The present invention relates to the technology field of automatic mechanical device, and more particularly to a wire-selecting device.
Nowadays, cloud technology and network applications is becoming the most popular, such as a personal computers, workstations, servers and other electronic devices have become increasingly large, these devices need to go through such as RJ45 or a variety of network ports for transmission, and in the network port Interface, often with Pulse transformer and/or Common-mode filter of the magnetic components to achieve DC isolation, noise suppression and maintain high-speed digital signal transmission quality.
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However, whether through the manual or automatic winding, after the end of the line after the end of the wires C1′ is a messy tangled, so consumers in the design of their own circuit to meet the needs of the use of magnetic components, the previous wire-selecting are only can rely on the human eye to determine and select the corresponding wire C1′ color after the subsequent winding to the wire or welding process. However, the manual wire-selecting time and labor, but also cause slow production, high rate of bad, and process costs increase and loss.
Accordingly, inventors of the present application have made great efforts to make inventive research thereon and eventually provided a wire-selecting device.
The primary objective of the present invention is to provide a wire-selecting device for a magnetic element comprises an iron core for winding a plurality of metal lines and at least two of the metal lines having a different metal lines appearance.
Accordingly, in order to achieve the primary objective of the present invention, the inventor of the present invention provides an embodiment for the wire-selecting device, comprising:
In the embodiment of the wire-selecting device, the plurality of sub-clamps further comprises: a body, a plurality of ramming shaft body and a plurality of clamping arms, which are arranged on the body and arranged in parallel and each of which is provided on the body and correspondingly disposed above the holding arm, the wire-selecting module receives the wire-selecting control information from the visual discriminating system so that the ramming shaft body is pressed up and down to hold or open the clamping arm.
In the embodiment of the wire-selecting device, the plurality of clamping arms further comprises: an L-shaped holding member, an elastic member, and an abutment block which is fixed to the body and has a recess formed on the top surface which is displaceable provided on the top surface and a tail portion extending upwardly along the rear end to form a margin space which is provided in the groove along the direction of the abutting direction of the holding member and which is located in the abutment block Between the holding pieces.
In the embodiment of the wire-selecting device, further comprises: a core fixing mechanism having a magnetic member and a core clip, the core fixing mechanism being disposed in the visual recognition system, and the iron core clamping mechanism is provided on both sides of the magnetic member, and the iron core fixing mechanism fixes the iron core at the distance.
In the embodiment of the wire-selecting device, the core fixing mechanism further comprises: Two wire clips, which are displaceable provided in the wire-selecting device, the wire clips being arranged on both sides of the core and holding the plurality of metal wires, and the two wire clips are held by the plurality of wires, respectively, in a direction away from the core to pull the plurality of metal wires to a predetermined tension strength.
In the embodiment of the wire-selecting device, the wire-selecting module further comprises: a wires baffle device having a plurality of guide grooves, which used for limiting the plurality of metal wires between the respective guide grooves.
In the embodiment of the wire-selecting device, the pending iron core seat further comprises: an iron core clip, being disposed on the base, wherein the core fixing clip having two gripping arms, the clamping surfaces of the gripping arms are substantially matched to the outer shape of the core and the distance between the lower edges of the gripping faces of the gripping arms is smaller than that of the core thickness.
In the embodiment of the wire-selecting device, the pending iron core seat further comprises: a second sub-positioning seat, being disposed in the base and having a plurality of thread holding portions; wherein the plurality of the second wire-selecting positioning seats is respectively provided at one end and the opposite end of the seat in a second direction, and the second direction is substantially perpendicular to the first direction.
In the embodiment of the wire-selecting device, the image capturing module is arranged below the number of the sub-clamps corresponding to the number of the sub-clamps so that the image capturing direction of the image capturing module is substantially toward the plurality of metal wires, thereby performing the image acquisition operation on the plurality of metal wires.
In the embodiment of the wire-selecting device, the visual discriminating system further comprises: a light emitting element which is enclosed in the image capturing module and the light emitting direction of the light emitting element is substantially oriented toward the plurality of metal wires.
Accordingly, to achieve the primary objective of the present invention, the inventor of the present invention provides the shape of the metal wires of the plurality of metal wires wound around the core is identified by the visual discriminating system and can be resolved, clamped and moved to the core to be treated for subsequent processing. Process automation, improve the production process of magnetic components and reduce the rate of non-performing.
The invention as well as a preferred mode of use and advantages thereof will be best understood by referring to the following detailed description of an illustrative embodiment in conjunction with the accompanying drawings, wherein:
To more clearly describe a bicycle safety lamp according to the present invention, embodiments of the present invention will be described in detail with reference to the attached drawings hereinafter.
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Inheriting to above descriptions, the discrimination module 12 providing a wire-selecting control information Ic is determined by the image acquisition Iw. Moreover, the wire-selecting module 2 comprises a plurality of sub-clamps 21 and connected to the visual recognition system 1 for received wire-selecting control information Ic, wherein the sub-clamps 21 are used to holding the metal wires 41-44 at a wire-selecting position P1. In which, the pending iron core seat 3 comprises a base 31, and a first sub-positioning seat 32 is disposed on the base 31 and having a plurality of thread holding portions 321; wherein the thread holding portions 321 provided at one end and the opposite end of the base 31 in a first direction D1 so as to position the iron core C in a waiting position P2. In the present invention, the wire-selecting module 2 is respectively to perform a wire-selecting action so that the sub-clamps clamp 21 the metal wires 41-44 correspondingly to the metal wires 41-44 and the metal wires 41-44 from the wire-selecting position P1, which is displaced to the pending iron core seat 3, therefore the iron core C is fixed to the waiting position P2 for subsequent processing.
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Inheriting to above descriptions, the wire-selecting device 100 is a stand-alone machine or incorporated into one of the workstations of an automated production facility, depending on the operational requirements of the magnetic element 400 or in accordance with the appearance of the metal wire, Wire color and set). In the present embodiment, the image capturing module 11 is provided on a base 13 which is provided below the sub-clamps 21 corresponding to the number of sub-clamps 21, respectively, and therefore the image capturing module 11 is substantially oriented toward the plurality of metal wires 41-44, thereby performing image capturing of the plurality of metal wires 41-44 obtain the wire appearance information Iw.
Moreover, the image capturing module 11 is an optical image lens capable of taking an object to obtain the appearance information of the object. In the present embodiment, the image capturing module 11 is provided below the sub-clamps 21, but as long as the image capturing directions of the image capturing module 11 are substantially tangible to the plurality of metal wires 41-44 The image and image capturing module 11 may be provided on the left or right sides of the plurality of metal wires 41-44.
Furthermore, the wire appearance information Iw is the plurality of metal wires 41-44 positions, Wire color (red, blue, green, yellow, etc.), wire diameter (ie, line thickness), or linear (round, square, or semicircular).
In the present of invention, The discrimination module 12 is a CPU or a PLC controller and control the corresponding control to receive the wire appearance information Iw using the written programmable language and generate the wire-selecting control information Ic based on the wire appearance information Iw, and therefore the plurality of sub-clamps 21 perform a wire-selecting operation to hold the corresponding wires and then place them in a position for facilitating subsequent processing.
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In the present of invention, the sub-clamps 21 correspond to the terminals on both sides of the magnetic element 400 and each of the sub-clamps 21 has four sets of clamping arms 213a-213d to correspond to the number of the wires 41 to 44 The In other embodiments, the sub-clamps 21 may also be provided with hooks for gripping the wires, or by catching the wires in a snap-in manner, the clamping arms being merely exemplary applications, the present invention is not limited thereto.
Inheriting to above descriptions, the magnetic element 400 is set as a first end 401 connecting metal wires 41, and a second end 402 is connected to the twisted metal wire 42 and the metal wire 43 and a third terminal 403 connecting wire 44 to operate normally so that the wire-selecting device 100 The above-described demand for the normal operation of the magnetic element 400, thereby determining the gripping sequence and the position. As to how the wire-selecting device 100 performs a wire-selecting operation, it will be described later.
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According to the technical means employed in the present invention, the plurality of metal wires 41-44 wound around the icon core C can be resolved, clamped, and fixed to the wires to be processed the pending iron core seat 3 is treated for subsequent processing so as to realize the automation of the wire-selecting process, to improve the production speed of the magnetic element process and to reduce the defective rate.
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According to the technical means employed in the present invention, as shown in the wire-selecting device 100′ of the magnetic element of the second embodiment, the iron core fixing mechanism 22 further comprises two wire clips 223, which are displaceable provided on the core clip 222 Outer sides so that the wire clips 223 are provided on both sides of the iron core C. As shown in Fig. The two wire clips 223 hold the wires 41 to 44, respectively, and the two wire clips 223 are respectively held by a plurality of wires in a direction away from the iron core C to move the plurality of conductors 41-44 are pulled to a preset tension strength. Thereby, it is possible to make the conductive lines 41 to 44 to expand the apparent image pickup module 11 of the identification.
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The above description is made on embodiments of the present invention. However, the embodiments are not intended to limit scope of the present invention, and all equivalent implementations or alterations within the spirit of the present invention still fall within the scope of the present invention.