MOSFETs

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2N7002T
multicomp
1individualNChannel
Quantity: 5551
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BSS138-7-F
multicomp
300mW 20V 1.5V 1individualNChannel 50V 3.5Ω@ 10V 200mA 50pF(Max) @ 10V SOT SMD mount
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IRLML6401
multicomp
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FDT86102LZ
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1individualNChannel 6.6A
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2N7002DW-7-F
multicomp
Field-effect transistor, MOSFET, Dual channelNChannel, 60V, 4.4Ω, 115mA, SOT-363-6;
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2N7002K
multicomp
40pF
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FDT86244
multicomp
1individualNChannel
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NDT456P
multicomp
1individualPChannel 30V
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BSS138
multicomp
1individualNChannel
Quantity: 16392
Ship Date: 6-12 working days
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MOQ: 1035
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MCHVR0AJTHU1006
multicomp
Resistance, 100M, 5%, 0.5W, 2010, thick film;
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Ship Date: 3-12 working days
4000+ $0.1142
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Ext. Price: $456.80
MOQ: 4000
Mult: 4000

MOSFETs

MOSFET stands for Metal-Oxide-Semiconductor Field-Effect Transistor. It is a type of transistor used for amplifying or switching electronic signals and electrical power. Here's a concise introduction in English:

Definition:
A MOSFET is a voltage-controlled device that uses a gate voltage to control the flow of current between its source and drain terminals. It consists of a metal gate electrode, an oxide insulator, and a semiconductor channel, typically made of silicon.

Function:
The primary function of a MOSFET is to act as a switch or an amplifier. When a voltage is applied to the gate, it creates an electric field that either allows or inhibits current flow between the source and drain. This makes MOSFETs ideal for digital and analog circuits, where precise control over current is required.

Applications:
MOSFETs are widely used in various electronic devices due to their versatility and efficiency. Some common applications include:
1. Power electronics for motor control and power supply regulation.
2. Digital electronics for logic gates and memory circuits.
3. Analog circuits for signal amplification and processing.
4. Automotive electronics for engine management and safety systems.

Selection Criteria:
When selecting a MOSFET, consider the following criteria:
1. Voltage Rating: Ensure the MOSFET can handle the maximum voltage of the circuit.
2. Current Rating: Choose a MOSFET that can handle the expected current load.
3. Power Dissipation: Consider the heat generated and ensure the MOSFET can dissipate it effectively.
4. Switching Speed: For high-speed applications, select a MOSFET with fast switching characteristics.
5. Gate Threshold Voltage: This determines the minimum voltage required to turn the MOSFET on.
6. Package Type: Choose a package that suits the physical constraints of the application.
7. Cost: Balance performance with cost, considering the budget and availability.

In summary, MOSFETs are essential components in modern electronics, offering precise control over current flow and enabling a wide range of applications from simple switches to complex integrated circuits.
Please refer to the product rule book for details.