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MDU1514URH
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Nhà sản xuấtMagnaChip Semiconductor
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Ông. Phần #MDU1514URH
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Bảng dữ liệu MDU1514URH DataSheet
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Có sẵn20740
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Thông số kỹ thuật
| thuộc tính | Giá trị |
| Automotive | Unknown |
| PPAP | Unknown |
| HTS | 8541.29.00.95 |
| EURoHS | Compliant |
| ECCN(US) | EAR99 |
| PartStatus | Active |
| MinimumOperatingTemperature(°C) | -55 |
| MaximumOperatingTemperature(°C) | 150 |
| Mounting | Surface Mount |
| PackageHeight | 1.1(Max) |
| PackageWidth | 6.1(Max) |
| PackageLength | 5.1(Max) |
| PCBchanged | 8 |
| SupplierPackage | DFN EP |
| PinCount | 8 |
| StandardPackageName | DFN |
| LeadShape | No Lead |
| ProductCategory | Power MOSFET |
| Configuration | Single Quad Drain Triple Source |
| ProcessTechnology | TMOS |
| ChannelMode | Enhancement |
| ChannelType | N |
| NumberofElementsperChip | 1 |
| MaximumDrainSourceVoltage(V) | 30 |
| MaximumGateSourceVoltage(V) | ±20 |
| MaximumGateThresholdVoltage(V) | 2.7 |
| MaximumContinuousDrainCurrent(A) | 22.8 |
| MaximumGateSourceLeakageCurrent(nA) | 100 |
| MaximumIDSS(uA) | 1 |
| MaximumDrainSourceResistance(MOhm) | 6@10V |
| TypicalGateCharge@Vgs(nC) | [email protected]|19@10V |
| TypicalGateCharge@10V(nC) | 19 |
| TypicalInputCapacitance@Vds(pF) | 1217@15V |
| MaximumPowerDissipation(mW) | 5500 |
| TypicalFallTime(ns) | 8.3 |
| TypicalRiseTime(ns) | 11.5 |
| TypicalTurn-OffDelayTime(ns) | 27 |
| TypicalTurn-OnDelayTime(ns) | 7.9 |
| Packaging | Tape and Reel |
Tổng quan
Description
Courses with similar codes typically involve subjects related to various disciplines. The prefix "MDU" could suggest a focus related to medicine, music, media, or another field entirely, depending on the institution's naming conventions. The numbers and letters following the prefix might indicate the course level, semester timing, or a particular curriculum segment.
For precise information, it would be advisable to consult the course catalog or academic advisor from the institution offering MDU1514URH. They can provide details such as the course's academic focus, prerequisites, syllabus, and learning objectives. This direct source would ensure you receive the most accurate and relevant information tailored to your interests or academic needs.
Equivalent
1. IRLML6344TRPBF from Infineon Technologies
2. BSS138 from ON Semiconductor
3. 2N7002 from Nexperia
4. SI2312DS-T1-E3 from Vishay
When selecting an equivalent, ensure that the voltage, current ratings, and package type match the MDU1514URH's specifications. Always consult datasheets for precise compatibility.
Features
1. Compact Size: Designed for space-constrained environments, making it ideal for mobile and compact devices.
2. High Efficiency: Offers efficient power management, leading to reduced energy consumption and extended device lifespan.
3. Robust Construction: Built to withstand harsh conditions, ensuring durability and reliability in various environments.
4. Advanced Thermal Management: Incorporates thermal management techniques to maintain optimal operating temperatures and prevent overheating.
5. Versatile Connectivity: Supports multiple interface options for seamless integration with existing systems.
6. Low Noise Operation: Engineered to minimize operational noise, enhancing user experience in noise-sensitive applications.
7. Wide Operating Range: Capable of functioning effectively across a broad range of voltages and temperatures.
These features make the MDU1514URH suitable for applications requiring high reliability and efficiency, such as telecommunications, computing, and industrial systems.
Pinout
Generally, MOSFET packages like the MDU1514URH might come in configurations such as DPAK or similar, which commonly have three pins: Gate (G), Drain (D), and Source (S). The Gate pin is used to trigger the MOSFET, the Drain is where the current flows in, and the Source is where the current flows out.
For precise details on the pin configuration and additional specifications, consulting the datasheet is recommended. This ensures you have the correct information for electrical characteristics and mechanical pin layout specific to the MDU1514URH model.
Manufacturer
Application
1. Power Management: Used in switch-mode power supplies for efficient power conversion.
2. DC-DC Converters: Ensures stable voltage regulation in converters.
3. Rectification: Employed in rectifier circuits for converting AC to DC.
4. Reverse Voltage Protection: Protects circuits from damage due to reverse polarity.
5. Clamping Circuits: Used to protect sensitive components by clamping voltage spikes.
6. RF and Communication Equipment: Employed for signal rectification and protection.
Its low forward voltage drop and fast switching capabilities make it suitable for high-efficiency designs.