SGS Thomson Microelectronics STD2NA60 Datasheet

STD2NA60
N - CHANNEL ENHANCEMENT MODE
POWER MOS TRANSISTOR
TYPE V
DSS
R
DS(on)
I
D
STD 2NA60 600 V < 4 2.3 A
TYPICAL R
AVALANCHE RUGGED TECHNOLOGY
100% AVALANCHE TESTED
APPLICATION ORIENTED
DS(on)
= 3.3
o
C
CHARACTERIZATION
THROUGH-HOLE IPAK (TO-251) POWER
PACKAGE IN TUBE (SUFFIX ”-1”)
SURFACE-MOUNTINGDPAK (TO-252)
POWER PACKAGE IN TAPE & REEL (SUFFIX ”T4”)
APPLICATIONS
HIGH SPEED SWITCHING
UNINTERRUPTIBLE POWER SUPPLY (UPS)
MOTOR CONTROL, AUDIO AMPLIFIERS
INDUSTRIALACTUATORS
DC-DC & DC-AC CONVERTERS FOR
TELECOM, INDUSTRIAL AND CONSUMER ENVIRONMENT
PARTICULARLY SUITABLE FOR
ELECTRONIC FLUORESCENT LAMP BALLASTS
3
2
1
IPAK
TO-251
(Suffix ”-1”)
INTERNAL SCHEMATIC DIAGRAM
1
DPAK
TO-252
(Suffix ”T4”)
3
ABSOLUTE MAXIMUM RATINGS
Symb o l Paramet er Val u e Unit
V
V
V
I
DM
P
T
() Pulsewidth limited bysafe operating area
November 1996
Drain - s ource Voltage (VGS= 0) 600 V
DS
Drain- gate Voltage (RGS=20kΩ) 600 V
DGR
Gate-source Voltage ± 30 V
GS
Drain Current (continuous) at Tc=25oC2.3A
I
D
Drain Current (continuous) at Tc=100oC1.45A
I
D
(•) Drain Current (pulsed) 9.2 A
Total Di ssipation a t Tc=25oC50W
tot
Derat ing Factor 0.4 W/ St or a ge Tem perature -65 t o 150
stg
Max. Operating Jun ction T emperature 150
T
j
o o
o
C C C
1/10
STD2NA60
THERMAL DATA
R
thj-case
R
thj-amb
R
thj-amb
T
AVALANCHE CHARACTERISTICS
Symbol Parameter Max Valu e Uni t
I
AR
E
E
I
AR
Thermal Resistance Junction - cas e Max Thermal Resistance Junction- ambient Max Thermal Resistance Case-sink Typ Maximum L ead Temperat ur e For Soldering Purpos e
l
Avalanc h e Cu rr ent , Repet itive or Not-Rep etitive (pulse width limited by Tjmax, δ <1%)
Single Pul se Avalanche Ener gy
AS
(starti ng Tj=25oC, ID=IAR,VDD=50V) Repetitive Avalanc he Energ y
AR
(pulse width limited by Tjmax, δ <1%) Avalanc h e Cu rr ent , Repet itive or Not-Rep etitive
(Tc= 100oC, pulse width l imited by Tjmax, δ <1%)
2.5
100
1.5
275
2.3 A
26 mJ
1mJ
1.4 A
o
C/W
o
C/W
o
C/W
o
C
ELECTRICAL CHARACTERISTICS (T
=25oC unless otherwisespecified)
case
OFF
Symbol Parameter Test Conditions Min. Typ. Max. Unit
V
(BR)DSS
Drain - s ource
ID=250µAVGS= 0 600 V
Break d own Volta ge
I
DSS
I
GSS
Zer o G at e V oltage Drain Current (V
GS
Gat e- body Leakage
=0)
=MaxRating
V
DS
V
= Max Rating x 0.8 Tc=125oC
DS
25
250
VGS= ± 30 V ± 100 nA
Current (VDS=0)
ON (∗)
Symbol Parameter Test Conditions Min. Typ. Max. Unit
V
GS(th)
R
DS(on)
Gate Threshold Voltage VDS=VGSID=250µA 2.25 3 3.75 V St at ic Drain-s our ce O n
VGS=10V ID= 1.5 A 3.3 4
Resistance
I
D(on)
On State Drain Current VDS>I
D(on)xRDS(on)max
2.3 A
VGS=10V
DYNAMIC
Symbol Parameter Test Conditions Min. Typ. Max. Unit
()Forward
g
fs
Tr ansconductance
C C C
Input Capacitance
iss
Out put Capacitance
oss
Reverse Transfer
rss
Capacitance
VDS>I
D(on)xRDS(on)maxID
=1.5A 1 2 S
VDS=25V f=1MHz VGS=0 380
57 17
500
75 23
µA µA
pF pF pF
2/10
STD2NA60
ELECTRICAL CHARACTERISTICS (continued)
SWITCHING ON
Symbol Parameter Test Conditions Min. Typ. Max. Unit
t
d(on)
(di/dt)
Q Q Q
Turn-on T ime
t
Rise Time
r
Turn-on Current S lope VDD=400V ID=3A
on
Total Gate Charge
g
Gat e- Source Charge
gs
Gate-Drain Charge
gd
SWITCHING OFF
Symbol Parameter Test Conditions Min. Typ. Max. Unit
t
r(Voff)
t
Off -voltage Rise Time
t
Fall Time
f
Cross-over Time
c
SOURCE DRAINDIODE
VDD=300V ID=1.5A RG=18 Ω VGS=10V
14 25
(see test circuit, figure 3)
300 A/µs RG=18 Ω VGS=10V (see test circuit, figure 5)
VDD= 480 V ID=3A VGS=10V 22
6 9
VDD=480V ID=3A RG=18 Ω VGS=10V (see test circuit, figure 5)
13 24 12
20 35
30 nC
18 34 17
ns ns
nC nC
ns ns ns
Symbol Parameter Test Conditions Min. Typ. Max. Unit
I
I
SDM
SD
Source-drain C urrent
()
Source-drain C urrent
2.3
9.2
(pulsed)
V
(∗) Forward On Voltage ISD=2.3A VGS=0 1.5 V
SD
t
Reverse Recovery
rr
Time
Q
Reverse Recovery
rr
ISD=3A di/dt=100A/µs VDD= 100 V Tj=150oC (see test circuit, figure 5)
460
5.6
Charge
I
RRM
Reverse Recovery
24
Current
() Pulsed:Pulse duration = 300 µs, dutycycle 1.5 % () Pulse widthlimited by safeoperating area
Safe Operating Area Thermal Impedance
A A
ns
µC
A
3/10
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