PMBF4391
PMBF4391 is N-channel FETs manufactured by Philips Semiconductors.
DESCRIPTION
Symmetrical silicon n-channel depletion type junction field-effect transistors on a plastic microminiature envelope intended for application in thick and thin-film circuits. The transistors are intended for low-power chopper or switching applications in industry. PINNING 1 2 3 = drain = source = gate
PMBF4391; PMBF4392; PMBF4393 handbook, halfpage
3 d s g
1 Top view
MAM385
Note 1. Drain and source are interchangeable. Marking code PMBF4391 = p6J PMBF4392 = p6K PMBF4393 = p6G Fig.1 Simplified outline and symbol, SOT23.
QUICK REFERENCE DATA PMBF4391 Drain-source voltage Drain current VDS = 20 V; VGS = 0 Gate-source cut-off voltage VDS = 20 V; ID = 1 n A Drain-source resistance (on) at f = 1 k Hz ID = 0; VGS = 0 Feedback capacitance at f = 1 MHz
- VGS = 12 V; VDS = 0 Turn-off time VDD = 10 V; VGS = 0 ID = 12 m A;
- VGSM = 12 V ID = 6 m A;
- VGSM = 7 V ID = 3 m A;
- VGSM = 5 V toff toff toff < < < 20
- -
- 35
- -
- 50 ns ns ns Crs < 3.5 3.5 3.5 p F Rds on < 30 60 100 Ω
- V(P)GS > < 4 10 2 5 0.5 3 V V IDSS > 50 25 5 m A ± VDS max. 40 PMBF4392 40 PMBF4393 40 V
April 1995
Philips Semiconductors
Product specification
N-channel FETs
RATINGS Limiting values in accordance with the Absolute Maximum System (IEC 134) Drain-source voltage Drain-gate voltage Gate-source voltage Gate current (DC) Total power dissipation up to Tamb = 40 °C Storage temperature range Junction temperature THERMAL RESISTANCE From junction to ambient(1) CHARACTERISTICS Tj = 25 °C unless otherwise specified Gate-source voltage IG = 1 m A; VDS = 0 Gate-source cut-off current VDS = 0 V;
- VGS = 20 V VDS = 0 V;
- VGS = 20 V; Tamb = 150 °C Drain current VDS = 20 V; VGS = 0 Gate-source breakdown voltage
- IG = 1 µA; VDS = 0 Gate-source cut-off voltage ID = 1 n A; VDS = 20 V Drain-source voltage (on) ID = 12 m A; VGS = 0 ID = 6 m A; VGS = 0 ID = 3 m A; VGS = 0 Drain-source resistance (on) ID = 0; VGS = 0; f = 1 k Hz; Tamb = 25 °C Drain cut-off current
- VGS = 12 V
- VGS = 7 V
- VGS = 5 V
- VGS = 12 V
- VGS = 7...