Manufacturer Part Number
IHLP2020BZER3R3M11
Manufacturer
Vishay-Dale
Introduction
The IHLP2020BZER3R3M11 is a high-quality molded inductor provided by Vishay-Dale, designed for a wide range of applications requiring reliable inductance.
Product Features and Performance
Molded type, ensuring robust physical integrity.
Shielded construction, minimizes electromagnetic interference (EMI).
Offers 3.3 µH inductance with ±20% tolerance, useful across various electronic circuits.
Can handle significant current up to 4.1 A, with a saturation current of 4.7A.
Has a relatively low DC resistance of 57.8mOhm Max, enhancing efficiency.
Designed to operate within a wide temperature range from -55°C to 125°C, suitable for harsh environments.
Self-resonant frequency stands at 29MHz, suitable for a multitude of RF applications.
Product Advantages
High current rating and saturation current allow for usage in power supplies and energy storage.
Shielding provides reduced EMI, crucial for sensitive electronics.
The product's wide operating temperature makes it versatile for industrial, automotive, and consumer electronics.
The compact and rugged design accommodates tight and demanding design spaces.
Key Technical Parameters
Inductance: 3.3 µH
Tolerance: ±20%
Current Rating: 4.1 A
Saturation Current: 4.7A
DC Resistance: 57.8mOhm Max
Self-Resonant Frequency: 29MHz
Operating Temperature: -55°C to 125°C
Quality and Safety Features
Built to operate reliably in extreme conditions.
Molded construction aids in thermal management and structural integrity.
Compatibility
Surface Mount technology facilitates easy PCB integration.
Designed for universal compatibility with a wide range of electronic circuits.
Application Areas
Power management systems
RF and wireless communications
Consumer electronics
Automotive electronics
Renewable energy systems
Product Lifecycle
Status: Active
This product is not nearing discontinuation and replacements or upgrades should be widely available.
Several Key Reasons to Choose This Product
Reliable performance under extreme conditions.
High current and saturation current handling capacity.
Low DC resistance for efficient operation.
Versatile application across industries due to broad operating temperature and compact size.
Shielding minimizes interference, critical in RF and sensitive electronic applications.