MAX16975BAEE/V+W
Manufacturer No:
MAX16975BAEE/V+W
Manufacturer:
Description:
28V, 1.2A AUTOMOTIVE STEP-DOWN C
Datasheet:
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MAX16975BAEE/V+W Specifications
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TypeParameter
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Supplier Device Package16-QSOP
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Package / Case16-SSOP (0.154", 3.90mm Width)
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Mounting TypeSurface Mount
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Operating Temperature-40°C ~ 125°C (TJ)
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Synchronous RectifierNo
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Frequency - Switching220kHz ~ 1MHz
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Current - Output1.2A
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Voltage - Output (Max)10V
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Voltage - Output (Min/Fixed)1V (5V)
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Voltage - Input (Max)28V
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Voltage - Input (Min)3.5V
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Number of Outputs1
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Output TypeAdjustable (Fixed)
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TopologyBuck
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Output ConfigurationPositive
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FunctionStep-Down
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PackagingTube
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Product StatusActive
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SeriesAutomotive, AEC-Q100
The MAX16975BAEE/V+W is a specific integrated circuit (IC) chip designed by Maxim Integrated. It is a high-voltage, high-efficiency, synchronous step-down DC-DC converter. Here are some advantages and application scenarios of this chip:Advantages: 1. High Efficiency: The MAX16975BAEE/V+W chip offers high efficiency, which helps in reducing power dissipation and increasing battery life in portable devices. 2. Wide Input Voltage Range: It can operate with input voltages ranging from 4.5V to 60V, making it suitable for a wide range of applications. 3. Integrated Power MOSFETs: The chip integrates power MOSFETs, which simplifies the design and reduces the external component count. 4. Adjustable Output Voltage: The output voltage can be adjusted using external resistors, providing flexibility in various applications. 5. Overcurrent and Overtemperature Protection: The chip includes built-in protection features like overcurrent and overtemperature protection, ensuring safe operation.Application Scenarios: 1. Automotive Electronics: The MAX16975BAEE/V+W chip is commonly used in automotive electronics applications, such as infotainment systems, advanced driver-assistance systems (ADAS), and lighting systems. Its wide input voltage range and high efficiency make it suitable for automotive power supply requirements. 2. Industrial Applications: The chip can be used in industrial applications that require high-voltage power supplies, such as factory automation equipment, motor control systems, and power distribution systems. 3. Telecommunications: It can be utilized in telecommunications equipment, including base stations, routers, and switches, where high efficiency and wide input voltage range are essential for reliable operation. 4. Renewable Energy Systems: The chip can be employed in renewable energy systems, such as solar power inverters and wind turbine controllers, to efficiently convert high-voltage DC inputs to lower voltage levels required for various components. 5. Battery-Powered Devices: The high efficiency and adjustable output voltage make the chip suitable for battery-powered devices, such as portable medical devices, handheld instruments, and consumer electronics.It is important to note that the specific application scenarios may vary depending on the requirements and specifications of the system being designed.
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