.8 W Other Function Transistors 292

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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 Terminal Form Package Shape Operating Mode No. of Elements Highest Frequency Band Maximum Fall Time (tf) Maximum Drain Current (Abs) (ID) 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 Minimum Operating Temperature Terminal Finish Maximum Drain Current (ID) Terminal Position JESD-30 Code Moisture Sensitivity Level (MSL) Case Connection Qualification Additional Features JESD-609 Code Maximum Time At Peak Reflow Temperature (s) Peak Reflow Temperature (C)

2N2192B

Texas Instruments

NPN

SINGLE

NO

50 MHz

.8 W

1 A

1

Other Transistors

100

200 Cel

2N3712

Texas Instruments

NPN

SINGLE

NO

40 MHz

.8 W

.2 A

1

Other Transistors

175 Cel

2N2410

Texas Instruments

NPN

SINGLE

NO

200 MHz

.8 W

.8 A

1

Other Transistors

30

200 Cel

2N2927

Texas Instruments

PNP

SINGLE

NO

100 MHz

.8 W

.5 A

1

Other Transistors

175 Cel

BFR50

Texas Instruments

NPN

SINGLE

NO

60 MHz

.8 W

1 A

1

Other Transistors

150 Cel

BC231M

Texas Instruments

PNP

SINGLE

NO

250 MHz

.8 W

.4 A

1

Other Transistors

100

175 Cel

BFR51

Texas Instruments

NPN

SINGLE

NO

50 MHz

.8 W

1 A

1

Other Transistors

150 Cel

BFR39

Texas Instruments

NPN

SINGLE

NO

150 MHz

.8 W

1 A

1

Other Transistors

50

150 Cel

BFR39TO5

Texas Instruments

NPN

SINGLE

NO

150 MHz

.8 W

1 A

1

Other Transistors

50

150 Cel

BFR52

Texas Instruments

NPN

SINGLE

NO

50 MHz

.8 W

1 A

1

Other Transistors

150 Cel

SCH1304

Onsemi

P-CHANNEL

SINGLE

YES

.8 W

ENHANCEMENT MODE

1

2 A

Other Transistors

METAL-OXIDE SEMICONDUCTOR

150 Cel

2 A

MCH3220

Onsemi

NPN

SINGLE

YES

.8 W

3 A

1

Other Transistors

250

150 Cel

MCH3205

Onsemi

NPN

SINGLE

YES

.8 W

3 A

1

Other Transistors

200

150 Cel

CPH6614

Onsemi

N-CHANNEL AND P-CHANNEL

YES

.8 W

ENHANCEMENT MODE

1.2 A

Other Transistors

METAL-OXIDE SEMICONDUCTOR

150 Cel

1.2 A

MCH6635

Onsemi

P-CHANNEL

SINGLE

YES

.8 W

ENHANCEMENT MODE

1

.8 A

Other Transistors

METAL-OXIDE SEMICONDUCTOR

150 Cel

.8 A

MCH3144

Onsemi

PNP

SINGLE

YES

.8 W

2 A

1

Other Transistors

200

150 Cel

CPH6619

Onsemi

N-CHANNEL AND P-CHANNEL

YES

.8 W

ENHANCEMENT MODE

.4 A

Other Transistors

METAL-OXIDE SEMICONDUCTOR

150 Cel

.4 A

MCH3211

Onsemi

NPN

SINGLE

YES

.8 W

3 A

1

Other Transistors

600

150 Cel

MCH3221

Onsemi

NPN

SINGLE

YES

.8 W

3 A

1

Other Transistors

250

150 Cel

MCH5805

Onsemi

P-CHANNEL

SINGLE

YES

.8 W

ENHANCEMENT MODE

1

.6 A

Other Transistors

METAL-OXIDE SEMICONDUCTOR

125 Cel

.6 A

MCH3145

Onsemi

PNP

SINGLE

YES

.8 W

2 A

1

Other Transistors

200

150 Cel

MCH6627-TL-E

Onsemi

N-CHANNEL AND P-CHANNEL

YES

.8 W

ENHANCEMENT MODE

1.4 A

Other Transistors

METAL-OXIDE SEMICONDUCTOR

150 Cel

Tin/Bismuth (Sn/Bi)

1.4 A

1

e6

MCH3308

Onsemi

P-CHANNEL

SINGLE

YES

.8 W

ENHANCEMENT MODE

1

1 A

Other Transistors

METAL-OXIDE SEMICONDUCTOR

150 Cel

1 A

MCH3243

Onsemi

NPN

SINGLE

YES

.8 W

2.5 A

1

Other Transistors

200

150 Cel

SCH1334

Onsemi

P-CHANNEL

SINGLE

YES

.8 W

ENHANCEMENT MODE

1

1.6 A

Other Transistors

METAL-OXIDE SEMICONDUCTOR

150 Cel

1.6 A

MCH5836

Onsemi

P-CHANNEL

SINGLE

YES

.8 W

ENHANCEMENT MODE

1

1 A

Other Transistors

METAL-OXIDE SEMICONDUCTOR

125 Cel

1 A

2SD1801T

Onsemi

NPN

SINGLE

YES

.8 W

2 A

1

Other Transistors

200

150 Cel

MCH3109

Onsemi

PNP

SINGLE

YES

.8 W

3 A

1

Other Transistors

200

150 Cel

MCH6613

Onsemi

N-CHANNEL AND P-CHANNEL

YES

.8 W

ENHANCEMENT MODE

.2 A

Other Transistors

METAL-OXIDE SEMICONDUCTOR

150 Cel

.2 A

2SD1801S

Onsemi

NPN

SINGLE

YES

.8 W

2 A

1

Other Transistors

140

150 Cel

MCH3209

Onsemi

NPN

SINGLE

YES

.8 W

3 A

1

Other Transistors

200

150 Cel

MCH3320

Onsemi

P-CHANNEL

SINGLE

YES

.8 W

ENHANCEMENT MODE

1

.3 A

Other Transistors

METAL-OXIDE SEMICONDUCTOR

150 Cel

.3 A

2SD1801U

Onsemi

NPN

SINGLE

YES

.8 W

2 A

1

Other Transistors

280

150 Cel

MCH3359

Onsemi

P-CHANNEL

SINGLE

YES

.8 W

ENHANCEMENT MODE

1

1.2 A

Other Transistors

METAL-OXIDE SEMICONDUCTOR

150 Cel

1.2 A

MCH6628

Onsemi

N-CHANNEL AND P-CHANNEL

YES

.8 W

ENHANCEMENT MODE

.35 A

Other Transistors

METAL-OXIDE SEMICONDUCTOR

150 Cel

.35 A

MCH6617

Onsemi

P-CHANNEL

YES

.8 W

ENHANCEMENT MODE

1 A

Other Transistors

METAL-OXIDE SEMICONDUCTOR

150 Cel

1 A

MCH5802

Onsemi

P-CHANNEL

SINGLE

YES

.8 W

ENHANCEMENT MODE

1

1 A

Other Transistors

METAL-OXIDE SEMICONDUCTOR

125 Cel

1 A

SCH1301

Onsemi

P-CHANNEL

SINGLE

YES

.8 W

ENHANCEMENT MODE

1

2.4 A

Other Transistors

METAL-OXIDE SEMICONDUCTOR

150 Cel

2.4 A

MCH6631

Onsemi

N-CHANNEL AND P-CHANNEL

YES

.8 W

ENHANCEMENT MODE

1.5 A

Other Transistors

METAL-OXIDE SEMICONDUCTOR

150 Cel

1.5 A

MCH6619

Onsemi

P-CHANNEL

YES

.8 W

ENHANCEMENT MODE

1 A

Other Transistors

METAL-OXIDE SEMICONDUCTOR

150 Cel

1 A

CPH6003A

Onsemi

NPN

SINGLE

YES

.8 W

.15 A

1

Other Transistors

100

150 Cel

MCH3206

Onsemi

NPN

SINGLE

YES

.8 W

3 A

1

Other Transistors

200

150 Cel

MCH3222

Onsemi

NPN

SINGLE

YES

.8 W

3 A

1

Other Transistors

250

150 Cel

MCH5815

Onsemi

P-CHANNEL

SINGLE

YES

.8 W

ENHANCEMENT MODE

1

1.5 A

Other Transistors

METAL-OXIDE SEMICONDUCTOR

125 Cel

1.5 A

MCH3143

Onsemi

PNP

SINGLE

YES

.8 W

2.5 A

1

Other Transistors

200

150 Cel

MCH5823

Onsemi

P-CHANNEL

SINGLE

YES

.8 W

ENHANCEMENT MODE

1

1.5 A

Other Transistors

METAL-OXIDE SEMICONDUCTOR

125 Cel

1.5 A

CPH6001A

Onsemi

NPN

SINGLE

YES

5000 MHz

.8 W

.1 A

1

Other Transistors

90

150 Cel

SCH1337TL

Onsemi

P-CHANNEL

SINGLE

YES

.8 W

ENHANCEMENT MODE

1

2 A

Other Transistors

METAL-OXIDE SEMICONDUCTOR

150 Cel

2 A

Other Function Transistors

Other function transistors are a category of transistors that perform specialized functions beyond basic switching and amplification. These transistors are designed to perform specific tasks in electronic circuits, and are used in various applications such as signal processing, voltage regulation, and power management.

Some examples of other function transistors include:

1. Darlington Transistors: Used in high-current and high-voltage applications where a single transistor cannot provide the required gain. Darlington transistors consist of two transistors connected in series, which provide a high gain and low input current.

2. Schottky Transistors: Used in high-speed digital circuits to reduce switching losses and improve efficiency. Schottky transistors use a Schottky barrier diode in combination with a transistor to reduce the voltage drop across the device.

3. Phototransistors: Used in applications where a signal needs to be detected and converted into an electrical signal. Phototransistors use a photodiode to detect light and a transistor to amplify the signal.

4. Bipolar Junction Transistors (BJT): Used in analog circuits for amplification and switching applications. BJTs have a high current gain and low input resistance, making them useful in low-power applications.

5. Junction Field-Effect Transistors (JFET): Used in low-noise and high-impedance applications, such as audio amplifiers and analog switches. JFETs have a high input impedance and low noise, making them suitable for low-power applications.

Other function transistors are available in various sizes and configurations, depending on the specific application. They are subject to various standards and regulations, such as JEDEC (Joint Electron Device Engineering Council) and RoHS (Restriction of Hazardous Substances), to ensure their safety and performance. Proper selection and design of other function transistors are critical to ensure optimal performance, reliability, and compatibility with other components in the circuit.