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CPC3902 Datasheet, PDF (2/6 Pages) IXYS Corporation – Depletion-Mode FET
INTEGRATED CIRCUITS DIVISION
Absolute Maximum Ratings @ 25ºC
Parameter
Ratings Units
Drain-to-Source Voltage
250
V
Gate-to-Source Voltage
±15
V
Pulsed Drain Current
Total Package Dissipation 1
400
mA
1.8
W
Operational Temperature
-55 to +110 ºC
Junction Temperature, Maximum
+125
ºC
Storage Temperature
-55 to +125 ºC
1 Mounted on 1"x1" 2 oz. Copper FR4 board.
CPC3902
Absolute Maximum Ratings are stress ratings. Stresses in
excess of these ratings can cause permanent damage to the
device. Functional operation of the device at conditions beyond
those indicated in the operational sections of this data sheet is
not implied.
Typical values are characteristic of the device at +25°C, and
are the result of engineering evaluations. They are provided for
information purposes only, and are not part of the manufacturing
testing requirements.
Thermal Characteristics
Device
Parameter
CPC3902C (SOT-89) Junction to Case
Junction to Ambient
CPC3902Z (SOT-223) Junction to Case
Junction to Ambient
Symbol
JC
JA
JC
JA
Rating
50
90
14
55
Units
ºC/W
Electrical Characteristics @ 25ºC (Unless Otherwise Noted)
Parameter
Drain-to-Source Breakdown Voltage
Gate-to-Source Off Voltage
Change in VGS(off) with Temperature
Gate Body Leakage Current
Drain-to-Source Leakage Current
Saturated Drain-to-Source Current
Static Drain-to-Source On-State Resistance
Change in RDS(on) with Temperature
Forward Transconductance
Input Capacitance
Common Source Output Capacitance
Reverse Transfer Capacitance
Source-Drain Diode Voltage Drop
Symbol
BVDSX
VGS(off)
dVGS(off) /dT
IGSS
ID(off)
IDSS
RDS(on)
dRDS(on) /dT
Gfs
CISS
COSS
CRSS
VSD
Conditions
VGS= -5.5V, ID=100µA
VDS= 15V, ID=1A
VDS= 15V, ID=1A
VGS=±15V, VDS=0V
VGS= -5.5V, VDS=250V
VGS= 0V, VDS=15V
VGS= 0V, ID=300mA, VDS=10V
ID= 200mA, VDS = 10V
VGS= -3.5V
VDS= 20V
f= 1MHz
VGS= -5V, ISD=150mA
Min Typ Max Units
250
-
-
V
-1.4
-
-3.1
V
-
-
4.5 mV/ºC
-
- 100 nA
-
-
1
µA
400
-
-
mA
-
-
2.5 
-
-
2.5 %/ºC
400
-
-
m
230
-
16
-
pF
9.5
- 0.72 1
V
2
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