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GB50MPS17-247

Genesic Semiconductor

GB50MPS17-247 by Genesic Semiconductor

GB50MPS17-247 by Genesic Semiconductor is a single Schottky rectifier diode with a max output current of 99A and a max reverse test voltage of 1700V. It is designed for efficiency applications, with a package style of flange mount and a max power dissipation of 688W.

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Overview

Discover the GB50MPS17-247 by Genesic Semiconductor, a high-quality rectifier diode that offers exceptional performance and reliability. With its advanced SCHOTTKY technology and maximum output current of 99A, this diode is perfect for applications requiring efficiency and power. Manufactured by Genesic Semiconductor, a trusted name in the industry, you can trust that the GB50MPS17-247 will deliver outstanding results. Its durable plastic/epoxy package and flange mount style ensure easy installation and long-lasting use. Experience the benefits of this diode's low forward voltage, high reverse test voltage, and maximum dissipation power of 688W. Elevate your projects with the GB50MPS17-247 and see the difference it makes!

Feature Benefit Bullets

Package Body Material: PLASTIC/EPOXY

Provides durability and protection for the diode, making it suitable for various applications.

Maximum Reverse Current: 20 uA

Low reverse current ensures efficient operation and minimal power loss.

Reverse Test Voltage: 1700 V

High reverse test voltage allows for reliable operation even under high voltage conditions.

Maximum Operating Temperature: 175 °C

Wide operating temperature range ensures the diode can perform reliably in various environments.

Maximum Power Dissipation: 688 W

High power dissipation capability allows the diode to handle high power loads without overheating.

Diode Type: RECTIFIER DIODE

Rectifier diode design allows for efficient conversion of AC to DC power, making it suitable for power supply applications.

Maximum Forward Voltage (VF): 1.8 V

Low forward voltage drop ensures minimal voltage loss during operation, increasing overall efficiency.

Maximum Output Current: 99 A

High output current capability makes it suitable for applications requiring high power delivery.

Technology: SCHOTTKY

Schottky technology offers fast switching speed and low forward voltage drop, improving efficiency and performance.

Diode Element Material: SILICON CARBIDE

Silicon carbide material provides high temperature tolerance and efficiency, suitable for demanding applications.

Technical Specifications

Diodes & Rectifiers GB50MPS17-247 attributes and parameters. Explore more Diodes & Rectifiers devices from Genesic Semiconductor

Specs

Additional Features:

HIGH RELIABILITY, PD-CASE

Application:

EFFICIENCY

Case Connection:

CATHODE

Config:

SINGLE

Diode Element Material:

SILICON CARBIDE

Diode Type:

Maximum Forward Voltage (VF):

1.8 V

JEDEC-95 Code:

TO-247

JESD-30 Code:

R-PSFM-T2

Maximum Non Repetitive Peak Forward Current:

540 A

No. of Elements:

1

No. of Phases:

1

No. of Terminals:

2

Maximum Operating Temperature:

175 Cel

Minimum Operating Temperature:

-55 Cel

Maximum Output Current:

99 A

Package Body Material:

PLASTIC/EPOXY

Package Shape:

Package Style (Meter):

FLANGE MOUNT

Maximum Power Dissipation:

688 W

Maximum Repetitive Peak Reverse Voltage:

1700 V

Maximum Reverse Current:

20 uA

Reverse Test Voltage:

1700 V

Surface Mount:

NO

Technology:

SCHOTTKY

Terminal Form:

Terminal Position:

PCN

Manufacturer Highlights

Genesic Semiconductor

GeneSiC is a pioneer and world leader in Silicon Carbide technology, while also invested in high power Silicon technologies. The global leading manufacturers of industrial and defense systems depend on GeneSiC's technology to elevate the performance and efficiency of their products. GeneSiC technology plays a key enabling role in conserving energy in a wide array of high power systems. Our technology enables efficient harvesting of renewable energy sources. GeneSiC electronic components run cooler, faster, and more economically. We hold leading patents on widebandgap power device technologies; a market that is projected to reach $1 billion by 2022.

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