T<SIZE>coupled

TLINE

Capacitance value per unit length of coupled transmission line

Yes

-1

F

C1

T<SIZE>coupledX

TLINE

Capacitance value per unit length of first coupled transmission line

Yes

-1

F

C2

T<SIZE>coupledX

TLINE

Capacitance value per unit length of second coupled transmission line

Yes

-1

F

C3

T<SIZE>coupledX

TLINE

Capacitance value per unit length of third coupled transmission line

Yes

-1

F

C4

T<SIZE>coupledX

TLINE

Capacitance value per unit length of fourth coupled transmission line

Yes

-1

F

C5

T<SIZE>coupledX

TLINE

Capacitance value per unit length of fifth coupled transmission line

Yes

-1

F

CAP

DIGCAP

DIG_MISC

Capacitance value for digital I/O model

Yes

10P

F

CAPACITANCE

BLDCMTR

MIX_MISC

Winding capacitance to ground

Yes

0.001u

F

CIN

ADCPAR<SIZE>

DATACONV

Input capacitance

Yes

10P

F

CIN

ADCMIC<SIZE>

DATACONV

Input capacitance

Yes

22p

F

CKDPDMAX

ADCSER<SIZE>

DATACONV

Maximum clock to data delay

Yes

80n

sec

CKDPDMIN

ADCSER<SIZE>

DATACONV

Minimum clock to data delay

Yes

25n

sec

CLKHI

ADCSER<SIZE>

DATACONV

Minimum clock high pulse width

Yes

40n

sec

CLKLO

ADCSER<SIZE>

DATACONV

Minimum clock low pulse width

Yes

60n

sec

CLKMAX

ADCSER<SIZE>

DATACONV

Maximum clock frequency

Yes

5Meg

Hz

CLKMIN

ADCSER<SIZE>

DATACONV

Minimum clock frequency

Yes

178.571K

Hz

CM

T<SIZE>coupled, T<SIZE>coupledX

TLINE

Mutual capacitance per unit length

Yes

0

F

CM

Kcouple2

TLINE

Mutual coupling capacitance per unit length

Yes

none

F

CM12

T<SIZE>coupledX

TLINE

Mutual coupling capacitance per unit length between tlines 1 and 2

Yes

0

F

CM13

T<SIZE>coupledX

TLINE

Mutual coupling capacitance per unit length between tlines 1 and 3

Yes

0

F

CM14

T<SIZE>coupledX

TLINE

Mutual coupling capacitance per unit length between tlines 1 and 4

Yes

0

F

CM15

T<SIZE>coupledX

TLINE

Mutual coupling capacitance per unit length between tlines 1 and 5

Yes

0

F

CM21

Kcouple<SIZE>

TLINE

Mutual coupling capacitance per unit length between tlines 2 and 1

Yes

none

F

CM23

T<SIZE>coupledX

TLINE

Mutual coupling capacitance per unit length between tlines 2 and 3

Yes

0

F

CM24

T<SIZE>coupledX

TLINE

Mutual coupling capacitance per unit length between tlines 2 and 4

Yes

0

F

CM25

T<SIZE>coupledX

TLINE

Mutual coupling capacitance per unit length between tlines 2 and 5

Yes

0

F

CM31

Kcouple<SIZE>

TLINE

Mutual coupling capacitance per unit length between tlines 3 and 1

Yes

none

F

CM32

Kcouple<SIZE>

TLINE

Mutual coupling capacitance per unit length between tlines 3 and 2

Yes

none

F

CM34

T<SIZE>coupledX

TLINE

Mutual coupling capacitance per unit length between tlines 3 and 4

Yes

0

F

CM35

T<SIZE>coupledX

TLINE

Mutual coupling capacitance per unit length between tlines 3 and 5

Yes

0

F

CM41

Kcouple<SIZE>

TLINE

Mutual coupling capacitance per unit length between tlines 4 and 1

Yes

none

F

CM42

Kcouple<SIZE>

TLINE

Mutual coupling capacitance per unit length between tlines 4 and 2

Yes

none

F

CM43

Kcouple<SIZE>

TLINE

Mutual coupling capacitance per unit length between tlines 4 and 3

Yes

none

F

CM45

T<SIZE>coupledX

TLINE

Mutual coupling capacitance per unit length between tlines 4 and 5

Yes

0

F

CM51

Kcouple<SIZE>

TLINE

Mutual coupling capacitance per unit length between tlines 5 and 1

Yes

none

F

CM52

Kcouple<SIZE>

TLINE

Mutual coupling capacitance per unit length between tlines 5 and 2

Yes

none

F

CM53

Kcouple<SIZE>

TLINE

Mutual coupling capacitance per unit length between tlines 5 and 3

Yes

none

F

CM54

Kcouple<SIZE>

TLINE

Mutual coupling capacitance per unit length between tlines 5 and 4

Yes

none

F

CO

QRLSZCS

SWIT_RAV

Resonant capacitor value

Yes

.1u

F

COEFF

EPOLY

ANALOG

Voltage gain

Yes

1

V/V

COEFF

FPOLY

ANALOG

Current gain

Yes

1

A/A

COEFF

GPOLY

ANALOG

Transconductance

Yes

1

A/V

COEFF

HPOLY

ANALOG

Transresistance

Yes

1

V/A

COMMAND<LINE>

STIM1

SOURCE

(time, bit value) pairs of stimuli to be generated (see Stimulus Generator)

Yes

0s 0

pair

COMMAND<LINE>

STIM16

SOURCE

(time, hex value) pairs of stimuli to be generated (see Stimulus Generator)

Yes

0s 0000

pair

COMMAND<LINE>

STIM4

SOURCE

(time, bit value) pairs of stimuli to be generated (see Stimulus Generator)

Yes

0s 0000

pair

COMMAND<LINE>

STIM8

SOURCE

(time, bit value) pairs of stimuli to be generated (see Stimulus Generator)

Yes

0s 00000000

pair

CONTACT_MATCH

Relay_DPDT_b, Relay_DPDT_nb

MIX_MISC

Matching of contact make/break/bounce times: 1 = exact

Yes

0.95

none

CONVWHI

ADCSER<SIZE>

DATACONV

Minimum high width of convert pulse

Yes

40n

sec

CONVWHI

ADCPAR<SIZE>

DATACONV

Minimum high width of convert pulse

Yes

45n

sec

CONVWHI

ADCMIC<SIZE>

DATACONV

Minimum high width of convert pulse

Yes

50n

sec

CONVWLO

ADCPAR<SIZE>

DATACONV

Minimum low width of convert pulse

Yes

45n

sec

CONVWLO

ADCMIC<SIZE>

DATACONV

Minimum low width of convert pulse

Yes

50n

sec

CONVWLO

ADCSER<SIZE>

DATACONV

Minimum low width of convert pulse

Yes

60n

sec

COUPLING

XFRM_LINEAR, XFRM_NONLINEAR, K_LINEAR, kbreak

ANALOG, BREAKOUT

Coupling coefficient

Yes

1

none

COUT

DACCUR<SIZE>

DATACONV

Output capacitance

Yes

10p

F

CSMINLO

DACPAR<SIZE>

DATACONV

Minimum low width of CS

Yes

90n

sec

D

CMSSCCM

SWIT_RAV

Duty cycle

Yes

0.75

none

D

VMSSCCM

SWIT_RAV

Duty cycle

Yes

0.4

none

DAMPING

BLDCMTR

MIX_MISC

Damping and eddy current losses (linear torque with speed)

Yes

0.36

g*cm*sec/rad

DAMPING

Relay_SPDT_phy

ANL_MISC

Limit damping rate

Yes

1000

g*cm*sec/rad

DB

IPRINT, IPLOT, VPLOT1, VPLOT2, VPRINT1, VPRINT2

SPECIAL

Write signal in DB in output file (Y|N)

No

N

none

DC

VDC

SOURCE

DC voltage magnitude (used for bias point and in transient analysis)

Yes

0

V

DC

IDC

SOURCE

DC current magnitude (used for bias point and in transient analysis)

Yes

0

A

DC

VPWL, VSIN, VPWL_F_RE_FOREVER, VPWL_RE_N_TIMES, VPULSE, VPWL_ENH, VPWL_RE_FOREVER, VPWL_FILE, VSFFM, VSRC, VPWL_F_RE_N_TIMES, VSTIM, VAC

SOURCE, SOURCSTM

DC voltage magnitude (used for bias point)

No

0

V

DC

IPWL, ISIN, IPWL_F_RE_FOREVER, IPWL_RE_N_TIMES, IPULSE, IPWL_ENH, IPWL_RE_FOREVER, IPWL_FILE, ISFFM, ISRC, IPWL_F_RE_N_TIMES, ISTIM, IAC

SOURCE, SOURCSTM

DC current magnitude (used for bias point)

No

0

A

DC

IPRINT, IPLOT, VPLOT1, VPLOT2, VPRINT1, VPRINT2

SPECIAL

Write DC analysis results to output file (Y|N)

No

N

none

DEADTIME

SG1525A/25C, SG1526B, SG1525, SG1524B, SG1529

SWIT_REG

Dead time

Yes

1u

sec

DEADTIME

SG1842, SG1843, SG1844, SG1845, SG1846

SWIT_REG

Dead time

Yes

2u

sec

DEADTIME

SG1825

SWIT_REG

Dead time

Yes

5E-08

sec

DELAY

DIGCLOCK

SOURCE

Delay before clock starts

No

0

sec

DELAY

EFREQ, FTABLE, GFREQ

ABM

Phase delay to apply to data in frequency table

No

0

sec

DELAY

DELAY

DIG_MISC

Digital delay

Yes

50n

sec

DENOM

LAPLACE

ABM

Denominator of Laplace transform

Yes

1 + s

none

DETENT

BLDCMTR

MIX_MISC

Magnetic detent torque

Yes

2.9

g*cm

DF

VSIN, ISIN

SOURCE

Damping factor

No

0

none

DHOLD

DACSER<SIZE>

DATACONV

Data hold time

Yes

10n

sec

DIG_GND

STIM<SIZE>

SOURCE

Digital ground reference node (change for user power supply)

Yes

$G_DGND

none

DIG_PWR

STIM<SIZE>

SOURCE

Digital power reference node (change for user power supply)

Yes

$G_DPWR

none

DRAG

Relay_SPDT_phy

ANL_MISC

Air and other contact arm drag

Yes

1

g*cm/sec^2

DSET

DACSER<SIZE>

DATACONV

Data setup time

Yes

100n

sec

ERRORLIMIT

RELEASE<SIZE>, HOLD<SIZE>, CONSTRAINT<SIZE>, SETUP<SIZE>, WIDTH_HI, WIDTH_LO, MAXFREQ

DIG_MISC

Maximum number of constraint checker violations to report

No

20

none

EXP<LINE>

PWR, PWRS, ABM2, ABM3, ABM1, ABM1/I, ABM3/I, ABM2/I, ABM/I, ABM

ABM

ABM expression line containing circuit variables and math functions and operators forming controlling expression. Start with lowest number. Lines are concatenated.

Yes

1

none

EXPR

ELAPLACE, GTABLE, EFREQ, ETABLE, GVALUE, GFREQ, EVALUE, GLAPLACE

ABM

ABM expression line containing circuit variables and math functions and operators forming controlling expression. Default is signal connected to input pins of symbol.

No

V(%IN+, %IN-)

instance

F

T

ANALOG

Frequency for NL parameter (see Transmission Line device)

No

none

Hz

F0

BANDREJ, BANDPASS

ABM

Lower stopband frequency of filter

Yes

10

Hz

F1

BANDREJ, BANDPASS

ABM

Lower passband frequency of filter

Yes

100

Hz

F2

BANDREJ, BANDPASS

ABM

Upper passband frequency of filter

Yes

300

Hz

F3

BANDREJ, BANDPASS

ABM

Upper stopband frequency of filter

Yes

1000

Hz

FC

VSFFM, ISFFM

SOURCE

Carrier frequency

Yes

none

Hz

FILE

VPWL_F_RE_FOREVER, IPWL_F_RE_N_TIMES, VPWL_FILE, IPWL_F_RE_FOREVER, VPWL_F_RE_N_TIMES

SOURCE

Input file containing PWL source data,  (time, analog value) pairs

Yes

none

none

FILE

VECTOR<SIZE>

SPECIAL

Output file for .VECTOR results

No

none

none

FILENAME

FileStim<SIZE>

SOURCE

Input file containing STIM source data, (time, digital value) pairs

Yes

none

none

FILENAME

LIB

SPECIAL

Library file name to be included

Yes

none

none

FILENAME

INCLUDE

SPECIAL

Include file name to be included

Yes

none

none

FIRST_NPAIRS

IPWL_RE_FOREVER, VPWL_RE_N_TIMES, VPWL_ENH, VPWL_RE_FOREVER, IPWL_ENH, IPWL_RE_N_TIMES

SOURCE

First line containing PWL data, (time, analog value) pairs. Lines will be concatenated.

Yes

none

pairs

FLOAT

Property that should be added on an unconnected pin. Add this property on unconnected pins instead of using a No Connect symbol.

See Using the FLOAT property

FM

VSFFM, ISFFM

SOURCE

Modulation frequency

Yes

none

Hz

FORMAT

STIM1

SOURCE

Digital data format (1=bit, 4=hex).

No

1

binary

FORMAT

STIM4

SOURCE

Digital data format (1=bit, 4=hex)

No

1111

binary

FORMAT

STIM8

SOURCE

Digital data format (1=bit, 4=hex)

No

11111111

binary

FORMAT

STIM16

SOURCE

Digital data format (1=bit, 4=hex)

No

4444

hex

FP

HIPASS

ABM

Pass band cutoff frequency

Yes

100

Hz

FP

LOPASS

ABM

Pass band cutoff frequency

Yes

10

Hz

FREQ

VSIN, ISIN

SOURCE

Frequency of sinusoid (transient analysis only)

Yes

none

Hz

FRICTION

BLDCMTR

MIX_MISC

Friction/drag losses (constant torque losses)

Yes

0.72

g*cm

FRQ

COAX, RG6/U, RG58A/U, RG59B/U, RG8A/U, RG9B/U, RG174/U, RG8/U, RG12A/U, RG58C/U, RG6A/U, RG11A/U, RG59/u=, RG22B/U, RG55B/U, RG58/U+, RG8/u+, RG62/U RG179B/U, RG178B/U, RG188A/U, RG212/U, RG223/U, RG11/u+, RG62A/U, RG63B/U, RG187A/U, RG213/U, RG214/U, RG11/U, RG55/U, RG196A/U, RG215/U, RG71B/U, RG195A/U, RG217/U, RG58/U, RG218/U, RG59/U, RG219/U, RG180B/U

TLINE

Frequency to evaluate expressions for R and G (conductor and dielectric losses). If specified, R and G are constant in the model. No assignment to FRQ (leaving the value empty) will select Laplace expression for R and G to model skin effect.

No

100Meg

Hz

FRQ

TP19AWG, TP26AWG, TP24AWG, TP22AWG

TLINE

Frequency to evaluate expressions for R and G (conductor and dielectric losses). If specified, R and G are constant in the model. No assignment to FRQ (leaving the value empty) will select Laplace expression for R and G to model skin effect (use for AC Sweep analysis only).

No

5k

Hz

FS

LOPASS

ABM

Stop band cutoff frequency

Yes

100

Hz

FS

CMLSCCM

SWIT_RAV

Operating frequency

Yes

100k

Hz

FS

CMSSCCM

SWIT_RAV

Operating frequency

Yes

100k

Hz

FS

HIPASS

ABM

Stop band cutoff frequency

Yes

10

Hz

FS

VMLSDCM

SWIT_RAV

Operating frequency

Yes

50k

Hz

FS

VMCCMDCM

SWIT_RAV

Operating frequency

Yes

50k

Hz

FSOFFSET

QRLSZCS

SWIT_RAV

Frequency from Vco at zero Vc

Yes

280k

Hz

G

T<SIZE>coupled, TLUMP<SIZE>

TLINE

Per unit length conductance

Yes

0

Siemens

G

TLOSSY

ANALOG

Per unit length conductance

Yes

1

Siemens

G1

T<SIZE>coupledX

TLINE

Per unit length conductance of first conductor

Yes

0

Siemens

G2

T<SIZE>coupledX

TLINE

Per unit length conductance of second conductor

Yes

0

Siemens

G3

T<SIZE>coupledX

TLINE

Per unit length conductance of third conductor

Yes

0

Siemens

G4

T<SIZE>coupledX

TLINE

Per unit length conductance of fourth conductor

Yes

0

Siemens

G5

T<SIZE>coupledX

TLINE

Per unit length conductance of fifth conductor

Yes

0

Siemens

GAIN

E

ANALOG

Voltage gain

Yes

1

V/V

GAIN

F

ANALOG

Current gain

Yes

1

A/A

GAIN

G

ANALOG

Transconductance

Yes

1

I/V

GAIN

H

ANALOG

Transresistance

Yes

1

V/I

GAIN

DIFFER

ABM

Prescaling factor before differentiation

Yes

1

instance

GAIN

INTEG

ABM

Prescaling factor before integration

Yes

1

instance

GAIN

GAIN

ABM

Gain

Yes

1000

instance

GAIN

GLIMIT

ABM

Prescaling factor before limiting

Yes

1k

instance

GAIN

HILO

ABM

Prescaling factor before limiting

Yes

1k

instance

GAIN

SOFTLIM

ABM

Prescaling factor before limiting

Yes

1k

instance

GAIN_REF

ADCPAR<SIZE>

DATACONV

Upper input voltage limit

Yes

0.4

none

GAIN_REF_GND

ADCPAR<SIZE>

DATACONV

Lower input voltage limit

Yes

-0.4

none

HCTAU

BULB

OPTO

Heat capacity time constant

Yes

4.082

sec

HI

WATCH1

SPECIAL

Upper limit value for .WATCH

Yes

none

V

HI

GLIMIT, HILO, SOFTLIM

ABM

Upper limit

Yes

10

V

HOLDTIME

HOLD<SIZE>

DIG_MISC

Hold time for constraint checking

Yes

none

sec

I_DROP

BOUNCE, NO_BOUNCE, Relay_DPDT_b, Relay_SPDT_b, Relay_SPDT_nb, Relay_DPDT_nb

ANL_MISC

Drop-out current

Yes

25m

A

I_PULL

BOUNCE, NO_BOUNCE, Relay_DPDT_b, Relay_SPDT_b, Relay_SPDT_nb, Relay_DPDT_nb

ANL_MISC

Pull-in current

Yes

35m

A

I1

IPULSE, IEXP

SOURCE

First current level

Yes

none

A

I2

IPULSE, IEXP

SOURCE

Second current level

Yes

none

A

I1

IPWL

SOURCE

First PWL point (0s, current value)

Yes

none

A

I2

IPWL

SOURCE

Second PWL point (time, current value)

No

none

A

I3

IPWL

SOURCE

Third PWL point (time, current value)

No

none

A

I4

IPWL

SOURCE

Fourth PWL point (time, current value)

No

none

A

I5

IPWL

SOURCE

Fifth PWL point (time, current value)

No

none

A

I6

IPWL

SOURCE

Sixth PWL point (time, current value)

No

none

A

I7

IPWL

SOURCE

Seventh PWL point (time, current value)

No

none

A

I8

IPWL

SOURCE

Eighth PWL point (time, current value)

No

none

A

IAMPL

ISIN

SOURCE

Current amplitude of sinusoid (transient analysis only)

Yes

none

A

IAMPL

ISFFM

SOURCE

Current amplitude of SFFM (transient analysis only)

Yes

none

A

IC

Cbreak, C

BREAKOUT, ANALOG

Initial voltage condition on capacitor

No

0

V

IC

Lbreak, L

BREAKOUT, ANALOG

Initial current condition on inductor

No

0

A

IC

INTEG

ABM

Initial condition for integrator

Yes

0

instance

IC

VMSSCCM

SWIT_RAV

Current flowing from terminal C

Yes

1

A

IC

CMSSCCM

SWIT_RAV

Current flowing from terminal C

Yes

100

A

IMAG

IPRINT, IPLOT, VPLOT1, VPLOT2, VPRINT1, VPRINT2

SPECIAL

Write signal in IMAGINARY format in output file (Y|N)

No

N

none

INDUCTANCE

BLDCMTR

MIX_MISC

Winding inductance

Yes

3m

Hz

INERTIA

BLDCMTR

MIX_MISC

Moment of inertia of rotor

Yes

0.30

g*cm*sec*sec

IO_MODEL

DACSER<SIZE>, DACCUR<SIZE>, ADCSER<SIZE>, ADCPAR<SIZE>, DACPAR<SIZE>, ADCMIC<SIZE>

DATACONV

I/O model to use for  and D/A converter models

No

IO_HCT

none

IO_MODEL

STIM<SIZE>, DIGCLOCK, DIGSTIM

SOURCE

I/O model to use for digital stimulus

No

IO_STM

none

IOFF

ISIN, ISFFM

SOURCE

Offset current of transient analysis source

Yes

none

A

ISINK

DACPAR<SIZE>

DATACONV

Typical output sink current

Yes

-400u

A

ISOURCE

DACPAR<SIZE>

DATACONV

Typical output source current

Yes

5m

A

K_COEF

3phase

ANL_MISC

Mutual coupling coefficient

Yes

0.9999

none

KP

ZbreakN

BREAKOUT

MOS transconductance for IGBT

No

0.38

A/V^2

L

MbreakN4, MbreakN, MbreakN3, MbreakP4, MbreakP, MbreakP3, Mbreak P4, MbreakN3

BREAKOUT

Length

no

DEFL

m

L

TLOSSY, TLUMP<SIZE>,

ANALOG, TLINE

Per unit length inductance

Yes

1

H

L

T<SIZE>coupled

TLINE

Per unit length inductance

Yes

-1

H

L_COIL

BOUNCE, NO_BOUNCE, Relay_DPDT_b, Relay_SPDT_b, Relay_SPDT_nb, Relay_DPDT_nb, Relay_SPDT_phy

ANL_MISC, MIX_MISC

Coil inductance

Yes

5m

H

L1

K_LINEAR, kbreak

ANALOG, BREAKOUT

Reference Designator of first coupled inductor

Yes

L1

refdes

L1

T<SIZE>coupledX

TLINE

Per unit length inductance of first conductor

Yes

-1

H

L1_TURNS

XFRM_NONLINEAR

BREAKOUT

Number of turns for first inductor

Yes

none

none

L1_VALUE

XFRM_LINEAR

ANALOG

Inductance value of first inductor

Yes

none

H

L2

K_LINEAR, kbreak

ANALOG, BREAKOUT

Reference Designator of second coupled inductor

Yes

L2

refdes

L2

T<SIZE>coupledX

TLINE

Per unit length inductance of second conductor

Yes

-1

H

L2_TURNS

XFRM_NONLINEAR

BREAKOUT

Number of turns for second inductor

Yes

none

none

L2_VALUE

XFRM_LINEAR

ANALOG

Inductance value of second inductor

Yes

none

H

L3

K_LINEAR, kbreak

ANALOG, BREAKOUT

Reference Designator of third coupled inductor

Yes

L3

refdes

L3

T<SIZE>coupledX

TLINE

Per unit length inductance of third conductor

Yes

-1

H

L4

K_LINEAR, kbreak

ANALOG, BREAKOUT

Reference Designator of fourth coupled inductor

Yes

L4

refdes

L4

T<SIZE>coupledX

TLINE

Per unit length inductance of fourth conductor

Yes

-1

H

L5

K_LINEAR, kbreak

ANALOG, BREAKOUT

Reference Designator of fifth coupled inductor

Yes

L5

refdes

L5

T<SIZE>coupledX

TLINE

Per unit length inductance of fifth conductor

Yes

-1

H

L6

K_LINEAR, kbreak

ANALOG, BREAKOUT

Reference Designator of sixth coupled inductor

Yes

L6

refdes

LDACMINLO

DACPAR<SIZE>

DATACONV

Minimum pulse width low for LDAC

Yes

90n

sec

LEN

COAX, RG6/U, RG58A/U, RG59B/U, RG8A/U, RG9B/U, RG174/U, RG8/U, RG12A/U, RG58C/U, RG6A/U, RG11A/U, RG59/u=, RG22B/U, RG55B/U, RG58/U+, RG8/u+, RG62/U RG179B/U, RG178B/U, RG188A/U, RG212/U, RG223/U, RG11/u+, RG62A/U, RG63B/U, RG187A/U, RG213/U, RG214/U, RG11/U, RG55/U, RG196A/U, RG215/U, RG71B/U, RG195A/U, RG217/U, RG58/U, RG218/U, RG59/U, RG219/U, RG180B/U, TWSTPAIR, TP24AWG, TP22AWG, TP19AWG, TP16AWG, TLOSSY, TLURC<SIZE>, TLUMP<SIZE>, T<SIZE>coupled, T<SIZE>coupledX

TLINE, ANALOG

Length of transmission line. The characteristic parameters R, L, G, and C are defined per unit length. For coax and twisted pair models, the length must be specified in meters.

Yes

none

m

LFIL

VMLSDCM, VMCCMDCM

SWIT_RAV

Filter inductance

Yes

500u

H

LFIL

CMLSCCM, CMSSCCM

SWIT_RAV

Filter inductance

Yes

5u

H

LIM_K

Relay_SPDT_phy

ANL_MISC

Limit spring rate

Yes

1000000

g/sec

LM

T<SIZE>coupled, T<SIZE>coupledX

TLINE

Mutual inductance per unit length

Yes

0

H

LM

Kcouple2

TLINE

Mutual coupling inductance per unit length

Yes

none

H

LM12

T<SIZE>coupledX, Kcouple<SIZE>

TLINE

Mutual coupling inductance per unit length between tlines 1 and 2

Yes

0

H

LM13

T<SIZE>coupledX, Kcouple<SIZE>

TLINE

Mutual coupling inductance per unit length between tlines 1 and 3

Yes

0

H

LM14

T<SIZE>coupledX, Kcouple<SIZE>

TLINE

Mutual coupling inductance per unit length between tlines 1 and 4

Yes

0

H

LM15

T<SIZE>coupledX, Kcouple<SIZE>

TLINE

Mutual coupling inductance per unit length between tlines 1 and 5

Yes

0

H

LM21

Kcouple<SIZE>

TLINE

Mutual coupling inductance per unit length between tlines 2 and 1

Yes

none

H

LM23

T<SIZE>coupledX, Kcouple<SIZE>

TLINE

Mutual coupling inductance per unit length between tlines 2 and 3

Yes

0

H

LM24

T<SIZE>coupledX, Kcouple<SIZE>

TLINE

Mutual coupling inductance per unit length between tlines 2 and 4

Yes

0

H

LM25

T<SIZE>coupledX, Kcouple<SIZE>

TLINE

Mutual coupling inductance per unit length between tlines 2 and 5

Yes

0

H

LM31

Kcouple<SIZE>

TLINE

Mutual coupling inductance per unit length between tlines 3 and 1

Yes

none

H

LM32

Kcouple<SIZE>

TLINE

Mutual coupling inductance per unit length between tlines 3 and 2

Yes

none

H

LM34

T<SIZE>coupledX, Kcouple<SIZE>

TLINE

Mutual coupling inductance per unit length between tlines 3 and 4

Yes

0

H

LM35

T<SIZE>coupledX, Kcouple<SIZE>

TLINE

Mutual coupling inductance per unit length between tlines 3 and 5

Yes

0

H

LM41

Kcouple<SIZE>

TLINE

Mutual coupling inductance per unit length between tlines 4 and 1

Yes

none

H

LM42

Kcouple<SIZE>

TLINE

Mutual coupling inductance per unit length between tlines 4 and 2

Yes

none

H

LM43

Kcouple<SIZE>

TLINE

Mutual coupling inductance per unit length between tlines 4 and 3

Yes

none

H

LM45

T<SIZE>coupledX, Kcouple<SIZE>

TLINE

Mutual coupling inductance per unit length between tlines 4 and 5

Yes

0

H

LO

WATCH1

SPECIAL

Lower voltage value for .WATCH

Yes

none

none

LO

GLIMIT, HILO, LIMIT, SOFTLIM

ABM

Lower limit voltage

Yes

0

V

LO

QRLSZCS

SWIT_RAV

Resonant inductor value

Yes

20n

H

M

MbreakN4, MbreakN, MbreakN3, MbreakP4, MbreakP, MbreakP3, Mbreak P4, MbreakN3

BREAKOUT

Multiplier

No

1

none

MAG

IPRINT, IPLOT, VPLOT1, VPLOT2, VPRINT1, VPRINT2

SPECIAL

Write signal in MAGNITUDE format in output file (Y|N)

No

Y

none

MAGUNITS

EFREQ, FTABLE, GFREQ

ABM

Units for magnitude table entries (MAG|DB)

No

MAG

none

MAXFREQ

MAXFREQ

DIG_MISC

Maximum frequency for constraint checker

Yes

none

Hz

MAXFREQ

ADCPAR<SIZE>

DATACONV

Maximum clock frequency

Yes

11Meg

Hz

MAXP

Relay_SPDT_phy

ANL_MISC

Maximum permeance (when arm is close to coil)

Yes

5

gauss*m^2/A

MINFREQ

MINFREQ

DIG_MISC

Minimum frequency for constraint checker

Yes

none

Hz

MINFREQ

ADCPAR<SIZE>

DATACONV

Minimum clock frequency

Yes

10K

Hz

MINHOLD

ADCMIC<SIZE>

DATACONV

R/Cbar to CSbar hold time

Yes

10n

sec

MINLO

ADCMIC<SIZE>

DATACONV

R/Cbar minimum pulse width

Yes

50n

sec

MINP

Relay_SPDT_phy

ANL_MISC

Minimum permeance (when arm is close to coil)

Yes

1

gauss*m^2/A

MINPER

ADCMIC<SIZE>

DATACONV

Minimum time between conversions

Yes

10u

sec

MINSET

ADCMIC<SIZE>

DATACONV

R/Cbar to CSbar setup time

Yes

10n

sec

MINW

DACSER<SIZE>

DATACONV

LDAC low minimum pulse width

Yes

50n

sec

MOD

VSFFM, ISFFM

SOURCE

Modulation Index

Yes

none

none

MUTUAL_IND

BLDCMTR

MIX_MISC

Adjacent winding mutual coupling factor

Yes

0.5

none

N

QRLSZCS

SWIT_RAV

Full-wave=1; half-wave=2

Yes

2

none

NL

T

ANALOG

Number of wavelengths

No

none

none

NRB

MbreakN4, MbreakN, MbreakN3, MbreakP4, MbreakP, MbreakP3, Mbreak P4, MbreakN3

BREAKOUT

Multiplier of RSH to get RB

No

0

none

NRD

MbreakN4, MbreakN, MbreakN3, MbreakP4, MbreakP, MbreakP3, Mbreak P4, MbreakN3

BREAKOUT

Multiplier of RSH to get RD

No

0

none

NRG

MbreakN4, MbreakN, MbreakN3, MbreakP4, MbreakP, MbreakP3, Mbreak P4, MbreakN3

BREAKOUT

Multiplier of RSH to get RG

No

0

none

NRS

MbreakN4, MbreakN, MbreakN3, MbreakP4, MbreakP, MbreakP3, Mbreak P4, MbreakN3

BREAKOUT

Multiplier of RSH to get RS

No

0

none

NUM

LAPLACE

ABM

Numerator of Laplace transform

Yes

1

none

OFFTIME

DIGCLOCK

SOURCE

Time clock is low

Yes

.5u

sec

ONTIME

DIGCLOCK

SOURCE

Time clock is high

Yes

.5u

sec

OPPVAL

DIGCLOCK

SOURCE

State to transition to from low (usually 1)

Yes

1

none

PD

MbreakN4, MbreakN, MbreakN3, MbreakP4, MbreakP, MbreakP3, Mbreak P4, MbreakN3

BREAKOUT

Perimeter of drain

No

0

m

PER

IPULSE, VPULSE

SOURCE

Period

No

TSTOP

sec

PERIOD

SG1525A/25C, SG1526B, SG1525, SG1524B, SG1529

SWIT_REG

Period of internal oscillator

Yes

1m

sec

PERIOD

SG1825

SWIT_REG

Period of internal oscillator

Yes

2.5u

sec

PERIOD

SG1825, SG1842, SG1843, SG1844, SG1845, SG1846

SWIT_REG

Period of internal oscillator

Yes

22.5u

sec

PERMEANCE_RATIO

3phase

ANL_MISC

Ratio of Permeance_inner/Permeance_outer

Yes

1

none

PHASE

IPRINT, IPLOT, VPLOT1, VPLOT2, VPRINT1, VPRINT2

SPECIAL

Write signal in PHASE format in output file (Y|N)

No

N

none

PHASEUNITS

EFREQ, FTABLE, GFREQ

ABM

Units for phase table entries (DEG|RAD)

No

DEG

none

PNOM

BULB

OPTO

Nominal power

Yes

100

W

POS

VECTOR<SIZE>

SPECIAL

Column position (see .VECTOR)

No

see .VECTOR

none

PRI_IND

3phase

ANL_MISC

Primary inductance

Yes

200m

H

PRI_R

3phase

ANL_MISC

Primary resistance

Yes

0.1

Ohms

PS

MbreakN4, MbreakN, MbreakN3, MbreakP4, MbreakP, MbreakP3, Mbreak P4, MbreakN3

BREAKOUT

Perimeter of source

No

0

m

PULSE

74LS122, 74LS123

1_SHOT

Pulsewidth

Yes

116n

sec

PULSE

CD4098B

1_SHOT

Pulsewidth

Yes

1u

sec

PULSE

CD4538B

1_SHOT

Pulsewidth

Yes

20u

sec

PULSE

74121

1_SHOT

Pulsewidth

Yes

30n

sec

PULSE

54L121

1_SHOT

Pulsewidth

Yes

35n

sec

PULSE

74122

1_SHOT

Pulsewidth

Yes

45n

sec

PULSE

74123

1_SHOT

Pulsewidth

Yes

45n

sec

PULSE

54L122, 54L123

1_SHOT

Pulsewidth

Yes

90n

sec

PW

IPULSE, VPULSE

SOURCE

Pulsewidth

No

TSTOP

sec

QUIESCUR

SG1842, SG1843

SWIT_REG

Quiescent current

Yes

11m

A

R

T<SIZE>coupled, TLUMP<SIZE>, TLOSSY, TLURC<SIZE>

TLINE, ANALOG

Per unit length resistance

Yes

0

Ohms

R_CLOSE

BOUNCE, Relay_SPDT_phy, NO_BOUNCE, Relay_DPDT_B, Relay_SPDT_b, Relay_SPDT_nb, Relay_DPDT_nb

ANL_MISC, MIX_MISC

Closed state resistance

Yes

0.05

Ohms

R_COIL

BOUNCE, Relay_SPDT_phy, NO_BOUNCE, Relay_DPDT_B, Relay_SPDT_b, Relay_SPDT_nb, Relay_DPDT_nb

ANL_MISC, MIX_MISC

Series resistance of coil

Yes

10

Ohms

R_I

EFREQ, FTABLE, GFREQ

ABM

Use real and imaginary (set value to R_I). Default is magnitude and phase

No

magnitude/phase

none

R_OPEN

BOUNCE, Relay_SPDT_phy, NO_BOUNCE, Relay_DPDT_B, Relay_SPDT_b, Relay_SPDT_nb, Relay_DPDT_nb

ANL_MISC, MIX_MISC

Closed state resistance

Yes

100MEG

Ohms

R_REF_IN

ADCPAR<SIZE>

DATACONV

Input resistance of reference

Yes

5K

Ohms

R_REF_OUT

ADCPAR<SIZE>

DATACONV

Output resistance of reference out

Yes

12

Ohms

R_REF_OUT

ADCMIC<SIZE>

DATACONV

Output resistance of reference out

Yes

4K

Ohms

R1

T<SIZE>coupledX

TLINE

Per unit length resistance of first conductor

Yes

0

Ohms

R2

T<SIZE>coupledX

TLINE

Per unit length resistance of second conductor

Yes

0

Ohms

R3

T<SIZE>coupledX

TLINE

Per unit length resistance of third conductor

Yes

0

Ohms

R4

T<SIZE>coupledX

TLINE

Per unit length resistance of fourth conductor

Yes

0

Ohms

R5

T<SIZE>coupledX

TLINE

Per unit length resistance of fifth conductor

Yes

0

Ohms

RADIX

VECTOR<SIZE>

SPECIAL

Radix of values of the specified nodes

No

see .VECTOR

none

RCLOSED

Sw_tClose, Sw_tOpen

ANL_MISC

Closed state resistance

Yes

0.01

Ohms

RD

VMSSCCM

SWIT_RAV

Diode on resistance

Yes

0.000001

Ohms

RE

VMSSCCM

SWIT_RAV

Models ripple across esr of cap

Yes

0.000001

Ohms

REAL

IPRINT, IPLOT, VPLOT1, VPLOT2, VPRINT1, VPRINT2

SPECIAL

Write signal in REAL format in output file (Y|N)

No

N

none

REF_ASSERTION

RELEASE<SIZE>

DIG_MISC

Reference edge of clock

Yes

LH

none

REF_VOLT_GAIN

ADCMIC<SIZE>

DATACONV

Reference voltage gain

Yes

4

none

REFERENCE

CD4000_PWR, DIGIFPWR

SPECIAL

Negative power supply value

Yes

0

V

REL_CTR

A4N27, A4N28, CNY17-1, CNY17-2, PS2561, CNY17-3, H11A520, PS1001, A4N49A, BPW32, A4N48A, A4N47A, A4N32, A4N25A, MRD510, PS2565-1, PS2621, A4N33, H11A2, MRD500, H11AV1, MCT2, H11A3, PS2501-1, PS2601, H11AV2, H11A4, H11AV3, A4N25, A4N26, MCT2E, MLED96, PS2505-1, MOC1005, MOC1006, IL300, SLD1121VS

OPTO

Relative current transfer ratio

Yes

0.5

none

RELEASETIME

RELEASE<SIZE>

DIG_MISC

Minimum time between signal inactive and clock edge

Yes

none

sec

REPEAT_VALUE

VPWL_RE_N_TIMES, IPWL_F_RE_N_TIMES, VPWL_ENH, VPWL_FILE, IPWL_ENH, IPWL_RE_N_TIMES, VPWL_F_RE_N_TIMES

SOURCE

Number of repetitions of specified window of signal

No

1

none

RESISTANCE

BLDCMTR

MIX_MISC

Winding resistance

Yes

6

Ohms

RI

CMLSCCM, CMSSCCM

SWIT_RAV

Current feedback coefficient

Yes

0.01

none

RIN

ADCPAR<SIZE>

DATACONV

Input resistance of analog input

Yes

50K

Ohms

RIPPLE

HIPASS, LOPASS, BANDREJ, BANDPASS

ABM

Ripple specification

Yes

1dB

none

RM

VMSSCCM

SWIT_RAV

Resistance modeling the base storage effects

Yes

0.000001

Ohms

RMPHITE

VMLSCCM, VMLSDCM, VMSSCCM, VMCCMDCM

SWIT_RAV

External ramp height

Yes

2

V

ROFF

Sbreak

BREAKOUT

Off-state resistance

Yes

1000000

Ohms

RON

Sbreak

BREAKOUT

On-state resistance

Yes

1

Ohms

ROPEN

Sw_tClose, Sw_tOpen

ANL_MISC

Open-state resistance

Yes

1Meg

Ohms

ROW1

FTABLE

ABM

First row of data triplets (freq, mag, phase)

Yes

(0Hz, 0, 0)  

triplet

ROW1

TABLE

ABM

First row of data pairs (input, output)

Yes

(0v, 0v)

pair

ROW2

FTABLE

ABM

Second row of data triplets (freq, mag, phase); rows are concatenated

No

(10Hz, -3, -30)

triplet

ROW2

TABLE

ABM

Second row of data pairs (input, output); rows are concatenated

No

(1v, 1v)  

pair

ROW3

FTABLE

ABM

Third row of data triplets (freq, mag, phase); rows are concatenated

No

(20Hz,-6,   -90)

triplet

ROW3

TABLE

ABM

Third row of data pairs (input, output); rows are concatenated

No

(2v, 4v)  

pair

ROW4

FTABLE

ABM

Fourth row of data triplets (freq, mag, phase); rows are concatenated

No

(30Hz, -10, -120)  

triplet

ROW4

TABLE

ABM

Fourth row of data pairs (input, output); rows are concatenated

No

(3v, 9v)  

pair

ROW5

FTABLE

ABM

Fifth row of data triplets (freq, mag, phase); rows are concatenated

No

(40Hz, -15, -150)

triplet

ROW5

TABLE

ABM

Fifth row of data pairs (input, output); rows are concatenated

No

(4v, 16v)  

pair

RSW

VMSSCCM

SWIT_RAV

Switch on resistance

Yes

0.000001

Ohms

RTR_POLE_PAIRS

BLDCMTR

MIX_MISC

Number of north poles on the rotor

Yes

2

none

SCHOLD

DACSER<SIZE>

DATACONV

SYNC to SCLK hold time

Yes

120n

sec

SCLK

DACSER<SIZE>

DATACONV

SCLK cycle time

Yes

200n

sec

SCSET

DACSER<SIZE>

DATACONV

SYNC to SCLK setup time

Yes

50n

sec

SE

CMLSCCM, CMSSCCM

SWIT_RAV

External ramp slope

Yes

100000

V/sec

SEC_R

3phase

ANL_MISC

Secondary winding resistance

Yes

0.1

Ohms

SECOND_NPAIRS

IPWL_RE_FOREVER, VPWL_RE_N_TIMES, VPWL_ENH, VPWL_RE_FOREVER, IPWL_ENH, IPWL_RE_N_TIMES

SOURCE

Second line containing PWL data, (time, analog value) pairs. Lines will be concatenated.

No

none

pairs

SET

R_VAR, C_VAR, POT

ANALOG, BREAKOUT

Position of slider between minimum and maximum value (linear interpolation)

Yes

0.5

none

SETUPTIME

SETUP<SIZE>

DIG_MISC

Setup time

Yes

none

sec

SIG_EDGE

RELEASE<SIZE>

DIG_MISC

Signal edge for constraint checking

Yes

LH

none

SIGNAME

FileStim<SIZE>

SOURCE

Signal name in file

No

none

none

SIGNAMES

VECTOR<SIZE>

SPECIAL

Names of signals which appear in the header of the vector file

No

node names

none

SN

CMSSCCM

SWIT_RAV

Current sense ramp slope

Yes

100000

V/sec

SPR

Relay_SPDT_phy

ANL_MISC

Contact arm spring force

Yes

40

g_cm/sec^2

SR

DACPAR<SIZE>

DATACONV

Slew rate of output

Yes

2.5Meg

V/sec

STARTVAL

DIGCLOCK

SOURCE

First digital value of clock

Yes

0

none

STOP

HIPASS, LOPASS, BANDREJ, BANDPASS

ABM

Stopband attenuation

Yes

50dB

none

T_BOUNCE

BOUNCE, Relay_DPDT_b, Relay_SPDT_b

ANL_MISC, MIX_MISC

Bounce time (after contact is closed)

Yes

5m

sec

T_BREAK

BOUNCE, Relay_DPDT_b, Relay_SPDT_b, NO_BOUNCE, Relay_DPDT_nb, Relay_SPDT_nb

ANL_MISC, MIX_MISC

Time for contact to open when current is turned off/on

Yes

10m

sec

T_MAKE

BOUNCE, Relay_DPDT_b, Relay_SPDT_b, NO_BOUNCE, Relay_DPDT_nb, Relay_SPDT_nb

ANL_MISC, MIX_MISC

Time for contact to close when current is turned off/on

Yes

20m

sec

T1

VPWL, IPWL

SOURCE

Time for first PWL pair (should be 0)

Yes

none

sec

T1

Kcouple<SIZE>

TLINE

Reference designator of first coupled transmission line

Yes

T1

refdes

T10

VPWL, IPWL

SOURCE

Time for tenth PWL pair

Yes

none

sec

T2

VPWL, IPWL

SOURCE

Time for second PWL pair

Yes

none

sec

T2

Kcouple<SIZE>

TLINE

Reference designator of second coupled transmission line

Yes

T2

refdes

T3

VPWL, IPWL

SOURCE

Time for third PWL pair

Yes

none

sec

T3

Kcouple<SIZE>

TLINE

Reference designator of third coupled transmission line

Yes

T3

refdes

T4

VPWL, IPWL

SOURCE

Time for fourth PWL pair

Yes

none

sec

T4

Kcouple<SIZE>

TLINE

Reference designator of fourth coupled transmission line

Yes

T4

refdes

T5

VPWL, IPWL

SOURCE

Time for fifth PWL pair

Yes

none

sec

T5

Kcouple<SIZE>

TLINE

Reference designator of fifth coupled transmission line

Yes

T5

refdes

T6

VPWL, IPWL

SOURCE

Time for sixth PWL pair

Yes

none

sec

T7

VPWL, IPWL

SOURCE

Time for seventh PWL pair

Yes

none

sec

T8

VPWL, IPWL

SOURCE

Time for eighth PWL pair

Yes

none

sec

T9

VPWL, IPWL

SOURCE

Time for ninth PWL pair

Yes

none

sec

TABLE

EFREQ, GFREQ

ABM

Triplets (freq, mag, phase) for frequency table

Yes

(0,0,0) (1Meg,-10,90)

triplets

TABLE

ETABLE, GTABLE

ABM

Pairs (input, output) for nonlinear table

Yes

(-15,-15) (15,15)

pairs

TAU

ZbreakN

BREAKOUT

Ambipolar recombination lifetime

No

7.1e-6

sec

TBUSY

ADCMIC<SIZE>

DATACONV

BUSYbar low time

Yes

8u

sec

TBUSYRC

ADCMIC<SIZE>

DATACONV

TBUSYRC - BUSYbar Delay from R/Cbar low

Yes

83n

sec

TC1

IEXP, VEXP

SOURCE

Rise (fall) time constant

No

TSTEP

sec

TC2

IEXP, VEXP

SOURCE

Fall (rise) time constant

No

TSTEP

sec

TCLOSE

Sw_tClose

ANL_MISC

Time at which switch closes

Yes

0

sec

TD

IPULSE, VPULSE

SOURCE

Delay

No

0

sec

TD

T

ANALOG

Propagation delay

No

none

sec

TD

ISIN, VSIN

SOURCE

Delay

No

0

sec

TD1

IEXP, VEXP

SOURCE

Rise (fall) delay

No

0

sec

TD2

IEXP, VEXP

SOURCE

Fall (rise) delay

No

<td1>+ TSTEP

sec

TF

IPULSE, VPULSE

SOURCE

Fall time

No

TSTEP

sec

THDGMN

DACPAR<SIZE>

DATACONV

Data valid to Write hold time

Yes

10n

sec

THIRD_NPAIRS

IPWL_RE_FOREVER, VPWL_RE_N_TIMES, VPWL_ENH, VPWL_RE_FOREVER, IPWL_ENH, IPWL_RE_N_TIMES

SOURCE

Second line containing PWL data, (time, analog value) pairs. Lines will be concatenated.

No

none

pairs

TIMESTEP

STIM<SIZE>

SOURCE

Number of seconds per clock cycle, or step when using the "C" suffix

No

0

sec

TOL

DELAY

DIG_MISC

Tolerance for delay in percent

Yes

10

%

TOLERANCE

R, L, C

ANALOG

Tolerance (e.g. 5%) for monte carlo/worst case analysis

No

none

none

TOPEN

Sw_tOpen

ANL_MISC

Time at which switch opens

Yes

0

sec

TORQUE_CONST

BLDCMTR

MIX_MISC

Torque constant

Yes

300

g*cm /amp

TPADHMN

ADCPAR<SIZE>

DATACONV

Minimum output delay high

Yes

10n

sec

TPADHTY

ADCPAR<SIZE>

DATACONV

Typical output delay high

Yes

20n

sec

TPADLMN

ADCPAR<SIZE>

DATACONV

Minimum output delay low

Yes

10n

sec

TPADLTY

ADCPAR<SIZE>

DATACONV

Typical output delay low

Yes

20n

sec

TPHZMN

ADCMIC<SIZE>

DATACONV

Minimum bus relinquish time H-Z

Yes

10n

sec

TPHZMX

ADCMIC<SIZE>

DATACONV

Maximum bus relinquish time H-Z

Yes

83n

sec

TPHZTY

ADCMIC<SIZE>

DATACONV

Typical bus relinquish time H-Z

Yes

35n

sec

TPHZTY

ADCPAR<SIZE>

DATACONV

Typical output float delay H-Z

Yes

50n

sec

TPLZMN

ADCMIC<SIZE>

DATACONV

Minimum bus relinquish time L-Z

Yes

10n

sec

TPLZMX

ADCMIC<SIZE>

DATACONV

Maximum bus relinquish time L-Z

Yes

83n

sec

TPLZTY

ADCMIC<SIZE>

DATACONV

Typical bus relinquish time L-Z

Yes

35n

sec

TPLZTY

ADCPAR<SIZE>

DATACONV

Typical output float delay L-Z

Yes

50n

sec

TPZHMN

ADCMIC<SIZE>

DATACONV

Minimum data access time Z-H

Yes

10n

sec

TPZHMX

ADCMIC<SIZE>

DATACONV

Maximum data access time Z-H

Yes

83n

sec

TPZHTY

ADCMIC<SIZE>

DATACONV

Typical data access time Z-H

Yes

35n

sec

TPZHTY

ADCPAR<SIZE>

DATACONV

Typical data access time Z-H

Yes

50n

sec

TPZLMN

ADCMIC<SIZE>

DATACONV

Minimum data access time Z-L

Yes

10n

sec

TPZLMX

ADCMIC<SIZE>

DATACONV

Maximum data access time Z-L

Yes

83n

sec

TPZLTY

ADCMIC<SIZE>

DATACONV

Typical data access time Z-L

Yes

35n

sec

TPZLTY

ADCPAR<SIZE>

DATACONV

Typical data access time Z-L

Yes

50n

sec

TR

IPULSE, VPULSE

SOURCE

Rise time

No

TSTEP

sec

TRAN

ISRC, VSRC

SOURCE

Transient specification - EXP(), PULSE(), PWL(), SFFM() OR SIN()

No

none

none

TRAN

IPRINT, IPLOT, VPLOT1, VPLOT2, VPRINT1, VPRINT2

SPECIAL

Write TRAN analysis results to output file (Y|N)

No

Y

none

TSC0

ADCSER<SIZE>

DATACONV

CONVST/EOC* to CLOCK Skew (typical)

Yes

40n

sec

TSF

IPWL_RE_FOREVER, VPWL_F_RE_FOREVER, VPWL_RE_N_TIMES, IPWL_F_RE_N_TIMES, IPWL_F_RE_FOREVER, VPWL_ENH, VPWL_RE_FOREVER, VPWL_FILE, IPWL_ENH, IPWL_RE_N_TIMES, VPWL_F_RE_N_TIMES

SOURCE

Time scaling factor (multiplies time values)

No

1

none

TSUDGMN

DACPAR<SIZE>

DATACONV

Data valid to Write setup time

Yes

90n

sec

TTRAN

Sw_tClose

ANL_MISC

Transition time for switch to close

Yes

1u

sec

TTRAN

Sw_tOpen

ANL_MISC

Transition time for switch to open

Yes

1u

sec

TURNS

Relay_SPDT_phy

ANL_MISC

Number of turns

Yes

100

none

V_RATIO

3phase

ANL_MISC

1

V1

VPULSE, VEXP

SOURCE

First voltage level

Yes

none

V

V2

VPULSE, VEXP

SOURCE

Second voltage level

Yes

none

V

V1

VPWL

SOURCE

First PWL point (0s, current value)

Yes

none

V

V2

VPWL

SOURCE

Second PWL point (time, current value)

No

none

V

V3

VPWL

SOURCE

Third PWL point (time, current value)

No

none

V

V4

VPWL

SOURCE

Fourth PWL point (time, current value)

No

none

V

V5

VPWL

SOURCE

Fifth PWL point (time, current value)

No

none

V

V6

VPWL

SOURCE

Sixth PWL point (time, current value)

No

none

V

V7

VPWL

SOURCE

Seventh PWL point (time, current value)

No

none

V

V8

VPWL

SOURCE

Eighth PWL point (time, current value)

No

none

V

V9

VPWL

SOURCE

Ninth PWL point (time, current value)

No

none

V

V10

VPWL

SOURCE

Tenth PWL point (time, current value)

No

none

V

VALLEYV

VMLSCCM, VMLSDCM, VMCCMDCM

SWIT_RAV

Valley voltage of external ramp

Yes

1

V

VALUE

IC1, IC2

SPECIAL

.IC value

Yes

0

V

VALUE

NODESET1, NODESET2

SPECIAL

.NODESET value

Yes

0

V

VALUE

R, Rbreak

ANALOG, BREAKOUT

Resistance

Yes

1K

Ohms

VALUE

L, Lbreak

ANALOG, BREAKOUT

Inductance

Yes

1m

H

VALUE

C, Cbreak

ANALOG, BREAKOUT

Capacitance

Yes

1n

F

VAMPL

VSIN

SOURCE

Voltage amplitude of sinusoid (transient analysis only)

Yes

none

V

VAMPL

VSFFM

SOURCE

Voltage amplitude of SFFM (transient analysis only)

Yes

none

V

VAP

VMSSCCM, CMSSCCM

SWIT_RAV

Voltage across terminal A P

Yes

20

V

VCC1

ECL_10K_PWR, ECL_100K_PWR

SPECIAL

First power supply voltage for ECL supply

Yes

0

V

VCC2

ECL_10K_PWR, ECL_100K_PWR

SPECIAL

Second power supply voltage for ECL supply

Yes

0

V

VCOCOEFF

QRLSZCS

SWIT_RAV

Coefficient for voltage to frequency conversion

Yes

20k

none

VEE

ECL_100K_PWR

SPECIAL

VEE

Yes

-4.5

V

VEE

ECL_10K_PWR

SPECIAL

VEE

Yes

-5.2

V

VNOM

BULB

OPTO

Nominal operating voltage

Yes

120

V

VOFF

VSIN, VSFFM

SOURCE

Offset voltage

Yes

none

V

VOFF

Sbreak

BREAKOUT

Voltage lower threshold

Yes

0

V

VOLTAGE

CD4000_PWR, DIGIFPWR

SPECIAL

Digital power supply voltage

Yes

5

V

VON

Sbreak

BREAKOUT

Voltage upper threshold

Yes

1

V

VSF

IPWL_RE_FOREVER, VPWL_F_RE_FOREVER, VPWL_RE_N_TIMES, IPWL_F_RE_N_TIMES, IPWL_F_RE_FOREVER, VPWL_ENH, VPWL_RE_FOREVER, VPWL_FILE, IPWL_ENH, IPWL_RE_N_TIMES, VPWL_F_RE_N_TIMES

SOURCE

Voltage scaling factor (multiplies voltages)

No

1

none

VSINK

DACPAR<SIZE>

DATACONV

Output sink voltage (@ISINK)

Yes

-0.1

V

VSOURCE

DACPAR<SIZE>

DATACONV

Output source voltage (@ISOURCE)

Yes

10

V

VTT

ECL_10K_PWR, ECL_100K_PWR

SPECIAL

VTT, termination voltage

Yes

-2

V

W

MbreakN4, MbreakN, MbreakN3, MbreakP4, MbreakP, MbreakP3, Mbreak P4, MbreakN3

BREAKOUT

Length

No

DEFW

m

WB

ZbreakN

BREAKOUT

Metallurgical base width

No

9.0e-5

m

WHEN

RELEASE<SIZE>, HOLD<SIZE>, CONSTRAINT<SIZE>, SETUP<SIZE>, WIDTH_HI, WIDTH_LO, MINFREQ, MAXFREQ

DIG_MISC

Used to define a boolean expression describing a condition for a constraint checker primitive

No

none

none

WIDTH

WIDTH_HI

DIG_MISC

Minimum width high constraint

Yes

none

sec

WIDTH

WIDTH_LO

DIG_MISC

Minimum width low constraint

Yes

none

sec

WIDTH

STIM1

SOURCE

Number of bits

Yes

1

none

WIDTH

STIM16

SOURCE

Number of bits

Yes

16

none

WIDTH

STIM4

SOURCE

Number of bits

Yes

4

none

WIDTH

STIM8

SOURCE

Number of bits

Yes

8

none

WIDTH_MIN_HI

ADCPAR<SIZE>

DATACONV

Minimum width high

Yes

45n

sec

WIDTH_MIN_LO

ADCPAR<SIZE>

DATACONV

Minimum width low

Yes

45n

sec

WRMINLO

DACPAR<SIZE>

DATACONV

Minimum width low of WR

Yes

90n

sec

XFORM

ELAPLACE, GLAPLACE

ABM

Laplace transform

Yes

1/s

none

Z0

T

ANALOG

Characteristic impedance

Yes

none

Ohms


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