CN102254490A - Inklessly-printed active multi-carrier calendar - Google Patents

Inklessly-printed active multi-carrier calendar Download PDF

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Publication number
CN102254490A
CN102254490A CN2011101850461A CN201110185046A CN102254490A CN 102254490 A CN102254490 A CN 102254490A CN 2011101850461 A CN2011101850461 A CN 2011101850461A CN 201110185046 A CN201110185046 A CN 201110185046A CN 102254490 A CN102254490 A CN 102254490A
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China
Prior art keywords
page
paper
bar
line
column scan
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Granted
Application number
CN2011101850461A
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Chinese (zh)
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CN102254490B (en
Inventor
张立君
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Beijing Institute of Graphic Communication
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Beijing Institute of Graphic Communication
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Priority to CN 201110185046 priority Critical patent/CN102254490B/en
Publication of CN102254490A publication Critical patent/CN102254490A/en
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Publication of CN102254490B publication Critical patent/CN102254490B/en
Expired - Fee Related legal-status Critical Current
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Abstract

The invention relates to an inklessly-printed active multi-carrier calendar. The inklessly-printed active multi-carrier calendar consists of a calendar book cover, a calendar book body and a page reading and writing operating system, wherein the calendar book body is formed by overlapping W calendar book pages. The contents of the inklessly-printed active multi-carrier calendar can be quickly updated, and the contents of a plurality of calendars can be recorded by one calendar.

Description

The active multichip carrier wall calendar of inkless printing
Affiliated technical field:
The present invention relates to the active multichip carrier wall calendar of a kind of inkless printing, the active multichip carrier wall calendar of particularly a kind of inkless printing based on color shifting ink, the content of this wall calendar can and write renewal fast by user's selection, can realize utilizing the content of a wall calendar record multi-section wall calendar.
Background technology:
Since the mankind have invented 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 by 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, on the grounds such as PVC plastics, leather, fast development along with the 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 the books field is very difficult.
Summary of the invention:
In order to overcome existing printing technology shortcoming, the deficiency that the present invention is directed to the prior art existence is improved prior art, utilize electrically conductive ink and electrochromism printing ink to replace the employed common ink of existing printing technology, but and the active multichip carrier wall calendar of the inkless printing that has proposed a kind of content fast updating on this basis, can realize utilizing the content of a wall calendar record multi-section wall calendar.
The technical solution adopted for the present invention to solve the technical problems is:
The active multichip carrier wall calendar of a kind of inkless printing based on color shifting ink is made of wall calendar cover, the wall calendar style of calligraphy and page read-write operation system, and the wall calendar style of calligraphy is hanged up the folded system of almanac page or leaf by W and formed,
The wall calendar page is all by page or leaf paper, be printed on the amplitude modulation site on page paper, be printed on the horizontal scanning line on page paper, be printed on the column scan line on page paper, be printed on the column scan lead-in wire on page paper, the film bidirectional analog switch that is printed on the page scan control line on page paper and is printed on page paper constitutes, the film bidirectional analog switch that is printed on page paper all has two input/output terminals and an input and output break-make control end, image on the wall calendar page and literal are made of the amplitude modulation site on the wall calendar page
The amplitude modulation site that is printed on page paper is formed by the printing of electrochromism printing ink, and the horizontal scanning line, column scan line, column scan lead-in wire and the page scan control line that are printed on page paper are formed by the printing of electrically conducting transparent printing ink,
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, 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 page or leaf paper paper, the amplitude modulation site neatly is arranged on page or leaf paper paper, allow i get 1 to N, allow j get 1 to M, allow k get 1 to W, j bar column scan line is electrically connected with the basal surface of each amplitude modulation site of the j row of page or leaf on the paper, the upper surface of each amplitude modulation site that i bar horizontal scanning line and the i of page or leaf on the paper are capable is electrically connected, j bar column scan lead-in wire is vertical mutually with j bar column scan line, and j bar column scan lead-in wire only is electrically connected with j bar column scan line, and be printed on transparent insulation printing ink between other column scan lines, the column scan line of page or leaf on the paper is vertical mutually with horizontal scanning line on the page or leaf paper, is printed on transparent insulation printing ink between column scan lead-in wire on page paper and the horizontal scanning line
The film bidirectional analog switch that is printed on page paper is divided into two groups, first group is column scan film bidirectional analog switch, second group is line scanning film bidirectional analog switch, j column scan film bidirectional analog switch is positioned at an end of j bar column scan lead-in wire, j bar column scan lead-in wire is electrically connected with j column scan film bidirectional analog switch, and be electrically connected mutually behind j the column scan film bidirectional analog switch on this page of the lead-in wire of the j bar column scan on each page of wall calendar style of calligraphy paper process, form the j bar style of calligraphy column scan lead-in wire of the whole style of calligraphy, i line scanning film bidirectional analog switch is positioned at an end of i bar horizontal scanning line, i bar horizontal scanning line is electrically connected with i line scanning film bidirectional analog switch, and be electrically connected mutually behind i the line scanning film bidirectional analog switch on this page of the process of the i bar horizontal scanning line on each page of wall calendar style of calligraphy paper, form the i bar style of calligraphy horizontal scanning line of the whole style of calligraphy
Each column scan film bidirectional analog switch of k page and the break-make control end of each line scanning film bidirectional analog switch all are electrically connected with the page scan control line of k page,
Page read-write operation system selects control system, page line to select control system, pages column to select control system and pulse producer to constitute by page,
Page selects control system to select address generator, page or leaf selection address decoder and page or leaf to select driver to constitute by page or leaf, and the page scan control line of k page selects the k bar page or leaf of driver to select drive wire to be electrically connected with page or leaf,
Page line selects control system to select address generator, row to select address decoder and row to select driver to constitute by row, and i bar style of calligraphy horizontal scanning line selects the capable selection of the i bar drive wire of driver to be electrically connected with row,
Pages column selects control system by showing that selection control, display-memory, column selection address generator, column selection address decoder and column selection driver constitute, j bar style of calligraphy column scan lead-in wire is electrically connected with the j bar column selection drive wire of column selection driver, be divided into a plurality of districts in the display-memory, the displaying contents of a wall calendar of each district's storage, show that selection control is used for selecting the current data output area of display-memory
In the time the content of a wall calendar need being presented on the wall calendar style of calligraphy, at first start page read-write operation system, set the top that the initial value that shows selection control makes interior this memory block, wall calendar place of initial address sensing display-memory of column selection address generator, page selects the 1st page or leaf of control system to select drive wire to power up and export high level, make all column scan film bidirectional analog switches and all line scanning film bidirectional analog switch conductions of the 1st page of the wall calendar style of calligraphy, the 1st page of the wall calendar style of calligraphy is changed to writes enable state, page selects the 2nd page or leaf of control system to select drive wire to select the drive wire output low level to W bar page or leaf, make of all column scan film bidirectional analog switches and all the line scanning film bidirectional analog switch shutoff of the 2nd page of the wall calendar style of calligraphy to the W page, make the 2nd page of the wall calendar style of calligraphy be changed to the writing prohibition state to the W page
When the 1st page of the wall calendar style of calligraphy be changed to write permission after, page line selects control system to select address generator and row to select address decoder to export the 1st successively to N bar row address by row, make row select the 1st of driver to be changed to high level successively, and by the wall calendar style of calligraphy the 1st make the 1st of the wall calendar style of calligraphy the 1st page to be changed to high level successively to N bar horizontal scanning line to N bar style of calligraphy horizontal scanning line to the capable selection of N bar drive wire
When i bar horizontal scanning line is changed to high level, pages column selects control system to export i bar address by column selection address generator and column selection address decoder, and read the capable video data of this wall calendar the 1st page i from display-memory, the capable video data of i is added in the 1st to M bar style of calligraphy column scan lead-in wire in proper order by the column selection driver, and by the 1st page the 1st be added in the 1st of the 1st page to M bar column scan line in proper order to M bar column scan lead-in wire, make the electrochromics that adds of each amplitude modulation site that this wall calendar the 1st page links to each other with i every trade sweep trace by the capable video data of i
Repeat said process the content of this wall calendar is all write on each page of the wall calendar style of calligraphy, and utilize the Memorability of electrochromism printing ink, can make the content on the wall calendar style of calligraphy preserve the long period,
The invention has the beneficial effects as follows: but a kind of active multichip carrier wall calendar of inkless printing of content fast updating has been proposed, can realize utilizing the content of a wall calendar record multi-section wall calendar.
Description of drawings
The present invention is further described below in conjunction with accompanying drawing.
Fig. 1 is the one-piece construction figure of wall calendar of the present invention.
Fig. 2 is the structural drawing of wall calendar page of the present invention.
Fig. 3 is the A-A cut-open view of wall calendar page of the present invention.
Fig. 4 is the structural drawing of film bidirectional analog switch of the present invention.
Fig. 5 is the structural drawing of page read-write operation of the present invention system.
Fig. 6 is the front elevation of the style of calligraphy of the present invention.
Fig. 7 is the side view of the style of calligraphy of the present invention.
Among Fig. 1, be made of wall calendar cover 10, the wall calendar style of calligraphy 11 and page read-write operation system 12 based on the active multichip carrier wall calendar of the inkless printing of color shifting ink, the wall calendar style of calligraphy 11 is hanged up the folded system of almanac page or leaf by W and is formed,
Among Fig. 2 and Fig. 3, the wall calendar page is all by page or leaf paper 7-1, be printed on amplitude modulation site 6-1 on page paper 7-1 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, the column scan that is printed on page paper 7-1 goes between 3-1 to 3-10, the film bidirectional analog switch 4-1 that is printed on the page scan control line 5-1 on page paper 7-1 and is printed on page paper 7-1 constitutes to 4-25, image on the wall calendar page and literal are made of to 6-150 amplitude modulation site, the amplitude modulation site 6-1 on the wall calendar page
Among Fig. 4, film bidirectional analog switch has I/O1 and two input/output terminals of I/O2, a break-make control end In1 is arranged, on the break-make control end In1 of film bidirectional analog switch, add high level, film bidirectional analog switch conduction, electric current can flow to I/O2 from I/O1 also can flow to I/O1 from I/O2, when not adding high level on the break-make control end In1 of film bidirectional analog switch, and the shutoff of film bidirectional analog switch.
Amplitude modulation site 6-1 on the page or leaf paper 7-1 is printed by electrochromism printing ink to 6-150 and forms, horizontal scanning line 1-1 on the page or leaf paper 7-1 to 1-15, column scan line 2-1 to 2-10, the column scan 3-1 that goes between forms by the printing of electrically conducting transparent printing ink to 3-10 and page scan control line 5-1
The amplitude modulation site 6-1 that is printed on page paper 7-1 is being divided into 15 row, 10 row to 6-150 on page or leaf paper 7-1, amplitude modulation site 6-1 neatly is arranged to 6-150 on page or leaf paper 7-1, allow i get 1 to 15, allow j get 1 to 10, allow k get 1 to W, j bar column scan line on the page or leaf paper 7-1 is electrically connected with the basal surface of each amplitude modulation site that j on the page or leaf paper 7-1 is listed as, the upper surface of each amplitude modulation site that the i bar horizontal scanning line on the page or leaf 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 mutually 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, column scan line on the page or leaf paper 7-1 is vertical mutually with horizontal scanning line on page paper 7-1, column scan lead-in wire 3-1 on the page or leaf paper 7-1 to 3-10 and horizontal scanning line 1-1 to being printed on transparent insulation printing ink between the 1-15
Among Fig. 6 and Fig. 7,9-1 is a style of calligraphy horizontal scanning line to 9-15, and 8-1 is a style of calligraphy column scan line to 8-10,
Fig. 2, among Fig. 6 and Fig. 7, film bidirectional analog switch 4-1 is divided into two groups to 4-25, first group of 4-1,4-3,4-5,4-7,4-9,4-11,4-13,4-15,4-17 and 4-19 are column scan film bidirectional analog switch, second group of 4-2,4-4,4-6,4-8,4-10,4-12,4-14,4-16,4-18,4-20,4-21,4-22,4-23,4-24,4-25 is a line scanning film bidirectional analog switch, j column scan film bidirectional analog switch is positioned at the end that the column scan of j bar goes between on page or leaf paper 7-1, j bar column scan lead-in wire is electrically connected with j column scan film bidirectional analog switch, and be electrically connected mutually behind j the column scan film bidirectional analog switch on this page of the lead-in wire of the j bar column scan on the wall calendar style of calligraphy 11 each page paper process, form the j bar style of calligraphy column scan lead-in wire of the whole style of calligraphy, i line scanning film bidirectional analog switch is positioned at an end of i bar horizontal scanning line on page or leaf paper 7-1, i bar horizontal scanning line is electrically connected with i line scanning film bidirectional analog switch, and be electrically connected mutually behind i the line scanning film bidirectional analog switch on this page of the process of the i bar horizontal scanning line on the wall calendar style of calligraphy 11 each page paper, form the i bar style of calligraphy horizontal scanning line of the whole style of calligraphy
Each column scan film bidirectional analog switch of the 1st page and the break-make control end of each line scanning film bidirectional analog switch all are electrically connected with the page scan control line 5-1 of the 1st page, each column scan film bidirectional analog switch of k page and the break-make control end of each line scanning film bidirectional analog switch all are electrically connected with the page scan control line of k page
Among Fig. 5, page read-write operation system 12 selects control system, page line to select control system, pages column to select control system and pulse producer to constitute by page,
Page selects control system to select address generator, page or leaf selection address decoder and page or leaf to select driver to constitute by page or leaf, the 1st page page scan control line 5-1 selects the 1st page or leaf of driver to select drive wire to be electrically connected with page or leaf, the page scan control line of k page or leaf selects the k bar page or leaf of driver to select drive wire to be electrically connected with page or leaf
Page line selects control system to select address generator, row to select address decoder and row to select driver to constitute by row, and i bar style of calligraphy horizontal scanning line selects the capable selection of the i bar drive wire of driver to be electrically connected with row,
Pages column selects control system by showing that selection control, display-memory, column selection address generator, column selection address decoder and column selection driver constitute, j bar style of calligraphy column scan lead-in wire is electrically connected with the j bar column selection drive wire of column selection driver, be divided into a plurality of districts in the display-memory, the displaying contents of a wall calendar of each district's storage, show that selection control is used for selecting the current data output area of display-memory
As Fig. 2, Fig. 5, Fig. 6 and Fig. 7, in the time the content of a wall calendar need being presented on the wall calendar style of calligraphy 11, at first start page read-write operation system 12, set the top that the initial value that shows selection control makes interior this memory block, wall calendar place of initial address sensing display-memory of column selection address generator, page selects the 1st page or leaf of control system to select drive wire to power up and export high level, make all column scan film bidirectional analog switches and all line scanning film bidirectional analog switch conductions of the wall calendar style of calligraphy 11 the 1st page by page scan control line 5-1, the 1st page of the wall calendar style of calligraphy 11 is changed to writes enable state, page selects the 2nd page or leaf of control system to select drive wire to select the drive wire output low level to W bar page or leaf, the wall calendar style of calligraphy 11 the 2nd page is turn-offed to all column scan film bidirectional analog switches and all line scanning film bidirectional analog switches of W page, make the wall calendar style of calligraphy 11 the 2nd page be changed to the writing prohibition state to the W page
When the 1st page of the wall calendar style of calligraphy 11 be changed to write permission after, page line selects control system to select address generator and row to select address decoder to export the 1st to the 15th row address successively by row, make row select the 1st to the 15th row of driver to select drive wire to be changed to high level successively, and make the horizontal scanning line 1-1 of the wall calendar style of calligraphy 11 the 1st page be changed to high level successively to 9-15 to 1-15 by the style of calligraphy horizontal scanning line 9-1 of the wall calendar style of calligraphy 11
When the 1st page horizontal scanning line 1-1 is changed to high level, pages column selects control system to export the 1st address by column selection address generator and column selection address decoder, and read this wall calendar the 1st page the 1st row video data from display-memory, the 1st row video data is added in style of calligraphy column scan line 8-1 to 8-10 in proper order by the column selection driver, and the lead-in wire of the column scan by the 1st page 3-1 is added in the column scan line 2-1 of the 1st page to 2-10 to the 3-10 order, make the electrochromics that adds of each amplitude modulation site that this wall calendar the 1st page links to each other with the 1st every trade sweep trace by the video data of the 1st row
Repeat said process the content of this wall calendar is all write on each page of the wall calendar style of calligraphy 11, and utilize the Memorability of electrochromism printing ink, can make the content on the wall calendar style of calligraphy preserve the long period.

Claims (1)

1. the active multichip carrier wall calendar of inkless printing is made of wall calendar cover, the wall calendar style of calligraphy and page read-write operation system, It is characterized in that:The active multichip carrier wall calendar of inkless printing is made of wall calendar cover, the wall calendar style of calligraphy and page read-write operation system, and the wall calendar style of calligraphy is hanged up the folded system of almanac page or leaf by W and formed,
The wall calendar page is all by page or leaf paper, be printed on the amplitude modulation site on page paper, be printed on the horizontal scanning line on page paper, be printed on the column scan line on page paper, be printed on the column scan lead-in wire on page paper, the film bidirectional analog switch that is printed on the page scan control line on page paper and is printed on page paper constitutes, the film bidirectional analog switch that is printed on page paper all has two input/output terminals and an input and output break-make control end, image on the wall calendar page and literal are made of the amplitude modulation site on the wall calendar page
The amplitude modulation site that is printed on page paper is formed by the printing of electrochromism printing ink, and the horizontal scanning line, column scan line, column scan lead-in wire and the page scan control line that are printed on page paper are formed by the printing of electrically conducting transparent printing ink,
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, 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 page or leaf paper paper, the amplitude modulation site neatly is arranged on page or leaf paper paper, allow i get 1 to N, allow j get 1 to M, allow k get 1 to W, j bar column scan line is electrically connected with the basal surface of each amplitude modulation site of the j row of page or leaf on the paper, the upper surface of each amplitude modulation site that i bar horizontal scanning line and the i of page or leaf on the paper are capable is electrically connected, j bar column scan lead-in wire is vertical mutually with j bar column scan line, and j bar column scan lead-in wire only is electrically connected with j bar column scan line, and be printed on transparent insulation printing ink between other column scan lines, the column scan line of page or leaf on the paper is vertical mutually with horizontal scanning line on the page or leaf paper, is printed on transparent insulation printing ink between column scan lead-in wire on page paper and the horizontal scanning line
The film bidirectional analog switch that is printed on page paper is divided into two groups, first group is column scan film bidirectional analog switch, second group is line scanning film bidirectional analog switch, j column scan film bidirectional analog switch is positioned at an end of j bar column scan lead-in wire, j bar column scan lead-in wire is electrically connected with j column scan film bidirectional analog switch, and be electrically connected mutually behind j the column scan film bidirectional analog switch on this page of the lead-in wire of the j bar column scan on each page of wall calendar style of calligraphy paper process, form the j bar style of calligraphy column scan lead-in wire of the whole style of calligraphy, i line scanning film bidirectional analog switch is positioned at an end of i bar horizontal scanning line, i bar horizontal scanning line is electrically connected with i line scanning film bidirectional analog switch, and be electrically connected mutually behind i the line scanning film bidirectional analog switch on this page of the process of the i bar horizontal scanning line on each page of wall calendar style of calligraphy paper, form the i bar style of calligraphy horizontal scanning line of the whole style of calligraphy
Each column scan film bidirectional analog switch of k page and the break-make control end of each line scanning film bidirectional analog switch all are electrically connected with the page scan control line of k page,
Page read-write operation system selects control system, page line to select control system, pages column to select control system and pulse producer to constitute by page,
Page selects control system to select address generator, page or leaf selection address decoder and page or leaf to select driver to constitute by page or leaf, and the page scan control line of k page selects the k bar page or leaf of driver to select drive wire to be electrically connected with page or leaf,
Page line selects control system to select address generator, row to select address decoder and row to select driver to constitute by row, and i bar style of calligraphy horizontal scanning line selects the capable selection of the i bar drive wire of driver to be electrically connected with row,
Pages column selects control system by showing that selection control, display-memory, column selection address generator, column selection address decoder and column selection driver constitute, j bar style of calligraphy column scan lead-in wire is electrically connected with the j bar column selection drive wire of column selection driver, be divided into a plurality of districts in the display-memory, the displaying contents of a wall calendar of each district's storage shows that selection control is used for selecting the current data output area of display-memory.
CN 201110185046 2011-07-01 2011-07-01 Inklessly-printed active multi-carrier calendar Expired - Fee Related CN102254490B (en)

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Application Number Priority Date Filing Date Title
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102306475A (en) * 2011-07-01 2012-01-04 北京印刷学院 Non-ink printed active multi-carrier calendar
CN102831836A (en) * 2011-06-14 2012-12-19 张晋 Inkless printed book
CN107718872A (en) * 2017-09-30 2018-02-23 北京印刷学院 The program control curing light sources of UVLED based on modern printing technology

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US20060023046A1 (en) * 2004-07-30 2006-02-02 Seiko Epson Corporation Droplet application method, droplet application device, electro-optical device, and electronic apparatus
JP2008252082A (en) * 2007-03-05 2008-10-16 Hitachi Displays Ltd Organic electroluminescence display device and method of manufacturing the same
CN102306475A (en) * 2011-07-01 2012-01-04 北京印刷学院 Non-ink printed active multi-carrier calendar
CN202110735U (en) * 2011-07-01 2012-01-11 北京印刷学院 Inkless-printed active multi-carrier wall calendary

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20060023046A1 (en) * 2004-07-30 2006-02-02 Seiko Epson Corporation Droplet application method, droplet application device, electro-optical device, and electronic apparatus
JP2008252082A (en) * 2007-03-05 2008-10-16 Hitachi Displays Ltd Organic electroluminescence display device and method of manufacturing the same
CN102306475A (en) * 2011-07-01 2012-01-04 北京印刷学院 Non-ink printed active multi-carrier calendar
CN202110735U (en) * 2011-07-01 2012-01-11 北京印刷学院 Inkless-printed active multi-carrier wall calendary

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102831836A (en) * 2011-06-14 2012-12-19 张晋 Inkless printed book
CN102306475A (en) * 2011-07-01 2012-01-04 北京印刷学院 Non-ink printed active multi-carrier calendar
CN107718872A (en) * 2017-09-30 2018-02-23 北京印刷学院 The program control curing light sources of UVLED based on modern printing technology

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