CN202106702U - Non-ink printing paper - Google Patents

Non-ink printing paper Download PDF

Info

Publication number
CN202106702U
CN202106702U CN2011201983261U CN201120198326U CN202106702U CN 202106702 U CN202106702 U CN 202106702U CN 2011201983261 U CN2011201983261 U CN 2011201983261U CN 201120198326 U CN201120198326 U CN 201120198326U CN 202106702 U CN202106702 U CN 202106702U
Authority
CN
China
Prior art keywords
paper
page
printed
column scan
leaf
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN2011201983261U
Other languages
Chinese (zh)
Inventor
张立君
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Beijing Institute of Graphic Communication
Original Assignee
Beijing Institute of Graphic Communication
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Beijing Institute of Graphic Communication filed Critical Beijing Institute of Graphic Communication
Priority to CN2011201983261U priority Critical patent/CN202106702U/en
Application granted granted Critical
Publication of CN202106702U publication Critical patent/CN202106702U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Abstract

A piece of non-ink printing paper comprises a piece of page paper, amplitude modulation dots printed on the page paper, row scanning lines printed on the page paper, line scanning lines printed on the page paper, and line scanning leads printed on the page paper; and contents of the non-ink printing paper can be fast written-in and renewed, so that the non-ink printing paper can realize fast printing and repeated reuse of paper.

Description

Inkless printing paper
Affiliated technical field:
The utility model relates to a kind of printing electronic textbook, particularly a kind of inkless printing paper based on printed electronics, the content of this inkless printing paper can write and upgrades according to needs fast, the quick print that can realize paper be repeatedly used.
Background technology:
Since human utility model type printing; Books, picture, newspaper etc. just become the important tool of the cultural log history of human record succession; Be printed in the evolution of human history and play crucial effect; Why human culture has today, also is to get off to pass to the offspring because can preserve culture.
Existing printing technology makes people printing word and pattern on paper become easier; But owing to the file or the data information that obtain through existing printing technology can not be changed; Therefore need a large amount of trees of felling, produce a large amount of paper, not only destroyed environment but also caused a large amount of wastes.
In the last few years along with the fast development of printed electronics; Can be printed on stationery to thin-film electronic element such as thin film transistor (TFT), resistance, inductance and electric capacity; Dry goods is on the grounds such as PVC plastics, leather, along with the fast development of printed electronics technology; The kind of printing ink is also in quick increase, heat discoloration printing ink, sensitization discoloration printing ink, wet sensitive ink, magnetic ink, electrically conductive ink, electrochromism printing ink etc. widespread usage at different print fields.
Along with the development of modern electronic technology, people have proposed to utilize electric ink and microcapsules electrophoretic film to make the notion of various electronic papers, but owing to cost an arm and a leg Electronic Paper mainly towards the demonstration field, they are used for newspaper or books field ten minutes difficulty.
The utility model content:
In order to overcome existing printing technology shortcoming; The utility model improves prior art to the deficiency that prior art exists; Utilize electrically conductive ink and electrochromism printing ink to replace the employed common ink of existing printing technology; And a kind of inkless printing paper has been proposed on this basis, the content of this inkless printing paper can write and upgrade fast, the quick print that can open paper in fact be repeatedly used.
The utility model solves the technical scheme that its technical problem adopted:
A kind of inkless printing paper, by page or leaf paper, be printed on amplitude modulation site on page paper, be printed on horizontal scanning line on page paper, be printed on the column scan line on page paper and the column scan lead-in wire that is printed on page paper constitutes, image and literal on the page or leaf paper are made up of the amplitude modulation site,
Amplitude modulation site on the page or leaf paper is printed by electrochromism printing ink and is formed, and the horizontal scanning line on the page or leaf paper, column scan line and column scan lead-in wire are printed by electrically conducting transparent printing ink and formed,
The horizontal scanning line that is printed on page paper has the N bar, and the column scan line that is printed on page paper has the M bar, and the column scan lead-in wire that is printed on page paper has the M bar; The amplitude modulation site that is printed on page paper is divided into the capable M row of N on paper; The amplitude modulation site neatly is arranged on page or leaf paper paper, let i get 1 to N, lets j get 1 to M; The j bar column scan line of page or leaf on the paper is electrically connected with the basal surface of each amplitude modulation site that j on the page or leaf paper is listed as; The upper surface of each amplitude modulation site that the i bar horizontal scanning line of page or leaf on the paper and i on the page or leaf paper are capable is electrically connected, and the j bar column scan lead-in wire on the page or leaf paper is vertical each other with j bar column scan line on the page or leaf paper, and the j bar column scan on page paper go between with page paper on j bar column scan line be electrically connected; Be printed on transparent insulation printing ink between column scan lead-in wire on the page or leaf paper and the horizontal scanning line on the page or leaf paper
When needs write on content on page paper, at first just the 1st on the page or leaf paper was changed to high level successively to N bar horizontal scanning line,
When the 1st horizontal scanning line on the page or leaf paper is changed to high level; The displaying contents that the 1st row on the page or leaf paper will write is imported from the 1st column scan line to M bar column scan line with 0,1 code form; Make each amplitude modulation site that links to each other with the 1st every trade scan line on page paper add electrochromics by the displaying contents that the 1st row writes
Other row on the page or leaf paper can repeat above-mentioned ablation process, and utilizes the Memorability of electrochromism printing ink, can make on page paper content preserve the long period,
The beneficial effect of the utility model is: proposed a kind of reusable inkless printing paper, the content of this inkless printing paper can write and upgrades according to needs fast, the quick print that can realize paper be repeatedly used.
Description of drawings
Below in conjunction with accompanying drawing the utility model is further specified.
Fig. 1 is the overall structure figure of the utility model.
Fig. 2 is the A-A cutaway view of the utility model.
Among Fig. 1 and Fig. 2; Inkless printing paper by page or leaf paper 7-1, be printed on page paper 7-1 amplitude modulation site 6-1 to 6-150, be printed on horizontal scanning line 1-1 on page paper 7-1 to 1-15, be printed on column scan line 2-1 on page paper 7-1 to 2-10 be printed on column scan lead-in wire 3-1 on page paper 7-1 to 3-10
Amplitude modulation site 6-1 on the page or leaf paper 7-1 is printed by electrochromism printing ink to 6-150 and forms, and the horizontal scanning line 1-1 on the page or leaf paper 7-1 is formed by the printing of electrically conducting transparent printing ink to 3-10 to 2-10 and column scan lead-in wire 3-1 to 1-15, column scan line 2-1,
The amplitude modulation site that is printed on page paper 7-1 is divided into 15 row, 10 row on paper; Amplitude modulation site 6-1 neatly is arranged to 6-150 on page or leaf paper 7-1; Let i get 1 to 15; Let j get 1 to 10, the basal surface of each amplitude modulation site of the j row on the j bar column scan line on the page or leaf paper 7-1 and the page or leaf paper 7-1 is electrically connected, and the upper surface of each amplitude modulation site that the i bar horizontal scanning line on page paper 7-1 and i on page paper 7-1 are capable is electrically connected; J bar column scan lead-in wire on the page or leaf paper 7-1 is vertical each other with j bar column scan line; And the j bar column scan lead-in wire on the page or leaf paper 7-1 is electrically connected with j bar column scan line, the column scan on page paper 7-1 go between 3-1 to 3-10 and horizontal scanning line 1-1 to being printed on transparent insulation printing ink between the 1-15
When needs write on content on page paper 7-1, at first the 1st on the page or leaf paper 7-1 to the 15th horizontal scanning line is changed to high level successively,
When the 1st horizontal scanning line 1-1 on the page or leaf paper 7-1 is changed to high level; The displaying contents that last the 1st row of page or leaf paper 7-1 will write is imported from the 1st to M bar column scan line with 0,1 code form; Each amplitude modulation site that page paper 7-1 is upward linked to each other with the 1st every trade scan line 1-1 adds electrochromics by the displaying contents that the 1st row writes
Other row on the page or leaf paper 7-1 can repeat above-mentioned ablation process, and utilizes the Memorability of electrochromism printing ink, can make on page paper 7-1 content preserve the long period.

Claims (1)

1. inkless printing paper, by page or leaf paper, be printed on amplitude modulation site on page paper, be printed on horizontal scanning line on page paper, be printed on the column scan line on page paper and the column scan lead-in wire that is printed on page paper constitutes, image and literal on the page or leaf paper are made up of the amplitude modulation site,
Amplitude modulation site on the page or leaf paper is printed by electrochromism printing ink and is formed, and the horizontal scanning line on the page or leaf paper, column scan line and column scan lead-in wire are printed by electrically conducting transparent printing ink and formed,
The horizontal scanning line that is printed on page paper has the N bar; The column scan line that is printed on page paper has the M bar, and the column scan lead-in wire that is printed on page paper has the M bar, and the amplitude modulation site that is printed on page paper is divided into the capable M row of N on paper; The amplitude modulation site neatly is arranged on page or leaf paper paper; Let i get 1 to N, let j get 1 to M, the j bar column scan line on the page or leaf paper is electrically connected with the basal surface of each amplitude modulation site that j on the page or leaf paper is listed as; The upper surface of each amplitude modulation site that the i bar horizontal scanning line of page or leaf on the paper and i on page paper are capable is electrically connected; The j bar column scan lead-in wire of page or leaf on the paper is vertical each other with j bar column scan line on the page or leaf paper, and the j bar column scan lead-in wire on the page or leaf paper is electrically connected with j bar column scan line on the page or leaf paper, the column scan on page paper go between and page paper on horizontal scanning line between be printed on transparent insulation printing ink.
CN2011201983261U 2011-06-14 2011-06-14 Non-ink printing paper Expired - Fee Related CN202106702U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011201983261U CN202106702U (en) 2011-06-14 2011-06-14 Non-ink printing paper

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2011201983261U CN202106702U (en) 2011-06-14 2011-06-14 Non-ink printing paper

Publications (1)

Publication Number Publication Date
CN202106702U true CN202106702U (en) 2012-01-11

Family

ID=45432148

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2011201983261U Expired - Fee Related CN202106702U (en) 2011-06-14 2011-06-14 Non-ink printing paper

Country Status (1)

Country Link
CN (1) CN202106702U (en)

Cited By (18)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102831833A (en) * 2011-06-14 2012-12-19 北京印刷学院 Inkless printing paper
CN103106494A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multi-variable-parameter gradient multi-variant circulating encryption anti-fake information storage brand
CN103106473A (en) * 2013-01-22 2013-05-15 北京印刷学院 One-parameter double-variant binary encryption anti-fake information storage brand
CN103106435A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multiparameter univariate ternary variable cycle encryption anti-fake information storage trademark
CN103106472A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multivariate multi-parameter gradient polynary circulating encryption anti-fake storage trademark
CN103106513A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multi-parameter univariate poly encryption anti-fake information storage trademark
CN103106436A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multiparameter univariate unitary cycle encryption anti-fake information storage trademark
CN103106459A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multiparameter transmutation multivariable cycle multielement encryption anti-fake information storage trademark
CN103106462A (en) * 2013-01-22 2013-05-15 北京印刷学院 One-parameter double-variant multi-variant circulating encryption anti-fake information storage brand
CN103106495A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multi-parametric-variable gradient ternary circulating encryption anti-fake information storage trademark
CN103106503A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multivariate multi-parameter gradient polynary encryption anti-fake information storage trademark
CN103106497A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multiparameter univariate binary variable cycle encryption anti-fake information storage trademark
CN103106506A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multi-parametric-variable gradient ternary encryption anti-fake information storage trademark
CN103106480A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multi-parameter ternary multivariant circulating encryption anti-fake information storage brand
CN103106516A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multivariate multi-parameter gradient binary encryption anti-fake information storage trademark
CN103106451A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multi-variable-parameter gradient ternary-variant circulating encryption anti-fake information storage brand
CN103106439A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multiparameter multivariable binary encryption anti-fake information storage trademark
CN103136566A (en) * 2013-01-22 2013-06-05 北京印刷学院 Parametric variable gradient polynary encryption anti-fake information storage trademark

Cited By (18)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102831833A (en) * 2011-06-14 2012-12-19 北京印刷学院 Inkless printing paper
CN103106494A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multi-variable-parameter gradient multi-variant circulating encryption anti-fake information storage brand
CN103106473A (en) * 2013-01-22 2013-05-15 北京印刷学院 One-parameter double-variant binary encryption anti-fake information storage brand
CN103106435A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multiparameter univariate ternary variable cycle encryption anti-fake information storage trademark
CN103106472A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multivariate multi-parameter gradient polynary circulating encryption anti-fake storage trademark
CN103106513A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multi-parameter univariate poly encryption anti-fake information storage trademark
CN103106436A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multiparameter univariate unitary cycle encryption anti-fake information storage trademark
CN103106459A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multiparameter transmutation multivariable cycle multielement encryption anti-fake information storage trademark
CN103106462A (en) * 2013-01-22 2013-05-15 北京印刷学院 One-parameter double-variant multi-variant circulating encryption anti-fake information storage brand
CN103106495A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multi-parametric-variable gradient ternary circulating encryption anti-fake information storage trademark
CN103106503A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multivariate multi-parameter gradient polynary encryption anti-fake information storage trademark
CN103106497A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multiparameter univariate binary variable cycle encryption anti-fake information storage trademark
CN103106506A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multi-parametric-variable gradient ternary encryption anti-fake information storage trademark
CN103106480A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multi-parameter ternary multivariant circulating encryption anti-fake information storage brand
CN103106516A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multivariate multi-parameter gradient binary encryption anti-fake information storage trademark
CN103106451A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multi-variable-parameter gradient ternary-variant circulating encryption anti-fake information storage brand
CN103106439A (en) * 2013-01-22 2013-05-15 北京印刷学院 Multiparameter multivariable binary encryption anti-fake information storage trademark
CN103136566A (en) * 2013-01-22 2013-06-05 北京印刷学院 Parametric variable gradient polynary encryption anti-fake information storage trademark

Similar Documents

Publication Publication Date Title
CN202106702U (en) Non-ink printing paper
CN102831453A (en) Page storage for printing electronic book pages
CN102298876A (en) Three-color overlapping ink-free printing paper
CN102831835A (en) Inkless printing book paper
CN202106701U (en) Inkless-printed book
CN202126763U (en) Inkless-printed book page paper
CN202110735U (en) Inkless-printed active multi-carrier wall calendary
CN102831833A (en) Inkless printing paper
CN202110733U (en) Printed electronic stamp
CN202282020U (en) Printing electronic page page memory
CN102254490A (en) Inklessly-printed active multi-carrier calendar
CN202110739U (en) Inkless printing paper with three primary colors
CN202110743U (en) Three-primary color inkless printing book page paper with delta color separation
CN202106700U (en) Inkless printed electronic pictorial
CN202106698U (en) Inkless printed hanging calendar
CN202110740U (en) Inkless printing paper with three primary colors and same areas
CN202120526U (en) Equal-area color division three-base-color inkless printing page paper
CN202110732U (en) Inkless printing newspaper volume
CN202106703U (en) Three-color overlapping inkless printing paper
CN202110677U (en) Inkless-printed active multi-carrier newspaper volume
CN202110734U (en) Active multi-carrier pictorial
CN102831834B (en) Inkless printing wall calendar
CN102831831B (en) Inkless printing newspaper volume
CN102831832B (en) Inkless printed electronic pictorial
CN102306475A (en) Non-ink printed active multi-carrier calendar

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20120111

Termination date: 20120614