Manufacturer Part Number
LQH32CN2R2M53L
Manufacturer
murata-electronics
Introduction
The LQH32CN2R2M53L is a wirewound drum core inductor with a ferrite core, primarily designed for choke and filtering applications within electronic circuits.
Product Features and Performance
Drum Core, Wirewound construction
Ferrite core material
Unshielded for specific application needs
Operates effectively within a -40°C to 85°C temperature range
Designed for surface mount technology (SMT) applications
Product Advantages
High reliability in filtering and choke applications
Versatile temperature range suitable for a wide range of environments
Compact design fits various electronic assemblies
Efficiently handles up to 790 mA of current
Key Technical Parameters
Inductance: 2.2 µH
Tolerance: ±20%
Current Rating: 790 mA
DC Resistance (DCR): 126.1mOhm Max
Operating Temperature: -40°C to 85°C
Self Resonant Frequency: 64MHz
Inductance Frequency Test: 1 MHz
Surface Mount Package: 1210 (3225 Metric)
Quality and Safety Features
High-quality construction assures reliability over the product's life span
Meets industry standards for safety and operational integrity within specified parameters
Compatibility
Compatible with various surface mount technologies
Suitable for use in a broad range of electronic devices due to its unshielded design and compact footprint
Application Areas
Power Supplies
Consumer Electronics
Telecommunications devices
Automotive systems
Industrial machinery
Product Lifecycle
This product has been discontinued at Digi-Key, indicating it may be nearing the end of its production lifecycle
Potential for replacements or upgrades should be explored with murata-electronics for ongoing projects
Several Key Reasons to Choose This Product
Trusted manufacturer known for quality inductors, coils, and chokes
Efficient handling of high currents makes it ideal for power supply applications
The compact size allows integration into space-constrained designs
Versatility across a range of temperatures and applications ensures broad usability
The unshielded design offers specific advantages in certain circuit configurations