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  Datasheet File OCR Text:
 F-32
01/99
NJ132 Process
Silicon Junction Field-Effect Transistor
High Speed Switch Low-Noise Amplifier
Absolute maximum ratings at TA = 25C
Gate Current, Ig Operating Junction Temperature, Tj Storage Temperature, Ts 10 mA +150C - 65C to +175C
G S-D S-D G
Die Size = 0.022" X 0.022" All Bond Pads = 0.004" Sq. Substrate is also Gate.
Devices in this Databook based on the NJ132 Process. Datasheet
2N4391, 2N4392 2N4393 2N4856, 2N4857 2N4858, 2N4859 2N4860, 2N4861 2N4856A, 2N4857A 2N4858A, 2N4859A
Datasheet
2SK113 IFN113 2N4860A, 2N4861A J111, J112 J113
At 25C free air temperature: Static Electrical Characteristics Gate Source Breakdown Voltage Reverse Gate Leakage Current Drain Saturation Current (Pulsed) Gate Source Cutoff Voltage Dynamic Electrical Characteristics Drain Source ON Resistance Input Capacitance Feedback Capacitance Turn On Delay Time Rise Time Turn Off Delay Time rds(on) Ciss Ciss td(on) tr td(off) 25 12 2.5 6 5 50 pF pF ns ns ns V(BR)GSS IGSS IDSS VGS(OFF) 10 - 0.5 Min - 30 Typ - 45 - 10 - 100 150 -7 Max Unit V pA mA V
NJ132 Process Test Conditions IG = - 1 A, VDS = OV VGS = - 20V, VDS = OV VDS = 20V, VGS = OV VDS = 20V, ID = 1 nA
ID = 1 mA, VGSS = OV VDS = 20V, VGS = OV VDS = OV, VGS = - 10V VDD = - 10V, ID = 10 mA RL = 10V, VGS(ON) = OV VGS(OFF) = - 6V
f = 1 kHz f = 1 MHz f = 1 MHz
1000 N. Shiloh Road, Garland, TX 75042 (972) 487-1287 FAX (972) 276-3375
www.interfet.com
01/99
F-33
NJ132 Process
Silicon Junction Field-Effect Transistor
Drain Current as a Function of VDS
VGS(OFF) = 4.5 V
Gfs as a Function of VGS(OFF) 40 Transconductance in mS
100 VGS = O V Drain Current in mA 80 VGS = -1 V 60 VGS = -2 V 40 VGS = -3 V 20 VGS = -4 V 0 5 10 15 20
30
20
10
0
-2
-4
-6
-8
Drain to Source Voltage in Volts
Gate Source Cutoff Voltage in Volts
Drain Saturation Current as a Function of VGS(OFF) Drain Saturation Current in mA 150 Drain Source Resistance in 60 50 40 30 20 10 0 -1 -2 -3 -4 -5 -6 -7 0 20
IDSS as a Function of RDS
100
50
40
60
80
100
120
140
Drain Source Cutoff Voltage in Volts
Drain Saturation Current in mA
Input Capacitance as a Function of VGS 20 Input Capacitance in pF 16 12 8 4 VDS = O V VDS = 15 V Feedback Capacitance in pF 20 16 12 8
Feedback Capacitance as a Function of VGS
VDS = O V 4
0
-4
-8
- 12
- 16
- 20
0
-4
-8
- 12
- 16
- 20
Gate Source Voltage in Volts
Gate Source Voltage in Volts


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