CN104802536B - Image processing system - Google Patents
Image processing system Download PDFInfo
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- CN104802536B CN104802536B CN201410785112.2A CN201410785112A CN104802536B CN 104802536 B CN104802536 B CN 104802536B CN 201410785112 A CN201410785112 A CN 201410785112A CN 104802536 B CN104802536 B CN 104802536B
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- Prior art keywords
- recording medium
- processing system
- light
- image processing
- accepting part
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- Controlling Sheets Or Webs (AREA)
Abstract
The invention discloses a kind of image processing system, the recording medium of severing does not fall and can inexpensively manufactured during its recording medium that can have been formed by image in severing, and the image processing system includes:Sensor, detect the presence of the recording medium for being wound into roll;Printhead, image is carried out on the recording medium and is formed;Roller, across the recording medium conveying circuit of printhead, configure in the position resisted with the printhead;Cutter device, the recording medium that severing has been formed by image;Recording medium test section, the portion of hiding for hiding recording medium is left in either direction in above-below direction in the recording medium discharging outlet of discharge recording medium, and detect recording medium;And control unit, cutter device is driven based on the output of recording medium test section.
Description
The application advocate the applying date be on 01 29th, 2014, Application No. JP2014-014357 Japanese publication be excellent
First weigh, and quote the content of above-mentioned application.
Technical field
The present invention relates to a kind of image processing system.
Background technology
The image processing system of image formation is carried out on the continuous paper for be wound into roll, it is necessary to cut after image formation
Recording medium.
But, when horse back severing recording medium after image formation, then taken by the recording medium of severing in operator
It will be fallen before in one's hands.
Thus, motion has a kind of such image processing system, is not cut out in the recording medium that severing has been formed by image
It is disconnected and leave a part, operator tear off recording medium and it is hand held in.
But, in the image processing system, the vestige torn off is remained in the end of cutting surface, appearance is unsightly.
In addition, motion has a kind of such image processing system, there is the record formed by image in complete severing to be situated between
While matter, the handle sturcture of the recording medium of severing is held.
But, in the image processing system, light just improves with regard to handle sturcture manufacturing cost.
The content of the invention
In view of the above problems, it is an object of the invention to provide a kind of image processing system, it can have been schemed in severing
The recording medium of severing does not fall and can inexpensively manufactured during the recording medium that picture is formed.
Image processing system involved in the present invention includes:Sensor, detect the presence of the recording medium for being wound into roll;Beat
Head is printed, image is carried out on the recording medium and is formed;Roller, across the recording medium conveying circuit of printhead, configure with it is described
The position that printhead is resisted;Cutter device, the recording medium that severing has been formed by image;Recording medium test section, arranging
Go out in the either direction in the recording medium discharging outlet of recording medium in above-below direction to leave hiding of hiding recording medium
Portion, and detect recording medium;And control unit, cutter device is driven based on the output of recording medium test section.
Brief description of the drawings
Below, image processing system involved in the present invention is illustrated referring to the drawings.When considered in conjunction with the accompanying drawings, lead to
Cross with reference to following detailed description, can more completely more fully understand the present invention and easily learn adjoint excellent of many of which
Point, but accompanying drawing described herein is used for providing a further understanding of the present invention, forms the part of the application, it is of the invention
Schematic description and description is used to explain the present invention, does not form inappropriate limitation of the present invention, wherein:
Fig. 1 is the pie graph for representing image processing system;
Fig. 2 is the A direction views in Fig. 1 of image processing system;
Fig. 3 is to represent that recording medium is discharged to the figure of the posture of test section;
Fig. 4 is to represent that recording medium is raised to the figure hidden in the state of portion;
Fig. 5 is the block diagram for the composition for representing image processing system;
Fig. 6 is the flow chart for the action for representing image processing system;
Fig. 7 is the pie graph of image processing system;
Fig. 8 is the A direction views in Fig. 7 of image processing system;
Fig. 9 is to represent that recording medium is discharged to the figure for the posture for hiding portion;
Figure 10 is to represent the figure that recording medium is raised in the state of test section;And
Figure 11 is the flow chart for the action for representing image processing system.
Description of reference numerals
1 image processing system
11 sensors
13 printheads
14 rollers
15 cutter devices
16 recording medium discharging outlets
17 optical sensors
18 control units
Embodiment
Below, referring to the drawings, an embodiment of image processing system is described in detail.
The image processing system of the present embodiment, which has, to be detected the presence of the sensor for the recording medium for being wound into roll, is recording
The printhead of image formation is carried out on medium, configures and is resisted with printhead across the recording medium conveying circuit of printhead
The roller of the position of (opposed), the cutter device of the recording medium of severing image formation, record Jie in discharge recording medium
Leave the portion of hiding for hiding recording medium in matter outlet in either direction in above-below direction, and detect the note of recording medium
The control unit of recording medium test section and output driving cutter device based on recording medium test section.
(first embodiment)
Fig. 1 is the pie graph for representing image processing system 1.As shown in figure 1, image processing system 1, which has, detects the presence of volume
Be coiled into the sensor 11 of the recording medium 10 of roll, in recording medium 10 carry out image formation printhead 13, across printing
First 13 recording medium conveying circuit configures roller 14 on the position resisted with printhead 13, image is formed for severing
Recording medium 10 cutter device 15, with recording medium discharging outlet 16 top leave hiding of hiding recording medium 10
Cross the optical sensor as recording medium test section that the mode of recording medium discharging outlet 16 configures portion and inclined light shaft
17 and the control unit 18 of the output driving cutter device 15 based on optical sensor 17.
Recording medium 10 is along the record to sensor 11, printhead 13, cutter device 15 and recording medium discharging outlet 16
Medium conveying circuit is conveyed.
Roller 14 is by being rotated come conveying recording medium 10.Printhead 13 in the recording medium 10 conveyed successively
Image is carried out to be formed.
When the recording medium 10 that image is formed is transported to severing position, then image processing system 1 is in standby shape
State.
Optical sensor 17 has illuminating part 17A, light accepting part 17B.Light accepting part 17B has what illuminating part 17A was irradiated in reception
ON (conducting) signal is exported during light, output OFF (by) signal when can not be by light.
Fig. 2 is the A direction views in Fig. 1 of image processing system 1.As shown in Fig. 2 image processing system 1 is up to stay
Have hide recording medium 10 hide portion H2 and optical axis 17C obliquely crosses the mode of recording medium discharging outlet 16 and recorded
The width both sides of medium outlet 16 set illuminating part 17A and light accepting part 17B.
Image processing system 1 is remembered when recording medium 10 is discharged to detect as optical sensor 17 from recording medium discharging outlet 16
During the test section H1 of the scope of recording medium 10, then due to being blocked by the optical axis 17C of recording medium 10, so from light accepting part 17B
Receive OFF signal.
Image processing system 1 when from light accepting part 17B receive have OFF signal when, act cutter device 15, also without
Follow-up image forms and is in holding state.
Image processing system 1 is when recording medium 10 is raised to by operator and hides portion H2 to hide, then light accepting part
17B receives illuminating part 17A irradiation light, so receiving ON signals from light accepting part 17B.
Image processing system 1 then makes cutter device 15 act severing record first when receiving ON signals from light accepting part 17B
Medium 10, then carry out follow-up image and formed.
Therefore, when image processing system 1 acts cutter device 15, because recording medium 10 is held by operator
, so not fallen out by the recording medium 10 of severing.
Fig. 3 is to represent that recording medium 10 is discharged to test section H1 posture figure.As shown in figure 3, due to recording medium 10
Optical axis 17C is blocked, so light accepting part 17B exports OFF signal.
The control unit 18 of image processing system 1 does not drive cutter device during having OFF signal from light accepting part 17B receptions,
Also formed without follow-up image and be in holding state.
Fig. 4 is to represent that recording medium 10 is raised to the state diagram for hiding portion H2.As shown in figure 4, due to recording medium 10
Optical axis 17C is not blocked, so light accepting part 17B receives illuminating part 17A irradiation light, and exports ON signals.
The control unit 18 of image processing system 1 is then driven for driving cutting dress when receiving ON signals from light accepting part 17B
15 cutter device drive division 205 is put so that by cutter device 15 come severing recording medium 10.Then, image processing system 1
Control unit 18 carry out follow-up image and formed.
Fig. 5 is the block diagram for the composition for representing image processing system 1.As shown in figure 5, image processing system 1, which has, includes work
For CPU (the Central Processing Unit of arithmetic unit:Central processing unit) control unit 18, include memory, hard disk
The storage part 202 of the storage device of driver etc., the image forming part 203 comprising printhead 13 etc., include the defeated of roller 14 etc.
Send the drive division 204 of the conveying mechanism of recording medium 10, the cutter device drive division 205, the Yi Jijian that drive cutter device 15
Location is in the optical sensor 17 of test section H1 recording medium 10.
Optical sensor 17 has illuminating part 17A, light accepting part 17B.
Fig. 6 is the flow chart for the action for representing image processing system 1.As shown in fig. 6, image processing system 1 passes through control
Portion 18 is acted as follows.
In step 601, image processing system 1 carries out image in recording medium 10 and formed.
In step 602, image processing system 1 judge optical sensor 17 whether ON (conducting), i.e. judgement light accepting part 17B
Whether output is ON signals.Image processing system 1 proceeds to step when the output for determining light accepting part 17B is ON signals
603, when it is ON signals not judge, return to step 602.
In step 603, image processing system 1 by drive cutter device drive division 205 drive cutter device 15 from
And severing recording medium 10.
In step 604, image processing system 1, which determines whether there is, will carry out lower one page that follow-up image is formed (then
The page).Image processing system 1 returns to step 601 when determining the lower one page that carry out follow-up image formation,
When not being determined with lower one page, tenth skill.
(second embodiment)
Fig. 7 is the pie graph for representing image processing system 1.As shown in fig. 7, image processing system 1, which has, detects the presence of volume
Be coiled into the sensor 11 of the recording medium 10 of roll, in recording medium 10 carry out image formation printhead 13, across printing
First 13 recording medium conveying circuit configures roller 14 on the position resisted with printhead 13, image is formed for severing
Recording medium 10 cutter device 15, with recording medium discharging outlet 16 lower section leave hiding of hiding recording medium 10
Portion, and inclined light shaft cross the optical sensor as recording medium test section that the mode of recording medium discharging outlet 16 configures
17 and the output based on optical sensor 17 drive the control unit 18 of cutter device 15.
Recording medium 10 is along the record to sensor 11, printhead 13, cutter device 15 and recording medium discharging outlet 16
Medium delivery section is conveyed.
Roller 14 is by being rotated come conveying recording medium 10.Printhead 13 in the recording medium 10 conveyed successively
Image is carried out to be formed.
When being transported to severing position by the recording medium 10 that image is formed, then image processing system 1 is in standby
State.
Optical sensor 17 has illuminating part 17A, light accepting part 17B.Light accepting part 17B has what illuminating part 17A was irradiated in reception
During light, ON signals are exported, export OFF signal when can not be by light.
Fig. 8 is the A direction views in Fig. 7 of image processing system 1.As shown in figure 8, image processing system 1 in lower section to stay
Have hide recording medium 10 hide portion H4 and optical axis 17C obliquely crosses the mode of recording medium discharging outlet 16 and recorded
The width both sides of medium outlet 16 set illuminating part 17A and light accepting part 17B.
Image processing system 1 does not detect when recording medium 10 is discharged to from recording medium discharging outlet 16 as optical sensor 17
Go out when hiding portion H4 of the scope of recording medium 10, then due to not being blocked by the optical axis 17C of recording medium 10, so from light
Portion 17B receives ON signals.
Image processing system 1 when from light accepting part 17B receive have ON signals when, act cutter device 15, also without
Follow-up image forms and is in holding state.
Image processing system 1 is when recording medium 10 is raised to test section H3 by operator, then due to passing through record
The optical axis 17C of medium 10 is blocked, and light accepting part 17B does not receive illuminating part 17A irradiation light, so receiving OFF letters from light accepting part 17B
Number.
Image processing system 1 then makes cutter device action severing record first when receiving OFF signal from light accepting part 17B
Medium 10, then carry out follow-up image and formed.
Therefore, when image processing system 1 acts cutter device 15, because recording medium 10 is held by operator
, so the recording medium 10 of severing is not fallen out.
Fig. 9 is to represent that recording medium 10 is discharged to the figure for the posture for hiding portion H4.As shown in figure 9, due to recording medium 10
Optical axis 17C is not blocked, so light accepting part 17B exports ON signals.
The control unit 18 of image processing system 1 does not make cutter device 15 during having ON signals from light accepting part 17B receptions
Action, also formed without follow-up image and be in holding state.
Figure 10 is to represent that recording medium 10 is raised to the figure of test section H3 state.As shown in Figure 10, because record is situated between
Matter 10 blocks optical axis 17C, so light accepting part 17B does not receive illuminating part 17A irradiation light, and exports OFF signal.
The control unit 18 of image processing system 1 is then driven for driving cutting when receiving OFF signal from light accepting part 17B
The cutter device drive division 205 of device 15 is so that by cutter device 15 come severing recording medium 10.Then, image processing system
1 control unit 18 carries out follow-up image and formed.
The structure of the image processing system 1 of first embodiment shown in the composition and Fig. 5 of the image processing system 1 of the present embodiment
Into identical.
Figure 11 is the flow chart for the action for representing image processing system 1.As shown in figure 11, image processing system 1 passes through control
Portion 18 processed is acted as follows.
In step 701, image processing system 1 carries out image in recording medium 10 and formed.
In a step 702, image processing system 1 judge optical sensor 17 whether OFF, i.e. judgement light accepting part 17B output
Whether it is OFF signal.Image processing system 1 proceeds to step 703 when the output for determining light accepting part 17B is OFF signal,
When it is OFF signal not judge, step 702 is returned to.
In step 703, image processing system 1 by drive cutter device drive division 205 drive cutter device 15 from
And severing recording medium 10.
In step 704, image processing system 1, which determines whether there is, will carry out lower one page that follow-up image is formed.Image
Forming apparatus 1 when determine to carry out lower one page that follow-up image is formed when, step 701 is returned to, when not being determined as having
During lower one page, tenth skill.
As described above, image processing system 1 have detect the presence of the recording medium 10 for being wound into roll sensor 11,
In recording medium 10 carry out image formation printhead 13, across printhead 13 recording medium conveying circuit configuration with printing
Roller 14, severing on first 13 positions resisted the cutter device 15 for the recording medium 10 that image is formed, to record
Left in medium outlet 16 hide recording medium 10 cross recording medium discharging outlet 16 with hiding portion and inclined light shaft
Mode configures optical sensor 17 on the width both sides of recording medium discharging outlet 16 and based on the defeated of optical sensor 17
Out drive the control unit 18 of cutter device 15.
Therefore, have and do not fallen by the recording medium of severing in the severing recording medium that image has been formed, can inexpensively be made
Make such effect.
In addition, in the above-described embodiments, although optical sensor 17 to be used for the detection of recording medium 10, it can also adopt
Optical sensor 17 is substituted by the use of the microswitch with driver as recording medium test section.
At this moment the action of the allocation position and image processing system 1 of recording medium test section is identical with described above.
Although several embodiments are illustrated, these embodiments propose as an example, it is not intended to limit
Surely the scope invented.These embodiments can be implemented with other various forms, can in the range of the main idea of invention is not departed from
To carry out various omissions, replacement, change.These embodiments and its deformation are comprised in the scope or main idea of invention, and
And in the invention and its impartial scope described in the scope included in claim.
Claims (7)
1. a kind of image processing system, including:
Sensor, detect the presence of the recording medium for being wound into roll;
Printhead, progress image is formed in the recording medium;
Roller, across the recording medium conveying circuit of the printhead, configure in the position resisted with the printhead;
Cutter device, the recording medium that severing has been formed by image;
Recording medium discharging outlet, discharge the recording medium;
Recording medium test section, the recording medium discharging outlet is configured at, in above-below direction in the recording medium discharging outlet
In either direction on leave the portion of hiding for hiding the recording medium, and detect the note positioned at the recording medium discharging outlet
Whether recording medium is lifted by operator;And
Control unit, the cutter device is driven based on the testing result of the recording medium test section,
The recording medium test section is the light accepting part for having the illuminating part of irradiation light and receiving the light from illuminating part irradiation
Optical sensor,
The illuminating part and the light accepting part in the either direction in the recording medium discharging outlet in above-below direction to stay
There is cross the recording medium discharging outlet mode with hiding portion and inclined light shaft for hiding the recording medium to configure in institute
State on the width both sides of recording medium discharging outlet.
2. image processing system according to claim 1, wherein,
The portion of hiding for hiding the recording medium is up left in the recording medium discharging outlet, the control unit is in institute
State carried out during light accepting part does not detect the light that the illuminating part is irradiated it is standby, when the light accepting part detect it is described luminous
During the light that portion is irradiated, the cutter device is driven so as to recording medium described in severing.
3. image processing system according to claim 1, wherein,
The portion of hiding for hiding the recording medium is left in lower section in the recording medium discharging outlet, the control unit is in institute
State carried out during light accepting part detects the light that the illuminating part is irradiated it is standby, when the light accepting part do not detect it is described luminous
During the light that portion is irradiated, the cutter device is driven so as to recording medium described in severing.
4. image processing system according to claim 2, wherein,
The light accepting part receive have the light that the illuminating part irradiated during export ON signals, export when can not be by light
OFF signal.
5. image processing system according to claim 4, wherein,
The control unit is in holding state during OFF signal is received from the light accepting part, is received when from the light accepting part
During ON signals, then by the cutter device come recording medium described in severing, and carry out follow-up image and formed.
6. image processing system according to claim 3, wherein,
The light accepting part receive have the light that the illuminating part irradiated during export ON signals, export when can not be by light
OFF signal.
7. image processing system according to claim 6, wherein,
The control unit is in holding state during ON signals are received from the light accepting part, is received when from the light accepting part
During OFF signal, then by the cutter device come recording medium described in severing, and carry out follow-up image and formed.
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2014014357A JP6059163B2 (en) | 2014-01-29 | 2014-01-29 | Image forming apparatus |
JP2014-014357 | 2014-01-29 |
Publications (2)
Publication Number | Publication Date |
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CN104802536A CN104802536A (en) | 2015-07-29 |
CN104802536B true CN104802536B (en) | 2017-11-24 |
Family
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Family Applications (1)
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CN201410785112.2A Active CN104802536B (en) | 2014-01-29 | 2014-12-16 | Image processing system |
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JP (1) | JP6059163B2 (en) |
CN (1) | CN104802536B (en) |
Families Citing this family (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US9498983B1 (en) | 2015-09-29 | 2016-11-22 | Toshiba Tec Kabushiki Kaisha | Printing apparatus that cuts off a printed portion of an unwound sheet and method for printing an image |
JP2017222492A (en) * | 2016-06-17 | 2017-12-21 | 東芝テック株式会社 | Paper discharge device and paper discharge method |
JP6929520B2 (en) * | 2017-09-28 | 2021-09-01 | ブラザー工業株式会社 | Printing equipment and printing programs |
JP7382024B2 (en) * | 2019-12-27 | 2023-11-16 | ブラザー工業株式会社 | printing device |
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US5588762A (en) * | 1995-02-01 | 1996-12-31 | Star Micronics Co., Ltd. | Paper discharge apparatus |
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JPH01118461A (en) * | 1987-10-30 | 1989-05-10 | Fujitsu Ltd | Recorder |
JPH0543127A (en) * | 1991-08-08 | 1993-02-23 | Sankyo Seiki Mfg Co Ltd | Issuing device for receipt and the like |
JPH10157232A (en) * | 1996-11-28 | 1998-06-16 | Tec Corp | Printer |
JPH10231058A (en) * | 1997-02-19 | 1998-09-02 | Canon Inc | Image forming device |
JPH1128806A (en) * | 1997-07-09 | 1999-02-02 | Mitsubishi Heavy Ind Ltd | Paper breakage detector |
JP3713955B2 (en) * | 1998-05-15 | 2005-11-09 | カシオ計算機株式会社 | Printing device |
JP3061129B2 (en) * | 1998-10-08 | 2000-07-10 | セイコーエプソン株式会社 | Printer with cutter |
JP2002086827A (en) * | 2000-09-13 | 2002-03-26 | Mitsubishi Electric Corp | Photoprinter |
JP2004345253A (en) * | 2003-05-23 | 2004-12-09 | Mitsubishi Electric Corp | Printer |
JP4670558B2 (en) * | 2005-09-13 | 2011-04-13 | 富士ゼロックス株式会社 | Droplet discharge device |
JP2007140232A (en) * | 2005-11-21 | 2007-06-07 | Noritsu Koki Co Ltd | Image forming apparatus |
EP1972457A1 (en) * | 2007-03-21 | 2008-09-24 | Custom Engineering SpA | Limiting device of the paper taking out into the roll printers |
JP5063317B2 (en) * | 2007-11-29 | 2012-10-31 | 株式会社サトー知識財産研究所 | Printer |
JP5133375B2 (en) * | 2010-07-12 | 2013-01-30 | 東芝テック株式会社 | Paper discharge device, paper discharge method, image forming apparatus, and image forming method |
EP2465688B1 (en) * | 2010-12-16 | 2019-05-22 | Canon Kabushiki Kaisha | Conveying device and printer |
JP2013184765A (en) * | 2012-03-06 | 2013-09-19 | Toshiba Tec Corp | Sheet discharge device and image forming apparatus using the same |
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2014
- 2014-01-29 JP JP2014014357A patent/JP6059163B2/en not_active Expired - Fee Related
- 2014-12-16 CN CN201410785112.2A patent/CN104802536B/en active Active
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US5588762A (en) * | 1995-02-01 | 1996-12-31 | Star Micronics Co., Ltd. | Paper discharge apparatus |
Also Published As
Publication number | Publication date |
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JP2015139953A (en) | 2015-08-03 |
JP6059163B2 (en) | 2017-01-11 |
CN104802536A (en) | 2015-07-29 |
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