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 S T U/D2455P LS
S amHop Microelectronics C orp.
Dec 30, 2005
P -C hannel E nhancement Mode Field E ffect Transistor
P R ODUC T S UMMAR Y
V DS S
-55V
F E AT UR E S
( m W ) Max
ID
-24
R DS (ON)
S uper high dense cell design for low R DS (ON).
42 @ V G S = -10V 55 @ V G S = -4.5V
R ugged and reliable. TO-252 and TO-251 P ackage.
D
D G S
G D
S
G
S TU S E R IE S TO-252AA(D-P AK)
S TD S E R IE S TO-251(l-P AK)
S
ABS OLUTE MAXIMUM R ATINGS (TA=25 C unless otherwise noted)
P arameter Drain-S ource Voltage R ating Drain-S ource Voltage Gate-S ource Voltage Drain C urrent-C ontinuous @ Tc=25 C a -P ulsed Drain-S ource Diode Forward C urrent Maximum P ower Dissipation @ Tc=25 C Operating Junction and S torage Temperature R ange S ymbol Vspike c VDS VGS ID IDM IS PD TJ, TS TG Limit -60 -55 20 -24 -72 -20 50 -55 to 175 Unit V V V A A A W C
THE R MAL C HAR AC TE R IS TIC S
Thermal R esistance, Junction-to-C ase Thermal R esistance, Junction-to-Ambient
1
R JC R JA
3 50
C /W C /W
S T U/D2455P LS
E LE CTR ICAL CHAR ACTE R IS TICS (TC=25 C unless otherwise noted)
Parameter
5
S ymbol
BVDSS IDSS IGSS VGS(th) R DS (ON) ID(ON) gFS CISS COSS CRSS Rg
b
Condition
VGS = 0V, ID = -250uA VDS = -44V, VGS = 0V VGS = 20V, VDS = 0V VDS = VGS, ID = -250uA VGS = -10V, ID = -10A VGS =-4.5V, ID = - 6A VDS = -10V, VGS = -10V VDS = -10V, ID= -10A
Min Typ C Max Unit
-55 -1 V uA 100 nA -1 -1.7 33 42 -24 16 1730 185 125 1.7 21 25 127 35 31 13.5 3.5 7 -3 42 55 V
m ohm m ohm
OFF CHAR ACTE R IS TICS
Drain-S ource Breakdown Voltage Zero Gate Voltage Drain Current Gate-Body Leakage
ON CHAR ACTE R IS TICS a
Gate Threshold Voltage Drain-S ource On-S tate R esistance On-S tate Drain Current Forward Transconductance
A S
PF PF PF
DYNAMIC CHAR ACTE R IS TICS b
Input Capacitance Output Capacitance R everse Transfer Capacitance Gate resistance VDS =-30V, VGS = 0V f =1.0MHZ VGS =0V, VDS = 0V, f=1.0MHZ VDD = -30V ID = -1 A VGS = -10V R GE N = 6 ohm VDS =-30V, ID = -10A VGS =-10V
ohm
S WITCHING CHAR ACTE R IS TICS
Turn-On Delay Time R ise Time Turn-Off Delay Time Fall Time Total Gate Charge (10V) Total Gate Charge (4.5V) Gate-S ource Charge Gate-Drain Charge
tD(ON) tr tD(OFF) tf Qg Qgs Qgd
ns ns ns ns nC nC nC nC
2
S T U/D2455P LS
E LE CTR ICAL CHAR ACTE R IS TICS (TC=25 C unless otherwise noted)
Parameter
Diode Forward Voltage
S ymbol
VSD
Condition
VGS = 0V, Is = -10A
Min Typ Max Unit
-0.92 -1.3 V
DR AIN-S OUR CE DIODE CHAR ACTE R IS TICS a
Notes a.Pulse Test:Pulse Width 300us, Duty Cycle 2%. b.Guaranteed by design, not subject to production testing. c.Guaranteed when external R g=6 ohm and tf < tf max
25
V G S =-10V
V G S =-4V
V G S =-4.5V
20
-ID, Drain C urrent(A)
20
15
V G S =-8V
-ID, Drain C urrent (A)
V G S =-3.5V
15
10 T j=125 C 5
10 V G S =-3V 5 0
25 C
-55 C
0
0 0.5 1 1.5 2 2.5 3
0
0.7
1.4
2.1
2.8
3.5
4.2
-V DS , Drain-to-S ource Voltage (V )
-V G S , G ate-to-S ource Voltage (V )
F igure 1. Output C haracteris tics
60 2.0
F igure 2. Trans fer C haracteris tics
R DS (ON), On-R es is tance Normalized
50
V G S =-4.5V
1.8 1.6 1.4 1.2 1.0 0.0
V G S =-4.5V ID=-6A V G S =-10V ID=-10A
R DS (on) (m W)
40 30 20 10 0 V G S =-10V
0
5
10
15
20
25
0
25
50
75
100
125
150
T j( C )
-ID, Drain C urrent (A)
T j, J unction T emperature ( C )
F igure 3. On-R es is tance vs . Drain C urrent and G ate V oltage
F igure 4. On-R es is tance Variation with Drain C urrent and Temperature
3
S T U/D2455P LS
B V DS S , Normalized Drain-S ource B reakdown V oltage V th, Normalized G ate-S ource T hres hold V oltage
1.3 1.2 1.1 1.0 0.9 0.8 0.7 0.6 -50 -25 0 25 50 75 100 125 150 V DS =V G S ID=-250uA 1.15 1.10 1.05 1.00 0.95 0.90 0.85 -50 -25 0 25 50 75 100 125 150 ID=-250uA
6
T j, J unction T emperature ( C )
T j, J unction T emperature ( C )
F igure 5. G ate T hres hold V ariation with T emperature
120
F igure 6. B reakdown V oltage V ariation with T emperature
20.0
ID=-10A
-Is , S ource-drain current (A)
100
10.0
25 C
R DS (on) (m W)
80 125 C 60 40 20 0 25 C 75 C
125 C
75 C
1.0
0 2 4 6 8 10
0.4
0.6
0.8
1.0
1.2
1.4
-V G S , G ate- S ource Voltage (V )
-V S D, B ody Diode F orward V oltage (V )
F igure 7. On-R es is tance vs . G ate-S ource V oltage
F igure 8. B ody Diode F orward V oltage V ariation with S ource C urrent
4
S T U/D2455P LS
-V G S , G ate to S ource V oltage (V )
3000 2500
10 8 6 4 2 0 VDS =-15V ID=-10A
C , C apacitance (pF )
2000 C is s 1500 1000 500 0 C rs s 0 5 10 15 20 25 30 C os s
6
0
4
8
12
16
20
24
28 32
-V DS , Drain-to S ource Voltage (V )
Qg, T otal G ate C harge (nC )
F igure 9. C apacitance
F igure 10. G ate C harge
80
-ID, Drain C urrent (A)
)L
T D(off)
220
S witching T ime (ns )
Tf Tr T D(on)
(O N
50
im i
10
10 0m
t
ms
100 60 10
RD
s
S
10
DC
1s
1 1
V DS =-15V ,ID=-1A V G S =-10V
1 0.03
VGS =-10V S ingle P ulse T c=25 C 0.1 1 10 60
6 10
60 100 300 600
R g, G ate R es is tance (W)
-V DS , Drain-S ource V oltage (V )
F igure 11.s witching characteris tics
F igure 10. Maximum S afe O perating Area
5
S T U/D2455P LS
V DD ton V IN D VG S R GE N G
90%
toff tr
90%
RL V OUT
td(on) V OUT
td(off)
90% 10%
tf
10%
INVE R TE D
6
S
V IN
50% 10%
50%
P ULS E WIDTH
F igure 11. S witching T es t C ircuit
F igure 12. S witching Waveforms
2
r(t),Normalized E ffective T ransient T hermal Impedance
1 D=0.5
0.2 0.1 0.1 0.05 0.02 0.01 S ING LE P ULS E 0.01 10
-5 -4 -3 -2 -1
P DM t1 1. 2. 3. 4. 10 10 10 t2
R cJ A (t)=r (t) * R cJ A R cJ A=S ee Datas heet T J M-T A = P DM* R cJ A (t) Duty C ycle, D=t1/t2 1 10
10
S quare Wave P uls e Duration (s ec)
F igure 13. Normalized T hermal T rans ient Impedance C urve
6
S T U/D2455P LS
7
S T U/D2455P LS
5 95 7 84 9 6.00
35 05 85 0.94 4 3 0
9 7 30 3 9 36
3 41 3 3 5 1
4
L2
2.29 9.70 1.425 0.650 0.600
BSC 1 1.625 0.850 REF.
0.090 82 56 6 0.024
BSC 398 0.064 33 REF.
8
S T U/D2455P LS
TO-251 Tube
TO251 Tube/TO-252 Tape and Reel Data
" A"
TO-252 Carrier Tape
UNIT:P PACKAGE TO-252 (16 P) A0 6.80 O0.1 B0 10.3 O0.1 K0 2.50 O0.1 D0 r2 D1
r1.5 + 0.1 -0
E 16.0 0.3O
E1 1.75 0.1O
E2 7.5 O0.15
P0 8.0 O0.1
P1 4.0 O0.1
P2 2.0 O0.15
T 0.3 O0.05
TO-252 Reel
S
UNIT:P TAPE SIZE 16 P REEL SIZE r 330 M r330 O 0.5 N r97 O 1.0 W
17.0 + 1.5 -0
T 2.2
H
r13.0 + 0.5 - 0.2
K 10.6
S 2.0 O0.5
G
R
V
9


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