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NCEP030N85LL
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FabricantWuxi nce semiconducteur de puissance
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Pièce fabricant #NCEP030N85LL
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En stock8265
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Spécifications
| Attribut | Valeur |
| Manufacturer | Wuxi NCE Power Semiconductor |
| Package / Case | TOLL |
| Operating Temperature | -55℃~+175℃ |
| Rds(on) | 2.65mΩ@10V,125A |
| Drain to Source Voltage (Vdss) | 85V |
| Pd - Power Dissipation | 365W |
| Current - Continuous Drain(Id) | 250A |
| Reverse Transfer Capacitance (Crss @ Vds) | 24pF@40V |
| Input Capacitance(Ciss @ Vds) | 7.2nF@40V |
| Gate Charge(Qg) | 115nC@10V |
Présentation
Description
These models are essential for understanding weather patterns, climate variability, and other atmospheric phenomena. They incorporate various data sources, including satellite observations and ground-based measurements, to improve forecast accuracy. Researchers and meteorologists utilize such datasets for climate studies, severe weather predictions, and long-term climate projections. Overall, NCEP030N85LL plays a vital role in operational meteorology and climate science.
Equivalent
Features
1. Grid Resolution: It utilizes a low-resolution grid system, typically designed for global forecasting at a scale suitable for large-scale weather patterns.
2. Data Assimilation: The model incorporates observational data from various sources, enhancing forecast accuracy by continuously updating input parameters.
3. Forecast Range: It typically provides forecasts extending several days into the future, useful for medium-range weather prediction.
4. Physical Parameterization: The model includes complex algorithms to simulate physical processes such as cloud formation, precipitation, and surface interactions.
5. Coupled Systems: It can be coupled with oceanic and atmospheric models, allowing for comprehensive climate studies and seasonal forecasts.
6. Applications: Used for diverse applications, including severe weather forecasting, climate research, and environmental monitoring.
This model plays a crucial role in enhancing the understanding and prediction of weather patterns globally.
Pinout
1. Gate (G) - This pin is used to control the MOSFET's switching behavior, allowing it to turn on or off based on the voltage applied to it.
2. Drain (D) - This pin is where the load is connected and through which the current flows when the MOSFET is in the 'on' state.
3. Source (S) - This pin is connected to the ground or negative side of the power supply and serves as the return path for the current flowing through the device.
The NCEP030N85LL is designed for efficient switching in power applications, with features that enhance performance, such as low on-resistance and fast switching speeds.
Manufacturer
Founded in 1999 and headquartered in Phoenix, Arizona, ON Semiconductor has grown through numerous acquisitions and innovations, positioning itself as a key player in the semiconductor market. The company's focus includes energy-efficient solutions, enabling advancements in technology while addressing the growing demand for sustainable practices in electronic design and manufacturing.
Application
1. Weather Forecasting: Enhancing short-term and long-term weather predictions.
2. Climate Modeling: Supporting climate change studies and assessments.
3. Hydrology: Analyzing precipitation patterns and water resource management.
4. Agriculture: Assisting in crop yield predictions and agricultural planning.
5. Disaster Management: Informing preparedness and response strategies for extreme weather events.
Overall, it serves as a crucial resource for researchers, policymakers, and industries reliant on weather and climate data.