Panasonic, ETQP4M Shielded Wire-wound SMD Inductor with a Metal Composite Core, 47 μH ±20% 2.9A Idc

Subtotal (1 reel of 500 units)*

£184.50

(exc. VAT)

£221.50

(inc. VAT)

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Per Reel*
500 +£0.369£184.50

*price indicative

RS Stock No.:
238-3622
Mfr. Part No.:
ETQP4M470KFM
Brand:
Panasonic
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Brand

Panasonic

Inductance

47 μH

Maximum DC Current

2.9A

Length

7.4mm

Automotive Standard

AEC-Q200

Depth

7mm

Height

4.8mm

Dimensions

7.4 x 7 x 4.8mm

Shielded

Yes

Tolerance

±20%

Series

ETQP4M

Core Material

Metal Composite

Maximum Self Resonant Frequency

100kHz

Maximum Operating Temperature

+150°C

Minimum Operating Temperature

-40°C

Moulded

Yes

Panasonic ETQP4M Series Wire-Wound Surface Mount Inductor, 47μH Inductance, 2.9A Maximum DC Current - ETQP4M470KFM


This wire-wound surface mount inductor is designed for reliable performance in various electronic applications. With a compact size of 7.4 x 7 x 4.8mm, it efficiently operates with an inductance value of 47 μH. This inductor is well-suited for automotive environments, adhering to the AEC-Q200 standard, ensuring it meets stringent automotive reliability requirements.

Features & Benefits


• Suitable for high current applications with a maximum DC current of 2.9A
• Low DC resistance of 163.46mΩ enhances efficiency
• Metal composite core provides reliable thermal stability
• Shielded design minimises electromagnetic interference
• Operating temperature range from -40°C to +150°C for diverse conditions
• ±20% tolerance supports precise circuit demands

Applications


• Ideal for automotive electronic control units
• Utilised in power supply circuits requiring efficient energy transfer
• Used in signal processing within telecommunications
• Integrated into filters in power management systems

What is the significance of the AEC-Q200 standard for this component?


The AEC-Q200 standard ensures that the component has undergone rigorous testing for reliability in automotive applications, making it a crucial choice for designs that require durability in harsh environments.

How does the low DC resistance benefit circuit performance?


A low DC resistance reduces energy loss in the form of heat, which enhances the overall efficiency and reliability of the circuitry, particularly in high-power applications where heat generation can be a concern.

What environments can this inductor effectively function in?


The inductor can operate effectively in a wide temperature range from -40°C to +150°C, making it suitable for various environments, including extreme conditions found in automotive and industrial applications.