High Frequency Suitable for Common Mode Choke with EMC Filters

Product Details
Customization: Available
Application: Power, Electronic
Phase: Single
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  • High Frequency Suitable for Common Mode Choke with EMC Filters
  • High Frequency Suitable for Common Mode Choke with EMC Filters
  • High Frequency Suitable for Common Mode Choke with EMC Filters
  • High Frequency Suitable for Common Mode Choke with EMC Filters
  • High Frequency Suitable for Common Mode Choke with EMC Filters
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Basic Info.

Model NO.
KMN251610
Cooling Method
Dry-type Transformer
Winding Type
Auto-transformer
Certification
ISO9001
Usage
Power Transformer
Frequency Characteristics
High Frequency
Shape of Core
Ring
Brand
King Magnetics
Material
Nanocrystalline Core
Core Dimensions
25*16*10mm
Case Dimensions
28*14*13.1mm
MOQ
2pieces
Material Model
1K107b
Transport Package
Carton
Specification
25*16*10mm
Trademark
King Magnetics
Origin
China
HS Code
8504901900
Production Capacity
100000PCS/Momth

Product Description

Certification

 

High Frequency Suitable for Common Mode Choke with EMC Filters

Product Description

High Frequency Suitable for Common Mode Choke with EMC Filters

 

 

Overview

 

Nanocrystalline C core is upgrade product of amorphous c core, with high saturation flux density, low coercivity, low core loss, very low noise, higher frequency up to 20KHz, suitable for main power transformer, audio transformer, output inductor, boost PFC choke coil. Can replace ferrite cores, permalloy cores, silicon steel cores. Dimensions can be custom-made.

Features

Material: Fe-based nanocrystalline
Saturation flux density induction: 1.25T
Curie temperature(ºC): 560
Stacking factor: >0.75
Saturation magnetostriction(*10^-6): <2
Resistivity (μΩ.cm): 130
Ribbon thickness: 25μm
Core shape: C type cut core

Applications

>> High frequency transformer (frequency recommended 20-30KHz)
>> Solar inverter filter
>> PFC choke
>> Differential mode choke

>> Output filter
>> Hi-Fi Audio transformer
>> High efficient transformer

Specifications

 

 

 

 

 

Part No. Core dimensions Mean
path
length
Effictive
cross
section
Weight
  A B C D E F LFe Ae Wt
  mm mm mm mm mm mm cm cm2 g
KMNC-6.3 10 11 33 20 31 53 12.8 1.56 141
KMNC-8 11 13 30 20 35 52 13.0 1.72 157
KMNC-10 11 13 40 20 35 62 15.0 1.72 184
KMNC-16A 11 13 40 25 35 62 15.0 2.15 230
KMNC-16B 11 13 50 25 35 72 17.0 2.15 263
KMNC-20 11 13 50 30 35 72 17.0 2.57 316
KMNC-25 13 15 56 25 41 82 19.4 2.54 355
KMNC-32 13 15 56 30 41 82 19.4 3.04 426
KMNC-40 13 15 56 35 41 82 17.9 3.55 497
KMNC-50 16 20 70 25 52 102 22.7 3.12 567
KMNC-63 16 20 70 30 52 102 22.7 3.74 663
KMNC-80 16 20 70 40 52 102 22.2 3.74 884
KMNC-100 16 20 70 45 52 102 22.2 5.62 994
KMNC-125 19 25 83 35 63 121 27.2 5.19 1102
KMNC-160 19 25 83 40 63 121 27.2 5.93 1260
KMNC-200 19 25 83 50 63 121 27.2 7.41 1575
KMNC-250 19 25 90 60 63 128 28.6 8.89 1987
KMNC-320 22 35 85 50 79 129 30.6 8.58 2047
KMNC-400 22 35 85 65 79 129 30.6 11.15 2662
KMNC-500 25 40 85 55 90 135 32.5 10.73 2722
KMNC-630 25 40 85 70 90 135 32.5 13.65 3464
KMNC-800A 25 40 85 85 90 135 32.5 16.58 4207
KMNC-800B 30 40 95 85 100 155 36.1 19.89 5602
KMNC-1000 33 40 105 85 106 171 39.0 21.88 6665


Other specifications are available according to customer's requirements.  

 

 

Production Steps

High Frequency Suitable for Common Mode Choke with EMC Filters

Our Services

1. Nanocrystalline cores for common mode chokes

    - Very high permeability, suitable for EMI common mode chokes.

High Frequency Suitable for Common Mode Choke with EMC Filters

2. Amorphous and nanocrystalline c cores

    - High saturation flux density, and low core loss.

    - Nanocrystalline c cores are the updated material with ultra high performance.

High Frequency Suitable for Common Mode Choke with EMC Filters

3. Custom cores and magnetic components

    - Oval shape nanocrystalline cores for VFD noise suppresor.

    - Amorphous inductors for output DC choke or PFC choke.

    - Nanocrystalline toroidal cores for common mode choke.

High Frequency Suitable for Common Mode Choke with EMC Filters

 

 

 

 

 

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