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NIKO-SEM
N- & P-Channel Enhancement Mode Field Effect Transistor
P3503QVG
SOP-8 Lead-Free
PRODUCT SUMMARY V(BR)DSS N-Channel P-Channel 30 -30 RDS(ON) 25m 35m ID 7A -6A G : GATE D : DRAIN S : SOURCE
ABSOLUTE MAXIMUM RATINGS (TC = 25 C Unless Otherwise Noted) PARAMETERS/TEST CONDITIONS Drain-Source Voltage Gate-Source Voltage Continuous Drain Current Pulsed Drain Current Power Dissipation Junction & Storage Temperature Range
1
SYMBOL VDS VGS
N-Channel P-Channel 30 20 7 6 20 2 1.3 -55 to 150 -30 20 -6 -5 -20
UNITS V V
TC = 25 C TC = 70 C
ID IDM
A
TC = 25 C TC = 70 C
PD Tj, Tstg
W C
THERMAL RESISTANCE RATINGS THERMAL RESISTANCE Junction-to-Ambient
1 2
SYMBOL RJA
TYPICAL 48
MAXIMUM 62.5
UNITS C / W
Pulse width limited by maximum junction temperature. Duty cycle 1%
ELECTRICAL CHARACTERISTICS (TC = 25 C, Unless Otherwise Noted) LIMITS PARAMETER SYMBOL TEST CONDITIONS STATIC Drain-Source Breakdown Voltage V(BR)DSS VGS = 0V, ID = 250A VGS = 0V, ID = -250A Gate Threshold Voltage VGS(th) VDS = VGS, ID = 250A VDS = VGS, ID = -250A Gate-Body Leakage IGSS VDS = 0V, VGS = 20V VDS = 0V, VGS = 20V N-Ch P-Ch N-Ch P-Ch N-Ch P-Ch 30 -30 1 -1 1.5 -1.5 2.5 -2.5 100 100 nA V MIN TYP MAX UNIT
1
OCT-08-2004
NIKO-SEM
N- & P-Channel Enhancement Mode Field Effect Transistor
VDS = 24V, VGS = 0V VDS = -24V, VGS = 0V
P3503QVG
SOP-8 Lead-Free
1 -1 10 -10 20 -20 25 44 18 28 19 10 37 60 25 35 S m A A
N-Ch P-Ch
Zero Gate Voltage Drain Current
IDSS
VDS = 20V, VGS = 0V, TJ = 55 C N-Ch VDS = -20V, VGS = 0V, TJ = 55 C P-Ch
On-State Drain Current1
ID(ON)
VDS = 5V, VGS = 10V VDS =-5V, VGS = -10V VGS = 4.5V, ID = 6A
N-Ch P-Ch N-Ch P-Ch N-Ch P-Ch N-Ch P-Ch
Drain-Source Resistance1
On-State
VGS = -4.5V, ID = -5A RDS(ON) VGS = 10V, ID = 7A VGS = -10V, ID = -6A
Forward Transconductance1
gfs
VDS = 5V, ID = 7A VDS = -5V, ID = -5A
DYNAMIC
Input Capacitance
Ciss
N-Ch N-Channel VGS = 0V, VDS = 10V, f = 1MHz P-Channel P-Ch N-Ch P-Ch
790 970 175 370 65 180 16 28 2.5 6 2.1 12 2.2 20 7.5 17 11.8 160 3.7 75
988 1213 245 520 98 270 pF
Output Capacitance
Coss
Reverse Transfer Capacitance Total Gate Charge2 Gate-Source Charge2 Gate-Drain Charge2 Turn-On Delay Time2 Rise Time2 Turn-Off Delay Time2 Fall Time2
Crss
VGS = 0V, VDS = -10V, f = 1MHz N-Ch P-Ch N-Channel VDS = 0.5V(BR)DSS, VGS = 10V, ID = 6A P-Channel VDS = 0.5V(BR)DSS, VGS = -10V, ID = -5A N-Channel VDD = 10V N-Ch P-Ch N-Ch P-Ch N-Ch P-Ch N-Ch P-Ch N-Ch P-Ch N-Ch P-Ch VDD = -15V N-Ch P-Ch ID -1A, VGS = -10V, RGEN = 6 ID 1A, VGS = 10V, RGEN = 6 P-Channel
Qg
Qgs
nC
Qgd
td(on)
4.4
tr
15
td(off)
21.3
nS
tf
7.4
2
OCT-08-2004
NIKO-SEM
N- & P-Channel Enhancement Mode Field Effect Transistor
P3503QVG
SOP-8 Lead-Free
SOURCE-DRAIN DIODE RATINGS AND CHARACTERISTICS (TC = 25 C) Continuous Current IS N-Ch P-Ch N-Ch P-Ch IF = 1A, VGS = 0V VSD IF = -1A, VGS = 0V Pulse test : Pulse Width 300 sec, Duty Cycle 2%. Independent of operating temperature. 3 Pulse width limited by maximum junction temperature.
1 2
1.3 -1.3 2.6 -2.6 1 -1 A
Pulsed Current3
ISM
Forward Voltage1
N-Ch P-Ch
V
REMARK: THE PRODUCT MARKED WITH "P3503QVG", DATE CODE or LOT # Orders for parts with Lead-Free plating can be placed using the PXXXXXXG parts name.
3
OCT-08-2004
NIKO-SEM
N- & P-Channel Enhancement Mode Field Effect Transistor
P3503QVG
SOP-8 Lead-Free
TYPICAL PERFORMANCE CHARACTERISTICS N-CHANNEL
Body Diode Forward Voltage Variation with Source Current and Temperature
100 V GS = 0V 10 Is - Reverse Drain Current(A) T A = 125 C
1
25 C
0.1
-55 C
0.01
0.001 0 0.4 0.2 0.6 0.8 1.0 VSD - Body Diode Forward Voltage(V) 1.2 1.4
4
OCT-08-2004
NIKO-SEM
N- & P-Channel Enhancement Mode Field Effect Transistor
P3503QVG
SOP-8 Lead-Free
5
OCT-08-2004
NIKO-SEM
N- & P-Channel Enhancement Mode Field Effect Transistor
P3503QVG
SOP-8 Lead-Free
P-CHANNEL
6
OCT-08-2004
NIKO-SEM
N- & P-Channel Enhancement Mode Field Effect Transistor
P3503QVG
SOP-8 Lead-Free
7
OCT-08-2004
NIKO-SEM
N- & P-Channel Enhancement Mode Field Effect Transistor
P3503QVG
SOP-8 Lead-Free
SOIC-8(D) MECHANICAL DATA
mm Dimension Min.
A B C D E F G 1.35 0.1 4.8 3.8 5.8 0.38
mm Dimension Max.
5.0 4.0 6.2 0.51 H I J K L 1.75 0.25 M N 0
Typ.
4.9 3.9 6.0 0.445 1.27 1.55 0.175
Min.
0.5 0.18
Typ.
0.715 0.254 0.22 4
Max.
0.83 0.25
8
J
F D E G I H K
B
C
A
8
OCT-08-2004


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