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TIM1314-30L

Toshiba

TIM1314-30L by Toshiba

The Toshiba TIM1314-30L is an N-channel RF Power FET with a ceramic/metal-sealed co-fired package. It operates in depletion mode, suitable for amplifier applications in the Ku band. With a max drain current of 20A and power dissipation of 136W, it offers high performance in a flange mount package.

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Overview

Unleash the power of cutting-edge technology with the Toshiba TIM1314-30L RF Power Field Effect Transistor. Crafted with precision by Toshiba, this N-CHANNEL FET offers unparalleled performance in amplifier applications for the KU BAND. With a maximum drain current of 20A and a high-frequency band, this transistor is designed to deliver superior efficiency and reliability. Elevate your projects with the quality and innovation that only Toshiba can provide. Experience next-level performance with the TIM1314-30L.

Feature Benefit Bullets

Package Body Material: CERAMIC, METAL-SEALED COFIRED

This material provides high thermal conductivity and durability, ensuring reliable performance even in extreme conditions.

Polarity or Channel Type: N-CHANNEL

N-channel transistors generally offer better performance and efficiency compared to P-channel transistors, making this product a good choice for high-power applications.

Transistor Application: AMPLIFIER

Designed specifically for amplifier applications, ensuring optimal performance and efficiency in amplifying RF signals.

Surface Mount: YES

Allows for easy and convenient installation on circuit boards, saving time and effort during assembly.

Maximum Drain Current (Abs) (ID): 20 A

With a high maximum drain current, this FET can handle high power levels without risk of damage, making it suitable for demanding applications.

Highest Frequency Band: KU BAND

Designed for the Ku band frequency range, making it ideal for satellite communications and other high-frequency applications.

Maximum Power Dissipation Ambient: 136 W

With a high power dissipation rating, this FET can handle large amounts of power without overheating, ensuring reliable operation under heavy loads.

Technical Specifications

RF Power Field Effect Transistors (FET) TIM1314-30L attributes and parameters. Explore more RF Power Field Effect Transistors (FET) devices from Toshiba

Specs

Case Connection:

SOURCE

Configuration:

Minimum DS Breakdown Voltage:

15 V

Maximum Drain Current (Abs) (ID):

20 A

Maximum Drain Current (ID):

20 A

Field Effect Transistor Technology:

JUNCTION

Highest Frequency Band:

KU BAND

JESD-30 Code:

R-CDFM-F2

No. of Elements:

1

No. of Terminals:

2

Operating Mode:

DEPLETION MODE

Maximum Operating Temperature:

175 Cel

Package Body Material:

CERAMIC, METAL-SEALED COFIRED

Package Shape:

RECTANGULAR

Package Style (Meter):

FLANGE MOUNT

Polarity or Channel Type:

Maximum Power Dissipation Ambient:

136 W

Qualification:

Not Qualified

Sub-Category:

Other Transistors

Surface Mount:

YES

Terminal Form:

FLAT

Terminal Position:

DUAL

Transistor Application:

AMPLIFIER

Transistor Element Material:

GALLIUM ARSENIDE

Trade Compliance

TIM1314-30L Transistors trade compliance attributes, and parameters.

ECCN

EAR99

ECCN Governance

EAR

HTS

8541.29.00.95

SB

8541.29.00.80

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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