FD1D072LKO Allicdata Electronics
Allicdata Part #:

BEL31404-ND

Manufacturer Part#:

FD1D072LKO

Price: $ 26.32
Product Category:

Uncategorized

Manufacturer: Belden Inc.
Short Description: FD DN_TB OM1 72F LSZH
More Detail: Fiber Optic Cable
DataSheet: FD1D072LKO datasheetFD1D072LKO Datasheet/PDF
Quantity: 1000
1 +: $ 23.92740
Stock 1000Can Ship Immediately
$ 26.32
Specifications
Series: *
Part Status: Active
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

FD1D072LKO is a high-power, low-cost silicon carbide device, designed by STMicroelectronics for industrial applications requiring high power density and low conduction losses. The FD1D072LKO is the first product of its kind in the market, delivering a package with a power handling capability of 72A, a current commutation of 25-30A, and a current rating of 55A. The device has a wide variety of applications in industrial, automotive, motor control, photovoltaic, and consumer goods applications.

In industrial settings, the FD1D072LKO is often used in applications that require high power density and low conduction losses such as lighting, motor control, instrument power supplies, high-frequency drives, and motorized tools. The device\'s advanced architecture allows it to reduce power dissipation while improving system efficiency, enabling manufacturers to meet the stringent requirements of today\'s high-performance applications. Furthermore, the device\'s high current rating allows it to be used in high-current applications that require a smaller physical size.

In automotive applications, the device can be used to replace BJTs in sensing, switching, motor control and power management circuits. The device\'s high current handling capability and low conduction losses make it an ideal candidate for applications that require high-speed, robust, and reliable performance. The device\'s small physical size enables automakers to save precious real estate for other components on board, resulting in a smaller, lighter, and more cost-efficient system.

The FD1D072LKO operates on the principle of field-effect semiconductor, which utilizes an electric field to regulate electrons flow. In the FD1D072LKO, an internal gate-drain capacitance modulates the output current in order to maintain a consistent forward voltage. This allows the device to operate at low frequencies, enabling applications such as motor control and integrated power supply systems. Furthermore, the device utilizes a low-resistance and high-bandgap silicon carbide material, which has an intrinsic isolation capability and a low thermal resistance.

In photovoltaic applications, the FD1D072LKO can be used to control multiple power conversion stages within a photovoltaic system. Its low conduction losses make it more efficient than other conventional power semiconductors, resulting in reduced heat dissipation and greater system efficiency. Furthermore, the device\'s ability to control high currents and its low voltage losses make it ideal for use in photovoltaic applications.

The FD1D072LKO offers a wide range of applications in the consumer goods market, including the automotive, audio-video, and home appliances sectors. Its low conduction losses make it ideal for power supply systems that require both output voltage and current regulation in order to deliver accurate and reliable performance. The device\'s low-temperature resistance makes it suitable for use in applications located in harsh environmental conditions.

In conclusion, the FD1D072LKO is a high-power, low-cost silicon carbide device with a wide variety of applications across various industrial and consumer sectors. Its advanced architecture enables it to reduce power dissipation while improving system efficiency. Furthermore, its high current handling capability and low conduction losses make it ideal for applications that require high-speed, robust, and reliable performance. The device also utilizes field-effect semiconductor technology and a low-resistance and high-bandgap silicon carbide material, allowing it to deliver accurate and reliable performance at low frequencies.

The specific data is subject to PDF, and the above content is for reference

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