Model No: AO3407A
Alpha & Omega Semiconductor Inc. AO3407A
Manufacturer: Alpha & Omega Semiconductor Inc. (AOS)
SEMICON NO: AO3407A
Package: SOT23
Stock: In stock
Description: P-MOSFET Transistor
SEMICON NO: AO3407A
Package: SOT23
Stock: In stock
Description: P-MOSFET Transistor
Quantity :
| Manufacturer | Alpha & Omega Semiconductor Inc. (AOS) |
| Part Number | AO3407A |
| Type | P-Channel MOSFET |
| Drain-Source Voltage (VDS) | -30V |
| Continuous Drain Current (ID) | -4.3A |
| On-State Resistance (RDS(on)) | < 48mΩ @ VGS = -10V |
| Gate-Source Voltage (VGS(th)) | -1.4V to -2.4V |
| Input Capacitance (Ciss) | 520 pF |
| Output Capacitance (Coss) | 100 pF |
| Reverse Transfer Capacitance (Crss) | 65 pF |
| Operating Temperature | -55°C to +150°C |
| Package | SOT-23 |
TheAO3407A is a P-channel MOSFET (Metal-Oxide-Semiconductor Field-Effect Transistor) designed for small signal applications. It features a maximum drain-source voltage (Vdss) of 30V and a continuous drain current (Id) of up to 4.3A. With a low on-resistance (RDS(on)) of 48mΩ at a gate-source voltage (Vgs) of -10V, the AO3407A ensures efficient power conversion and minimal heat generation. The chip comes in a SOT-23-3L package, making it suitable for surface-mount technology (SMT) applications. It has a wide operating temperature range of -55°C to 150°C, allowing it to function reliably in various environmental conditions.
AO3407A P-Channel Small Signal MOSFETFeatures
The AO3407A is characterized by its high current handling capability and low on-resistance, which contribute to its excellent power efficiency. It also exhibits a low threshold voltage (Vgs(th)), typically 2.5V, enabling it to be easily driven by low-voltage signals. The MOSFET's fast switching speed and low gate charge (Qg) make it ideal for applications requiring high-frequency switching. Additionally, the AO3407A features low input capacitance (Ciss) and reverse transfer capacitance (Crss), which help reduce switching losses and improve overall performance. Its compact SOT-23-3L package further enhances its suitability for space-constrained applications.
AO3407A High Current Handling MOSFETApplications
The AO3407A's combination of high current handling, low on-resistance, and compact packaging makes it well-suited for a variety of applications. It can be found in power management circuits, where it functions as a power switch or load switch. Its ability to handle high currents and low power consumption makes it ideal for battery-powered devices. The AO3407A is also commonly used in LED driver circuits, motor control systems, and other electronic circuits requiring precise current control. Its fast switching speed and low switching losses contribute to the overall efficiency and reliability of these systems.
AO3407A P-Channel Small Signal MOSFETFeatures
The AO3407A is characterized by its high current handling capability and low on-resistance, which contribute to its excellent power efficiency. It also exhibits a low threshold voltage (Vgs(th)), typically 2.5V, enabling it to be easily driven by low-voltage signals. The MOSFET's fast switching speed and low gate charge (Qg) make it ideal for applications requiring high-frequency switching. Additionally, the AO3407A features low input capacitance (Ciss) and reverse transfer capacitance (Crss), which help reduce switching losses and improve overall performance. Its compact SOT-23-3L package further enhances its suitability for space-constrained applications.
AO3407A High Current Handling MOSFETApplications
The AO3407A's combination of high current handling, low on-resistance, and compact packaging makes it well-suited for a variety of applications. It can be found in power management circuits, where it functions as a power switch or load switch. Its ability to handle high currents and low power consumption makes it ideal for battery-powered devices. The AO3407A is also commonly used in LED driver circuits, motor control systems, and other electronic circuits requiring precise current control. Its fast switching speed and low switching losses contribute to the overall efficiency and reliability of these systems.