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Network Filter Wire Wound Components

A network filter and component technology, applied in coil manufacturing, electrical components, harmonic reduction devices, etc., can solve problems such as decoupling, enameled wire scraping and peeling, and rework materials, etc., to save equipment and materials, and good cost control. , the effect of high yield

Active Publication Date: 2022-05-20
绵阳聚贤自动化设备有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

As a result, decoupling is easy to occur in actual operation, and some pins of some network filters after winding are not successfully wound, resulting in rework or material scrap
[0006] At the same time, this method of directly hooking the wire and then winding it on the pin is most likely to cause scratching and peeling of the enameled wire due to the sharper edge of the square pin during the winding process, resulting in product failure

Method used

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  • Network Filter Wire Wound Components
  • Network Filter Wire Wound Components
  • Network Filter Wire Wound Components

Examples

Experimental program
Comparison scheme
Effect test

Embodiment

[0045] This embodiment discloses a wire winding assembly of a network filter, which is used for winding the pins of several network filters fixed on a jig.

[0046] First, the network filter of this embodiment has a casing, and several magnetic rings are arranged in the casing. The magnetic ring of this embodiment has been formed by winding the enameled wire through other winding processes, leaving only a certain length of enameled wire at the end.

[0047] Before the processing process corresponding to the equipment in this embodiment, the wire arrangement process has been carried out, and the end wire harness of the inner magnetic ring of the network filter is arranged, and the end wire harness is fixed through the fixing groove on the jig. Therefore, there are several network filters placed upside down in the upper middle of the jig, and the pins on both sides are set upwards, and there are a number of fixing slots on both sides to fix the end wire harness, and there is a g...

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PUM

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Abstract

The invention belongs to the technical field of network filter winding equipment, and discloses a network filter winding assembly, which is used to automatically wind enameled wires on the pins of the network filter, including several winding modules, and the winding modules include winding It also includes a power mechanism that is connected to the winding module in transmission. The power mechanism drives the wire clamping parts in several winding modules to simultaneously clamp the enameled wire and wind the corresponding winding part to form a coil that falls into the corresponding pin. superior. The invention uses a single power mechanism to drive several winding modules to perform synchronous actions. The enameled wire is clamped by the clamping part and then the enameled wire is wound on the winding head, and then the formed coil falls from the winding head to the pin to form. It has a higher yield rate, and at the same time, there is no need to separately set up a motor for each winding module as in the prior art, and better cost control can be performed.

Description

technical field [0001] The invention belongs to the technical field of network filter manufacturing equipment, and in particular relates to a network filter winding assembly. Background technique [0002] The function of the filter is to allow the signal of a certain part of the frequency to pass smoothly, while the signal of the other part of the frequency is greatly suppressed. It is essentially a frequency selection circuit. In the filter, the frequency range in which the signal can pass is called the passband or passband; conversely, the frequency range in which the signal is greatly attenuated or completely suppressed is called the stopband; the boundary frequency between the passband and the stopband is called is the cutoff frequency; the voltage gain of the ideal filter is constant in the passband, and the voltage gain in the stopband is zero; there is a transition band of a certain frequency range between the passband and stopband of the actual filter. [0003] A ge...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01F41/09H01F41/082H01F41/076H01F41/066
CPCH01F41/09H01F41/082H01F41/076H01F41/066Y02E40/40
Inventor 郭强赵鑫
Owner 绵阳聚贤自动化设备有限公司