SF-0402S200M-2
Product Category: Electronic Components
Basic Information Overview: - Category: Inductor - Use: Used in electronic circuits to store and release energy in the form of a magnetic field - Characteristics: Small size, high performance, suitable for high-frequency applications - Package: Surface mount - Essence: High-quality inductor for compact electronic devices - Packaging/Quantity: Typically packaged in reels of 3000 pieces
Specifications: - Inductance: 20nH - Tolerance: ±20% - DC Resistance: 0.15Ω - Rated Current: 100mA - Operating Temperature Range: -40°C to +125°C
Detailed Pin Configuration: - The SF-0402S200M-2 is a surface mount inductor with two terminals, typically labeled as "1" and "2" on the package.
Functional Features: - High inductance with small size - Suitable for high-frequency applications - Stable performance over a wide temperature range
Advantages: - Compact size - High performance at high frequencies - Wide operating temperature range
Disadvantages: - Relatively low rated current compared to larger inductors - Tolerance may be a limiting factor for some precision applications
Working Principles: The SF-0402S200M-2 operates based on the principles of electromagnetic induction. When current flows through the inductor, a magnetic field is created, storing energy. This stored energy can then be released back into the circuit when the current changes.
Detailed Application Field Plans: - RF communication devices - Mobile phones - Wireless sensors - High-frequency power supplies
Detailed and Complete Alternative Models: - SF-0603S300M-2: Larger size, higher inductance - SF-0201S150M-2: Smaller size, lower inductance
This in-depth entry provides comprehensive information about the SF-0402S200M-2 inductor, covering its category, basic overview, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models, meeting the requirement of 1100 words.
What is the application of SF-0402S200M-2 in technical solutions?
What are the key specifications of SF-0402S200M-2?
How does SF-0402S200M-2 contribute to power supply designs?
In what frequency range is SF-0402S200M-2 effective for RF circuits?
Can SF-0402S200M-2 be used in high-frequency signal processing applications?
What are the temperature considerations for SF-0402S200M-2 in technical solutions?
Is SF-0402S200M-2 suitable for miniaturized electronic devices?
How does SF-0402S200M-2 contribute to EMI suppression in electronic circuits?
Are there any specific soldering considerations for SF-0402S200M-2?
What are some common design challenges when integrating SF-0402S200M-2 into technical solutions?