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| Categories | EI Lamination Core | 
|---|---|
| Place of Origin: | CHINA | 
| Brand Name: | HengTong | 
| Certification: | CE | 
| Model Number: | Customer settings | 
| MOQ: | 50-100 | 
| Price: | consultative | 
| Packaging Details: | standard packaging | 
| Delivery Time: | 7-10 | 
| Name: | Place Machine | 
| Condition: | Brand-new | 
| Rated capacity: | 30-3000kva | 
SMT Planar Inductor EI Lamination Core Lowest DCR
Power SMT Planar Inductor with high efficiency lowest DCR lowest inductance Core
The general part of the commonly used transformer core is made of
silicon steel sheet. Silicon steel is
32313133353236313431303231363533e58685e5aeb931333332636364 a steel
containing silicon (silicon is also called silicon), and its
silicon content is in. 0.8% ~ 4.8%. The core of the transformer
made of silicon steel is because silicon steel itself is a magnetic
substance with strong magnetic permeability. It can generate a
large magnetic induction intensity in the energized coil. This can
reduce the size of the transformer. The transformer is in AC state
[The power loss is not only in the resistance of the coil. It also
occurs in the iron core under the alternating current
magnetization. The power loss in the iron core is usually called
‘iron loss’. Iron loss is caused by two reasons, one is ‘hysteresis
loss’ and the other is ‘eddy current loss’.
Hysteresis loss is the iron loss caused by the presence of
hysteresis in the iron core during magnetization. The size of this
loss is proportional to the area surrounded by the hysteresis loop
of the material, which is proportional to the narrowness of the
hysteresis loop of silicon steel. The hysteresis loss of the iron
core used as a transformer is small, which can greatly reduce the
degree of heat generation.
When the transformer is working, the magnetic flux generated by the
alternating current in the coil is of course alternating. The
changing magnetic flux generates an induced current in the iron
core. The induced current generated in the iron core circulates in
the plane perpendicular to the direction of the Dzizi, so the eddy
current loss is also caused by the eddy current. In order to reduce
the eddy current loss, the iron core of the transformer is stacked
with silicon steel sheets insulated from each other. The thirsty
current flows in the narrow and long loop through a smaller
cross-section to increase the electric limit of the eddy current
path; meanwhile. Silicon increases the resistivity of the material.
It also plays a role in reducing eddy currents
For the iron core of the transformer, a cold-rolled silicon steel
sheet with a thickness of 0.35 mm is generally used. According to
the size of the required iron core, it is cut into long pieces, and
then overlapped into the shape of "Japanese" or "mouth". In
principle, if the vortex is reduced, the thinner the silicon steel
sheet is, the narrower the spliced strip is. The better the
effect. This reduces the eddy current loss, lowers the temperature
rise, and also saves the material of the silicon steel sheet.
However, when actually manufacturing the silicon steel sheet iron
core, it is not only based on the above-mentioned favorable
factors. Because the iron core is made that way, it needs to be
greatly increased. Man-hours also reduce the effective
cross-section of the r core. Therefore, when using silicon steel
sheet to make the transformer core, we should weigh the pros and
cons from the specific situation and choose the best size.
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