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MAX20801TPBC+
+Lista de MateriaisVEGA - VE12 DERIVATIVE MPPT TO W
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FabricanteAnalog Devices Inc./Maxim Integrated
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Peça do Fabricante #MAX20801TPBC+
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Pacote FCQFN-10
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Em Estoque4243
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Especificações
| Atributo | Valor |
| Package / Case | Tray |
| Part Status | Active |
| Type | Cell-String Optimizer |
| Mounting Type | Surface Mount |
Visão Geral
Description
This driver offers a peak current capability which facilitates rapid switching, enhancing efficiency and performance in power management systems. The MAX20801TPBC+ supports both unipolar and bipolar output drive voltages, offering flexibility based on application needs. It also incorporates a range of protections like Under-Voltage Lockout (UVLO) and fault reporting to enhance system reliability.
Designed for ease of integration, the device comes in a compact package, making it suitable for space-constrained designs. Its high common-mode transient immunity (CMTI) and noise immunity ensure stable operation in electrically noisy environments. Overall, the MAX20801TPBC+ serves as a reliable component for engineers looking to improve the efficiency and safety of their power electronic designs.
Equivalent
1. TPS62130 from Texas Instruments
2. LMZM23601 from Texas Instruments
3. LTC3621 from Analog Devices
4. RT8299 from Richtek
5. MP2315 from Monolithic Power Systems
Always verify specifications like input voltage range, output current, switching frequency, and efficiency to ensure compatibility with your specific application.
Features
1. High Efficiency: Offers high power efficiency suitable for space-constrained applications.
2. Wide Input Voltage Range: Supports a broad input voltage range, allowing flexibility in various power supply designs.
3. Compact Package: Available in a small package, facilitating easy integration into compact designs.
4. Low Noise Operation: Designed to minimize electromagnetic interference (EMI), which is crucial for noise-sensitive applications.
5. Protection Features: Includes over-current, over-voltage, and thermal protection to enhance reliability and safety.
6. Adjustable Output: Provides adjustable output voltages, catering to diverse application needs.
7. Thermal Management: Features efficient thermal management to maintain performance under varying thermal conditions.
8. Fast Transient Response: Capable of handling rapid changes in load, making it suitable for dynamic power environments.
9. Integrated MOSFETs: Incorporates high-side and low-side MOSFETs for efficient power supply design.
These features make the MAX20801TPBC+ ideal for applications requiring efficient, reliable, and compact power management solutions.
Pinout
The MAX20801TPBC+ comes in a 25-bump WLP (Wafer Level Package) with a grid array layout, implying it has 25 pins or contact points. Each of these contacts serves specific functions related to power input, output, control, and communication with other device components on the circuit board.
The primary function of the MAX20801TPBC+ is to manage and regulate power efficiently, often used in applications requiring precise voltage regulation and power conversion. It may include features like step-down (buck) conversion, which helps in reducing input voltage to a desired level suitable for different parts of an electronic system.
For precise details on pin functions and complete specifications, referring to the datasheet provided by the manufacturer is recommended. This datasheet will contain detailed pin assignments, electrical characteristics, and functional descriptions necessary for proper implementation in circuit designs.
Manufacturer
Application
1. Telecommunications Equipment: Provides stable power supply for communication devices.
2. Industrial Automation: Used in control systems for efficient power management.
3. Consumer Electronics: Powers devices such as laptops, tablets, and other portable gadgets.
4. Networking Devices: Ensures reliable power delivery in routers and switches.
5. Automotive Systems: Suitable for infotainment systems and other electronic modules in vehicles.
Its compact design and high efficiency make it ideal for space-constrained applications where thermal management and power conservation are critical.