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EMI/RFI Common Mode Inductors - UT/ET Series

EMI/RFI Common Mode Inductors - UT/ET Series

SKU:IND-2026e8

Control EMI/RFI with precision! UT/ET Series Inductors: Low leakage, high impedance, industry-compliant.

Regular price $24.99
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EMI/RFI Common Mode Inductors - UT/ET Series

EMI/RFI Common Mode Inductors - UT/ET Series

$24.99

Quantity: 1

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EMI/RFI Common Mode Inductors - UT/ET Series

EMI/RFI Common Mode Inductors - UT/ET Series

$24.99

Quantity: 1

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The UT/ET Series Common Mode Inductors are essential components for controlling electromagnetic interference (EMI) and radio frequency interference (RFI) in power supply lines and electronic equipment. With features like low leakage flux, high self-resonant frequency, and low stray capacitance, these inductors ensure optimal performance and reliability. Measuring 26.5mm x 26.5mm x 23mm, with a rated voltage of 250V and operating temperature range of -20 to 105°C, they offer high impedance and a unique configuration for efficient EMI suppression. Compliant with industry standards CSA, IEC, and UL, these inductors are ideal for a wide range of applications in institutional and government settings.

Product Specifications

Specifications Configuration Type
Horizontal
Specifications Current Rating
0.7 A
Specifications Dielectric Withstanding Voltage Ac
2,000 V
Specifications Features
High Impedance at Applicable Frequency | High Self-Resonant Frequency | Low Leakage Flux | Low Stray Capacitance in Section Winding
Specifications Height H
23 mm
Specifications Industry Standards
CSA | IEC | UL
Specifications Length L
26.5 mm
Specifications Max Dcr
0.75 Ohm
Specifications Max Inductance Difference
300 µH
Specifications Max Temperature Rise
45 ºC
Specifications Min Inductance
9.20 mH
Specifications Min Insulation Resistance
100 mOhm
Specifications Operating Temperature Range
-20 to 105 ºC
Specifications Pin Mounting A
21.0 mm
Specifications Pin Mounting B
15.0 mm
Specifications Rated Voltage Ac
250 V
Specifications Weight
0.88 oz
Specifications Width W
26.5 mm
Technical Notes 0
The inductance difference measures between the coil L1 and L2.