Oval shape nanocrystalline core
Contact Person : Wang
Phone Number : +8615819809198
Minimum Order Quantity : | 100 pcs | Price : | USD 0.8-1.0 |
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Packaging Details : | Carton, 10 Years Experience Factory Supplies EMI Filter Common Mode Chokes Usage 26-16-10 Nanocrystalline Core | Delivery Time : | 15 days |
Payment Terms : | T/T | Supply Ability : | 50000 pcs |
Place of Origin: | China | Brand Name: | King Magnetics |
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Certification: | RoHS | Model Number: | KMN252010 |
Detail Information |
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Name: | 25-20-10 Nanocrystalline Amorphous Core | Material: | Nanocrystalline Based Amorphous Ribbon |
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Part No.: | KMN252010 | Material Model: | 1K107B |
Core Dimensions: | 25*20*10mm | Case Dimensions: | 28*17.2*13.2mm |
Finished Type: | Brownish Red Plastic Cased | Max Working Temperature: | 120 Degree |
Usage: | Common Mode Choke, EMI Filter, Low Pass Noise Filter | AL Value: | 20.0uH Min @ 10KHz, 0.25V |
Product Description
Why choose us?!!
> Ten years experience in manufacturing amorphous and nanocrystalline cores.
> Our own factory produces, we only make high quality magnetic cores.
> Quality is our culture. 100% tested before shipping.
> Alibaba trade assurance, with us your money in safe!
> High performance, our cores can meet world standard quality.
> Your inquiry will be responsed in 24 HOURS. Time is GOLD!
> Small order is welcome, we service every client!
Factory Supplies EMI Filter KMN252010 Nanocrystalline Core
Amorphous and nanocrystalline technology is a very important technology in modern magnetic materials, cores and inductive components. King Magnetics has developed series of nanocrystalline cores for common mode chokes.
Nanocrystalline cores feature very high permeability over low frequency to high frequency up to 30Mhz. They are very suitable for common mode choke to used as EMC filter to compress conducted common mode noise. Compared to traditional ferrite core, nanocrystalline core has a lot of advantages as high inductance, good filter effective, small size and volume, lower turns of copper wire, lower power consumption and high efficiency.
Curie temperature of nanocrystalline cores is about 560℃, much higher than traditional ferrite core about 200℃. High curie temperature make nanocrystalline core excellent thermal stability, and can continuous working at up to 120℃ environment.
Nanocrystalline cores is the best choice for application of common mode choke.
Material: Fe-based Nanocrystalline core
Saturation flux density induction: 1.25T
Permeability @ 10KHz: > 50000
Permeability @ 100KHz: >10500
Curie temperature(℃): 560
Stacking factor: 0.78
Saturation magnetostriction(*10^-6): <2
Resistivity (μΩ.cm): 115
Ribbon thickness: 25μm
Core shapes: Toroidal core
>> EMC Filter
>> Switched mode power supply
>> Computer power supply
>> Communication and network power supply
>> Laser and X-ray power supply
>> Welding equipment and Electrical plating power supply
>> Solar energy equipment and Wind power generator
>> Household electrical appliance
>> Uninterruptable power supply (UPS)
>> Frequency converter
>> Inducted heating equipment
>> high-speed railway power supplies
These cores are our standard products, we can also design and produce high performance cores according to customer’s requirements, including sizes, inductance and applications. We can help customers to select the best performance cores.
* Epoxy coated.
Part No. | Core dimensions | Case dimensions | Effictive cross section |
Mean path length |
Weight | AL Minimum Value | |||||
od | id | h | OD | ID | H | AFe | lFe | mFe | 10kHz | 100kHz | |
mm | mm | mm | mm | mm | mm | cm2 | cm | g | μH | μH | |
KMN986545 | 9.8 | 6.5 | 4.5 | 11.3 | 5 | 6.1 | 0.06 | 2.6 | 1.1 | 14.2 | 3.0 |
KMN120805 | 12 | 8 | 4.5 | 14.5 | 6.3 | 6.9 | 0.07 | 3.1 | 1.6 | 15.6 | 3.7 |
KMN161008 | 16 | 10 | 8 | 17.8 | 8.4 | 9.9 | 0.19 | 4.1 | 5.5 | 34.6 | 6.9 |
KMN191510 | 19 | 15 | 10 | 21.2 | 13.5 | 12.3 | 0.16 | 5.3 | 6.0 | 22.0 | 4.4 |
KMN201208 | 20 | 12 | 8 | 21.7 | 10.8 | 9.9 | 0.25 | 5.0 | 9.1 | 37.4 | 7.5 |
KMN211308E * | 21.3 | 13.6 | 8 | 22 | 13 | 8.8 | 0.24 | 5.5 | 9.5 | 33.0 | 6.6 |
KMN252010 | 25 | 20 | 10 | 28 | 17.2 | 13.2 | 0.20 | 7.1 | 10 | 20.8 | 4.2 |
KMN261610 | 25.5 | 16 | 10 | 28.4 | 14 | 13.0 | 0.39 | 6.6 | 19 | 44.6 | 8.9 |
KMN302010 | 30 | 20 | 10 | 33.2 | 17.8 | 13.3 | 0.39 | 7.9 | 22 | 37.4 | 7.5 |
KMN302015 | 30 | 20 | 15 | 33.6 | 17.8 | 17.8 | 0.59 | 7.9 | 33 | 56.2 | 11.2 |
KMN322010 | 32 | 20 | 10 | 34.4 | 18.1 | 13 | 0.47 | 8.2 | 28 | 43.2 | 8.6 |
KMN322015 | 32 | 20 | 15 | 34.6 | 17.9 | 18.2 | 0.70 | 8.2 | 42 | 64.8 | 13.0 |
KMN402515 | 40 | 25 | 15 | 44.4 | 22 | 18.8 | 0.88 | 10.2 | 65 | 64.8 | 13.0 |
KMN403215 | 40 | 32 | 15 | 44.9 | 28.8 | 18.8 | 0.47 | 11.3 | 38 | 31.2 | 6.2 |
KMN503220 | 50 | 32 | 20 | 53.8 | 28.5 | 24 | 1.40 | 12.9 | 131 | 68.5 | 16.4 |
KMN504020 | 50 | 40 | 20 | 53.6 | 37.1 | 23 | 0.78 | 14.1 | 80 | 34.7 | 8.3 |
KMN644025 | 64 | 40 | 25 | 67.4 | 37 | 29.3 | 2.34 | 16.3 | 277 | 90.0 | 21.6 |
KMN805025 | 80 | 50 | 25 | 83.5 | 47.2 | 28.8 | 2.93 | 20.4 | 433 | 90.0 | 21.6 |
KMN1008020 | 100 | 80 | 20 | 105 | 75 | 25 | 1.56 | 28.3 | 320 | 34.7 | 8.3 |
KMN1027625 | 102 | 76 | 25 | 107 | 71 | 30 | 2.54 | 27.9 | 514 | 57.0 | 13.7 |
KMN1309030 | 130 | 90 | 30 | 135 | 85 | 35 | 4.68 | 34.5 | 1172 | 85.1 | 20.4 |
KMN16013025 | 160 | 130 | 25 | 165 | 125 | 30 | 2.93 | 45.5 | 966 | 40.3 | 9.7 |
KMN17012025 | 170 | 120 | 25 | 175 | 115 | 30 | 4.88 | 45.5 | 1609 | 67.2 | 16.1 |
These cores are our standard products, we can also design and produce high performance cores according to customer’s requirements, including sizes, inductance and applications. We can help customers to select the best performance cores.
* Epoxy coated.
We make cores to customer's drawings. If you need custom cores, please send drawing to us.
Full amorphous and nanocrystalline cores catalog download:
http://www.kingmagnetics.com/amorphous-nanocrystalline-cores-catalog.pdf
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Zhuhai King Magnetics Technology Co., Ltd.
Address: 5/F, No.8, Pingdong 1 Road,
Nanping Science and Technology Park,
Zhuhai, Guangdong, China, 519060
Telephone: +86-756-830-5985;+86-158-1980-9198
Website: www.kingmagnetics.com
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