CN110689101A - Live working apparatus test label and test information management system - Google Patents

Live working apparatus test label and test information management system Download PDF

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CN110689101A
CN110689101A CN201910975291.9A CN201910975291A CN110689101A CN 110689101 A CN110689101 A CN 110689101A CN 201910975291 A CN201910975291 A CN 201910975291A CN 110689101 A CN110689101 A CN 110689101A
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test
dimensional code
information item
column
laser
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Inventor
辛洪杰
乔丕凡
陈增顺
马亚琦
张兆慧
刘五超
徐鹏
孙华忠
李金宝
姚文展
张凯
刘炳仁
毕盛伟
于金亮
段磊
尹磊
赵荣升
姜颖先
刘一平
马献辉
于欣
高兴琳
李晓林
王杰
刘其博
辛晓璇
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State Grid Corp of China SGCC
Weifang Power Supply Co of State Grid Shandong Electric Power Co Ltd
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State Grid Corp of China SGCC
Weifang Power Supply Co of State Grid Shandong Electric Power Co Ltd
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K19/00Record carriers for use with machines and with at least a part designed to carry digital markings
    • G06K19/06Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code
    • G06K19/06009Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code with optically detectable marking
    • G06K19/06037Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code with optically detectable marking multi-dimensional coding
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01RMEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
    • G01R1/00Details of instruments or arrangements of the types included in groups G01R5/00 - G01R13/00 and G01R31/00
    • G01R1/02General constructional details
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01RMEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
    • G01R31/00Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q50/00Information and communication technology [ICT] specially adapted for implementation of business processes of specific business sectors, e.g. utilities or tourism
    • G06Q50/06Energy or water supply

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Abstract

The invention provides a test label of a live working tool, which comprises a label bearing body and a laser two-dimensional code printed on the label bearing body through a laser printer, wherein the laser two-dimensional code corresponds to the live working tool one by one, and the laser two-dimensional code comprises a group of test information item pixel images for one-to-one identifying the information content of each test information item of the corresponding live working tool. Still provide a live working apparatus test information management system: the laser two-dimensional code reading system comprises a two-dimensional code management platform, a two-dimensional code reader and a first terminal connected with the two-dimensional code reader, wherein the two-dimensional code management platform is used for updating information content corresponding to each test information item pixel image on the laser two-dimensional code. The invention is used for preventing the test label from falling off due to long-time friction and extrusion.

Description

Live working apparatus test label and test information management system
Technical Field
The invention relates to the field of electric power, in particular to a live working tool test label and a test information management system.
Background
With the expansion of the uninterrupted power grid service, the number of live-wire work is gradually increased, and live-wire work tools of live-wire work tools are important tools for live-wire work of live-wire workers, which are one of important conditions for ensuring the safety of live-wire work of the live-wire workers.
In order to ensure the personal safety of the live working personnel, the live working tools need to be periodically tested for performance (such as insulation of relevant parts of the live working tools, and the like). However, the number of live working tools used in the work is relatively large, and in order to facilitate management of the live working tools, a conventional method is to attach a test label to the live working tools, and the attached test label has information related to the live working tools and the latest test information stored therein. However, with the gradual increase of the number of live-wire works, the live-wire work tools are used more and more frequently, and the test labels stuck on the live-wire work tools often fall off due to long-time friction and extrusion, so that the maintenance and management of the live-wire work tools are directly affected, and the personal safety of workers in live-wire work is indirectly affected.
Therefore, the invention provides a test label of a live working tool and a test information management system, which are used for solving the problems.
Disclosure of Invention
In view of the above-mentioned shortcomings of the prior art, the present invention provides a test tag for a live working tool and a test information management system, so as to solve the above-mentioned technical problems.
In a first aspect, the invention provides a test label for live-working tools, which comprises a label carrier and a laser two-dimensional code printed on the label carrier by a laser printer;
the laser two-dimensional codes correspond to the live working tools one by one;
the laser two-dimensional code comprises a group of test information item pixel images for identifying the information content of each test information item of the corresponding live working tool one to one.
In a second aspect, the present invention provides a test information management system for a live-wire work tool, wherein the live-wire work tool is integrated with the test tag for the live-wire work tool;
the live working tool test information management system includes:
the two-dimensional code reader can read the laser two-dimensional code of the live working tool test label;
the first terminal is connected with the two-dimensional code reader and used for reading the information content of each test information item stored in the laser two-dimensional code through the two-dimensional code reader and displaying the read information content of each test information item;
and the two-dimensional code management platform is connected with the first terminal and used for updating the information content corresponding to each test information item pixel image on the laser two-dimensional code.
Wherein the information content item comprises: the test type, the tool classification, the tool name, the tool number, the test year, the test month, the test date, the test responsible person, the next test year, the next test month and the next test date.
The laser two-dimensional code is coded in a rectangular space through different distribution of black and white pixels in a matrix; the laser two-dimensional code represents a binary number 1 by the appearance of a black pixel point and represents a binary number 0 by the appearance of a white pixel point at the corresponding pixel position of the matrix;
the test information item pixel image is formed by arranging and combining a preset number of black pixels and a preset number of white pixels according to a preset arrangement and combination mode.
Wherein, the laser two-dimensional code adopts a 21 × 21 pixel matrix, wherein:
the pixel image of the test information item of the information content of the test information item "test type" is composed of pixels of the 2 nd row, 8 th column to 12 th column in a 21 × 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "tool classification" is composed of pixels of the 4 th row, the 8 th column and the 12 th column in a 21 x 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "tool name" is composed of pixels of the 6 th row, the 8 th column and the 13 th column in a 21 x 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "tool number" is composed of pixels of 8 th row, 8 th column and 16 th column in a 21 x 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "test year" is composed of pixels of the 10 th row, 8 th column to 19 th column in a 21 × 21 pixel matrix;
the trial information item pixel image of the information content of the trial information item "trial month" is made up of pixels of the 11 th row, 8 th column to 11 th column in a 21 × 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "test date" is composed of pixels of the 12 th row, 8 th column to 12 th column in a 21 × 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "test person in charge" is composed of pixels of 18 th row, 8 th column and 16 th column in a 21 x 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "next test year" is composed of pixels of the 14 th row, 8 th column to 19 th column in a 21 × 21 pixel matrix;
the trial information item pixel image of the information content of the trial information item "the next trial month" is made up of pixels of the 15 th row, 8 th column to 11 th column in a 21 × 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "test date next time" is composed of pixels of the 16 th row, 8 th column to 12 th column in a 21 × 21 pixel matrix.
Wherein, the tool classification includes four classifications: insulation tools, labor protection tools, safety tools, and others.
Wherein, this live working apparatus test information management system still includes:
and the laser printer is used for printing the laser two-dimensional code.
Wherein, this live working apparatus test information management system still includes:
and the second terminal is connected with the laser printer and used for generating the laser two-dimensional code corresponding to the live working tool and sending the generated laser two-dimensional code to the laser printer for laser printing.
The two-dimensional code reader adopts an image type reader.
The laser two-dimensional code adopts QR (Quick Response) code as a code system of the code.
The invention has the beneficial effects that:
(1) the invention provides a test label of a live working tool, which comprises a label bearing body and a laser two-dimensional code printed on the label bearing body through a laser printer, wherein the laser two-dimensional code corresponds to the live working tool one by one, the laser two-dimensional code comprises a group of test information item pixel images for identifying the information content of each test information item of the corresponding live working tool one by one, when the information content of the test information item of the live working tool is updated, the corresponding test label of the live working tool does not need to be replaced, only the information value corresponding to the pixel image of the related test information item in the laser two-dimensional code needs to be updated, and the test label is favorable for preventing the test label from falling off due to long-time friction and extrusion to a certain extent.
(2) In the live working tool test information management system provided by the invention, the live working tool is integrated with the live working tool test label, and has all the advantages of the live working tool test label, in addition, the live working tool test information management system comprises a two-dimensional code management platform, a two-dimensional code reader and a first terminal connected with the two-dimensional code reader, the first terminal reads the information content of each test information item stored in the laser two-dimensional code through the two-dimensional code reader, the two-dimensional code management platform is used for updating the information content corresponding to each test information item pixel image on the laser two-dimensional code, and after the live working tool is tested each time, the information content corresponding to each test information item pixel image on the laser two-dimensional code can be updated through the two-dimensional code management platform, therefore, the latest information content of each test information item of the live-wire work tool can be directly obtained by the power worker through scanning of the two-dimensional code reader, and the service life of the live-wire work tool using the laser two-dimensional code corresponding to the test label is prolonged by combining the wear-resisting characteristic of the laser two-dimensional code.
In addition, the invention has reliable design principle, simple structure and very wide application prospect.
Drawings
In order to more clearly illustrate the embodiments or technical solutions in the prior art of the present invention, the drawings used in the description of the embodiments or prior art will be briefly described below, and it is obvious for those skilled in the art that other drawings can be obtained based on these drawings without creative efforts.
Fig. 1 is a schematic configuration diagram of a test label for a live-wire work implement according to the present invention.
Fig. 2 is a schematic block diagram of a system according to an embodiment of the present invention.
Fig. 3 is a schematic structural diagram of an embodiment of a laser two-dimensional code according to the present invention.
Detailed Description
In order to make those skilled in the art better understand the technical solution of the present invention, the technical solution in the embodiment of the present invention will be clearly and completely described below with reference to the drawings in the embodiment of the present invention, and it is obvious that the described embodiment is only a part of the embodiment of the present invention, and not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
The following explains key terms appearing in the present invention.
Example 1:
referring to fig. 1, the test label 100 for hot-line work equipment according to the present embodiment includes a label carrier 101 and a laser two-dimensional code 102 printed on the label carrier 101 by a laser printer;
the laser two-dimensional codes 102 correspond to the live working tools one by one;
the laser two-dimensional code 102 includes a group of test information item pixel images 1021 for identifying the information content of each test information item of the corresponding live-wire work tool on a one-to-one basis.
When the information content of the test information item of the live working tool is updated, the corresponding test label of the live working tool does not need to be replaced, and only the information value corresponding to the pixel image of the relevant test information item in the laser two-dimensional code needs to be updated, so that the test label is prevented from falling off due to long-time friction and extrusion to a certain extent.
Example 2:
fig. 2 is a schematic block diagram of a system 200 according to an embodiment of the present invention. In this embodiment, the live-working tool described in embodiment 1 is integrated with the live-working tool test tag 100. In order to reduce the cost, the label carrier 101 of the test label 100 for the hot-line work tool is the tool body of the hot-line work tool, that is, the laser two-dimensional code 102 is directly printed on the hot-line work tool in this embodiment.
As shown in fig. 2, the live-working tool test information management system 200 according to the present embodiment includes:
a two-dimensional code reader 201 capable of reading the laser two-dimensional code 102 of the live-wire work tool test label 100;
the first terminal 202 is connected with the two-dimensional code reader 201, and is used for reading the information content of each test information item stored in the laser two-dimensional code 102 through the two-dimensional code reader 201 and displaying the read information content of each test information item;
and the two-dimensional code management platform 203 is connected with the first terminal 202 and is used for updating the information content corresponding to each pixel image of the test information item on the laser two-dimensional code 102.
During use, on one hand, under the control action of the first terminal 202, the information content of each test information item stored in the laser two-dimensional code 102 is read through the two-dimensional code reader 201, and the read information content of the test information item is displayed through the first terminal 202.
In addition, after the test of the live working tool is completed each time, the information content corresponding to each pixel image of the test information item on the laser two-dimensional code 102 can be updated through the two-dimensional code management platform 203, so that the latest information content of each test information item of the live working tool can be directly obtained by the power worker through scanning of the two-dimensional code reader 201, and the service life of the live working tool using the laser two-dimensional code 102 corresponding to the test label 100 is prolonged by combining the wear-resistant characteristic of the laser two-dimensional code 102.
Example 3:
the present embodiment is different from embodiment 2 in that, in the hot-line work appliance test information management system 200 according to the present embodiment, the information content items include: the test type, the tool classification, the tool name, the tool number, the test year, the test month, the test date, the test responsible person, the next test year, the next test month and the next test date.
Optionally, the laser two-dimensional code 102 adopts a QR code as a coded code system.
Optionally, the laser two-dimensional code 102 is encoded in a rectangular space by different distributions of black and white pixels in a matrix; the laser two-dimensional code 102 represents a binary number 1 by the appearance of a black pixel point and represents a binary number 0 by the appearance of a white pixel point at the corresponding pixel position of the matrix; the test information item pixel image is formed by arranging and combining a preset number of black pixels and a preset number of white pixels according to a preset arrangement and combination mode.
Optionally, the laser two-dimensional code 102 adopts a 21 × 21 pixel matrix, where:
a trial information item pixel image of the information content of the trial information item "trial type", consisting of pixels of the 2 nd row, 8 th column to 12 th column in said 21 x 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "tool classification" is composed of the pixels of the 4 th row, the 8 th column and the 12 th column in the 21 x 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "tool name" is composed of the pixels of the 6 th row, the 8 th column and the 13 th column in the 21 x 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "tool number" is composed of the pixels of 8 th row, 8 th column and 16 th column in the 21 x 21 pixel matrix;
a trial information item pixel image of the information content of the trial information item "trial year" consisting of pixels of the 10 th row, 8 th column to 19 th column in the 21 x 21 pixel matrix;
a trial information item pixel image of the information content of trial information item "trial month" consisting of pixels of the 11 th row, 8 th column to 11 th column in said 21 x 21 pixel matrix;
a trial information item pixel image of the information content of the trial information item "trial date", consisting of pixels of the 12 th row, 8 th column to 12 th column in said 21 x 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "test responsible person" is composed of the pixels of the 18 th row, the 8 th column and the 16 th column in the 21 x 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "next test year" is composed of the pixels of the 14 th row, 8 th column to 19 th column in the 21 × 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "the next test month" is composed of the pixels of the 15 th row, the 8 th column and the 11 th column in the 21 × 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "test date next" is composed of the pixels of the 16 th row, 8 th column to 12 th column in the 21 x 21 pixel matrix.
The two-dimensional code shown in fig. 3 is an embodiment of the laser two-dimensional code 102 in the embodiment, wherein, in order to clearly display each pixel in the laser two-dimensional code 102, 21 × 21 grid lines are drawn in fig. 3, and actually, the 21 × 21 grid lines in fig. 3 are not present in the laser two-dimensional code 102. In addition, although each test information item pixel image in the illustrated laser two-dimensional code is circled by a black rectangular frame in fig. 3, in order to make fig. 3 clearer, a description is not separately provided by a lead wire, and a person skilled in the art can easily know the meaning corresponding to the test information item pixel image circled by each other black rectangular frame, for example, the test information item pixel image of the information content of the test information item "test type" is denoted by reference numeral 1021, and the binary code corresponding to the test information item pixel image denoted by reference numeral 1021 is "0101", in combination with the text description in this embodiment. The information content corresponding to the binary code "0101" is decoded, so that the test type corresponding to the live working tool corresponding to the laser two-dimensional code 102 can be obtained.
Optionally, the tool classification includes four classifications: insulation tools, labor protection tools, safety tools, and others. The binary codes corresponding to the four classifications are 00001, 00011, 00111 and 01111 in sequence.
The tool name of each tool classification is encoded starting from binary code 000001, and the encoding sequence (i.e. the binary code corresponding to the pixel image of the relevant test information item) may have 000001
Figure BDA0002233406470000096
111111 and the number of the seeds is 63.
Each tool number corresponds to a unique tool name, the tool number is coded from 000000001, and the coding sequence can have 000000001
Figure BDA0002233406470000091
11111111 Total 511 species.
The year of the test date is coded from 000000000001, and the coding sequence can be 00000001
Figure BDA0002233406470000092
111111111111 there are 4095 kinds.
Said test month, starting from 0001, coding sequence may have 0001
Figure BDA0002233406470000093
1100 in total of 12.
The test date is coded from 00001, and the coding sequence can have 00001
Figure BDA0002233406470000094
11111 and 31 kinds.
The test person in charge encodes 000000001, and the encoding sequence can have 000000001111111111 Total 511 species.
Fig. 3 is an embodiment of the laser two-dimensional code 102 according to the embodiment.
Optionally, the live-working tool test information management system further includes:
and the laser printer is used for printing the laser two-dimensional code 102.
Optionally, the live-working tool test information management system further includes:
and the second terminal is connected with the laser printer and is used for generating the laser two-dimensional code 102 corresponding to the live working tool and sending the generated laser two-dimensional code 102 to the laser printer for two-dimensional code printing.
The two-dimensional code reader 201 is an image reader.
It should be noted that, the first terminal and the second terminal described in this specification may both be PCs.
It should be noted that the same or similar parts between the embodiments in this specification may be referred to each other.
Although the present invention has been described in detail by referring to the drawings in connection with the preferred embodiments, the present invention is not limited thereto. Various equivalent modifications or substitutions can be made on the embodiments of the present invention by those skilled in the art without departing from the spirit and scope of the present invention, and these modifications or substitutions are within the scope of the present invention/any person skilled in the art can easily conceive of the changes or substitutions within the technical scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims.

Claims (10)

1. A test label for live-wire work tools is characterized by comprising a label carrier and a laser two-dimensional code printed on the label carrier through a laser printer;
the laser two-dimensional codes correspond to the live working tools one by one;
the laser two-dimensional code comprises a group of test information item pixel images for identifying the information content of each test information item of the corresponding live working tool one to one.
2. A live-wire work tool test information management system, characterized in that the live-wire work tool is integrated with the live-wire work tool test tag of claim 1;
the live working tool test information management system includes:
the two-dimensional code reader can read the laser two-dimensional code of the live working tool test label;
the first terminal is connected with the two-dimensional code reader and used for reading the information content of each test information item stored in the laser two-dimensional code through the two-dimensional code reader and displaying the read information content of each test information item;
and the two-dimensional code management platform is connected with the first terminal and used for updating the information content corresponding to each test information item pixel image on the laser two-dimensional code.
3. The live-wire work tool test information management system according to claim 2, wherein the information content item includes: the test type, the tool classification, the tool name, the tool number, the test year, the test month, the test date, the test responsible person, the next test year, the next test month and the next test date.
4. The system for managing test information on live-working implements according to claim 3, wherein the laser two-dimensional code is encoded in a rectangular space by different distributions of black and white pixels in a matrix; the laser two-dimensional code represents a binary number 1 by the appearance of a black pixel point and represents a binary number 0 by the appearance of a white pixel point at the corresponding pixel position of the matrix;
the test information item pixel image is formed by arranging and combining a preset number of black pixels and a preset number of white pixels according to a preset arrangement and combination mode.
5. The live-working tool test information management system according to claim 4, wherein the laser two-dimensional code uses a 21 x 21 pixel matrix, in which:
the pixel image of the test information item of the information content of the test information item "test type" is composed of pixels of the 2 nd row, 8 th column to 12 th column in a 21 × 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "tool classification" is composed of pixels of the 4 th row, the 8 th column and the 12 th column in a 21 x 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "tool name" is composed of pixels of the 6 th row, the 8 th column and the 13 th column in a 21 x 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "tool number" is composed of pixels of 8 th row, 8 th column and 16 th column in a 21 x 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "test year" is composed of pixels of the 10 th row, 8 th column to 19 th column in a 21 × 21 pixel matrix;
the trial information item pixel image of the information content of the trial information item "trial month" is made up of pixels of the 11 th row, 8 th column to 11 th column in a 21 × 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "test date" is composed of pixels of the 12 th row, 8 th column to 12 th column in a 21 × 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "test person in charge" is composed of pixels of 18 th row, 8 th column and 16 th column in a 21 x 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "next test year" is composed of pixels of the 14 th row, 8 th column to 19 th column in a 21 × 21 pixel matrix;
the trial information item pixel image of the information content of the trial information item "the next trial month" is made up of pixels of the 15 th row, 8 th column to 11 th column in a 21 × 21 pixel matrix;
the pixel image of the test information item of the information content of the test information item "test date next time" is composed of pixels of the 16 th row, 8 th column to 12 th column in a 21 × 21 pixel matrix.
6. The system for managing test information on an electrified working tool according to claim 3, wherein the tool classification includes four classifications: insulation tools, labor protection tools, safety tools, and others.
7. The live-wire work implement test information management system according to any one of claims 2 to 6, further comprising:
and the laser printer is used for printing the laser two-dimensional code.
8. The live-wire work tool test information management system according to claim 7, further comprising:
and the second terminal is connected with the laser printer and used for generating the laser two-dimensional code corresponding to the live working tool and sending the generated laser two-dimensional code to the laser printer for laser printing.
9. The system for managing test information on live-working implements according to any one of claims 2 to 6, wherein the two-dimensional code reader is an image reader.
10. The live-working tool test information management system according to any one of claims 2 to 6, wherein the laser two-dimensional code uses a QR code as a coded code system.
CN201910975291.9A 2019-10-14 2019-10-14 Live working apparatus test label and test information management system Pending CN110689101A (en)

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