2089-360-BLF Product Overview
Product Category: Electronic Component
Use: The 2089-360-BLF is a surface mount power inductor designed for use in various electronic circuits and applications.
Characteristics: This inductor offers high current handling capability, low DC resistance, and excellent thermal stability. It is suitable for applications requiring high efficiency and reliability.
Package: The 2089-360-BLF is available in a compact surface mount package, making it suitable for densely populated circuit boards.
Essence: This inductor is essential for energy storage and filtering in power supply and voltage regulation circuits.
Packaging/Quantity: The 2089-360-BLF is typically supplied in reels or trays, with quantities varying based on manufacturer specifications.
Specifications
Detailed Pin Configuration
The 2089-360-BLF features a standard surface mount pin configuration with clearly defined input and output terminals for easy integration into circuit designs.
Functional Features
Advantages and Disadvantages
Advantages: - High efficiency - Reliable performance - Compact size
Disadvantages: - Limited to specific applications due to its inductance value - Sensitive to external magnetic fields
Working Principles
The 2089-360-BLF operates based on the principles of electromagnetic induction, storing energy in its magnetic field and releasing it when required in the circuit.
Detailed Application Field Plans
This inductor is commonly used in: - Switch-mode power supplies - Voltage regulator modules - DC-DC converters - LED driver circuits
Detailed and Complete Alternative Models
2089-361-BLF
2089-359-BLF
2089-362-BLF
In conclusion, the 2089-360-BLF is a versatile surface mount power inductor with high current handling capability, making it suitable for various electronic applications requiring energy storage and filtering.
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What is 2089-360-BLF?
What are the key specifications of 2089-360-BLF?
How does 2089-360-BLF compare to similar components on the market?
In what types of technical solutions is 2089-360-BLF commonly used?
What are the potential challenges or limitations when using 2089-360-BLF?
Are there any application notes or reference designs available for integrating 2089-360-BLF into a technical solution?
What are the best practices for soldering and handling 2089-360-BLF during assembly?
Can 2089-360-BLF be used in harsh environmental conditions or industrial settings?
Are there any known reliability issues or failure modes associated with 2089-360-BLF?
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