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T2N7002BK

Toshiba

T2N7002BK by Toshiba

Toshiba T2N7002BK is a N-CHANNEL FET for SWITCHING applications. Features include 60V DS Breakdown Voltage, 1W Power Dissipation, and 150°C Operating Temperature. Ideal for compact designs requiring high efficiency and low power consumption.

Median Price

$0.028

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Nova Conductors

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Continental Prestige Electronics

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Overview

Looking for a reliable and high-quality Small Signal Field Effect Transistor? Look no further than the T2N7002BK by Toshiba. With its N-CHANNEL configuration, built-in diode and resistor, and enhancement mode operation, this transistor is perfect for switching applications. Designed with precision and advanced technology, this transistor offers superior performance and durability. Whether you're a hobbyist or a professional, the T2N7002BK provides value, efficiency, and reliability that will exceed your expectations. Upgrade your projects with Toshiba's trusted quality and innovation.

Feature Benefit Bullets

Package Body Material: PLASTIC/EPOXY

The use of plastic/epoxy material makes the transistor lightweight and durable, ideal for various applications.

Polarity or Channel Type: N-CHANNEL

N-channel transistors typically have high electron mobility and fast switching speeds, making them suitable for high-speed switching applications.

Configuration: SINGLE WITH BUILT-IN DIODE AND RESISTOR

The built-in diode and resistor simplify circuit design and reduce external component count, saving space and cost.

Transistor Application: SWITCHING

Designed specifically for switching applications, ensuring efficient and reliable performance when used in such circuits.

Surface Mount: YES

Surface mount package allows for easy and secure mounting on PCBs, making assembly and soldering processes easier.

Minimum DS Breakdown Voltage: 60 V

With a minimum breakdown voltage of 60V, this transistor can handle higher voltages without breakdown, ensuring reliability in high voltage circuits.

Package Shape: RECTANGULAR

Rectangular package shape allows for efficient use of board space and easy placement in PCB layouts.

Terminal Form: GULL WING

Gull wing terminals provide secure solder connections and improve heat dissipation, enhancing overall reliability.

Operating Mode: ENHANCEMENT MODE

Enhancement mode operation offers better control over the transistor's conductivity, leading to improved efficiency in switching applications.

No. of Terminals: 3

Having 3 terminals allows for easy connections and circuit integration, simplifying overall design and troubleshooting.

Maximum Power Dissipation (Abs): 1 W

With a maximum power dissipation of 1W, this transistor can handle high power levels, ensuring reliable performance in demanding applications.

Package Style (Meter): SMALL OUTLINE

Small outline package style saves space on PCBs, making it suitable for compact electronic devices and densely populated circuits.

Field Effect Transistor Technology: METAL-OXIDE SEMICONDUCTOR

Metal-oxide semiconductor technology offers good performance characteristics, such as high switching speeds and low power consumption.

Maximum Operating Temperature: 150 °C

With a maximum operating temperature of 150°C, this transistor can withstand high-temperature environments, ensuring reliable operation under varying conditions.

Transistor Element Material: SILICON

Silicon is a commonly used semiconductor material known for its reliability and performance, making this transistor a dependable choice for various applications.

Maximum Drain Current (ID): 0.4 A

With a maximum drain current of 0.4A, this transistor can handle moderate current levels, suitable for a wide range of switching applications.

Maximum Drain-Source On Resistance: 1.75 ohm

Low drain-source on resistance of 1.75 ohms minimizes power loss and improves efficiency in switching applications.

Terminal Position: DUAL

Having dual terminal positions provides flexibility in circuit design and allows for easy integration into various types of layouts.

Maximum Feedback Capacitance (Crss): 1.3 pF

Low feedback capacitance of 1.3pF reduces signal distortion and ensures stable performance in high-frequency applications.

Technical Specifications

Small Signal Field Effect Transistors (FET) T2N7002BK attributes and parameters. Explore more Small Signal Field Effect Transistors (FET) devices from Toshiba

Specs

Minimum DS Breakdown Voltage:

60 V

Maximum Drain Current (ID):

.4 A

Maximum Drain-Source On Resistance:

1.75 ohm

Field Effect Transistor Technology:

METAL-OXIDE SEMICONDUCTOR

Maximum Feedback Capacitance (Crss):

1.3 pF

JESD-30 Code:

R-PDSO-G3

No. of Elements:

1

No. of Terminals:

3

Operating Mode:

ENHANCEMENT MODE

Maximum Operating Temperature:

150 Cel

Package Body Material:

PLASTIC/EPOXY

Package Shape:

RECTANGULAR

Package Style (Meter):

SMALL OUTLINE

Peak Reflow Temperature (C):

NOT SPECIFIED

Polarity or Channel Type:

Maximum Power Dissipation (Abs):

1 W

Surface Mount:

YES

Terminal Form:

GULL WING

Terminal Position:

DUAL

Maximum Time At Peak Reflow Temperature (s):

NOT SPECIFIED

Transistor Application:

SWITCHING

Transistor Element Material:

SILICON

Trade Compliance

T2N7002BK Transistors trade compliance attributes, and parameters.

ECCN

EAR99

ECCN Governance

EAR

Manufacturer Highlights

Toshiba

TOSHIBA, is a Japanese multinational conglomerate corporation headquartered in Minato, Tokyo, Japan. Its diversified products and services include power, industrial and social infrastructure systems, elevators and escalators, electronic components, semiconductors, hard disk drives (HDD), printers, batteries, lighting, as well as IT solutions such as quantum cryptography which has been in development at Cambridge Research Laboratory, Toshiba Europe, located in the United Kingdom, now being commercialised.It was one of the biggest manufacturers of personal computers, consumer electronics, home appliances, and medical equipment. As a semiconductor company and the inventor of flash memory, Toshiba had been one of the top 10 in the chip industry until its flash memory unit was spun off as Toshiba Memory, later Kioxia, in the late 2010s.

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