Panasonic, ETQP3M Shielded Wire-wound SMD Inductor with a Metal Composite Core, 22 μH ±20% 2.7A Idc

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Packaging Options:
RS Stock No.:
238-3581
Mfr. Part No.:
ETQP3M220KVN
Brand:
Panasonic
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Brand

Panasonic

Inductance

22 μH

Maximum DC Current

2.7A

Length

6.4mm

Depth

6mm

Automotive Standard

AEC-Q200

Shielded

Yes

Tolerance

±20%

Series

ETQP3M

Core Material

Metal Composite

Panasonic ETQP3M Series Wire-Wound Surface Mount Inductor, 22μH Inductance, 2.7A Maximum DC Current - ETQP3M220KVN


This wire-wound surface mount inductor is an essential component designed for reliable performance in electronic circuits. With dimensions of 6.4 x 6 x 3mm, this compact inductor offers an inductance of 22 μH and a maximum direct current of 2.7 A. Engineered to meet the rigorous AEC-Q200 automotive standard, it ensures durability and efficiency in various applications.

Features & Benefits


• Metal composite construction enhances overall performance
• Low DC resistance of 140.8mΩ promotes energy efficiency
• Shielded design minimises electromagnetic interference
• Broad operating temperature range from -55°C to +155°C ensures versatility
• Maximum self-resonant frequency of 100kHz supports high-frequency applications
• Tolerance of ±20% provides reliability in critical conditions

Applications


• Used in automotive including power management systems
• Employed in power supplies for industrial automation
• Suitable for use in consumer electronics for signal processing
• Applied in RF devices requiring stable inductance

What is the significance of its low DC resistance?


A low DC resistance of 140.8mΩ aids in reducing power losses, leading to improved energy efficiency in power handling circuits.

How does the operating temperature range affect its use?


The extensive operating temperature range from -55°C to +155°C ensures functionality in harsh environments, making it suitable for automotive and industrial applications.

What advantages does the shielded design provide?


The shielded construction effectively reduces electromagnetic interference, which is vital for maintaining signal integrity in sensitive electronic devices.

What kinds of circuits benefit most from a 22 μH inductance?


Circuits that require filtering and energy storage in power conversion systems or RF applications often gain from the stability and performance of a 22 μH inductor.

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