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FDMA1029PZ
+BOMMOSFET 2P-CH 20V 3.1A MICROFET
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Manufactureronsemi
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Mfr. Part #FDMA1029PZ
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Datasheet FDMA1029PZ DataSheet
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Package SOIC-8
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In Stock7805
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Specifications
| Attribute | Value |
| Supplier | onsemi |
| Package | Tape & Reel (TR),Cut Tape (CT) |
| Series | PowerTrench® |
| ProductStatus | Active |
| FETType | 2 P-Channel (Dual) |
| FETFeature | Logic Level Gate |
| DraintoSourceVoltage(Vdss) | 20V |
| Current-ContinuousDrain(Id)@25°C | 3.1A |
| RdsOn(Max)@IdVgs | 95mOhm @ 3.1A, 4.5V |
| Vgs(th)(Max)@Id | 1.5V @ 250µA |
| GateCharge(Qg)(Max)@Vgs | 10nC @ 4.5V |
| InputCapacitance(Ciss)(Max)@Vds | 540pF @ 10V |
| Power-Max | 700mW |
| OperatingTemperature | -55°C ~ 150°C (TJ) |
| MountingType | Surface Mount |
| Package/Case | 8-SOIC (0.154, 3.90mm Width), 7 Leads |
Overview
Description
Typically, an introductory course like this would cover the basics necessary for understanding the broader discipline it belongs to. This might include an overview of terminology, core principles, and the context in which these are applied. The course could also introduce methodologies and frameworks that students will encounter in higher-level courses or professional applications.
Students can expect lectures, readings, and practical exercises designed to build a foundational understanding. Assessments might include quizzes, assignments, or projects that encourage the application of concepts learned.
For specific details regarding FDMA1029PZ, such as its relevance, prerequisites, and syllabus content, you would need to consult the course catalog or speak to an academic advisor or instructor associated with the program offering the course.
Equivalent
1. AO3407A (Alpha & Omega Semiconductor)
2. Si2307DS (Vishay)
3. IRLML6401 (Infineon/IR)
Ensure to compare the datasheet specifications to confirm compatibility in your application.
Features
1. N-Channel MOSFET: It is an N-channel enhancement-mode MOSFET which offers efficient switching performance.
2. Low On-Resistance: The device features low on-resistance, which helps reduce power loss and improve efficiency.
3. Drain-Source Voltage (Vds): It typically supports a Vds of around 20V, making it suitable for low-voltage applications.
4. Continuous Drain Current (Id): It can handle a continuous drain current, which is typically specified in its datasheet, suitable for moderate power applications.
5. Small Form Factor: The FDMA1029PZ comes in a compact package, making it suitable for space-constrained applications.
6. Thermal Performance: It is designed to offer good thermal performance, helping to maintain reliability under continuous operation.
7. Applications: Commonly used in DC-DC converters, load switches, battery management, and similar power management systems.
These features make the FDMA1029PZ suitable for a variety of power management applications where efficiency and space-saving are critical.
Pinout
1. Source (S1 & S2): These are the terminals where the current enters the device. There are two source pins, one for each MOSFET channel.
2. Gate (G1 & G2): These pins control the operation of the MOSFET. A voltage applied to the gate will switch the MOSFET on or off. There are two gate pins, one for each channel.
3. Drain (D1 & D2): These are the terminals where the current exits the device. Each MOSFET channel has its own drain pin.
The compact 6-pin configuration of the FDMA1029PZ allows for efficient dual-channel operation in space-constrained applications.
Manufacturer
Onsemi is known for its innovative technologies that support sustainable and efficient energy use. The company focuses on solutions that help reduce energy consumption, improve performance, and increase the reliability of electronic devices. They offer a broad portfolio of products, including power management ICs, sensors, and connectivity products, which are integral to the development of smart and connected systems.
With a commitment to environmental responsibility and sustainable practices, onsemi places a strong emphasis on corporate social responsibility and compliance with industry standards. The company's solutions enable designers to create more compact, reliable, and efficient electronic products, making it a key contributor to advancements in technology and electronics.
Application
1. DC-DC Converters: Utilized in voltage regulation and conversion circuits for its efficient switching capabilities.
2. Load Switches: Ideal for controlling power delivery to various components within electronic devices.
3. Battery Management Systems: Used to enhance charging efficiency and battery life in portable electronics.
4. Consumer Electronics: Applied in devices like laptops and smartphones for power management tasks.
5. Automotive Systems: Employed in automotive electronics for managing electrical power distribution.
These areas leverage the component's low on-resistance and fast switching speeds to optimize performance and energy efficiency.