CN210038129U - Novel wire core alignment device - Google Patents

Novel wire core alignment device Download PDF

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Publication number
CN210038129U
CN210038129U CN201920729327.0U CN201920729327U CN210038129U CN 210038129 U CN210038129 U CN 210038129U CN 201920729327 U CN201920729327 U CN 201920729327U CN 210038129 U CN210038129 U CN 210038129U
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China
Prior art keywords
wire core
wire
emitting diode
interface
light emitting
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CN201920729327.0U
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Chinese (zh)
Inventor
李帅
姜海英
谢晴
李伟
刘汉鹏
胡清芬
胡琳
韩雪
王世龙
范航
刘玉海
侯方洁
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State Grid Shandong Electric Power Co Construction Co
State Grid Corp of China SGCC
Shandong Liancheng Engineering Construction Supervision Co Ltd
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State Grid Shandong Electric Power Co Construction Co
State Grid Corp of China SGCC
Shandong Liancheng Engineering Construction Supervision Co Ltd
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Application filed by State Grid Shandong Electric Power Co Construction Co, State Grid Corp of China SGCC, Shandong Liancheng Engineering Construction Supervision Co Ltd filed Critical State Grid Shandong Electric Power Co Construction Co
Priority to CN201920729327.0U priority Critical patent/CN210038129U/en
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Abstract

The utility model discloses a problem that exists among the prior art, the innovation provides a novel sinle silk is to line ware, include: the first wire core wiring module comprises a plurality of first wire core wiring interfaces and a plurality of diodes; the second wire core wiring module comprises a plurality of second wire core wiring interfaces, a plurality of switches and a plurality of light emitting diode circuits; the cable, the cable be used for with first line core wiring module with second line core wiring module connects, does not need public core can accomplish the alignment, through emitting diode's the bright circumstances of going out, can judge the alignment condition of cable, and is simple and convenient, improves work efficiency, simplifies work flow.

Description

Novel wire core alignment device
Technical Field
The utility model belongs to the technical field of the electrical engineering secondary construction and specifically relates to a novel sinle silk is to line ware is related to.
Background
The secondary construction cable of the transformer substation is generally arranged at a far distance and needs to determine the connection relation of two ends of a cable core, but the connection relation of two ends of the cable core in the cable can be randomly and regularly connected, the connection relation is very complex, the secondary wiring quality and efficiency are directly influenced by the line aligning link of the secondary construction cable of the transformer substation, the time of secondary wiring in the construction of the transformer substation is short, and great difficulty is caused to construction wiring personnel.
At present, the wire aligning method in the prior art mainly comprises the traditional wire aligning methods such as telephones, interphones and the like and the wire aligning method of a market instrument, but the methods need to firstly determine a public core and then determine the connection relation of other wire cores, so that the communication time is not fundamentally reduced, the work flow is complicated, and the wire aligning efficiency is low.
Disclosure of Invention
The utility model discloses a solve the problem that exists among the prior art, the innovation provides a novel sinle silk is to line ware, does not need public core can accomplish the line, improves work efficiency, simplifies work flow.
The utility model provides a novel sinle silk is to line ware, include:
the first wire core wiring module comprises a plurality of first wire core wiring interfaces and a plurality of diodes, and any two adjacent first wire core wiring interfaces in the plurality of first wire core wiring interfaces are connected in series through a diode;
the second wire core wiring module comprises a plurality of second wire core wiring interfaces, a plurality of switches and a plurality of light emitting diode circuits, the number of the second wire core wiring interfaces is the same as that of the first wire core wiring interfaces, the number of the switches is the same as that of the second wire core wiring interfaces, the number of the light emitting diode circuits is the same as that of the second wire core wiring interfaces, one path of one end of each switch, which is close to the corresponding second wire core wiring interface, is connected with the second wire core wiring interfaces in series in a one-to-one correspondence mode, and the other path of the switch is connected with the light emitting diode circuits in series in a one-to-one correspondence mode;
a cable for connecting the first core wire connection module with the second core wire connection module.
In combination with this aspect, in a first possible implementation manner of this aspect, a diode is connected in series between any two adjacent first core connection interfaces of the plurality of first core connection interfaces in a forward or reverse direction.
In combination with this aspect, in a second possible implementation manner of this aspect, the number of the diodes is one less than the number of the first core wire connection interfaces.
In combination with this aspect, in a third possible implementation manner of this aspect, each of the light emitting diode circuits includes: resistance, emitting diode, the one end of resistance connect all the way with emitting diode circuit series connection the second wire core interface of working a telephone switchboard, another way is connected the switch is close to the correspondence the one end of second wire core interface of working a telephone switchboard, emitting diode's negative pole is connected to the other end of resistance.
In combination with this aspect, in a fourth possible implementation manner of this aspect, each of the light emitting diode circuits further includes a power supply, an anode of the power supply is connected to an anode of the light emitting diode, and a cathode of the power supply is connected to one end of the switch, which is far away from the corresponding second wire core connection interface.
In combination with this aspect, in a fifth possible implementation manner of this aspect, the second wire core connection module further includes a power supply, an anode of the power supply is connected to an anode of the light emitting diode in each light emitting diode circuit, and a cathode of the power supply is connected to one end of each switch, which is far away from the corresponding second wire core connection interface.
In a sixth possible implementation manner of the aspect in combination with the aspect, the power supply is a direct current power supply.
In a seventh possible implementation manner of this aspect in combination with this aspect, the switch is a key switch.
In combination with this aspect, in an eighth possible implementation manner of this aspect, the key switch is a key switch that supports automatic bouncing after the key is turned on.
In combination with this aspect, in a ninth possible implementation manner of this aspect, one end of the cable is connected to the plurality of first core connection interfaces, and the other end of the cable is connected to the plurality of second core connection interfaces.
The utility model discloses a technical scheme include following technological effect:
the utility model discloses a problem that exists among the prior art, the innovation has provided a novel sinle silk is to line ware, does not need public core can accomplish the line, through emitting diode's the bright circumstances of going out, can judge the line condition of cable, and is simple and convenient, improves work efficiency, simplifies work flow.
It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the invention as claimed.
Drawings
For a clear explanation of the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious for a person skilled in the art to obtain other drawings without creative efforts.
Fig. 1 is a schematic structural diagram of a novel wire core alignment device according to an embodiment of the present invention;
fig. 2 is a schematic structural view of a reverse series connection of diodes between first core connection interfaces in a novel core wire alignment device according to an embodiment of the present invention;
fig. 3 is a schematic circuit diagram illustrating a unified power supply of a second core connection module in a novel core wire pairing device according to an embodiment of the present invention;
fig. 4 is a schematic circuit diagram illustrating a second core connection module of the novel core alignment device according to an embodiment of the present invention to independently supply power;
fig. 5 is a schematic connection diagram of a connection manner (forward series connection of diodes between first connection interfaces) between a second wire core connection interface and a first wire core connection interface in a novel wire core alignment device according to an embodiment of the present invention;
fig. 6 is the utility model discloses in the scheme embodiment a novel second core wiring interface and the connection mode (diode reverse series connection between the first wiring interface) of first core wiring interface in the sinle silk is to the line ware.
Detailed Description
In order to clearly illustrate the technical features of the present invention, the present invention is explained in detail by the following embodiments in combination with the accompanying drawings. The following disclosure provides many different embodiments, or examples, for implementing different features of the invention. In order to simplify the disclosure of the present invention, the components and arrangements of specific examples are described below. Furthermore, the present invention may repeat reference numerals and/or letters in the various examples. This repetition is for the purpose of simplicity and clarity and does not in itself dictate a relationship between the various embodiments and/or configurations discussed. It should be noted that the components illustrated in the figures are not necessarily drawn to scale. Descriptions of well-known components and processing techniques and processes are omitted so as to not unnecessarily limit the invention.
Example one
The utility model discloses in, for the description convenience to the cable includes 7 sinle silks as an example, explains, includes 7 first sinle silks wiring interface in the first sinle silks wiring module promptly, contains 7 second sinle silks wiring interface in the second sinle silks wiring module, as shown in fig. 1, fig. 2, the embodiment of the utility model provides a novel sinle silk is to line ware is provided, include:
the first wire core wiring module 1 comprises a first wire core first wiring interface 1-1, a first wire core second interface 1-2, a first wire core third interface 1-3, a first wire core fourth interface 1-4, a first wire core fifth interface 1-5, a first wire core sixth interface 1-6, a first wire core seventh interface 1-7, a first diode D1, a second diode D2, a third diode D3, a fourth diode D4, a fifth diode D5 and a sixth diode D6, wherein any two adjacent first wire core wiring interfaces in the first wire core wiring interfaces are connected in series through a diode, and the series connection can be a forward series connection or a reverse series connection; that is, the first wiring interface 1-1 of the first wire core and the second interface 1-2 of the first wire core are connected in series through the first diode D1, and are connected in series in the forward direction: the anode of the first diode D1 is connected with the first wire core first wiring interface 1-1, and the cathode of the first diode D1 is connected with the first wire core second wiring interface 1-2; reverse series connection: the anode of the first diode D1 is connected with the first wire core first wiring interface 1-1, and the cathode of the first diode D1 is connected with the first wire core second wiring interface 1-2; the second wiring interface 1-2 of the first wire core and the third interface 1-3 of the first wire core are connected in series through a second diode D2, and are connected in series in the forward direction: the anode of the second diode D2 is connected with the second wiring interface 1-2 of the first wire core, and the cathode of the second diode D2 is connected with the third wiring interface 1-3 of the first wire core; reverse series connection: the anode of the second diode D2 is connected with the third wiring interface 1-3 of the first wire core, and the cathode of the second diode D2 is connected with the second wiring interface 1-2 of the first wire core; the third wiring interface 1-3 of the first wire core and the fourth interface 1-4 of the first wire core are connected in series through a third diode D3, and are connected in series in the forward direction: the anode of the third diode D3 is connected with the third wiring interface 1-3 of the first wire core, and the cathode of the third diode D3 is connected with the fourth wiring interface 1-4 of the first wire core; reverse series connection: the anode of the third diode D3 is connected with the fourth wiring interface 1-4 of the first wire core, and the cathode of the third diode D3 is connected with the third wiring interface 1-3 of the first wire core; the fourth wiring interface 1-4 of the first wire core and the fifth interface 1-5 of the first wire core are connected in series through a fourth diode D4, and are connected in series in the forward direction: the anode of the fourth diode D4 is connected with the fourth wiring interface 1-4 of the first wire core, and the cathode of the fourth diode D4 is connected with the fifth wiring interface 1-5 of the first wire core; reverse series connection: the anode of the fourth diode D4 is connected with the fifth wiring interface 1-5 of the first wire core, and the cathode of the fourth diode D4 is connected with the fourth wiring interface 1-4 of the first wire core; the fifth wiring interface 1-5 of the first wire core and the sixth interface 1-6 of the first wire core are connected in series through a fifth diode D5, and are connected in series in the forward direction: the anode of the fifth diode D5 is connected with the fifth wiring interface 1-5 of the first wire core, and the cathode of the fifth diode D5 is connected with the sixth wiring interface 1-6 of the first wire core; reverse series connection: the anode of the fifth diode D5 is connected with the sixth wiring interface 1-6 of the first wire core, and the cathode of the fifth diode D5 is connected with the fifth wiring interface 1-5 of the first wire core; the sixth wiring interface 1-6 of the first wire core and the seventh interface 1-7 of the first wire core are connected in series through a sixth diode D1, and are connected in series in the forward direction: the anode of the sixth diode D6 is connected with the sixth wiring interface 1-6 of the first wire core, and the cathode of the sixth diode D6 is connected with the seventh wiring interface 1-7 of the first wire core; reverse series connection: the anode of the sixth diode D6 is connected with the seventh wiring interface 1-7 of the first wire core, and the cathode of the sixth diode D6 is connected with the sixth wiring interface 1-6 of the first wire core;
the second wire core wiring module 2, the second wire core wiring module 3 includes a second wire core first wiring interface 2-1, a second wire core second wiring interface 2-2, a second wire core third wiring interface 2-3, a second wire core fourth wiring interface 2-4, a second wire core fifth wiring interface 2-5, a second wire core sixth wiring interface 2-6, a second wire core seventh wiring interface 2-7, a first switch S1, a second switch S2, a third switch S3, a fourth switch S4, a fifth switch S5, a sixth switch S6, and a seventh switch S7, the first light emitting diode circuit 21, the second light emitting diode 22, the third light emitting diode 23, the fourth light emitting diode circuit 24, the fifth light emitting diode circuit 25, the sixth light emitting diode circuit 26, and the seventh light emitting diode circuit 27, the number of the second wire core first wiring interface and the first wire core wiring interface is the same, the number of the switches and the number of the second wire core wiring light-emitting diode circuits are the same as the second wire core wiring interfaces in a corresponding mode, one path of one end, close to the second wire core wiring interface, of each switch is connected with the second wire core wiring interfaces in series in a one-to-one corresponding mode, the other path of one end, close to the first wire core wiring interface 2-1, of each switch is connected with the light-emitting diode circuits in series in a one-to-one corresponding mode, namely one path of one end, close to the first wire core wiring interface 2-1, of each first switch S1 is connected with the second wire core first interface 2-1 in series, and the other path of one; one path of one end of the second switch S2, which is close to the second wiring interface 2-2 corresponding to the second wire core, is connected in series with the second wire core second interface 2-2, and the other path is connected in series with the second LED circuit 22 correspondingly; one path of one end of the third switch S3, which is close to the third wiring interface 2-3 corresponding to the second wire core, is connected in series with the third interface 2-3 of the second wire core, and the other path is connected in series with the third light emitting diode circuit 23; one path of one end of the fourth switch S4, which is close to the fourth wiring interface 2-4 corresponding to the second wire core, is connected in series with the fourth interface 2-4 of the second wire core, and the other path is connected in series with the fourth LED circuit 24 correspondingly; one path of one end of the fifth switch S5, which is close to the fifth wiring interface 2-5 corresponding to the second wire core, is connected in series with the fifth interface 2-5 of the second wire core, and the other path is connected in series with the fifth LED circuit 25; one path of one end of the sixth switch S6, which is close to the sixth wiring interface 2-6 corresponding to the second wire core, is connected in series with the sixth interface 2-6 of the second wire core, and the other path is connected in series with the sixth LED circuit 26 correspondingly; one path of one end of the seventh switch S7, which is close to the seventh wiring interface 2-7 corresponding to the second wire core, is connected in series with the seventh interface 2-7 of the second wire core, and the other path is connected in series with the seventh led circuit 27.
And the cables 3 are used for connecting the first wire core wiring module 1 with the second wire core wiring module 2 through the cables 3.
Wherein the number of diodes is one less than the number of first wire core connection interfaces. For example, if the number of first wire core connection interfaces is 7, the number of diodes is 6.
Each light emitting diode circuit includes: the LED circuit comprises a resistor and an LED, wherein one path of one end of the resistor is connected with a second wire core wiring interface connected with the LED circuit in series, the other path of the resistor is connected with one end of a switch close to the second wire core wiring interface, and the other end of the resistor is connected with the cathode of the LED. As shown in fig. 2 and 3, the first LED circuit 21 includes a resistor R1 and a LED1, one end of the resistor R1 is connected to the first interface 2-1 of the second wire core connected in series with the first LED circuit 21, the other end is connected to one end of the first switch S1 close to the first interface 2-1 of the second wire core, and the other end of the resistor R1 is connected to the negative electrode of the LED 1; the second light emitting diode circuit 22 comprises a resistor R2 and a light emitting diode LED2, one path of one end of the resistor R2 is connected with a second wire core second interface 2-2 connected with the second light emitting diode circuit 22 in series, the other path of the resistor R2 is connected with one end, close to the second wire core second wiring interface 2-2, of the second switch S2, and the other end of the resistor R1 is connected with the negative electrode of the light emitting diode LED 2; the third light emitting diode circuit 23 comprises a resistor R3 and a light emitting diode LED3, one end of the resistor R3 is connected to a second wire core third interface 2-3 connected in series with the third light emitting diode circuit 23, the other end of the resistor R1 is connected to one end, close to the corresponding second wire core third wiring interface 2-3, of the third switch S3, and the other end of the resistor R1 is connected to the negative electrode of the light emitting diode LED 3; the fourth light emitting diode circuit 24 comprises a resistor R4 and a light emitting diode LED4, one path of one end of the resistor R4 is connected with a fourth interface 2-4 of the second wire core connected with the fourth light emitting diode circuit 24 in series, the other path of the resistor R4 is connected with one end, close to the fourth wiring interface 2-4 corresponding to the second wire core, of the fourth switch S4, and the other end of the resistor R1 is connected with the negative electrode of the light emitting diode LED 4; the fifth light emitting diode circuit 25 comprises a resistor R5 and a light emitting diode LED5, one path of one end of the resistor R5 is connected with a fifth interface 2-5 of the second wire core connected with the fifth light emitting diode circuit 25 in series, the other path of the resistor R5 is connected with one end, close to the fifth interface 2-5, of the fifth switch S5, corresponding to the second wire core, and the other end of the resistor R5 is connected with the negative electrode of the light emitting diode LED 5; the sixth light emitting diode circuit 26 comprises a resistor R6 and a light emitting diode LED6, one path of one end of the resistor R6 is connected with a sixth wire core interface 2-6 connected with the sixth light emitting diode circuit 26 in series, the other path of the resistor R6 is connected with one end, close to the sixth wire core connection interface 2-6, of the sixth switch S6, and the other end of the resistor R6 is connected with the negative electrode of the light emitting diode LED 6; the seventh light emitting diode circuit 27 comprises a resistor R7 and a light emitting diode LED7, one end of the resistor R7 is connected to the seventh interface 2-7 of the second wire core connected in series with the seventh light emitting diode circuit 27, the other end of the resistor R7 is connected to one end of the seventh switch S7 close to the seventh wiring interface 2-7 of the corresponding second wire core, and the other end of the resistor R7 is connected to the cathode of the light emitting diode LED 7. Wherein it should be noted that, the utility model discloses in the quantity of resistance can be one in every emitting diode circuit, also can be for a plurality of, the resistance value can be the same in emitting diode's the circuit, also can be different, the resistance of resistance the utility model discloses a for 1.5k omega, also can adopt other resistance, the utility model discloses do not do the restriction here yet, as long as enable emitting diode normal luminous just can.
Each light-emitting diode circuit further comprises a power supply, the anode of the power supply is connected with the anode of the light-emitting diode, and the cathode of the power supply is connected with one end, far away from the corresponding second wire core wiring interface, of the switch. First emitting diode circuit 21, second emitting diode circuit 22, third emitting diode circuit 23, fourth emitting diode circuit 24, fifth emitting diode circuit 25, sixth emitting diode circuit 26, seventh emitting diode circuit 27 all include the power, adopt independent power supply mode to supply power, and mains voltage in every emitting diode circuit can be the same, also can be different, the utility model discloses the voltage is 9V, also can adopt the power of other voltage numerical values, the utility model discloses do not restrict here, as long as can make emitting diode normally luminous just can.
Or, the second wire core wiring module 2 further includes a power supply V1, an anode of the power supply V1 is connected to an anode of the light emitting diode in each light emitting diode circuit, and a cathode of the power supply V1 is connected to one end of each switch away from the corresponding second wire core wiring interface. Namely, the positive pole of the power source V1 is connected to the positive pole of the LED1 in the first LED circuit 21, the positive pole of the LED2 in the second LED circuit 22, the positive pole of the LED3 in the third LED circuit 23, the positive pole of the LED4 in the fourth LED circuit 24, the positive pole of the LED5 in the fifth LED circuit 25, the positive pole of the LED6 in the sixth LED circuit 26, and the positive pole of the LED1 in the seventh LED circuit 27, respectively, the negative pole of the power source V1 is connected to the end of the switch S1 in the first LED circuit 21 remote from the first wire connection interface 2-1 corresponding to the second wire core, the end of the switch S2 in the second LED circuit 22 remote from the second wire connection interface 2-2 corresponding to the second wire core, the end of the switch S3 in the third LED circuit 23 remote from the third wire connection interface 2-3 corresponding to the second wire core, The end of the switch S4 in the fourth led circuit 24, which is far from the fourth wiring interface 2-4 corresponding to the second wire core, the end of the switch S5 in the fifth led circuit 25, which is far from the fifth wiring interface 2-5 corresponding to the second wire core, the end of the switch S6 in the sixth led circuit 26, which is far from the sixth wiring interface 2-6 corresponding to the second wire core, and the end of the switch S7 in the seventh led circuit 27, which is far from the seventh wiring interface 2-7 corresponding to the second wire core, are respectively connected, and a unified power supply manner is adopted for power supply. The utility model discloses voltage is 9V, also can adopt the power of other voltage numerical values, the utility model discloses do not limit here, as long as can make emitting diode can normally give out light just can.
The embodiment of the utility model provides an in the switch be button switch, preferably support the button switch of automatic bounce after the button switch-on, press the button switch promptly after, can bounce automatically, make the disconnection of button switch place circuit, the power is DC power supply.
One end of the cable 3 is connected with a first wire core first wiring interface 1-1, a first wire core second interface 1-2, a first wire core third interface 1-3, a first wire core fourth interface 1-4, a first wire core fifth interface 1-5, a first wire core sixth interface 1-6 and a first wire core seventh interface 1-7, and the other end is connected with a second wire core first wiring interface 2-1, a second wire core second wiring interface 2-2, a second wire core third wiring interface 2-3, a second wire core fourth wiring interface 2-4, a second wire core fifth wiring interface 2-5, a second wire core sixth wiring interface 2-6 and a second wire core seventh wiring interface 2-7.
The working principle is as follows: the staffs of working a telephone switchboard at second wire core wiring module 2, will differentiate according to the cable 3 of arbitrary rule connection, press the switch that corresponds with corresponding second wire core wiring interface, observe the bright circumstances of going out among the emitting diode of second wire core wiring module 2, can judge with corresponding second wire core wiring interface connection first wire core wiring interface. And only the switch corresponding to the corresponding second wire core wiring interface is switched on each time, and the switches corresponding to other second wire core wiring interfaces process the off state. The diodes in the first wire core wiring module 1 are connected in series in the forward direction: the brightening number of the light-emitting diodes is the corresponding first wire core wiring interface, for example, if the brightening number of the light-emitting diodes is 5, the first wire core wiring interface corresponding to the second wire core wiring interface is the fifth wire core wiring interface 2-5; the diodes in the first wire core connection module 1 are connected in series in the reverse direction: the number of the non-bright light emitting diodes is the corresponding first wire core connection interface, for example, if the number of the bright light emitting diodes is 5, the first wire core connection interface corresponding to the second wire core connection interface is the second wire core connection interface 2-2.
As shown in fig. 4 and 5, the utility model provides a connection relationship between the first wire core connection interface and the second wire core connection interface is described, which specifically corresponds as follows:
if the diodes in the first wire core connection module 1 are connected in series in the forward direction, if it is desired to judge which first wire core connection interface in the second wire core connection module 2 is connected with the second wire core first connection interface 2-1 in the first wire core connection module 1, the first switch S1 is pressed, the first switch S1 is turned on, and the other switches are in the off state, it is found that 5 light emitting diodes in the second wire core connection module 2 turn on, that is, the light emitting diodes LED1, the light emitting diode LED3, the light emitting diode LED4, the light emitting diode LED6, and the light emitting diode LED7 turn on and turn on, and the light emitting diode LED2 and the light emitting diode LED5 do not turn on and turn on, it is described that the second wire core first connection interface 2-1 corresponding to the first switch S1 is connected with the first wire core fifth connection interface 2-5 in the first wire core connection module 1; if the diodes in the first wire core connection module 1 are connected in series in an inverted manner, it is found that 5 LEDs in the second wire core connection module 2 do not turn on and turn on, i.e., the LEDs LED1, the LEDs LED3, the LEDs LED4, the LEDs LED6, and the LEDs LED7 do not turn on and turn on, and the LEDs LED2 and the LEDs LED5 turn on and turn on, it is indicated that the first connection interface 2-1 of the second wire core corresponding to the first switch S1 is connected with the fifth connection interface 2-5 of the first wire core in the first wire core connection module 1.
The diodes in the first wire core connection module 1 are connected in series in the forward direction, if it is desired to judge which first wire core connection interface in the first wire core connection module 1 the second wire core second connection interface 2-2 in the second wire core connection module 2 is connected with, the second switch S2 is pressed, the second switch S2 is turned on, and other switches are in an off state, it is found that 7 light emitting diodes in the second wire core connection module 2 turn on, that is, the light emitting diode LED1, the light emitting diode LED2, the light emitting diode LED3, the light emitting diode LED4, the light emitting diode LED5, the light emitting diode LED6, and the light emitting diode LED7 turn on and turn on, and it is explained that the second wire core second connection interface 2-2 corresponding to the second switch S2 is connected with the seventh wire core connection interface 2-7 in the first wire core connection module 1; if the diodes in the first wire core connection module 1 are connected in series in the reverse direction, and it is found that 7 light emitting diodes in the second wire core connection module 2 do not turn bright, that is, the light emitting diodes LED1, the light emitting diodes LED2, the light emitting diodes LED3, the light emitting diodes LED4, the light emitting diodes LED5, the light emitting diodes LED6, and the light emitting diodes LED7 do not turn on and turn bright, it is indicated that the second wire core second connection interface 2-2 corresponding to the second switch S2 is connected with the first wire core seventh connection interface 2-7 in the first wire core connection module 1.
If the fact that the diodes in the first wire core connection module 1 are connected in series in the forward direction is required to be judged, if the third wire core connection interface 2-3 of the second wire core in the second wire core connection module 2 is connected with which first wire core connection interface in the first wire core connection module 1, the third switch S3 is pressed, the third switch S3 is turned on, and other switches are in the off state, it is found that 4 light emitting diodes in the second wire core connection module 2 turn on, namely, the light emitting diodes LED3, the light emitting diodes LED4, the light emitting diodes LED6 and the light emitting diodes LED7 turn on and turn on, and the light emitting diodes LED1, the light emitting diodes LED2 and the light emitting diodes LED5 do not turn on and turn on, it is stated that the third wire core connection interface 2-3 corresponding to the third switch S3 is connected with the fourth wire core connection interface 2-4 in the first wire core connection module 1; if the diodes in the first wire core connection module 1 are connected in series in the reverse direction, it is found that 4 LEDs in the second wire core connection module 2 do not turn bright, that is, the LEDs LED3, the LEDs LED4, the LEDs LED6 and the LEDs LED7 are not turned on and turned bright, and the LEDs LED1, the LEDs LED2 and the LEDs LED5 are turned on and turned bright, it is indicated that the third connection interface 2-3 of the second wire core corresponding to the third switch S3 is connected to the fourth connection interface 2-4 of the first wire core in the first wire core connection module 1.
The diodes in the first wire core connection module 1 are connected in series in the forward direction, if it is desired to judge which first wire core connection interface in the first wire core connection module 1 the fourth wire core fourth connection interface 2-4 in the second wire core connection module 2 is connected with, the fourth switch S4 is pressed, the fourth switch S4 is turned on, and other switches are in an off state, it is found that 2 light emitting diodes in the second wire core connection module 2 turn on, that is, the light emitting diode LED4 and the light emitting diode LED6 are turned on and turned on, and the light emitting diode LED1, the light emitting diode LED2, the light emitting diode LED3, the light emitting diode LED5 and the light emitting diode LED7 are not turned on and turned on, it is described that the second wire core fourth connection interface 2-4 corresponding to the fourth switch S4 is connected with the first wire core second connection interface 2-2 in the first wire core connection module 1; if the diodes in the first wire core connection module 1 are connected in series in the reverse direction, it is found that 2 LEDs in the second wire core connection module 2 do not turn bright, that is, the LEDs LED4 and the LEDs LED6 do not turn on and turn bright, and the LEDs LED1, the LEDs LED2, the LEDs LED3, the LEDs LED5 and the LEDs LED7 turn on and turn bright, it is indicated that the fourth connection interface 2-4 of the second wire core corresponding to the fourth switch S4 is connected to the second connection interface 2-2 of the first wire core in the first wire core connection module 1.
If the diodes in the first wire core connection module 1 are connected in series in the forward direction, if it is desired to judge which first wire core connection interface in the second wire core connection module 2 is connected to the fifth wire core connection interface 2-5 in the first wire core connection module 1, the fifth switch S5 is pressed, the fifth switch S5 is turned on, and the other switches are in the off state, it is found that 6 light emitting diodes in the second wire core connection module 2 turn on, that is, the light emitting diodes LED1, the light emitting diode LED3, the light emitting diode LED4, the light emitting diode LED5, the light emitting diode LED6, and the light emitting diode LED7 turn on and turn on, and the light emitting diode LED2 does not turn on and does not turn on, it is stated that the fifth wire core connection interface 2-5 corresponding to the fifth switch S5 is connected to the sixth wire core connection interface 2-6 in the first wire core connection module 1; if the diodes in the first wire core connection module 1 are connected in series in the reverse direction, and it is found that 1 LED in the second wire core connection module 2 is turned on, that is, the LED2 is turned on and turned on, and the LED1, the LED3, the LED4, the LED5, the LED6, and the LED7 are not turned on and turned on, it is indicated that the fifth connection interface 2-5 of the second wire core corresponding to the fifth switch S5 is connected to the sixth connection interface 2-6 of the first wire core in the first wire core connection module 1.
If the sixth wiring interface 2-6 of the second wire core in the second wire core wiring module 2 is connected with which first wire core wiring interface in the first wire core wiring module 1, the sixth switch S6 is pressed, the sixth switch S6 is turned on, and other switches are in an off state, and it is found that 1 light emitting diode in the second wire core wiring module 2 is turned on and turned on, that is, the light emitting diode LED6 is turned on and turned on, and the light emitting diode LED1, the light emitting diode LED2, the light emitting diode LED3, the light emitting diode LED4, the light emitting diode LED5, and the light emitting diode LED7 are not turned on and turned on, then it is described that the sixth wiring interface 2-6 of the second wire core corresponding to the sixth switch S6 is connected with the first wire core wiring interface 2-1 in the first wire core wiring module 1; if the diodes in the first wire core connection module 1 are connected in series in the reverse direction, and it is found that 1 LED in the second wire core connection module 2 does not turn on, that is, the LED6 does not turn on and turn on, and the LED1, the LED2, the LED3, the LED4, the LED5, and the LED7 turn on and turn on, it is indicated that the sixth wire core connection interface 2-6 corresponding to the sixth switch S6 is connected to the first wire core connection interface 2-1 in the first wire core connection module 1.
If the seventh wiring interface 2-7 of the second wire core in the second wire core wiring module 2 is connected with which first wire core wiring interface in the first wire core wiring module 1, the seventh switch S7 is pressed, the seventh switch S7 is turned on, and other switches are in an off state, it is found that 3 light emitting diodes in the second wire core wiring module 2 turn on, that is, the light emitting diode LED4, the light emitting diode LED6, and the light emitting diode LED7 turn on and turn on, and the light emitting diode LED1, the light emitting diode LED2, the light emitting diode LED3, and the light emitting diode LED5 do not turn on and turn on, it is described that the seventh wiring interface 2-7 of the second wire core corresponding to the seventh switch S7 is connected with the third wiring interface 2-3 of the first wire core in the first wire core wiring module 1; if the diodes in the first wire core connection module 1 are connected in series in an inverted manner, and it is found that 3 LEDs in the second wire core connection module 2 do not turn on, that is, the LEDs LED4, 6, 7 do not turn on and turn on, and the LEDs LED1, 2, 3, 5 turn on and turn on, then the connection between the seventh connection interface 2-7 of the second wire core corresponding to the seventh switch S7 and the third connection interface 2-3 of the first wire core in the first wire core connection module 1 is described.
The utility model discloses well first line core interface of working a telephone switchboard is not only with being connected of second line core interface, also can be other relation of connection, the utility model discloses do not do here and describe repeatedly.
The utility model provides a novel sinle silk is to line ware does not need public core can accomplish the line, through emitting diode's the bright condition of going out, can judge the line condition of cable, and is simple and convenient, improves work efficiency, simplifies work flow.
Although the present invention has been described with reference to the accompanying drawings, it is not intended to limit the scope of the present invention, and those skilled in the art should understand that various modifications or variations that can be made by those skilled in the art without inventive work are still within the scope of the present invention.

Claims (10)

1. The utility model provides a novel sinle silk is to line ware, characterized by includes:
the first wire core wiring module comprises a plurality of first wire core wiring interfaces and a plurality of diodes, and any two adjacent first wire core wiring interfaces in the plurality of first wire core wiring interfaces are connected in series through a diode;
the second wire core wiring module comprises a plurality of second wire core wiring interfaces, a plurality of switches and a plurality of light emitting diode circuits, the number of the second wire core wiring interfaces is the same as that of the first wire core wiring interfaces, the number of the switches is the same as that of the second wire core wiring interfaces, the number of the light emitting diode circuits is the same as that of the second wire core wiring interfaces, one path of one end of each switch, which is close to the corresponding second wire core wiring interface, is connected with the second wire core wiring interfaces in series in a one-to-one correspondence mode, and the other path of the switch is connected with the light emitting diode circuits in series in a one-to-one correspondence mode;
a cable for connecting the first core wire connection module with the second core wire connection module.
2. The novel wire core wire matching device as claimed in claim 1, wherein a diode is connected in series between any two adjacent first wire core wire connection interfaces in the plurality of first wire core wire connection interfaces in a forward or reverse direction.
3. The novel wire core wire matching device as claimed in claim 1 or 2, wherein the number of the diodes is one less than that of the first wire core wiring interfaces.
4. The novel wire core wire aligner of claim 1, wherein each of said light emitting diode circuits comprises: resistance, emitting diode, the one end of resistance connect all the way with emitting diode circuit series connection the second wire core interface of working a telephone switchboard, another way is connected the switch is close to the correspondence the one end of second wire core interface of working a telephone switchboard, emitting diode's negative pole is connected to the other end of resistance.
5. The novel wire core wire matching device as claimed in claim 4, wherein each of the light emitting diode circuits further comprises a power supply, an anode of the power supply is connected with an anode of the light emitting diode, and a cathode of the power supply is connected with one end of the switch far away from the corresponding second wire core wiring interface.
6. The novel wire core wire matching device as claimed in claim 4, wherein the second wire core wire connecting module further comprises a power supply, the positive electrode of the power supply is connected with the positive electrode of the light emitting diode in each light emitting diode circuit, and the negative electrode of the power supply is connected with one end of each switch far away from the corresponding second wire core wire connecting interface.
7. The novel wire core wire aligning device as claimed in claim 5 or 6, wherein the power supply is a direct current power supply.
8. The novel wire core alignment device as claimed in claim 1, wherein the switch is a push button switch.
9. The novel wire core wire matching device as claimed in claim 8, wherein the key switch is a key switch supporting automatic bouncing after key connection.
10. The novel wire core wire matching device as claimed in claim 1, wherein one end of the cable is connected with a plurality of the first wire core connection interfaces, and the other end of the cable is connected with a plurality of the second wire core connection interfaces.
CN201920729327.0U 2019-05-21 2019-05-21 Novel wire core alignment device Active CN210038129U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920729327.0U CN210038129U (en) 2019-05-21 2019-05-21 Novel wire core alignment device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920729327.0U CN210038129U (en) 2019-05-21 2019-05-21 Novel wire core alignment device

Publications (1)

Publication Number Publication Date
CN210038129U true CN210038129U (en) 2020-02-07

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920729327.0U Active CN210038129U (en) 2019-05-21 2019-05-21 Novel wire core alignment device

Country Status (1)

Country Link
CN (1) CN210038129U (en)

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