RF inductors - SMD

RF (Radio Frequency) inductors in SMD (Surface Mount Device) form are specialized components used in high-frequency electronic circuits and applications. SMD RF inductors are designed to be mounted directly onto the surface of a circuit board, offering advantages such as space-saving, easy assembly, and compatibility with automated manufacturing processes.
RF inductors are specifically optimized for operation at radio frequency ranges, typically from a few megahertz (MHz) up to several gigahertz (GHz). They are commonly used in RF applications, including RF filters, oscillators, RF amplifiers, impedance matching networks, and wireless communication systems.
SMD RF inductors feature a compact design and are constructed similarly to other inductors. They consist of a coil wound on a core material, but with specific considerations for high-frequency performance and minimizing parasitic effects. These parasitic effects include self-capacitance, series resistance, and interwinding capacitance, which can impact the inductor's performance at high frequencies.
The core materials used in SMD RF inductors are carefully chosen to provide high magnetic permeability, low losses, and stable performance across the desired frequency range. Common core materials for RF inductors include ceramic materials, ferrite, and powdered iron.
SMD RF inductors come in various package sizes and shapes, denoted by standardized codes such as 0402, 0603, or 0805, indicating their dimensions in terms of length and width. This allows for easy integration into surface mount technology and efficient assembly onto circuit boards.
When selecting SMD RF inductors, critical parameters to consider include inductance value, quality factor (Q factor), self-resonant frequency (SRF), and maximum current handling capability. The inductance value determines the component's ability to store energy in its magnetic field, while the Q factor represents its efficiency and ability to maintain high-quality performance. The SRF indicates the frequency at which the inductor starts to exhibit resonance due to its parasitic capacitance. Maximum current handling capability is crucial for ensuring the inductor can withstand the power demands of the RF circuit.
SMD RF inductors are chosen based on specific circuit requirements, such as the desired operating frequency, impedance matching, bandwidth, and available board space. They are essential components in RF systems, contributing to impedance control, filtering, and energy storage functions necessary for reliable and efficient RF signal processing and wireless communication.

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Enter Qty TypePackage / CaseShieldingInductanceToleranceMaximum DC CurrentMaximum DC ResistanceSaturation CurrentMinimum Operating TemperatureMaximum Operating TemperatureQ MinimumSelf Resonant FrequencyTerminationLengthWidthHeightDiameterCore MaterialQualificationSeriesPackaging
  
                         
LBM2016TR33J


RF Inductors - SMD 963-LSQMB201616TR33J RPLCMT PN 0806 .33uH 273mOhms 5% 490mA
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Taiyo Yuden 3228
Ships to you
between Tue. 21 Jul to Thu. 23 Jul
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AUD 0.0983

Multiples of: 1

Wirewound0806 (2016 METRIC)Unshielded330 nH5 %490 mA273 mOhms-- 40 C+ 105 C30400 MHzStandard2 mm1.6 mm1.8 mm-  LBMReel , Cut Tape
LQW18ANR27J80D


RF Inductors - SMD
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This product is classified as Large/Heavy, additional shipping charges may apply. A customer service representative may contact you after ordering to confirm exact shipping charges.

Murata 879
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between Tue. 21 Jul to Thu. 23 Jul
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AUD 0.0983

Multiples of: 1

Wirewound0603 (1608 METRIC)Unshielded270 nH5 %260 mA2.42 Ohms - 55 C+ 125 C241.25 GHzStandard1.65 mm0.99 mm0.9 mm   LQWReel , Cut Tape
CL1004R3-2-R050-R


RF Inductors - SMD 50 NH 20%
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Eaton 873
Ships to you
between Tue. 21 Jul to Thu. 23 Jul
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AUD 4.6791

Multiples of: 1

                    Reel , Cut Tape
LQP03TG2N9B02D


RF Inductors - SMD
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Murata 873
Ships to you
between Wed. 29 Jul to Mon. 03 Aug
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AUD 0.0083

Multiples of: 100

Thin Film0201 (0603 METRIC)Unshielded2.9 nH0.1 nH450 mA250 mOhms - 55 C+ 125 C139.5 GHzStandard0.6 mm0.3 mm0.3 mm-Ferrite LQPReel , Cut Tape
MHQ1005075HA18NJTD25


RF Inductors - SMD FIXED IND 18NH 0.28A 650 MOHM SMD
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TDK 873
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between Tue. 21 Jul to Thu. 23 Jul
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AUD 0.11

Multiples of: 1

Multilayer Ceramic Inductor0402 (1005 METRIC)Shielded18 nH5 %280 mA650 mOhms - 55 C+ 125 C203.3 GHzStandard1 mm0.5 mm0.7 mm Ceramic MHQReel , Cut Tape
MHQ1005075HA27NHTD25


RF Inductors - SMD FIXED IND 27NH 0.25A 600 MOHM SMD
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TDK 873
Ships to you
between Tue. 21 Jul to Thu. 23 Jul
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AUD 0.11

Multiples of: 1

Multilayer Ceramic Inductor0402 (1005 METRIC)Shielded27 nH3 %250 mA600 mOhms - 55 C+ 125 C202.4 GHzStandard1 mm0.5 mm0.7 mm Ceramic MHQReel , Cut Tape
MHQ1005075HA1N6BTD25


RF Inductors - SMD FIXED IND 1.6NH 1A 30 MOHM SMD
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TDK 873
Ships to you
between Tue. 21 Jul to Thu. 23 Jul
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AUD 0.11

Multiples of: 1

Multilayer Ceramic Inductor0402 (1005 METRIC)Shielded1.6 nH0.1 nH1 A30 mOhms - 55 C+ 125 C2020 GHzStandard1 mm0.5 mm0.7 mm Ceramic MHQReel , Cut Tape
MHQ1005075HA2N1STD25


RF Inductors - SMD FIXED IND 2.1NH 1A 50 MOHM SMD
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TDK 873
Ships to you
between Tue. 21 Jul to Thu. 23 Jul
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AUD 0.11

Multiples of: 1

Multilayer Ceramic Inductor0402 (1005 METRIC)Shielded2.1 nH0.3 nH1 A50 mOhms - 55 C+ 125 C2013.6 GHzStandard1 mm0.5 mm0.7 mm Ceramic MHQReel , Cut Tape
WCLA2012V1-2R2-R


RF Inductors - SMD WCLA Auto Chip IND 2012 2.2nH 2 Pads
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Eaton 873
Ships to you
between Tue. 21 Jul to Thu. 23 Jul
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AUD 0.21

Multiples of: 1

Wirewound0805 (2012 METRIC)Unshielded2.2 nH5 %800 mA30 mOhms-- 40 C+ 125 C508.5 GHzStandard2.3 mm1.7 mm1.52 mm- AEC - Q200WCLAReel , Cut Tape
MHQ1005075HA22NJTD25


RF Inductors - SMD FIXED IND 22NH 0.28A 500 MOHM SMD
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This product is classified as Large/Heavy, additional shipping charges may apply. A customer service representative may contact you after ordering to confirm exact shipping charges.

TDK 838
Ships to you
between Tue. 21 Jul to Thu. 23 Jul
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AUD 0.11

Multiples of: 1

Multilayer Ceramic Inductor0402 (1005 METRIC)Shielded22 nH5 %280 mA500 mOhms - 55 C+ 125 C202.7 GHzStandard1 mm0.5 mm0.7 mm Ceramic MHQReel , Cut Tape
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