FDI3632 Fairchild Semiconductor, FDI3632 Datasheet - Page 9

MOSFET N-CH 100V 80A TO-262AB

FDI3632

Manufacturer Part Number
FDI3632
Description
MOSFET N-CH 100V 80A TO-262AB
Manufacturer
Fairchild Semiconductor
Series
PowerTrench®r
Datasheet

Specifications of FDI3632

Fet Type
MOSFET N-Channel, Metal Oxide
Fet Feature
Standard
Rds On (max) @ Id, Vgs
9 mOhm @ 80A, 10V
Drain To Source Voltage (vdss)
100V
Current - Continuous Drain (id) @ 25° C
80A
Vgs(th) (max) @ Id
4V @ 250µA
Gate Charge (qg) @ Vgs
110nC @ 10V
Input Capacitance (ciss) @ Vds
6000pF @ 25V
Power - Max
310W
Mounting Type
Through Hole
Package / Case
I²Pak, TO-262 (3 straight leads + tab)
Configuration
Single
Transistor Polarity
N-Channel
Resistance Drain-source Rds (on)
7.5 m Ohms
Drain-source Breakdown Voltage
100 V
Gate-source Breakdown Voltage
+/- 20 V
Continuous Drain Current
80 A
Power Dissipation
310 W
Maximum Operating Temperature
+ 175 C
Mounting Style
Through Hole
Minimum Operating Temperature
- 55 C
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
FDI3632
Manufacturer:
FAIRCHILD
Quantity:
12 500
©2008 Fairchild Semiconductor Corporation
SABER Electrical Model
REV May 2002
template FDB3632 n2,n1,n3
electrical n2,n1,n3
{
var i iscl
dp..model dbodymod = (isl=5.9e-11,nl=1.07,rs=2.3e-3,trs1=3.0e-3,trs2=1.0e-6,cjo=4e-9,m=0.58,tt=4.8e-8,xti=4.2)
dp..model dbreakmod = (rs=0.17,trs1=3.0e-3,trs2=-8.9e-6)
dp..model dplcapmod = (cjo=15e-10,isl=10.0e-30,nl=10,m=0.6)
m..model mstrongmod = (type=_n,vto=4.1,kp=200,is=1e-30, tox=1)
m..model mmedmod = (type=_n,vto=3.4,kp=10.0,is=1e-30, tox=1)
m..model mweakmod = (type=_n,vto=2.75,kp=0.05,is=1e-30, tox=1,rs=0.1)
sw_vcsp..model s1amod = (ron=1e-5,roff=0.1,von=-4,voff=-2)
sw_vcsp..model s1bmod = (ron=1e-5,roff=0.1,von=-2,voff=-4)
sw_vcsp..model s2amod = (ron=1e-5,roff=0.1,von=-0.8,voff=0.4)
sw_vcsp..model s2bmod = (ron=1e-5,roff=0.1,von=0.4,voff=-0.8)
c.ca n12 n8 = 1.7e-9
c.cb n15 n14 = 2.5e-9
c.cin n6 n8 = 6.0e-9
dp.dbody n7 n5 = model=dbodymod
dp.dbreak n5 n11 = model=dbreakmod
dp.dplcap n10 n5 = model=dplcapmod
spe.ebreak n11 n7 n17 n18 = 102.5
spe.eds n14 n8 n5 n8 = 1
spe.egs n13 n8 n6 n8 = 1
spe.esg n6 n10 n6 n8 = 1
spe.evthres n6 n21 n19 n8 = 1
spe.evtemp n20 n6 n18 n22 = 1
i.it n8 n17 = 1
l.lgate n1 n9 = 5.61e-9
l.ldrain n2 n5 = 1.0e-9
l.lsource n3 n7 = 2.7e-9
res.rlgate n1 n9 = 56.1
res.rldrain n2 n5 = 10
res.rlsource n3 n7 = 27
m.mmed n16 n6 n8 n8 = model=mmedmod, l=1u, w=1u
m.mstrong n16 n6 n8 n8 = model=mstrongmod, l=1u, w=1u
m.mweak n16 n21 n8 n8 = model=mweakmod, l=1u, w=1u
res.rbreak n17 n18 = 1, tc1=1.0e-3,tc2=-1.7e-6
res.rdrain n50 n16 = 3.8e-3, tc1=8.5e-3,tc2=2.8e-5
res.rgate n9 n20 = 1.1
res.rslc1 n5 n51 = 1.0e-6, tc1=2.0e-3,tc2=2.0e-6
res.rslc2 n5 n50 = 1.0e3
res.rsource n8 n7 = 2.5e-3, tc1=4e-3,tc2=1e-6
res.rvthres n22 n8 = 1, tc1=-4.0e-3,tc2=-1.8e-5
res.rvtemp n18 n19 = 1, tc1=-4.4e-3,tc2=2.2e-6
sw_vcsp.s1a n6 n12 n13 n8 = model=s1amod
sw_vcsp.s1b n13 n12 n13 n8 = model=s1bmod
sw_vcsp.s2a n6 n15 n14 n13 = model=s2amod
sw_vcsp.s2b n13 n15 n14 n13 = model=s2bmod
v.vbat n22 n19 = dc=1
equations {
i (n51->n50) +=iscl
iscl: v(n51,n50) = ((v(n5,n51)/(1e-9+abs(v(n5,n51))))*((abs(v(n5,n51)*1e6/350))** 3))
}
}
GATE
1
RLGATE
LGATE
9
RGATE
CA
12
20
EVTEMP
+
S1A
S1B
ESG
18
22
EGS
13
8
+
-
-
13
6
8
10
+
+
-
-
14
13
6
8
RSLC2
6
S2A
S2B
DPLCAP
EVTHRES
+
EDS
19
8
15
CB
CIN
-
+
-
5
8
5
MSTRO
14
51
21
RDRAIN
RSLC1
50
ISCL
16
8
MMED
8
RSOURCE
IT
DBREAK
MWEAK
17
EBREAK
FDB3632 / FDP3632 / FDI3632 / FDH3632 Rev. C2
RVTHRES
RBREAK
11
+
-
17
18
7
+
18
-
22
RVTEMP
19
RLSOURCE
LSOURCE
VBAT
RLDRAIN
DBODY
LDRAIN
SOURCE
DRAIN
2
3

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