Panasonic Small Signal Bipolar Junction Transistors (BJT) 12

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Part RoHS Manufacturer Polarity or Channel Type Configuration Surface Mount Nominal Transition Frequency (fT) Maximum Power Dissipation (Abs) Maximum Collector Current (IC) Package Body Material Transistor Application Maximum Rise Time (tr) Maximum VCEsat Minimum DS Breakdown Voltage Terminal Form Package Shape Operating Mode No. of Elements Maximum Fall Time (tf) No. of Terminals Package Style (Meter) Sub-Category Field Effect Transistor Technology Maximum Power Dissipation Ambient Minimum DC Current Gain (hFE) Maximum Operating Temperature Maximum Collector-Base Capacitance Transistor Element Material Maximum Collector-Emitter Voltage Maximum Turn On Time (ton) Minimum Operating Temperature Maximum Turn Off Time (toff) Terminal Finish Maximum Drain-Source On Resistance Maximum Drain Current (ID) Terminal Position JESD-30 Code Moisture Sensitivity Level (MSL) Case Connection Qualification Additional Features JEDEC-95 Code JESD-609 Code Maximum Time At Peak Reflow Temperature (s) Peak Reflow Temperature (C) Maximum Feedback Capacitance (Crss) Reference Standard

2SC828Q

Panasonic

NPN

SINGLE

NO

220 MHz

.05 A

UNSPECIFIED

AMPLIFIER

WIRE

ROUND

1

3

CYLINDRICAL

130

SILICON

25 V

BOTTOM

O-XBCY-W3

Not Qualified

TO-92

2SC828R

Panasonic

NPN

SINGLE

NO

220 MHz

.05 A

UNSPECIFIED

AMPLIFIER

WIRE

ROUND

1

3

CYLINDRICAL

180

SILICON

25 V

BOTTOM

O-XBCY-W3

Not Qualified

TO-92

DMC204020R

Panasonic

NPN AND PNP

SEPARATE, 2 ELEMENTS

YES

160 MHz

.5 A

PLASTIC/EPOXY

AMPLIFIER

GULL WING

RECTANGULAR

2

6

SMALL OUTLINE

40

SILICON

50 V

DUAL

R-PDSO-G6

1

DMC204B30R

Panasonic

NPN

SEPARATE, 2 ELEMENTS

YES

150 MHz

.1 A

PLASTIC/EPOXY

AMPLIFIER

GULL WING

RECTANGULAR

2

6

SMALL OUTLINE

210

SILICON

50 V

DUAL

R-PDSO-G6

NOT SPECIFIED

NOT SPECIFIED

DME914C10R

Panasonic

NPN AND PNP

YES

.125 W

.5 A

2

Other Transistors

80

SILICON

DRC2523Y0L

Panasonic

NPN

SINGLE WITH BUILT-IN RESISTOR

YES

.5 A

PLASTIC/EPOXY

SWITCHING

GULL WING

RECTANGULAR

1

3

SMALL OUTLINE

60

SILICON

50 V

DUAL

R-PDSO-G3

BUILT IN BIAS RESISTOR RATIO IS 4.55

TO-236AA

NOT SPECIFIED

NOT SPECIFIED

DSC2002R0L

Panasonic

NPN

SINGLE

YES

160 MHz

.5 A

PLASTIC/EPOXY

AMPLIFIER

GULL WING

RECTANGULAR

1

3

SMALL OUTLINE

120

SILICON

50 V

DUAL

R-PDSO-G3

TO-236AA

NOT SPECIFIED

NOT SPECIFIED

2SD965R

Panasonic

NPN

SINGLE

NO

150 MHz

.75 W

5 A

PLASTIC/EPOXY

AMPLIFIER

THROUGH-HOLE

ROUND

1

3

CYLINDRICAL

Other Transistors

340

150 Cel

SILICON

20 V

BOTTOM

O-PBCY-T3

Not Qualified

TO-92

NOT SPECIFIED

NOT SPECIFIED

DME505010R

Panasonic

NPN AND PNP

YES

.15 W

.1 A

BIP General Purpose Small Signal

210

150 Cel

DMC564040R

Panasonic

NPN

SEPARATE, 2 ELEMENTS WITH BUILT-IN RESISTOR

YES

.15 W

.1 A

PLASTIC/EPOXY

SWITCHING

FLAT

RECTANGULAR

2

6

SMALL OUTLINE

BIP General Purpose Small Signal

80

SILICON

50 V

TIN BISMUTH

DUAL

R-PDSO-F6

1

BUILT IN BIAS RESISTOR RATIO IS 4.7

e6

DME201010R

Panasonic

NOT SPECIFIED

NOT SPECIFIED

DSC5C01R0L

Panasonic

NPN

SINGLE

YES

140 MHz

.02 A

PLASTIC/EPOXY

AMPLIFIER

FLAT

RECTANGULAR

1

3

SMALL OUTLINE

400

SILICON

100 V

DUAL

R-PDSO-F3

1

Small Signal Bipolar Junction Transistors (BJT)

Small Signal Bipolar Junction Transistors (BJT) are electronic devices used in low-power applications to amplify and switch small signals. They are commonly used in applications such as audio amplifiers, signal processing, and low-power digital circuits.

Small Signal BJTs are designed to handle low-power levels and operate at low to medium frequencies, typically in the range of a few Hz to several MHz. They have a high gain and low noise figure, making them suitable for small signal amplification.

The Small Signal BJT consists of an emitter, base, and collector region, and works by controlling the flow of majority charge carriers (electrons or holes) between the emitter and collector through the base region. When a voltage is applied to the base-emitter junction, a small current flows through the base, allowing a larger current to flow from the emitter to the collector.

Proper use of Small Signal BJTs is important to ensure optimal performance, reliability, and compatibility with other components in the circuit. Small Signal BJTs are often used in conjunction with other components, such as capacitors and resistors, to form complete low-power electronic circuits.B395