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
| 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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