1. Field
The present disclosure relates to an image scanning device, an image processing apparatus including the image scanning device, an image scanning method, and a non-transitory computer-readable medium.
2. Description of the Related Art
Image scanning devices having a card scan function of scanning, at a single time, images on the front and back surfaces of a card, such as a business card, a driver's license, or a credit card, are known in the related art.
Such image scanning devices having the card scan function include a device that scans both sides of a card simultaneously by using a specialized device such as an automatic double-side scanning device. However, when such an automatic double-side scanning device is used to scan a thick sheet, such as a plastic card, a dedicated path to pass a thick sheet is used, leading to a complex mechanism and an increase in device cost.
There is disclosed an image scanning device capable of associating images of the front and back surfaces of a document scanned at a single time and thereby performing processing, such as storing and displaying, of a set of images of the front and back surfaces of a document that has images on both surfaces of a sheet (for example, refer to Japanese Unexamined Patent Application Publication No. 2009-100211).
In such a card scan function, however, the size of a card to be scanned and the scan position are generally specified, and a user is requested to properly place a card of the specified size at the specified position on a platen when the card is scanned. Thus, when the user places a card of an unspecified size on the platen or a card is not placed at the specified position for scanning, an image of the card may not be properly scanned.
It is desirable to provide an image scanning device capable of scanning at a single time a plurality of documents placed on a platen with less restriction than in the related art, an image processing apparatus including the image scanning device, an image scanning method, and a non-transitory computer-readable medium.
According to an aspect of the disclosure, there is provided an image scanning device including a platen, an image scanning unit that scans at a single time a plurality of documents placed on the platen and generates a plurality of pieces of image data, and an image data processing unit that performs processing of the plurality of pieces of image data. When the image scanning unit generates a plurality of pieces of first image data by scanning at a single time first surfaces of the plurality of documents, each of the plurality of documents being placed in one of a plurality of predetermined areas on the platen, and thereafter generates a plurality of pieces of second image data by scanning at a single time surfaces opposite to the first surfaces of the plurality of documents, each of the plurality of documents being turned over and placed again in the one of the plurality of predetermined areas, the image data processing unit associates one of the plurality of pieces of the first image data with a corresponding one of the plurality of pieces of the second image data for each of the plurality of predetermined areas, as pieces of image data of the front surface and the back surface.
According to another aspect of the disclosure, there is provided an image processing apparatus including the image scanning device, a display unit, and an image processing unit that performs processing of image data generated by the image scanning device and that thereafter causes the display unit to display an image based on the image data.
According to still another aspect of the disclosure, there is provided an image scanning method including image scanning in which a plurality of documents placed on a platen are scanned at a single time and a plurality of pieces of image data are generated, and image data processing in which the plurality of pieces of image data are processed. In the image scanning, when a plurality of pieces of first image data are generated by scanning at a single time first surfaces of the plurality of documents, each of the plurality of documents being placed in one of a plurality of predetermined areas on the platen, and thereafter a plurality of pieces of second image data are generated by scanning at a single time surfaces opposite to the first surfaces of the plurality of documents, each of the plurality of documents being turned over and placed again in the one of the plurality of predetermined areas, in the image data processing, one of the plurality of pieces of the first image data is associated with a corresponding one of the plurality of pieces of the second image data for each of the plurality of predetermined areas, as pieces of image data of the front surface and the back surface.
According to a further aspect of the disclosure, there is provided a non-transitory computer-readable medium storing a program causing a processor of an image scanning device to execute a process including image scanning in which a plurality of documents placed on a platen are scanned at a single time and a plurality of pieces of image data are generated, and image data processing in which the plurality of pieces of image data are processed. In the image scanning, when a plurality of pieces of first image data are generated by scanning at a single time first surfaces of the plurality of documents, each of the plurality of documents being placed in one of a plurality of predetermined areas on the platen, and thereafter a plurality of pieces of second image data are generated by scanning at a single time surfaces opposite to the first surfaces of the plurality of documents, each of the plurality of documents being turned over and placed again in the one of the plurality of predetermined areas, in the image data processing, one of the plurality of pieces of the first image data is associated with a corresponding one of the plurality of pieces of the second image data for each of the plurality of predetermined areas, as pieces of image data of the front surface and the back surface.
(i) An image scanning device according to this disclosure includes a platen, an image scanning unit that scans at a single time a plurality of documents placed on the platen and generates a plurality of pieces of image data, and an image data processing unit that performs processing of the plurality of pieces of image data. When the image scanning unit generates a plurality of pieces of first image data by scanning at a single time first surfaces of the plurality of documents, each of the plurality of documents being placed in one of a plurality of predetermined areas on the platen, and thereafter generates a plurality of pieces of second image data by scanning at a single time surfaces opposite to the first surfaces of the plurality of documents, each of the plurality of documents being turned over and placed again in the one of the plurality of predetermined areas, the image data processing unit associates one of the plurality of pieces of the first image data with a corresponding one of the plurality of pieces of the second image data for each of the plurality of predetermined areas, as pieces of image data of the front surface and the back surface.
An image processing apparatus according to this disclosure includes the image scanning device, a display unit, and an image processing unit that performs processing of image data generated by the image scanning device and that thereafter causes the display unit to display an image based on the image data.
An image scanning method according to this disclosure includes image scanning in which a plurality of documents placed on a platen are scanned at a single time and a plurality of pieces of image data are generated and image data processing in which the plurality of pieces of image data are processed. In the image scanning, when a plurality of pieces of first image data are generated by scanning at a single time first surfaces of the plurality of documents, each of the plurality of documents being placed in one of a plurality of predetermined areas on the platen, and thereafter a plurality of pieces of second image data are generated by scanning at a single time surfaces opposite to the first surfaces of the plurality of documents, each of the plurality of documents being turned over and placed again in the one of the plurality of predetermined areas, in the image data processing, one of the plurality of pieces of the first image data is associated with a corresponding one of the plurality of pieces of the second image data for each of the plurality of predetermined areas, as pieces of image data of the front surface and the back surface.
A non-transitory computer-readable medium according to this disclosure stores a program causing a processor of an image scanning device to execute a process including image scanning in which a plurality of documents placed on a platen are scanned at a single time and a plurality of pieces of image data are generated and image data processing in which the plurality of pieces of image data are processed. In the image scanning, when a plurality of pieces of first image data are generated by scanning at a single time first surfaces of the plurality of documents, each of the plurality of documents being placed in one of a plurality of predetermined areas on the platen, and thereafter a plurality of pieces of second image data are generated by scanning at a single time surfaces opposite to the first surfaces of the plurality of documents, each of the plurality of documents being turned over and placed again in the one of the plurality of predetermined areas, in the image data processing, one of the plurality of pieces of the first image data is associated with a corresponding one of the plurality of pieces of the second image data for each of the plurality of predetermined areas, as pieces of image data of the front surface and the back surface.
In this disclosure, the phrase “a plurality of documents, each of the plurality of documents being placed in one of a plurality of predetermined areas” includes not only a plurality of documents that occupy all of the plurality of predetermined areas, but also a plurality of documents that occupy some of the plurality of predetermined areas. For example, the phrase “a plurality of documents, each of the plurality of documents being placed in one of a plurality of predetermined areas” may mean documents placed in one to three areas among four areas created by dividing a platen lengthwise and breadthwise.
Embodiments of the present disclosure will be described further.
(ii) The image scanning device according to this disclosure may further include an area indicating unit having at least one mark that indicates positions of the plurality of predetermined areas.
In this way, a plurality of documents are placed by using, as a guide, the area indicating unit that indicates the positions of the plurality of predetermined areas, and thus the image scanning device capable of scanning at a single time a plurality of documents that are placed on the platen with less restriction than in the related art may be realized.
The phrase “an area indicating unit having at least one mark that indicates positions of the plurality of predetermined areas” means, for example, a perimeter (document guide) of the platen on which at least one mark that indicates a position of a boundary between areas, such as a triangular arrowhead, an indicating line, or a boundary line, is present. Alternatively, the area indicating unit may be a platen cover on which an arrow or an indicating line is drawn to indicate a plurality of areas at a position corresponding to the at least one mark on the platen. The area indicating unit may also be a laser, which emits a directional light indicating a position of a boundary between a plurality of areas.
(iii) The image scanning device according to this disclosure may further include an output layout setting unit that sets a layout for outputting the plurality of pieces of image data, and the image data processing unit may associate the plurality of pieces of image data with each other in accordance with the layout that is set by the output layout setting unit.
In this way, the plurality of pieces of image data are associated with each other in accordance with the layout that is set by the output layout setting unit, and thus the image scanning device capable of scanning at a single time a plurality of documents that are placed on the platen with less restriction than in the related art may be realized.
(iv) The image scanning device according to this disclosure may further include a display unit, the display unit indicating positions of the plurality of areas on the platen, the plurality of areas being predetermined in accordance with the number of the plurality of documents to be scanned at a single time, so that each of the plurality of documents is placed separately in one of the plurality of areas.
In this way, the plurality of areas that are predetermined in accordance with the number of the plurality of documents to be scanned at a single time are displayed by the display unit, and thus the image scanning device capable of scanning at a single time a plurality of documents that are placed on the platen with less restriction than in the related art may be realized.
(v) In the image scanning device according to this disclosure, the at least one mark may be a boundary line that divides the platen into the plurality of areas in accordance with the number of the plurality of documents to be scanned at a single time.
In this way, at least one boundary line that divides the platen into the plurality of areas is displayed by the display unit in accordance with the number of the plurality of documents to be scanned at a single time, and thus the user may easily place both surfaces of one of the plurality of documents in the same area using the at least one boundary line as a guide.
The plurality of areas may be indicated by using a graphic symbol other than a boundary line, and another symbol such as an arrow may be used.
(vi) In the image scanning device according to this disclosure, the at least one mark may be an arrow, an indicating line, or another indicating symbol that indicates a position of a boundary between the plurality of areas in accordance with the number of the plurality of documents to be scanned at a single time.
In this way, at least one indicating symbol, such as an arrow, an indicating line, or the like that indicates a position of a boundary between the plurality of areas is displayed by the display unit in accordance with the number of the plurality of documents to be scanned at a single time, and thus the user may easily place both surfaces of one of the plurality of documents in the same area on the platen using the at least one indicating symbol as a guide.
(vii) In the image scanning device according to this disclosure, the image scanning unit may generate the plurality of pieces of the first image data, and thereafter the display unit may display a scan result of the plurality of pieces of the first image data.
In this way, a result of scanning first surfaces of the plurality of documents at a single time is displayed, and thus the user may easily turn over and place each of the plurality of documents in a corresponding area on the platen using the result as a guide.
(viii) In the image scanning device according to this disclosure, the image scanning unit may generate the plurality of pieces of the first image data, and thereafter the display unit displays an instruction to turn over and place each of the plurality of documents again in a corresponding one of the plurality of areas.
In this way, the instruction to turn over and place each of the plurality of documents again in the corresponding one of the plurality of predetermined areas is displayed by the display unit after the surfaces of the plurality of documents are scanned at a single time, and thus the user may easily turn over and place each of the plurality of documents in the corresponding area on the platen using the instruction as a guide.
(ix) In the image scanning device according to this disclosure, the instruction may include at least one of an animation and a message.
In this way, the animation or message to turn over and place each of the plurality of documents again in the corresponding one of the plurality of predetermined areas is displayed by the display unit after the surfaces of the plurality of document are scanned at a single time, and thus the user may easily turn over and place each of the plurality of documents in the corresponding area on the platen using the animation or message as a guide.
(x) The image scanning device according to this disclosure may further include an operation unit that receives an instruction from the user, when the image scanning unit generates the plurality of pieces of the first image data and the plurality of pieces of the second image data, the display unit may display, in accordance with the number of the plurality of documents, a plurality of layouts in which the plurality of documents are arranged in rows and columns in accordance with predetermined arrays, and, when the operation unit receives selection of one of the plurality of layouts, the output layout setting unit may associate each of the plurality of pieces of the first image data with one of the plurality of pieces of the second image data in accordance with the selected one of the plurality of layouts.
In this way, each of the plurality of pieces of the first image data is associated with one of the plurality of pieces of the second image data in accordance with the layout selected by the user from the plurality of layouts displayed by the display unit in accordance with the number of the plurality of documents, and thus an image scanning device that enables the user to select various layouts easily and that is capable of outputting the images of the plurality of documents may be realized.
(xi) The image scanning device according to this disclosure may further include an image scanning determining unit and an error reporting unit, and when the image scanning determining unit determines that the plurality of documents are improperly arranged in the plurality of areas, the error reporting unit may report error information.
In this way, when the plurality of documents are improperly arranged in the plurality of predetermined areas, the error information is reported, and thus the image scanning device capable of scanning at a single time a plurality of documents that are placed on the platen with less restriction than in the related art may be realized.
Hereinafter, the present disclosure will be described in more detail with reference to the drawings. The following descriptions are illustrative in all respects and are not to be considered as limiting this disclosure.
First Embodiment
Referring to
The digital multifunction peripheral 1 is an apparatus that has a copying function, a scanning function, and a facsimile function, performs digital processing of image data obtained by scanning a document, and thereafter outputs the processed image data.
This disclosure is applicable not only to the digital multifunction peripheral 1 but also to all apparatuses having an image scanning function, such as a scanner and a passport reader.
As depicted in
As depicted in
The digital multifunction peripheral 1 performs a job such as a card scan in accordance with an instruction received from the user via the display operation unit 171.
Next, referring to
The control unit 10 controls the digital multifunction peripheral 1 in a coordinated manner and includes a central processing unit (CPU), a random-access memory (RAM), a read-only memory (ROM), various interface circuits, and the like. The control unit 10 detects signals from all sensors and performs monitoring and control of all loads placed on motors, clutches, the panel unit 17, and the like to control operation of the digital multifunction peripheral 1 as a whole.
The image scanning unit 11 is a unit that detects and scans a document, such as a card, placed on the platen 191 or a document transported from a document tray and that generates image data.
The image forming unit 12, which includes a laser scanning unit (LSU) 121, is a unit that prints on a sheet an image based on image data generated by the image processing unit 14. The LSU 121 is a device that forms an electrostatic latent image by irradiating a surface of a charged photosensitive drum with laser light corresponding to image information composed of digital signals acquired by the image scanning unit 11.
The storage 13 is a device or a recording medium that stores information, control programs, and the like that are used to realize various functions of the digital multifunction peripheral 1. A semiconductor device such as a RAM or a ROM, or a recording medium such as a hard disk drive, a flash memory unit, or a solid-state drive (SSD) is used for the storage 13. Programs and data may be retained separately in different devices. For example, a data-retaining region may be a hard disk drive, and a program-retaining region may be a flash memory unit.
The image processing unit 14 is a unit that converts an image of a document scanned by the image scanning unit 11 into proper electric signals and that generates image data. In addition, in accordance with an instruction received via the display operation unit 171, the image processing unit 14 performs processing of image data received from the image scanning unit 11 so that output data satisfies the instruction, for example, to enlarge or reduce the image. The image processing unit 14 also associates a plurality of pieces of image data with each other in accordance with a predetermined layout.
The communication unit 15 is a unit that communicates with a computer, a mobile information terminal, an external information processing apparatus, a facsimile device, or the like via a network or the like. Information of various kinds, such as emails or facsimile messages, is transmitted to or received from such external communication apparatuses via the communication unit 15.
The sheet feeder 16 is a unit that transports sheets housed in a sheet feed cassette or a manual feed tray to the image forming unit 12.
The panel unit 17, which is a unit equipped with a liquid crystal display, includes the display operation unit 171 and the physical operation unit 172.
The display operation unit 171 is a unit that displays information of various kinds and that receives an instruction from a user via a touch panel function. The display operation unit 171 is constituted by, for example, a cathode-ray tube (CRT) display, a liquid crystal display, or an electroluminescent (EL) display and is a display device, such as a monitor or a line display, that enables the operating system or application software to display information based on electronic data, such as processing status. The control unit 10 causes the display operation unit 171 to display operation status and condition of the digital multifunction peripheral 1.
Outline of Card Scan Processing
Next, referring to
In the following, a multi-card scan mode will be described. A multi-card scan mode is defined as a mode in which images on the front and back surfaces of a plurality of cards placed on the platen 191 are scanned and a plurality of pieces of image data are generated.
When a user selects the multi-card scan mode in step S1 in
Subsequently, in step S3, the control unit 10 determines whether the setting input for the card scan and the transmission is completed. When the setting input for the card scan and the transmission is completed (Yes in step S3), the control unit 10 performs processing in step S4 (step S4). In contrast, when the setting input for the card scan and the transmission is not completed (No in step S3), the control unit 10 repeats the determination processing in step S3 (step S3).
Then, in step S4, the control unit 10 causes the display operation unit 171 to display an instruction to place a plurality of documents, each of which is to be placed in one of a plurality of predetermined areas on the platen 191, and to touch a predetermined key such as a preview key or an OK key thereafter (step S4).
Next, in step S5, the control unit 10 determines whether the preview key is touched (step S5). When the preview key is touched (Yes in step S5), in step S6, the control unit 10 causes the display operation unit 171 to display a preview screen of the image data of the cards placed on the platen 191 (step S6). Subsequently, the control unit 10 performs determination processing in step S7 (step S7).
In contrast, when the preview key is not touched (No in step S5), the control unit 10 performs determination processing in step S7 (step S7).
In step S7, the control unit 10 determines whether the OK key is touched (step S7). When the OK key is touched (Yes in step S7), in step S8, the control unit 10 generates a plurality of pieces of image data (first image data), each of the plurality of pieces corresponding to a first surface of one of the plurality of documents that are placed separately in the plurality of areas (step S8). Subsequently, the control unit 10 performs processing in step S9 in
In contrast, when the OK key is not touched (No in step S7), the control unit 10 repeats determination processing in step S5 (step S5).
Then, in step S9 in
Subsequently, in step S10, the control unit 10 determines whether the preview key is touched (step S10). When the preview key is touched (Yes in step S10), in step S11, the control unit 10 causes the display operation unit 171 to display a preview screen of the image data of the cards placed on the platen 191 (step S11). Then, the control unit 10 performs determination processing in step S12 (step S12).
In contrast, when the preview key is not touched in step S10 (No in step S10), the control unit 10 performs determination processing in step S12 (step S12).
In step S12, the control unit 10 determines whether the OK key is touched (step S12). When the OK key is touched (Yes in step S12), in step S13, the control unit 10 generates a plurality of pieces of image data (second image data), each of the plurality of pieces corresponding to the opposite surface of one of the plurality of documents that are placed separately in the plurality of areas (step S13). Then, the control unit 10 performs determination processing in step S14 in
In contrast, when the OK key is not touched (No in step S12), the control unit 10 repeats determination processing in step S10 (step S10).
In step S14, the control unit 10 determines whether a scan complete key is touched (step S14). When the scan complete key is touched (Yes in step S14), in step S15, for each of the plurality of areas on the platen 191, the control unit 10 associates a piece of the first image data with a piece of the second image data, both of which are obtained by scanning the platen 191 (step S15). Then, the control unit 10 waits for processing in step S17 to finish (step S17).
In contrast, when the scan complete key is not touched in step S14 (No in step S14), in step S16, the control unit 10 causes the display operation unit 171 to display an instruction to check whether another document to be scanned is present (step S16). When another document to be scanned is present (Yes in step S16), the control unit 10 repeats the processing in step S4 in
Then, when a start key is touched in step S17, in step S18, the control unit 10 causes the image processing unit 14 to process the scanned image data in accordance with the layout set by the user and causes the image forming unit 12 to perform image formation (step S18).
Example of Operating Procedure for Card Scan
Next, referring to
First, as depicted in
Then, as depicted in
In the example setting screen SS1 depicted in
Referring next to
In
When the setting input for “Scan” and “Transmission Layout” is completed, the user touches the “OK” key K3.
Next, the user opens the platen cover 19 and places a plurality of cards (two cards C1 and C2 in
The triangular arrowhead in
Although a dotted line representing a boundary line passing through the triangular arrowhead G1 is drawn to indicate the areas AR1 and AR2 clearly in the example depicted in
When three to four cards are placed, each of the cards is placed in one of four areas AR1 to AR4 on the platen 191 divided by two boundary lines, one of which passes through the triangular arrowhead G1, and the other of which passes through another triangular arrowhead G2. More than four cards are placed in a similar manner.
After placing the two cards C1 and C2 in the areas AR1 and AR2, respectively, the user touches a “Preview” key K4 on the display operation unit 171. Then, as depicted in
Although an example in which the cards C1 and C2 are placed at the centers of the areas AR1 and AR2, respectively, is depicted in
The image processing unit 14 identifies four vertexes of each of the cards C1 and C2 from image data obtained by scanning the cards C1 and C2 and extracts only a piece of image data corresponding to a quadrilateral region defined by the four vertexes. Thus, wherever the cards are placed in the areas, only the pieces of image data corresponding to the cards C1 and C2 are extracted. As depicted in
In contrast, as depicted in
When the user checks the preview screen of the front surfaces of the cards in
Next, the user turns over the two cards C1 and C2 and places the cards on the platen 191 as depicted in
Then, as depicted in
Next, as depicted in
As depicted in
In this way, the user may place the cards C1 and C2 anywhere in the predetermined areas AR1 and AR2, respectively, and scan the cards. Thus, it is possible to place the plurality of cards C1 and C2 on the platen 191 with less restriction than in the related art to scan the cards at a single time.
Second Embodiment
Next, referring to
In the example depicted in
The user selects the layout depicted in
In the examples depicted in
In the following descriptions, a column is denoted by a first column, a second column, or the like from left to right, and a row is denoted by a first row, a second row, or the like from top to bottom. In addition, in the following descriptions, when a plurality of images are arranged in a column, the plurality of images are placed from top to bottom in succession, and when a plurality of images are arranged in a row, the plurality of images are placed from left to right in succession.
In the example depicted in
In the examples depicted in
The user selects the layout depicted in
In the examples depicted in
In the examples depicted in
The user selects the layout depicted in
In the examples depicted in
The user selects the layout depicted in
The transmission layout is not limited to the layouts described above, and this disclosure does not exclude a layout other than the above examples.
In this way, the user may select any layout as desired from the layouts produced based on the images of scanned cards without determining and setting a layout when placing the cards on the platen 191, and thus it is possible to print the front and back surfaces of a plurality of cards more easily than in the related art.
Third Embodiment
Next, referring to
As depicted in
In addition, when an arrangement of the cards C1 and C2 placed in the areas AR1 and AR2 is different for the front surface and for the back surface, the control unit 10 may cause the display operation unit 171 to display error information requesting the user to place properly the plurality of cards in the predetermined areas.
Examples of a case where the arrangement of the cards C1 and C2 placed in the areas AR1 and AR2 is different for the front surface and for the back surface include a case where the number of the cards C1 and C2 placed in the areas AR1 and AR2 is different for the front surface and for the back surface, as depicted in
In addition, as depicted in
Further, as depicted in
In this way, when the plurality of documents placed on the platen 191 are not properly arranged in the plurality of areas, the error information is displayed, and thus an image scanning device that enables the user to place a plurality of documents without a mistake at positions on the platen 191 with less restriction than in the related art and to scan the plurality of documents at a single time is realized.
Fourth Embodiment
Next, referring to
As depicted in
In this way, a user may place cards in a plurality of areas without restriction, and thus it is possible to print the front and back surfaces of a plurality of cards more easily than in the related art.
Desirable embodiments of the present disclosure include combinations of some of the plurality of embodiments described above. Various modifications of the present disclosure, other than the embodiments described above, are possible. Those modifications are not to be considered to be outside the scope of the present disclosure. The present disclosure is to embrace all the modifications within the meaning of equivalency of the claims and within the scope of the claims.
The present disclosure contains subject matter related to that disclosed in Japanese Priority Patent Application JP 2017-117208 filed in the Japan Patent Office on Jun. 14, 2017, the entire contents of which are hereby incorporated by reference.
It should be understood by those skilled in the art that various modifications, combinations, sub-combinations and alterations may occur depending on design requirements and other factors insofar as they are within the scope of the appended claims or the equivalents thereof.
Number | Date | Country | Kind |
---|---|---|---|
2017-117208 | Jun 2017 | JP | national |
Number | Name | Date | Kind |
---|---|---|---|
20050140991 | Ogiwara | Jun 2005 | A1 |
20080130064 | Sato | Jun 2008 | A1 |
20110063686 | Kimoto | Mar 2011 | A1 |
20110292457 | Miyata | Dec 2011 | A1 |
20170230531 | Takahashi | Aug 2017 | A1 |
Number | Date | Country |
---|---|---|
2009-100211 | May 2009 | JP |
Number | Date | Country | |
---|---|---|---|
20180367694 A1 | Dec 2018 | US |