J270 Datasheet PDF - Calogic LLC


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J270
Calogic LLC

Part Number J270
Description P-Channel JFET
Page 2 Pages

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P-Channel JFET
CORPORATION
J270 – J271 / SST270 – SST271
FEATURES
Surface Mount
APPLICATIONS
P-Channel Amplifier
PIN CONFIGURATION
TO-92
DESCRIPTION
The J270/SST270 Series is an all-purpose amplifier for
designs requiring P-channel operation. These devices feature
high gain, low noise and tight VGS(OFF) limits for simple circuit
design. They are available in low-cost SOT-23 and TO-92
packages and are fully compatible with automatic insertion
techniques.
ORDERING INFORMATION
Part Package
J270-271 Plastic TO-92
SST270-271 Plastic SOT-23
Temperature Range
-55oC to +135oC
-55oC to +135oC
SOT-23
DGS
1 DRAIN
2 GATE
3 SOURCE
3
2
1
BOTTOM VIEW
5508
1 GATE
2 SOURCE
3 DRAIN
1
2
3
TOP VIEW
PRODUCT MARKING (SOT-23)
SST270
P20
SST271
P21



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CORPORATION
J270 – J271 / SST270 – SST271
ABSOLUTE MAXIMUM RATINGS (TA = 25oC unless otherwise noted)
PARAMETERS/TEST CONDITIONS
SYMBOL
Gate-Drain Voltage
Gate-Source Voltage
Gate Current
Power Dissipation
Power Derating
Operating Junction Temperature
Storage Temperature
Lead Temperature (1/16" from case for 10 seconds)
VGD
VGS
IG
PD
TJ
Tstg
TL
LIMIT
30
30
-50
350
2.8
-55 to 150
-55 to 150
300
UNIT
V
V
mA
mW
mW/ oC
oC
oC
oC
ELECTRICAL CHARACTERISTICS (TA = 25oC unless otherwise noted)
SYMBOL
PARAMETER
TYP1
270 271
MIN MAX MIN MAX
STATIC
V(BR)GSS
Gate-Source Breakdown Voltage
45 30
30
VGS(OFF)
IDSS
Gate-Source Cutoff Voltage
Saturation Drain Current 2
0.5 2.0 1.5 4.5
-2 -15 -6 -50
IGSS Gate Reverse Current
10 200 200
5
IG Gate Operating Current
10
VGS(F)
Gate-Source Forward Voltage
-0.7
DYNAMIC
gfs
Common-Source Forward
Transconductance
6 15 8 18
gos
Common-Source Output
Conductance
200 500
Ciss Common-Source Input Capacitance
Crss
Common-Source Reverse
Transfer Capacitance
20
4
en Equivalent Input Noise Voltage
20
NOTES: 1. For design aid only, not subject to production testing.
2. Pulse test; PW = 300µs, duty cycle 3%.
UNIT
V
mA
pA
nA
pA
V
mS
µS
pF
nV
√Hz
TEST CONDITIONS
IG = 1µA, VDS = 0V
VDS = -15V, ID = -1nA
VDS = -15V, VGS = 0V
VGS = 20V, VDS = 0V
TA = 125oC
VDG = -15V, ID = -1mA
IG = -1mA, VDS = 0V
VDS = -15V, VGS = 0V
f = 1kHz
VDS = -15V, VGS = 0V
f = 1MHz
VDS = -10V, VGS = 0V
f = 1kHz




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