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    • 1. 发明授权
    • Winding structure of a transformer
    • 变压器的绕组结构
    • US07612642B2
    • 2009-11-03
    • US12180409
    • 2008-07-25
    • Cheng-Chia HsuYung-Chin ChouTeng-Kang Chang
    • Cheng-Chia HsuYung-Chin ChouTeng-Kang Chang
    • H01F27/30
    • H01F27/325
    • An improved winding structure of a transformer, wherein the transformer comprises a winding base externally set with an isolating plate, the transformer is divided into a primary side region and a secondary side region by the isolating plate. The primary side region has a winding reel for a pre-formed wire set to sleeve on while the secondary side region is divided into a plurality of winding grooves by a plurality of partitions for placing a wire in the grooves, and an iron core set is set on the outside of the winding base and the hollow structure, which altogether form an transformer. In the present invention, an pre-formed wire set is sleeved on a primary side winding reel, therefore, the costs of traditional hand-winding will be displaced, and the manufacturing quality and usage stability of transformers will be effectively improved as well.
    • 一种改进的变压器的绕组结构,其中变压器包括外部设置有隔离板的绕组基座,变压器通过隔离板分为初级侧区域和次级侧区域。 初级侧区域具有用于预先形成的套筒套管的绕线卷轴,而次级侧区域通过用于将线​​材放置在槽中的多个隔板分成多个卷绕槽,铁芯组是 设置在绕组基座和中空结构的外侧,它们共同形成变压器。 在本发明中,预先形成的线组套在一次侧卷取卷轴上,因此传统的手工上卷的成本将会发生变化,并且变压器的制造质量和使用稳定性也将得到有效提高。
    • 9. 发明授权
    • Winding base structure of transformer
    • 变压器绕组基座结构
    • US07397337B2
    • 2008-07-08
    • US11552130
    • 2006-10-23
    • Cheng-Chia HsuYung-Chin Chou
    • Cheng-Chia HsuYung-Chin Chou
    • H01F27/30
    • H01F27/325H01F27/30
    • An improved winding base structure of a transformer is assembled by combining a primary-side winding base and a secondary-side winding base. The selection of the material of the primary-side winding base and the secondary-side winding base is dependant on the compression-resistant capability because the primary-side input and the secondary-side output of the transformer bear different voltages. The outside of the assembled winding base is disposed with grooves in which the wires are wound, and the center of the winding base is disposed with a through hole for an iron core to be put therein to form a transformer. The sectional winding base of the subject application is characterized in that the primary-side winding base is made of lower compression-resistant material and the secondary-side winding base is made of higher compression-resistant material. Therefore the production cost of the winding base is reduced.
    • 通过组合初级侧绕组基座和次级侧绕组基座来组装变压器的改进的绕组基座结构。 初级侧绕组基体和次级侧绕组基体的选择取决于抗压能力,因为变压器的初级侧输入和次级侧输出承受不同的电压。 组装的绕组基座的外侧设置有用于缠绕线的槽,并且绕组基座的中心设置有用于铁芯的通孔以形成变压器。 本申请的分段绕组基体的特征在于,初级侧绕组基座由下部抗压材料制成,次级侧绕组基座由较高的抗压材料制成。 因此,绕组基座的生产成本降低。
    • 10. 发明申请
    • WINDING BASE STRUCTURE OF TRANSFORMER
    • 变压器绕组结构
    • US20080094163A1
    • 2008-04-24
    • US11552130
    • 2006-10-23
    • Cheng-Chia HsuYung-Chin Chou
    • Cheng-Chia HsuYung-Chin Chou
    • H01F27/30
    • H01F27/325H01F27/30
    • An improved winding base structure of a transformer is assembled by combining a primary-side winding base and a secondary-side winding base. The selection of the material of the primary-side winding base and the secondary-side winding base is dependant on the compression-resistant capability because the primary-side input and the secondary-side output of the transformer bear different voltages. The outside of the assembled winding base is disposed with grooves in which the wires are wound, and the center of the winding base is disposed with a through hole for an iron core to be put therein to form a transformer. The sectional winding base of the subject application is characterized in that the primary-side winding base is made of lower compression-resistant material and the secondary-side winding base is made of higher compression-resistant material. Therefore the production cost of the winding base is reduced.
    • 通过组合初级侧绕组基座和次级侧绕组基座来组装变压器的改进的绕组基座结构。 初级侧绕组基体和次级侧绕组基体的选择取决于抗压能力,因为变压器的初级侧输入和次级侧输出承受不同的电压。 组装的绕组基座的外侧设置有用于缠绕线的槽,并且绕组基座的中心设置有用于铁芯的通孔以形成变压器。 本申请的分段绕组基体的特征在于,初级侧绕组基座由下部抗压材料制成,次级侧绕组基座由较高的抗压材料制成。 因此,绕组基座的生产成本降低。