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| Type | Grade | Width | Max Core Loss@P1.7T/50Hz | Lamination Factor(%) | Min Induction@B800 |
| Common Type | 23Q110 | 35-1200mm | 1.10w/kg | 97.2 | 1.82T |
| 23Q120 | 1.20w/kg | 97.2 | 1.82T | ||
| 27Q120 | 1.20w/kg | 97.5 | 1.82T | ||
| 30G120 | 1.20w/kg | 98 | 1.82T | ||
| High Induction Type | B20P085 | 35-1200mm | 0.85w/kg | 97 | 1.86T |
| B23P085 | 0.85w/kg | 97.2 | 1.88T | ||
| B23P090 | 0.90w/kg | 97.2 | 1.88T | ||
| B23P095 | 0.95w/kg | 97.2 | 1.88T | ||
| B23P100 | 1.00w/kg | 97.2 | 1.88T | ||
| B27P095 | 0.95w/kg | 97.5 | 1.89T | ||
| B27P100 | 1.00w/kg | 97.5 | 1.89T | ||
| B30P120 | 1.20w/kg | 98 | 1.89T | ||
| Domain Refined High Induction Type(Laser) | B20R070 | 35-1200mm | 0.70w/kg | 97 | 1.86T |
| B23R085 | 0.85w/kg | 97.2 | 1.88T | ||
| B27RK085 | 0.85w/kg | 97.5 | 1.89T |
Silicon steel sheet is the core material of transformer iron cores, a low-carbon soft magnetic alloy containing 0.5%-4.5% silicon. The addition of silicon can optimize the magnetic properties of iron and reduce losses.
Its core advantages lie in low iron loss and high magnetic induction, which can reduce the volume of the iron core; the surface is flat and uniform, improving stacking efficiency, with excellent punching and insulation performance.
Transformers commonly use 0.35mm cold-rolled silicon steel sheets, which are stacked into specific shapes before winding. According to silicon content, they are divided into low-silicon (<2.8%, used in motors) and high-silicon (2.8%-4.8%, suitable for transformers).