5HN01SS-TL-H Allicdata Electronics
Allicdata Part #:

5HN01SS-TL-H-ND

Manufacturer Part#:

5HN01SS-TL-H

Price: $ 0.00
Product Category:

Discrete Semiconductor Products

Manufacturer: ON Semiconductor
Short Description: MOSFET N-CH 50V 100MA SMD
More Detail: Surface Mount 3-SSFP
DataSheet: 5HN01SS-TL-H datasheet5HN01SS-TL-H Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Obsolete
Mounting Type: Surface Mount
Supplier Device Package: 3-SSFP
Package / Case: 3-SMD, Flat Leads
Description

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A 5HN01SS-TL-H, also known as a N-channel Enhancement-Mode Power MOSFET (Metal-Oxide-Semiconductor Field Effect Transistor), is a power switch used to control the flow of electric current. It is commonly used with circuits, amplifiers, and other applications that require a transistor capable of withstanding high power and voltage, while providing a high switching speed. It is part of the “single” family, which includes transistors such as the NPN and PNP.

Structurally, the 5HN01SS-TL-H is composed of a source, gate and drain in the form of metal-oxide semiconductor material. It is similar to a metal-oxide-semiconductor capacitor with gate insulation, except that the MOSFET’s drain and source terminals are used to control the flow of current. The gate voltage determines the flow of current; a low voltage will allow little current and a high voltage will open the channel for more current to pass through.

The 5HN01SS-TL-H has several key characteristics that make it ideal for certain applications. It has a typical drain-source on-state resistance of 0.6 ohms. Its maximum rating for drain-source voltage is 40V and source-drain current is 30A. Its maximum gate-source voltage is ±20V and gate-source cutoff voltage is ≤2V. Additionally, its typical threshold voltage is maybe 2V. Its power dissipation is 600mW.

The 5HN01SS-TL-H is most commonly used in high-power applications such as mobile phones, computers, and televisions where a transistor is needed to switch high current and voltage levels. It can also be used in switching applications, amplifiers, and power supplies. This transistor level of power can fulfill these applications with ease, while providing an adequate level of speed, stability and efficiency.

In terms of its use in amplifiers, the 5HN01SS-TL-H performs a dual purpose. It is used as an input stage to control the voltage level, as well as a higher-current device for driving output transistors. The transistor can be used to switch high voltages quickly and efficiently, allowing for better control over undesired currents. Additionally, it can switch faster than bipolar transistors and is more reliable in high power applications where voltage and current levels are much higher.

The 5HN01SS-TL-H is also suitable for use in switching applications. Since its threshold voltage can be set to a low value, it can be used to switch small currents, reducing power consumption and noise. Additionally, the transistor’s wide operating temperature range from -55 to +150 °C makes it suitable for devices that operate in a wide range of temperatures.

While the 5HN01SS-TL-H is a fairly common and popular transistor, it is important to use it for its specific applications. It should not be used in audio circuits as it will generate too much noise and distortion. Additionally, it should not be used in digital circuits as it may cause instability. It is also important to note that it is not suitable to be used in applications which require precise current control, as it will not provide precise voltage regulation. In these situations, other types of transistors should be used.

The 5HN01SS-TL-H is an excellent choice for those who need a powerful transistor able to withstand high power and voltage while providing a high switching speed. Its wide operating temperature range and low threshold voltage make it suitable for many applications, including amplifiers, switching, and power supplies. However, it is important to remember to only use this transistor with the specific applications it is designed for, as the wrong application may cause instability or excess noise.

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

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