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DownloadThe FSL336LRAN is a high-efficiency power management integrated circuit (PMIC) designed for use in a variety of applications requiring precise power regulation. This PMIC integrates advanced control techniques and power conversion technologies, ensuring stable and efficient power delivery. The FSL336LRAN is suitable for both consumer and industrial applications, offering robust performance and reliability. With its compact design and comprehensive protection features, it is an ideal choice for designers seeking to optimize power management in their systems.
High Efficiency: Ensures minimal power loss and optimal performance.
Advanced Control Techniques: Provides precise power regulation and stability.
Comprehensive Protection: Includes overvoltage, overcurrent, and thermal protection.
Compact Design: Saves space and facilitates easy integration into various applications.
Wide Input Voltage Range: Supports a broad range of input voltages, enhancing design flexibility.
Robust Performance: Designed for reliability in both consumer and industrial environments.
Parameter | Value |
---|---|
Type | PMIC - Power Management IC |
Input Voltage Range | 4.5V to 30V |
Output Voltage | Adjustable |
Output Current | Up to 2A |
Efficiency | Up to 95% |
Switching Frequency | 200kHz to 1MHz |
Operating Temperature | -40°C to 125°C |
Package / Case | SOIC-8 |
Mounting Type | Surface Mount |
Protection Features | OVP, OCP, OTP |
The FSL336LRAN is suitable for a variety of applications, including:
Consumer Electronics: Powers devices like smartphones, tablets, and wearable gadgets, ensuring efficient power management.
Industrial Control Systems: Provides stable voltage regulation for PLCs, sensors, and control units in industrial environments.
Telecommunication Equipment: Ensures consistent power supply for routers, switches, and other communication devices.
Medical Devices: Delivers reliable power for critical medical equipment, ensuring precision and safety.
Automotive Electronics: Supports in-vehicle electronic systems, enhancing reliability and performance.
The FSL336LRAN can be utilized in various scenarios, such as:
Portable Electronics: Enhances battery life and efficiency in portable devices, providing longer operational times.
Industrial Automation: Ensures stable operation of PLCs and control units, improving system reliability.
Communication Systems: Maintains reliable power for networking hardware, ensuring uninterrupted service.
Automotive Systems: Supports in-vehicle electronic systems, improving overall performance and reliability.
Medical Equipment: Ensures accurate and reliable power for diagnostic tools and monitoring devices, crucial for patient care.
Common international logistics methods for shipping the FSL336LRAN include:
DHL Express: Fast and reliable delivery with comprehensive tracking options and global reach, ideal for urgent shipments.
FedEx: Offers various shipping options including priority and economy services with robust tracking capabilities, suitable for flexible delivery needs.
UPS: Provides efficient shipping services with both expedited and standard options, featuring detailed tracking, ensuring reliable delivery times.
TNT: Specializes in time-sensitive shipments with reliable delivery services and extensive tracking, suitable for urgent and critical shipments.
EMS: A cost-effective international shipping option with reliable delivery times and tracking features, suitable for budget-conscious shipping needs.
Q1: What is the maximum output current of the FSL336LRAN?
A1: The FSL336LRAN can deliver up to 2A of output current.
Q2: Can the FSL336LRAN be used in automotive applications?
A2: Yes, the FSL336LRAN is suitable for automotive applications, providing reliable power management for various in-vehicle systems.
Q3: What protection features are included in the FSL336LRAN?
A3: The FSL336LRAN includes overvoltage protection (OVP), overcurrent protection (OCP), and overtemperature protection (OTP).
Q4: What is the efficiency of the FSL336LRAN?
A4: The FSL336LRAN has an efficiency of up to 95%, ensuring minimal power loss.
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