DP83861VQM-3
Manufacturer No:
DP83861VQM-3
Manufacturer:
Description:
ETHERNET TRANSCEIVER PQFP208
Datasheet:
Delivery:
Payment:
In Stock : 1446
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DP83861VQM-3 Specifications
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TypeParameter
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Supplier Device Package208-PQFP (28x28)
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Package / Case208-BFQFP Exposed Pad
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Operating Temperature0°C ~ 70°C (TA)
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Current - Supply900mA
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Voltage - Supply1.71V ~ 1.89V
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StandardsIEEE 802.3, 10/100/1000 Base-T/TX
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InterfaceGMII, MII
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FunctionMAC Controller
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ProtocolEthernet
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DigiKey ProgrammableNot Verified
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PackagingBulk
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Product StatusActive
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SeriesGig Phyter®
The NCV7471DQ5R2G is a specific integrated circuit chip manufactured by ON Semiconductor. It is a high side power switch that is optimized for automotive lighting and other resistive loads. Some advantages and application scenarios of the NCV7471DQ5R2G chip are:1. Robust Design: The chip is specifically designed for automotive applications, ensuring high reliability and robustness in harsh operating conditions.2. Enhanced Protection Features: It offers a wide range of built-in protection features, including overcurrent protection, thermal shutdown, and open load detection. These features help improve the safety and durability of automotive lighting systems.3. AEC-Q100 Qualified: The chip complies with the Automotive Electronics Council (AEC) standards, specifically AEC-Q100 qualification, which guarantees its suitability for use in automotive applications.4. Efficient Power Management: The NCV7471DQ5R2G chip has a low On-Resistance, which minimizes power losses and enhances overall power management efficiency in automotive lighting systems.5. Easy to Implement: The chip offers a compact and simple solution for driving resistive loads in automotive applications, simplifying the design and reducing time-to-market.Application Scenarios: 1. Automotive Lighting: The NCV7471DQ5R2G chip is primarily used for driving automotive lighting systems, such as headlights, taillights, interior lights, and turn signals. It ensures efficient and reliable operation of these lighting components.2. Resistive Load Control: Apart from automotive lighting, the chip can be utilized for controlling other resistive loads, such as heating elements, motors, actuators, and solenoids, where robustness, efficient power management, and protection features are required.It is important to note that the specific advantages and application scenarios may vary depending on the requirements of the automotive systems and the overall design considerations. It is recommended to refer to the datasheet and consult with application engineers for a detailed analysis.
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