Manufacturer Part Number
NFP0QSN122HL2D
Manufacturer
murata-electronics
Introduction
The NFP0QSN122HL2D is a high-performance common mode choke designed for filtering applications, particularly in scenarios where noise reduction is critical. Developed by Murata Electronics, a leader in electronic components, this product is aimed at enhancing system reliability and performance by mitigating common mode noise.
Product Features and Performance
Effective common mode noise suppression
Compact size for space-sensitive applications
Low direct current resistance (DCR), minimizing power loss
High current handling capability
Optimized for a wide frequency range
Product Advantages
Reduces electromagnetic interference (EMI), enhancing system stability
Compact design allows for easy integration into various circuit designs
Low DCR helps in maintaining system efficiency
Durable construction ensures longevity and reliability
Key Technical Parameters
Common mode impedance values
Rated current
Operating temperature range
Size and footprint specifications
Quality and Safety Features
Manufactured under strict quality control standards
Complies with relevant international safety standards
Robust design resistant to environmental stressors
Compatibility
Versatile design compatible with a wide range of electronic circuits
Suitable for use in both AC and DC applications
Application Areas
Power supplies
Consumer electronics
Telecommunication systems
Industrial controls
Product Lifecycle
Obsolete status implies that the model is no longer being manufactured
Potential availability of replacements or upgrades for continuity in applications
Several Key Reasons to Choose This Product
Murata Electronics' reputation for quality and reliability
Effective solution for minimizing common mode noise, crucial for high-performance electronics
Compact and efficient design aids in seamless integration
Broad application suitability from consumer devices to industrial systems
While obsolete, possible replacements or upgrades may offer continuity and performance enhancements