Allicdata Part #: | NVMFS5C456NLT3G-ND |
Manufacturer Part#: |
NVMFS5C456NLT3G |
Price: | $ 0.00 |
Product Category: | Discrete Semiconductor Products |
Manufacturer: | ON Semiconductor |
Short Description: | MOSFET N-CH 40V SO8FL |
More Detail: | N-Channel 40V 3.6W (Ta), 55W (Tc) Surface Mount 5... |
DataSheet: | NVMFS5C456NLT3G Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Vgs(th) (Max) @ Id: | 2V @ 250µA |
Package / Case: | 8-PowerTDFN |
Supplier Device Package: | 5-DFN (5x6) (8-SOFL) |
Mounting Type: | Surface Mount |
Operating Temperature: | -55°C ~ 175°C (TJ) |
Power Dissipation (Max): | 3.6W (Ta), 55W (Tc) |
FET Feature: | -- |
Input Capacitance (Ciss) (Max) @ Vds: | 1600pF @ 25V |
Vgs (Max): | ±20V |
Gate Charge (Qg) (Max) @ Vgs: | 18nC @ 10V |
Series: | -- |
Rds On (Max) @ Id, Vgs: | 3.7 mOhm @ 20A, 10V |
Drive Voltage (Max Rds On, Min Rds On): | 4.5V, 10V |
Current - Continuous Drain (Id) @ 25°C: | -- |
Drain to Source Voltage (Vdss): | 40V |
Technology: | MOSFET (Metal Oxide) |
FET Type: | N-Channel |
Part Status: | Discontinued at Digi-Key |
Packaging: | Tape & Reel (TR) |
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The NVMFS5C456NLT3G is a type of single field-effect transistor (FET), more generally referred to as a MOSFET. This device is often used in integrated circuit technology, as it is capable of creating and controlling a high-speed digital logic signal without incurring substantial power losses.
The main purpose of the NVMFS5C456NLT3G is to control the flow of current through a circuit. It accomplishes this by using an electrically generated field to act as a gate, allowing current to flow between two terminals. Depending on the electrical charge at the gate, either the voltage source is allowed to flow through the transistor, or it is blocked.
The NVMFS5C456NLT3G has several advantageous features that make it especially attractive for integrated circuit applications. First, due to its small size, it is capable of packing a lot of circuitry into a small amount of space. As a result, more space is available on a circuit board for other components. Second, its low power consumption, which is especially important in a device as power-hungry as an integrated circuit. Third, its fast switching speeds, which allow it to process high-speed digital signals quickly and accurately. Lastly, it is cost-effective, making it ideal for cost-sensitive applications.
In terms of its application, the NVMFS5C456NLT3G is most commonly used for switching applications in consumer electronics. Examples include audio amplifiers, digital signal processors, light emitting diode displays, digital-to-analog converters, and other integrated circuit digital logic applications. It can also be used for power switching, digital volume control, and various other applications.
The NVMFS5C456NLT3G achieves its switching capability through the application of a voltage across two terminals. This voltage, known as the gate voltage, is responsible for altering the channel of conduction between the two terminals, thereby controlling the flow of current passing through the device. When the gate voltage is below a certain threshold level, a reverse current flows through the device, essentially blocking the current from passing through. When the gate voltage reaches the switch threshold, the current between the two terminals is allowed to flow.
When the NVMFS5C456NLT3G is being used in a power-switching application, it is important to monitor the switching characteristics, since this device may be used to control current flow through a circuit. For example, when the device is used in a motor control circuit, the switching characteristics must be monitored to ensure that the motor is getting the proper power at the proper times. By monitoring the switching characteristics, it can be determined if the motor is running at the correct speed, or if there is an undesired power loss or voltage drop.
The NVMFS5C456NLT3G is a versatile device that is increasingly being used in a variety of integrated circuit applications due to its small size, low power consumption, and high speed of operation. It is especially well-suited for power switching and digital logic applications, as well as other areas where fast switching and precise control are needed. By monitoring its switching characteristics and using it in an appropriate setting, the full potential of this device can be realized.
The specific data is subject to PDF, and the above content is for reference
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