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EMI/RFI Suppression Inductors - UT/ET Series

EMI/RFI Suppression Inductors - UT/ET Series

SKU:IND-8f9e6e

UT/ET Series Inductors: Optimal EMI/RFI suppression for electronic systems. High performance, low stray capacitance.

Regular price $29.99
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EMI/RFI Suppression Inductors - UT/ET Series

EMI/RFI Suppression Inductors - UT/ET Series

$29.99

Quantity: 1

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EMI/RFI Suppression Inductors - UT/ET Series

EMI/RFI Suppression Inductors - UT/ET Series

$29.99

Quantity: 1

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The UT/ET Series Common Mode Inductors are essential components designed to effectively suppress electromagnetic interference (EMI) and radio frequency interference (RFI) in various electronic systems. Featuring low leakage flux and high self-resonant frequency, these inductors provide high impedance at applicable frequencies and low stray capacitance, ensuring optimal performance. With a configuration type of vertical and meeting industry standards such as CSA, IEC, and UL, these inductors are reliable solutions for mitigating EMI/RFI issues and maintaining the integrity of power supply lines and electronic equipment.

Product Specifications

Specifications Configuration Type
Vertical
Specifications Current Rating
2.70 A
Specifications Dielectric Withstanding Voltage Ac
2,000 V
Specifications Features
Low Leakage FluxHigh Self-Resonant FrequencyHigh Impedance at Applicable FrequencyLow Stray Capacitance in Section Winding
Specifications Industry Standards
CSA | IEC | UL
Specifications Max Dcr
0.15 Ohm
Specifications Max Height H
1.73 in | 43.94 mm
Specifications Max Inductance Difference
300 µH
Specifications Max Length L
1.06 in | 26.92 mm
Specifications Max Temperature Rise
45 ºC
Specifications Max Width W
1.46 in | 37.08 mm
Specifications Min Inductance
10.00 mH
Specifications Min Insulation Resistance
100 mOhm
Specifications Nominal Pin Mounting A
0.827 in | 21.00 mm
Specifications Nominal Pin Mounting B
0.591 in | 15.01 mm
Specifications Operating Temperature Range
-20 to 105 ºC
Specifications Rated Voltage Ac
250 V
Specifications Weight
2.60 oz
Technical Notes 0
The inductance difference measures between the coil L1 and L2.