Coilcraft, Inc. Datasheets for RF Inductors

RF inductors are special inductors designed to be used in radio frequency (RF) and microwave applications.
RF Inductors: Learn more

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Product Name Notes
Coilcraft 1515SQ, 2222SQ, 2929SQ Series square air core inductors have extremely high Q factors and very tight inductance tolerances, making them suitable for narrowband RF amplifier matching and tuning applications.
Coilcraft 1812FS (4532) Series wirewound ferrite beads provide high performance in transmit and receive filters. They are magnetically shielded to minimize EMI and have low DC resistance for minimal insertion...
Coilcraft 1812FS Series shielded power inductors offer a unique construction that achieves exceptionally high self resonant frequencies (SRFs). Full magnetic shielding assures the lowest possible EMI. 5% tolerance parts in...
Coilcraft 4310LC Series wideband bias chokes provide flat bandwidth with high impedance to 6 GHz. They offer low DCR and excellent current handling and are ideal for use in high-current...
Coilcraft BCR Series conical inductors were designed specifically for broadband and high frequency applications, operating as a series of narrow-band inductors across a frequency range of 10 MHz to 40...
EMI // Power-Line-Common-Mo de-Choke // BU // BU10-1012
EMI // Power-Line-Common-Mo de-Choke // BU // BU10-1311
EMI // Power-Line-Common-Mo de-Choke // BU // BU10-1811
EMI // Power-Line-Common-Mo de-Choke // BU // BU10-6003
EMI // Power-Line-Common-Mo de-Choke // BU // BU15-1430
EMI // Power-Line-Common-Mo de-Choke // BU // BU15-2721
EMI // Power-Line-Common-Mo de-Choke // BU // BU15-4421
EMI // Power-Line-Common-Mo de-Choke // BU // BU15-4530
EMI // Power-Line-Common-Mo de-Choke // BU // BU15-7521
EMI // Power-Line-Common-Mo de-Choke // BU // BU16-1031
EMI // Power-Line-Common-Mo de-Choke // BU // BU16-2022
EMI // Power-Line-Common-Mo de-Choke // BU // BU16-2530
EMI // Power-Line-Common-Mo de-Choke // BU // BU16-4021
EMI // Power-Line-Common-Mo de-Choke // BU // BU16-4530
EMI // Power-Line-Common-Mo de-Choke // BU // BU9-103
EMI // Power-Line-Common-Mo de-Choke // BU // BU9-1320
EMI // Power-Line-Common-Mo de-Choke // BU // BU9-2011
EMI // Power-Line-Common-Mo de-Choke // BU // BU9-2820
EMI // Power-Line-Common-Mo de-Choke // BU // BU9-6011
EMI // Power-Line-Common-Mo de-Choke // BU // BU9H-103
EMI // Power-Line-Common-Mo de-Choke // BU // BU9H-1320
EMI // Power-Line-Common-Mo de-Choke // BU // BU9H-2011
EMI // Power-Line-Common-Mo de-Choke // BU // BU9H-2820
EMI // Power-Line-Common-Mo de-Choke // BU // BU9H-6011
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT2-1-2-12
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT2-1-5-6
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT2-1-5-9
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT2-1-9-4
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT2-13-1
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT2-2-6-6
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT2-3-3-4
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT2-3-8-2
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT2-5-15
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT2-6-5-2
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT2-7-12
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT2-7-5-1
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT2-8-15
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT2-9-9
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT3-11-5-6
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT3-14-4
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT3-16-2
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT3-2-5-15
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT3-28-2
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT3-3-12
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT3-32-1
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT3-4-4-15
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT3-4-9
EMI // Power-Line-Common-Mo de-Choke // CMT // CMT3-5-2-12
Our 132-xxSM Series Maxi Spring™ air core inductors have exceptionaly high Q factors and very tight inductance tolerances, making them suitable for narrowband RF amplifier matching and tuning applications. As...
Our 1508/2508 Series low-profile Mini Spring™ air core inductors are AEC-Q200 qualified and provide exceptionally high Q over a wide frequency range, while being less than 2/3 the height of...
Our 1812CAN Series filters a broad frequency range of common mode noise with 50% lower DCR and higher current handling than other CANbus chokes in the market. They are designed...
Our 1812CS Series of wirewound ceramic chip inductors have exceptionally high Q and excellent current handling compared to non-wirewound inductors of the same size. The ceramic construction withstands high peak...
Our 1812FS Series is a unique magnetically shielded chip inductor designed for filtering. The low-DCR inductors achieve high performance in transmit and receive applications. Inductance values cover a wide range...
Our 1812LS Series wirewound chip inductors have a ferrite-ceramic core construction that gives excellent current handling and low DCR in an 1812 (4532) chip size. They are offered in a...
Our 1812LS Series wirewound ferrite beads have a ferrite core construction that achieves high current handing and low DCR. Impedance ranges from 770 Ohms to 191 kOhms at 10 MHz,...
Our AxxT/BxxT Series Mini Spring™ air core inductors have extremely high Q factors and very tight inductance tolerances, making them suitable for narrowband RF amplifier matching and tuning applications. As...
Our CDF Series virtually eliminates conducted EMI in data line applications. It provides common mode and differential mode noise attenuation and reduces noise by a factor of 32 from 15...
Our CM1394 Series common mode choke was designed for IEEE1394 and other twisted-pair interfaces. It provides common mode and differential mode filtering in a single device with more than 21...
Our CMH/CMV Series of common mode chokes enhance power system performance with high-current capability. Designed to minimize electromagnetic interference (EMI) and optimize power transmission efficiency, these robust components are ideal...
Our Midi Spring® air core inductors have exceptionaly high Q factors and very tight inductance tolerances, making them suitable for narrowband RF amplifier matching and tuning applications. As their name...
RF // Air-Core-Inductors // 0906-1606 // 1606-10
RF // Air-Core-Inductors // 0906-1606 // 1606-6
RF // Air-Core-Inductors // 0906-1606 // 1606-7
RF // Air-Core-Inductors // 0906-1606 // 1606-8
RF // Air-Core-Inductors // 0906-1606 // 1606-9
RF // Air-Core-Inductors // 1010VS-1212VS-2014VS // 2014VS-111
RF // Air-Core-Inductors // 1010VS-1212VS-2014VS // 2014VS-151
RF // Air-Core-Inductors // 1010VS-1212VS-2014VS // 2014VS-201
RF // Air-Core-Inductors // 1010VS-1212VS-2014VS // 2014VS-251
RF // Air-Core-Inductors // 1010VS-1212VS-2014VS // 2014VS-33N
RF // Air-Core-Inductors // 1010VS-1212VS-2014VS // 2014VS-66N
RF // Air-Core-Inductors // 1512SP-2712SP // 2712SP-101
RF // Air-Core-Inductors // 1512SP-2712SP // 2712SP-10N
RF // Air-Core-Inductors // 1512SP-2712SP // 2712SP-121
RF // Air-Core-Inductors // 1512SP-2712SP // 2712SP-12N
RF // Air-Core-Inductors // 1512SP-2712SP // 2712SP-151
RF // Air-Core-Inductors // 1512SP-2712SP // 2712SP-15N
RF // Air-Core-Inductors // 1512SP-2712SP // 2712SP-18N
RF // Air-Core-Inductors // 1512SP-2712SP // 2712SP-22N
RF // Air-Core-Inductors // 1512SP-2712SP // 2712SP-27N
RF // Air-Core-Inductors // 1512SP-2712SP // 2712SP-33N
RF // Air-Core-Inductors // 1512SP-2712SP // 2712SP-39N
RF // Air-Core-Inductors // 1512SP-2712SP // 2712SP-47N
RF // Air-Core-Inductors // 1512SP-2712SP // 2712SP-51N
RF // Air-Core-Inductors // 1512SP-2712SP // 2712SP-56N
RF // Air-Core-Inductors // 1512SP-2712SP // 2712SP-68N
RF // Air-Core-Inductors // 1512SP-2712SP // 2712SP-82N
RF // Air-Core-Inductors // 1515SQ-2222SQ-2929SQ // 2222SQ-111
RF // Air-Core-Inductors // 1515SQ-2222SQ-2929SQ // 2222SQ-131
RF // Air-Core-Inductors // 1515SQ-2222SQ-2929SQ // 2222SQ-161
RF // Air-Core-Inductors // 1515SQ-2222SQ-2929SQ // 2222SQ-181
RF // Air-Core-Inductors // 1515SQ-2222SQ-2929SQ // 2222SQ-221
RF // Air-Core-Inductors // 1515SQ-2222SQ-2929SQ // 2222SQ-271
RF // Air-Core-Inductors // 1515SQ-2222SQ-2929SQ // 2222SQ-301
RF // Air-Core-Inductors // 1515SQ-2222SQ-2929SQ // 2222SQ-90N
RF // Air-Core-Inductors // 1515SQ-2222SQ-2929SQ // 2929SQ-331
RF // Air-Core-Inductors // 1515SQ-2222SQ-2929SQ // 2929SQ-361
RF // Air-Core-Inductors // 1515SQ-2222SQ-2929SQ // 2929SQ-391
RF // Air-Core-Inductors // 1515SQ-2222SQ-2929SQ // 2929SQ-431
RF // Air-Core-Inductors // 1515SQ-2222SQ-2929SQ // 2929SQ-501
RF // Air-Core-Inductors // AxxT-BxxT // B06T
RF // Air-Core-Inductors // AxxT-BxxT // B07T
RF // Air-Core-Inductors // AxxT-BxxT // B08T
RF // Air-Core-Inductors // AxxT-BxxT // B09T
RF // Air-Core-Inductors // AxxT-BxxT // B10T
RF // Tunable-RF-Inductors // Uni10 // 142-01J08SL
RF // Tunable-RF-Inductors // Uni10 // 142-02J08SL
RF // Tunable-RF-Inductors // Uni10 // 142-03J08SL
RF // Tunable-RF-Inductors // Uni10 // 142-04J08SL
RF // Tunable-RF-Inductors // Uni10 // 142-05J08SL
RF // Tunable-RF-Inductors // Uni10 // 142-06J08SL
RF // Tunable-RF-Inductors // Uni10 // 142-07J08SL
RF // Tunable-RF-Inductors // Uni10 // 142-08J08SL
RF // Tunable-RF-Inductors // Uni10 // 142-09J08SL
RF // Tunable-RF-Inductors // Uni10 // 142-10J08SL
RF // Tunable-RF-Inductors // Uni10 // 143-09J12SL
RF // Tunable-RF-Inductors // Uni10 // 143-10J12SL
RF // Tunable-RF-Inductors // Uni10 // 143-11J12SL
RF // Tunable-RF-Inductors // Uni10 // 143-12J12SL
RF // Tunable-RF-Inductors // Uni10 // 143-13J12SL
RF // Tunable-RF-Inductors // Uni10 // 143-14J12SL
RF // Tunable-RF-Inductors // Uni10 // 143-15J12SL
RF // Tunable-RF-Inductors // Uni10 // 143-16J12SL
RF // Tunable-RF-Inductors // Uni10 // 143-17J12SL
RF // Tunable-RF-Inductors // Uni10 // 143-18J12SL
RF // Tunable-RF-Inductors // Uni10 // 143-19J12SL
RF // Tunable-RF-Inductors // Uni10 // 143-20J12SL
RF // Tunable-RF-Inductors // Uni10 // 144-01J12SL
RF // Tunable-RF-Inductors // Uni10 // 144-02J12SL
RF // Tunable-RF-Inductors // Uni10 // 144-03J12SL
RF // Tunable-RF-Inductors // Uni10 // 144-04J12SL
RF // Tunable-RF-Inductors // Uni10 // 144-05J12SL
RF // Tunable-RF-Inductors // Uni10 // 144-06J12SL
RF // Tunable-RF-Inductors // Uni10 // 144-07J12SL
RF // Tunable-RF-Inductors // Uni10 // 144-08J12SL
RF // Tunable-RF-Inductors // Uni10 // 144-09J12SL
RF // Tunable-RF-Inductors // Uni10 // 144-10J12SL
RF // Tunable-RF-Inductors // Uni5 // 164-01A06SL
RF // Tunable-RF-Inductors // Uni5 // 164-02A06SL
RF // Tunable-RF-Inductors // Uni5 // 164-03A06SL
RF // Tunable-RF-Inductors // Uni5 // 164-04A06SL
RF // Tunable-RF-Inductors // Uni5 // 164-05A06SL
RF // Tunable-RF-Inductors // Uni5 // 164-06A06SL
RF // Tunable-RF-Inductors // Uni5 // 164-07A06SL
RF // Tunable-RF-Inductors // Uni5 // 164-08A06SL
RF // Tunable-RF-Inductors // Uni5 // 164-09A06SL
RF // Tunable-RF-Inductors // Uni5 // 164-10A06SL
RF // Tunable-RF-Inductors // Uni5 // 164-11A06SL
RF // Tunable-RF-Inductors // Uni5 // 165-00A06SL
RF // Tunable-RF-Inductors // Uni5 // 165-01A06SL
RF // Tunable-RF-Inductors // Uni5 // 165-02A06SL
RF // Tunable-RF-Inductors // Uni5 // 165-03A06SL
RF // Tunable-RF-Inductors // Uni5 // 165-04A06SL
RF // Tunable-RF-Inductors // Uni5 // 165-05A06SL
RF // Tunable-RF-Inductors // Uni5 // 165-06A06SL
RF // Tunable-RF-Inductors // Uni5 // 165-07A06SL
RF // Tunable-RF-Inductors // Uni7 // 146-01J08SL
RF // Tunable-RF-Inductors // Uni7 // 146-02J08SL
RF // Tunable-RF-Inductors // Uni7 // 146-03J08SL
RF // Tunable-RF-Inductors // Uni7 // 146-04J08SL
RF // Tunable-RF-Inductors // Uni7 // 146-05J08SL
RF // Tunable-RF-Inductors // Uni7 // 146-06J08SL
RF // Tunable-RF-Inductors // Uni7 // 146-07J08SL
RF // Tunable-RF-Inductors // Uni7 // 146-08J08SL
RF // Tunable-RF-Inductors // Uni7 // 146-09J08SL
RF // Tunable-RF-Inductors // Uni7 // 146-10J08SL
RF // Tunable-RF-Inductors // Uni7 // 150-01J08SL
RF // Tunable-RF-Inductors // Uni7 // 150-02J08SL
RF // Tunable-RF-Inductors // Uni7 // 150-03J08SL
RF // Tunable-RF-Inductors // Uni7 // 150-04J08SL
RF // Tunable-RF-Inductors // Uni7 // 150-05J08SL
RF // Tunable-RF-Inductors // Uni7 // 150-06J08SL
RF // Tunable-RF-Inductors // Uni7 // 150-07J08SL
The CMA family of automotive qualified common mode chokes provide high current capability, high frequency noise suppression, and high isolation voltage for automotive power electronics. Suitable for inverters, motor drives,...
0.300″ / 7,6 height is ideal for low profile applications Windings are precision molded into plastic for mechanical and electrical stability Threaded Carbonyl J core with a slotted socket Extremely...
Highest common mode impedance over the widest frequency range. 1250 Vrms, one minute isolation between windings. Inductance values up to 125 mH; current ratings as high as 15 Amps. UL1446...
Inductance values from 2.5 nH to 150 nH (tolerances as low as 2%) Tight tolerance can eliminate circuit tuning Acrylic jacket provides a flat top for pick and place Exceptionally...
Low profile toroid construction Surface mount, magnetically shielded package Up to 2.27 kOhms impedance at 2.9 MHz 1000 Vrms isolation (hipot) between windings Refer to Designing Common Mode Filters for...
Low profile toroid construction Surface mount, magnetically shielded package Up to 2.59 kOhms impedance at 4.5 MHz 1000 Vrms isolation (hipot) between windings Refer to Designing Common Mode Filters for...
Low profile toroid construction Surface mount, magnetically shielded package Up to 28.28 kOhms impedance at 0.26 MHz 1000 Vrms isolation (hipot) between windings Refer to Designing Common Mode Filters for...
Low profile toroid construction Surface mount, magnetically shielded package Up to 3.11 kOhms impedance at 1.8 MHz 1000 Vrms isolation (hipot) between windings Refer to Designing Common Mode Filters for...
Low profile toroid construction Surface mount, magnetically shielded package Up to 3.33 kOhms impedance at 5.8 MHz 1000 Vrms isolation (hipot) between windings Refer to Designing Common Mode Filters for...
Low profile toroid construction Surface mount, magnetically shielded package Up to 3.64 kOhms impedance at 1.9 MHz 1000 Vrms isolation (hipot) between windings Refer to Designing Common Mode Filters for...
Low profile toroid construction Surface mount, magnetically shielded package Up to 4.17 kOhms impedance at 1.9 MHz 1500 Vrms isolation (hipot) between windings Refer to Designing Common Mode Filters for...
Low profile toroid construction Surface mount, magnetically shielded package Up to 4.19 kOhms impedance at 3 MHz 1000 Vrms isolation (hipot) between windings Refer to Designing Common Mode Filters for...
Low profile toroid construction Surface mount, magnetically shielded package Up to 4.53 kOhms impedance at 2.2 MHz 1000 Vrms isolation (hipot) between windings Refer to Designing Common Mode Filters for...
Low profile toroid construction Surface mount, magnetically shielded package Up to 4.56 kOhms impedance at 2.5 MHz 1000 Vrms isolation (hipot) between windings Refer to Designing Common Mode Filters for...
Low profile toroid construction Surface mount, magnetically shielded package Up to 5.65 kOhms impedance at 1.8 MHz 1000 Vrms isolation (hipot) between windings Refer to Designing Common Mode Filters for...
Low profile toroid construction Surface mount, magnetically shielded package Up to 6.57 kOhms impedance at 0.98 MHz 1000 Vrms isolation (hipot) between windings Refer to Designing Common Mode Filters for...
Low profile toroid construction Surface mount, magnetically shielded package Up to 7.95 kOhms impedance at 2.8 MHz 1000 Vrms isolation (hipot) between windings Refer to Designing Common Mode Filters for...
Low profile toroid construction Surface mount, magnetically shielded package Up to 9.42 kOhms impedance at 1.1 MHz 1000 Vrms isolation (hipot) between windings Refer to Designing Common Mode Filters for...
Optimized for power over coax (PoC) applications Small size to reduce board area of overall system solutions High impedance (≥ 1kOhm) maintained over a wide band frequency range to isolate...
Significant noise attenuation over a wide range of frequencies Compact size and light weight Independent windings allow use in high-voltage signal lines 1000 Vrms, one minute isolation (hipot) between windings...
Windings are precision molded into plastic for mechanical and electrical stability Tuning is done by means of a threaded powdered iron core with a hex socket Optional plated brass shield...
Windings are precision molded into plastic for mechanical and electrical stability Tuning is done by means of an aluminum core Optional plated brass shield cans with solderable tabs provide integral...
Windings are precision molded into polypropylene for mechanical and electrical stability Tuning is done by means of a threaded powdered iron core with a slotted socket Optional plated brass shield...

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