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SI2301
+BOMMOSFETs -20V -2.8A
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ManufacturerMicro Commercial Components (MCC)
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Mfr. Part #SI2301
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Datasheet SI2301 DataSheet
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In Stock24913
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Specifications
| Attribute | Value |
| Packaging | MouseReel |
| StandardPackQty | 3000 |
Overview
Description
The curriculum often includes both theoretical lectures and practical assignments or projects to provide hands-on experience. Tools and methodologies such as systems modeling language (SysML), simulation software, and systems thinking approaches are commonly introduced.
The course aims to equip students with the skills necessary to understand and manage the complexities of large-scale systems, preparing them for roles in industries like aerospace, defense, automotive, and technology. Collaborative and critical thinking skills are emphasized, along with the ability to apply systems engineering principles to real-world problems.
Overall, SI2301 serves as a crucial building block for students pursuing careers in fields that require strong systems engineering capabilities.
Equivalent
1. AO3401 - by Alpha & Omega Semiconductor
2. PMV20XNER - by NXP Semiconductors
3. IRLML6401 - by Infineon Technologies
4. BSS84 - by ON Semiconductor
5. 2N7002P - by Fairchild Semiconductor
These equivalents offer similar electrical characteristics and can be used as substitutes in circuits where the SI2301 is specified.
Features
1. Type: P-channel MOSFET
2. Package: Typically comes in a SOT-23 package, which is compact and suitable for surface mounting.
3. Drain-Source Voltage (Vds): Typically around -20V, indicating the maximum voltage the MOSFET can handle between the drain and the source.
4. Continuous Drain Current (Id): Generally around -2.8A, specifying the maximum current it can conduct continuously.
5. Threshold Voltage (Vgs(th)): Usually between -0.4V to -1.5V, which is the gate-source voltage required to turn the MOSFET on.
6. On-Resistance (Rds(on)): Typically low, around 0.1 ohms, which ensures minimal power loss when the MOSFET is in the "on" state.
7. Applications: Widely used in DC-DC converters, load switches, and power management applications due to its efficiency and compact size.
These features make the SI2301 a versatile component in low-power applications.
Pinout
1. Gate (G): This is the control pin for the MOSFET. A voltage applied to the gate controls the current flow between the drain and source. For the SI2301, a gate voltage of around 2.5V to 10V is typically sufficient to fully turn on the device.
2. Drain (D): This pin is connected to the load. When the MOSFET is turned on, current flows from the drain to the source.
3. Source (S): This pin is connected to the ground or the reference point in the circuit. It serves as the source of electrons for the current flow when the MOSFET is on.
The SI2301 is used in various applications such as switching regulators, motor drivers, and amplifying circuits due to its efficient switching capabilities.