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AOE6932
+Lista de MateriaisMOSFET 2 N-CH 30V 55A/85A 8DFN
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FabricanteAlpha & Omega Semiconductor Inc.
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Peça do Fabricante #AOE6932
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Ficha Técnica AOE6932 DataSheet
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Pacote VDFN-8
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Em Estoque2978
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Especificações
| Atributo | Valor |
| Package | Tape & Reel (TR) |
| ProductStatus | Active |
| FETType | 2 N-Channel (Dual) Asymmetrical |
| FETFeature | Standard |
| DraintoSourceVoltage(Vdss) | 30V |
| Current-ContinuousDrain(Id)@25°C | 55A (Tc), 85A (Tc) |
| RdsOn(Max)@IdVgs | 5mOhm @ 20A, 10V, 1.4mOhm @ 20A, 10V |
| Vgs(th)(Max)@Id | 2.2V @ 250µA, 1.9V @ 250µA |
| GateCharge(Qg)(Max)@Vgs | 15nC @ 4.5V, 50nC @ 4.5V |
| InputCapacitance(Ciss)(Max)@Vds | 1150pF @ 15V, 4180pF @ 15V |
| Power-Max | 24W, 52W |
| OperatingTemperature | -55°C ~ 150°C (TJ) |
| MountingType | Surface Mount |
| Package/Case | 8-VDFN Exposed Pad |
Visão Geral
Description
The course could involve theoretical instruction combined with practical lab sessions or computer simulations to provide a comprehensive understanding of the subject matter. Key components might include advanced mathematical modeling, analysis of aerodynamic systems, and application of modern engineering tools. Students may be expected to have foundational knowledge in related subjects before enrolling.
As this is a general description, it is important to consult the specific academic institution or course syllabus for detailed information about AOE6932, including prerequisites, curriculum, learning outcomes, and assessment methods.
Equivalent
1. Si4920DY from Vishay
2. FDS6920B from ON Semiconductor
3. IRF7331 from Infineon Technologies
4. DMN61D8L from Diodes Incorporated
Ensure compatibility by checking the datasheets, as variations in parameters like threshold voltage, on-resistance, and package type could affect performance in your specific application.
Features
1. Curriculum Focus: Advanced topics related to aerospace engineering, such as fluid dynamics, propulsion, or computational methods.
2. Prerequisites: Prior foundational courses in engineering principles or related areas.
3. Learning Objectives: Develop expertise in specialized aerospace concepts, enhance problem-solving skills in complex scenarios, and apply knowledge to real-world engineering problems.
4. Coursework: Combination of lectures, laboratory work, and projects. Emphasis on research, simulations, and design projects.
5. Evaluation: Based on assignments, exams, project work, and possibly presentations or research papers.
6. Resources: Access to engineering labs, simulation software, and relevant academic journals and publications.
7. Outcomes: Preparation for careers in aerospace engineering, research roles, or further academic study.
For specific details, it's best to consult the course syllabus or the academic department offering the course.
Pinout
Pin Functions:
1. Source 1 (S1) - Connects to the source of the first MOSFET.
2. Gate 1 (G1) - Drives the gate of the first MOSFET.
3. Drain 1 (D1) - Connects to the drain of the first MOSFET.
4. Drain 1 (D1) - (Common Drain Pins 3 and 4).
5. Drain 2 (D2) - Connects to the drain of the second MOSFET.
6. Drain 2 (D2) - (Common Drain Pins 5 and 6).
7. Gate 2 (G2) - Drives the gate of the second MOSFET.
8. Source 2 (S2) - Connects to the source of the second MOSFET.
This configuration allows for efficient switching and control of loads in compact electronic circuits. Always refer to the datasheet for detailed specifications and applications.