This application claims priority from Japanese Patent Application No. 2021-126248 filed on Jul. 30, 2021. The entire content of the priority application is incorporated herein by reference.
It is known for a printing method to use a special print tape. The special print tape is formed with a special print area. The special print area has a background color. The background color is the same as a print color by a printer. A segment is printed in advance in the special print area. The segment has a pre-printed color. The pre-printed color is different from the print color. A printer creates a print result by performing printing with the print color so as to selectively fill the segment of the special punt tape. A user can visually recognize the pre-printed color of the segment not filled with the print color in the print result. Since the pre-printed color is also used, in addition to the background color and the print color, a print result with high information identification is provided to the user.
In the above printing method, it is necessary to perform printing in advance in the special print area with the print color as the background color before performing printing on the segment by the printer, in order to make the background color the same as the print color. Therefore, the cost of creating a print result may increase.
An object of the present disclosure is to provide a printer, a control method of the printer, and a thermosensitive medium capable of creating a print result with high information identification at low cost.
A first aspect of the present disclosure is a printer including: a thermal head configured to perform thermal printing on a thermosensitive medium having a background area with a background color being an unprinted color and a pre-print area, which is an area colored in advance, with a pre-print color different from the background color; and a controller configured to perform printing processing of causing the thermal head to execute the thermal printing in which a print area, which includes at least a part of the pre-print area, of the thermosensitive medium is printed with a print color different from both the background color and the pre-print color, and an overlapping area of the pre-print area, which overlaps with the print area, is printed with a specific color different from the pre-print color.
According to the first aspect, printing for coloring is not performed on the background area of the thermosensitive medium. That is, the printer can use a low-cost thermosensitive medium. The printer can create a print result by performing thermal printing on a thermosensitive medium by printing processing. The print result shows information by at least three colors of the background color, the pre-print color, and the specific color. For this reason, the printer can create a print result with higher information identification than a case where a print result shows the information with two colors, for example. Further, since the print area includes at least a part of the pre-print area, as the overlapping area, the print result can show information different from each other by a difference in area or shape of the overlapping area. For this reason, the printer can create a print result with higher information identification than a case where a print result shows information by a difference in color of the background color, the pre-print color and the print color. Therefore, the printer can create a print result with high information identification at low cost.
A second aspect of the present disclosure is a control method of a printer configured to perform thermal printing on a thermosensitive medium having a background area with a background color being an unprinted color and a pre-print area, which is an area colored in advance, with a pre-print color different from the background color, the control method including: printing processing of performing the thermal printing in which a print area, which includes at least a part of the pre-print area, of the thermosensitive medium is printed with a print color different from both the background color and the pre-print color, and an overlapping area of the pre-print area, which overlaps with the print area, is printed with a specific color different from the pre-print color.
The second aspect can achieve the similar effects to the first aspect.
A third aspect of the present disclosure is a thermosensitive medium having: a background area with a background color being an unprinted color; and a pre-print area, which is an area colored in advance, with a pre-print color different from the background color, in which in a case where thermal printing is performed for a print area, which includes at least a part of the pre-print area, of the thermosensitive medium, the pre-print area is thermally printed with a print color different from both the background color and the pre-print color, and an overlapping area of the pre-print area, which overlaps with the print area, is printed with a specific color different from the pre-print color.
The third aspect can achieve the similar effects to the first aspect.
Hereinafter, a first embodiment of the present disclosure will be described with reference to the drawings. Note that, the drawings are used so as to describe technical features that can be adopted by the present disclosure. The configuration of the apparatus, the flowcharts of various processing and the like, which are shown, are not limited to the forms thereof and are just explanatory examples. When referring to colors, the drawings show the difference in color by plane, black paint, dots, and directions of lines.
A mechanical configuration of a printer 1 is described with reference to
As shown in
As shown in
As shown in
In the state where the cover 5 is closed, the platen roller 26 is configured to sandwich the thermosensitive tape 10 with the thermal head 28, and to press the thermosensitive tape 10 against the plurality of heat generators 281 (refer to
As shown in
An electrical configuration of the printer 1 is described with reference to
The flash memory 74 is configured to store various programs that are executed by the CPU 71, print data that is generated by print data generation processing (refer to
The encoder 29A is configured to output a signal corresponding to an amount of rotation of the conveying motor 29 to the CPU 71. The CPU 71 can specify an amount of rotation of the conveying motor 29, based on a signal output from the encoder 29A. Further, the CPU 71 can specify a conveying amount of the thermosensitive tape 10 that is conveyed by the platen roller 26, based on the specified amount of rotation and a diameter of the platen roller 26.
An example of the thermosensitive tape 10 is described with reference to
As shown in the view (A) of
In the below, seeing the thermosensitive tape 10 from the printing surface-side is referred to as “a plane view”. An area that extends on the thermosensitive tape 10 in a plane view and is an area of the thermosensitive tape 10 having a background color described later is referred to as a “background area”. The background color is not limited to a specific color, but is an unprinted color.
An area that extends on the thermosensitive tape 10 in a plane view and has a pre-print color is referred to as a “pre-print area”. The pre-print color is not limited to a specific color, but is a color different from the background color. The pre-print area is an area provided with the pre-print layer 12 in a plane view, i.e., an area colored in advance. Note that, when the base material 11 or the thermosensitive layer 13 is formed, a process of coloring the base material 11 or the thermosensitive layer 13 is not included in “printing”.
As shown in
The background area D1 has a background color. As shown in the view (A) of
The pre-print area D2 has a pre-print color. As shown in the view (A) of
An example of print data 50 is described with reference to
An example of the print result 40 is described with reference to
In the below, an area that extends on the thermosensitive tape 10 in a plane view and includes at least a part of the pre-print area D2 is referred to as a “print area”. The print area is an area color-developed into a print color by thermal printing. The print color is not limited to a specific color, but is a color different from both the background color and the pre-print color. An area of the pre-print area that overlaps with the print area is referred to as “overlapping area”. The overlapping area is an area that has a specific color by thermal printing. The specific color is not limited to a specific color, but is a color different from the pre-print color.
As shown in
The print area D3 has a print color. In the first embodiment, the print color is opaque black (black paint in
The overlapping area D4 has a specific color. As shown in the view (A) of
With reference to
The reflection density is defined by a following equation.
reflection density=log10(reflectance)
As shown in
The main processing is described with reference to
When the main processing is started, the CPU 71 performs print data generating processing (S1). In the print data generating processing, the CPU 71 generates print data, in response to a. user's operation on the operation unit 7 (refer to
The CPU 71 performs printing processing, based on the print data generated in the processing of SI (S3). In the printing processing, the CPU 71 drives the conveying motor 29 shown in
When creating the print result 40 shown in
As described above, in the first embodiment, printing for coloring is not performed on the background area D1 of the thermosensitive tape 10. That is, the printer 1 can use the low-cost thermosensitive tape 10. The printer 1 can create the print result 40 by performing thermal printing on the thermosensitive tape 10 by the printing processing. The print result 40 shows information by three colors of the background color, the pre-print color and the print color. For this reason, the printer 1 can create the print result 40 with higher information identification than a case where the print result 40 shows information with two colors of the background color and the print color, for example. Further, since the print area D3 includes at least a part of the pre-print areas D2, as the overlapping area D4, the print result 40 can show information different from each other by difference in area or shape of the overlapping area D4. For this reason, the printer 1 can create the print result 40 with higher information identification than a case where the print result 40 shows information by difference in color of the background color, the pre-print color and the print color. Therefore, the printer 1 can create the print result 40 with high information identification at low cost.
The pre-print layer 12 is provided between the base material 11 and the thermosensitive layer 13 in the thickness direction. According to this configuration, the thermosensitive layer 13 is a surface of the thermosensitive tape 10. For this reason, the thermal head 28 does not come into contact with the pre-print layer 12 during printing. Therefore, the printer 1 can suppress the thermal head 28 from being deteriorated.
The area of the pre-print area D2 is 25 mm2. According to this configuration, the printer 1 can increase the area of the pre-print area D2 to the extent that the user can easily visually recognize the pre-print color. Therefore, the user can easily visually recognize the information by the exposed area D5 in the print result 40.
The print color satisfies both conditions of brightness≤4 and chroma≤3 in the Munsell color system. The pre-print color is a color in the Munsell color system that does not satisfy both conditions of brightness≤2 and chroma<1 and does not satisfy both conditions of brightness≥8 and chroma<1. According to this configuration, since a color difference between the print color and the pre-print color is large, the user can easily distinguish between the print color and the pre-print color.
The pre-print area D2 is located at the position apart from both ends of the thermosensitive tape 10 in the width direction, and is also located at the position apart from both ends of the thermosensitive tape 10 in the longitudinal direction. According to this configuration, even if the printer 1 cannot perform thermal printing on each end of the thermosensitive tape 10 in the width direction and the longitudinal direction, the printer 1 can suppress an area, on which the thermal printing cannot be performed, from being generated in the pre-print area D2 because there is no pre-print area D2 at each end.
The outer shape of the pre-print area D2 is rectangular, and the text area DT is also rectangular. According to this configuration the printer 1 can easily form the shape of the overlapping area D4 into a desired shape by using a filled text and a white text.
The CPU 71 generates the print data indicating text data. According to this configuration, the printer 1 can show information in the print result 40 by a combination of the pre-print color and the text.
The text is configured by the bold type. According to this configuration, the printer can increase an area of a text on the print result 40. Therefore, the user can easily identify the information by the overlapping area D4. Note that, the text may be configured by a standard type.
The font size is configured by a font size where a length of one side of the text area DT is 1.41 mm or longer. According to this configuration, the printer 1 can increase a size of the text to the extent that the user can easily visually recognize the overlapping area D4 on the print result 40. Therefore, the user can easily identify the information by the overlapping area D4. Note that, the font size may also be configured by a font size where a length of one side of the text area DT is smaller than 1.41 mm.
The CPU 71 causes the thermal head 28 to execute thermal printing, based on the image data. According to this configuration, the printer 1 can show information by a combination of the pre-print color and the image. Therefore, the printer 1 can express, for example, a shape not in the text data, in the exposed area D5 on the print result 40.
The area of the exposed area D5 is equal to the difference between the area of the pre-print area D2 and the area of the overlapping area D4, and is larger than the area of the print area D1 According to this configuration, the printer 1 can increase the area of the exposed area D5 to the extent that the user can easily visually recognize the pre-print color on the print result 40. Therefore, the user can easily visually recognize the information by the exposed area D5 on the print result 40. Note that, the area of the exposed area D5 may also be equal to or smaller than the area of the print area D3.
The present disclosure can be variously changed from the first embodiment. Note that, the following various modified embodiments can be combined with each other as long as there is no contradiction, or can also be applied to a second embodiment described later. A modified embodiment of the layer structure of the thermosensitive tape 10 is described with reference to
The printer 1 creates a print result 40 shown in
According to this configuration, for example, in a manufacturing process of the thermosensitive tape 10, it is not necessary to form the thermosensitive layer 13 after the pre-print layer 12 is printed. For this reason, the thermosensitive tape 10 is manufactured by printing the pre-print layer 12 on a ready-made product where the thermosensitive layer 13 is already provided on the base material 11. Therefore is, the printer 1 can use the low-cost thermosensitive tape 10. Further, since the pre-print layer 12 is provided on the thermosensitive layer 13, the printer 1 can prevent a tone of the pre-print color from being impaired even when the thermosensitive layer 13 is translucent.
The pre-print area D2 may include one end or both ends of the thermosensitive tape 10 in the width direction. The pre-print area D2 may include one end or both ends of the thermosensitive tape 10 in the longitudinal direction. The printer 1 may also use a thermosensitive type cut sheet, instead of the thermosensitive tape 10. The cut sheet is a sheet cut to standard dimensions. In this case, the printer 1 may convey the cut sheet by a method other than the platen roller 26. The thermosensitive tape 10 may be provided with a release sheet on a surface of the base material 11 opposite to the surface 111 in the thickness direction, via, an adhesive. The thermal head 28 is not a line head, but may also be configured to be movable in the arrangement direction with respect to the thermosensitive tape 10.
The print color may not satisfy one or both conditions of brightness≤4 and chroma≤3 in the Munsell color system. The pre-print color may satisfy both conditions of brightness≤2 and chroma<1 in the Munsell color system, or may satisfy both conditions of brightness≥8 and chroma<1. The background color may not satisfy the brightness≥7 in the Munsell color system.
The printer 1 may be configured to be able to communicate with an external device wirelessly or through a cable. The external device is a PC, a smartphone and the like. In this case, a part of the main processing may be executed by a controller of the external device. For example, the external device may execute the print data generating processing (S1) and transmit the generated print data to the printer 1. In the printer 1, the CPU 71 may acquire the print data from the external device and execute the printing processing (S3), based on the acquired print data.
A modified embodiment of the thermosensitive tape 10, the print data 50, and the print result 40 is described with reference to
The thermosensitive tape 10 shown in
As shown in
The plurality of pre-print areas D12a have the same pre-print color. The plurality of pre-print areas D12b are arranged in a row at regular intervals in the longitudinal direction (i.e., in the conveying direction) to form a pre-print area group G12. The plurality of pre-print areas D12b have the same pre-print color. The plurality of pre-print areas D12c are arranged in a row at regular intervals in the longitudinal direction (i.e., in the conveying direction) to form a pre-print area group G13. The plurality of pre-print areas D12c have the same pre-print color.
The plurality of pre-print area groups G11, to G12 and G13 are arranged at regular intervals in the width direction. The pre-print color of the pre-print area D12a, the pre-print color of the pre-print area D12b, and the pre-print color of the pre-print area D12c are different from each other. In the below, in the L*a*b* color system, a color difference ΔE*ab between the pre-print color of the pre-print area D12a and the pre-print color of the pre-print area D12b is referred to as “first color difference”, a color difference ΔE*ab between the pre-print color of the pre-print area D12a and the pre-print color of the pre-print area D12c is referred to as “second color difference”, and a color difference ΔE*ab between the pre-print color of the pre-print area D12b and the pre-print color of the pre-print area D12c is referred to as “third color difference”. A value of the first color difference, a value of the second color difference, and a value of the third color difference are all 1.5 or greater,
The first information area D18 is provided on a side of the thermosensitive tape 10 opposite to the pre-print area group G12 with respect to the pre-print area group Gil in the width direction. The first information area D18 has a rectangular shape in a plane view and constitutes a part of the background area D1. Various information is recorded in the first information area D18.
The printer 1 creates a print result 40 shown in
As shown in
The print area D13a has a rectangular shape and is larger than each of the plurality of pre-print areas D12b, and more specifically, is larger than the two pre-print areas D12b. The print area D13a surrounds all of the two pre-print areas D12a shown in
According to this configuration, in the print result product 40a, all of the pre-print areas D12a and D12c are covered and hidden by the print areas D13a and D13b. That is, in the print result 40a, all of the two pre-print areas D12a and all of the two pre-print areas D12c are associated with an overlapping area D14a, and all of the two pre-print areas D12b are associated with an exposed area D15a.
The print area D13c has a rectangular shape and is larger than each of the plurality of pre-print areas D12a, and more specifically, is larger than the two pre-print areas D12a. The print area D13c surrounds all of the two pre-print areas D12b shown in
According to this configuration, in the print result 40b, all of the pre-print areas D12b and D12c shown in
The correspondence information F11 corresponds to the print result 40a. The correspondence information F11 indicates information corresponding to the pre-print color of the pre-print area D12b, which is the exposed area D15a, among the plurality of pre-print areas D12a, D12b and D12c. As an example, the correspondence information F11 indicates that the pre-print color of the pre-print area D12b corresponds to the information of “STORE A”.
The correspondence information F12 corresponds to the print result 40b. The correspondence information F12 indicates information corresponding to the pre-print color of the pre-print area D12a, which is the exposed area D15b, among the plurality of pre-print areas D12a, D12b and D12c. As an example, the correspondence information F12 indicates that the pre-print color of the pre-print area D12a corresponds to the information of “STORE B”.
As described above, the thermosensitive tape 10 has the first information area D18. For this reason, the printer 1 can show information by the first information area D18 in the print result 40, in addition to the information indication by the exposed areas D15a and D15b.
The correspondence information F11 and F12 is thermally printed in the first information area D18 in the printing processing. Therefore, the user can easily identify the information by the exposed areas D15a and D15b by seeing the correspondence information F11 and F12 in the first information area D18 in the print result 40.
Note that, the correspondence information F11 and F12 may also be printed in advance in the first information area D18. According to this configuration, the user can easily identify the information by the exposed areas D15a and D15b by seeing the correspondence information F11 and F12 in the first information area D18 in the print result 40.
The plurality of pre-print areas D12a, the plurality of pre-print areas D12b, and the plurality of pre-print areas D12c are all arranged apart from each other. According to this configuration, for example, even when the print area D13a. actually thermally printed deviates from a target print area, the printer 1 can suppress the deviating print area D13a from overlapping with the pre-print area D12b or the pre-print area D12c. In this way, the printer 1 can suppress the print areas D13a, D13b, D13c and D13d from overlapping with a pre-print area different from a pre-print area with which the target print area overlaps.
Note that, the pre-print area D12b and the pre-print area D12c may be arranged adjacent to each other without a gap. According to this configuration, the plurality of pre-print areas D12a, D12b and D12c are arranged more closely than they are arranged apart from each other. Therefore, the printer 1 can suppress an increase in size of the thermosensitive tape 10.
The value of the first color difference, the value of the second color difference, and the value of the third color difference are all 1.5 or greater. According to this configuration, the printer 1 can increase the first color difference, the second color difference and the third color difference to the extent that the user can easily visually recognize the difference of the pre-print color of the pre-print area D12a, the pre-print color of the pre-print area D12b and the pre-print color of the pre-print area D12c. Therefore, the printer 1 can suppress the user from confusing the pre-print color of the pre-print area D12a, the pre-print color of the pre-print area D12b and the pre-print color of the pre-print area D12c with each other in the print result 40. Note that, any one or two of the value of the first color difference, the value of the second color difference, and the value of the third color difference may also be 1.5 or greater and any other one or two may also be smaller than 1.5. The value of the first color difference, the value of the second color difference, and the value of the third color difference may also be all smaller than 1.5.
The plurality of pre-print areas D12a are arranged each other in the conveying direction and have the same pre-print color. The plurality of pre-print areas D12b are arranged each other in the conveying direction and have the same pre-print color. The plurality of pre-print areas D12c are arranged each other in the conveying direction and have the same pre-print color. According to this configuration, for example, even when the thermosensitive tape 10 is divided between the print result 40a and the print result 40b in the conveying direction, the printer 1 can show information by the same pre-print area configuration in the two print results 40a and 40b.
For example, the print area D13a is larger than the pre-print area D12a and surrounds the entire pre-print area D12a. According to this configuration, even when the print area D13a actually thermally printed deviates from the target print area D13a, the printer 1 can suppress that the deviating print area D13a does not overlap with the pre-print area D12a. Note that, for example, the print area D13a may also be smaller than the two pre-print areas D12b and may also be smaller than each of the plurality of pre-print areas D12b. The print area D13a may also be included in the pre-print area D12b without surrounding the entire pre-print area D12a.
In the printing processing, the CPU 71 causes the thermal head 28 to execute thermal printing, with the print color, on the print area including at least one or two of at least a part of the pre-print area D12a, at least a part of the pre-print area D12b, and at least a part of the pre-print area D12c of the thermosensitive tape 10. According to this configuration, the thermal printing is not performed on any one or two of the pre-print area D12a, the pre-print area D12b and the pre-print area D12c of the thermosensitive tape 10. That is, the entire area of any one or two of the pre-print area D12a, the pre-print area D12b and the pre-print area D12c of the thermosensitive tape 10 are associated with an exposed area. Therefore, the user can easily identify the information by the pre-print area whose entire area is associated with the exposed area.
Note that, as shown in
The pre-print area D12a, the pre-print area D12b and the pre-print area D12c are all arranged at intervals in the width direction. Note that, the pre-print area D12a, the print area D12b and the pre-print area D12c may also be arranged adjacent to each other without a gap in the width direction. The pre-print area D11a extends continuously in the longitudinal direction (i.e., the conveying direction). The pre-print area D12b extends continuously in the longitudinal direction. The pre-print area D12c extends continuously in the longitudinal direction. The pre-print color of the pre-print area D12a, the pre-print color of the pre-print area D12b, and the pre-print color of the pre-print area D12c are different from each other. Note that, a part or all of the pre-print color of the pre-print area D12a, the pre-print color of the pre-print area D12b, and the pre-print color of the pre-print area D12c may be the same each other.
According to this configuration, since each of the plurality of pre-print areas D12a, D12b and D12c extends continuously in the longitudinal direction, the printer 1 can show information by the same pre-print area configuration in the print result at any position in the longitudinal direction of the thermosensitive tape 10, for example. For example, even when the size of the print result in the longitudinal direction is changed, the printer 1 can show information by the same pre-print area configuration in the print result.
A second embodiment is described with reference to
As shown in view (A) of
As shown in view (B) of
Similar to the first embodiment, in the second embodiment, the CPU 71 executes the main processing shown in
The present disclosure can be variously changed from the second embodiment. Note that, the following various modified embodiments can be combined with each other as long as there is no contradiction, or can also be applied to the first embodiment described above. A variety of modified embodiments of the pre-print area are described with reference to
As shown in
According to this configuration, since X/Y≥1.4 is satisfied, the printer 1 can increase the areas of the pre-print areas D22a, D22b and D22c per an area of the thermosensitive label 30. Therefore, the user can easily visually recognize the information by the pre-print areas D22a, D22b and D22c in the print result.
For example, the user may place the print result at a corner of a target object. In this case, since the pre-print areas D22a, D22b and D22c are arranged in the width direction, the user is likely to arrange the print result at the corner of the target object so that both sides of the pre-print areas D22a, D22b and D22c can be seen from one direction. Therefore, the user can easily identify the information by the pre-print areas D22a, D22b and D22c in the print result.
Since the pre-print areas D22a, D22b and D22c are arranged in the width direction, the printer 1 can make the heat generated by the plurality of heat generators 281 uniform in the arrangement direction. Therefore, the printer 1 can suppress the thermal head 28 from being deteriorated.
As shown in
According to this configuration, since X/X≥1.4 is satisfied, the printer 1 can increase the areas of the pre-print areas D22a, D22b and D22c per an area of the thermosensitive label 30. Therefore, the user can easily visually recognize the information by the pre-print areas D22a, D22b and D22c in the print result.
For example, the user may place the print result at a corner of a target object. In this case, since the pre-print areas D22a, D22b and D22c are arranged in the longitudinal direction, the user is likely to arrange the print result at the corner of the target object so that both sides of the pre-print areas D22a, D22b and D22c can be seen from one direction. Therefore, the user can easily identify the information by the pre-print areas D22a, D22b and D22c in the print result.
Since the pre-print areas D22a, D22b and D22c are arranged in the longitudinal direction, the printer 1 can suppress the increase in size of the thermosensitive label 30 in the width direction. Therefore, the printer 1 can suppress the increase in size of the thermal head 28 in the arrangement direction.
As shown in
According to this configuration, since the plurality of pre-print areas D22a, D22b and D22c are arranged at positions offset from each other in both the longitudinal direction and the width direction, the thermal printing on the pre-print area D22a, the thermal printing on the pre-print area D22b and the thermal printing on the pre-print area D22c in the printing processing are temporally shifted. For this reason, the printer 1 can suppress the local increase in drive energy of the thermal head 28.
As shown in
The respective pre-print colors of the plurality of pre-print areas D22a, D22b and D22c are different from each other. The pre-print color of the pre-print area D22a is the same type of color as the pre-print color of the pre-print area D22i, and is not the same type of color as the pre-print colors of the pre-print areas D22b, D22c, D22d, D22e, D22f, D22g and D22h.
Note that, in the present embodiment, it is said that a first color and a second color have a relationship of the same type of color each other in the following three cases. That is, in a case where the first color is included in the range of 5RP, 5R and 5YR of the 10 major hues in the Munsell color system and the second color is included in the range of 5GY, 5G and 5GB of the 10 major hues in the Munsell color system, it is said that the first color and the second color have a relationship of the same type of color each other. In a case where both the first color and the second color are included in the range of 5GY, 5G, 5GB, 5B and 5PB, it is said that the first color and the second color have a relationship of the same type of color each other, in a case where the first hue and the second hue of the 10 major hues in the Munsell color system are adjacent to each other, when both the first color and the second color are included in the range of the first hue or the second hue, it is said that the first color and the second color have a relationship of the same type of color each other.
The pre-print area D22a is arranged at a corner in a grid pattern configured by the plurality of pre-print areas D22a, D22b, D22c, D22d, D22e, D22f, D22g, D22h and D22i. The pre-print area D22i is arranged. at a corner diagonal to the pre-print area D22a in the grid pattern configured by the plurality of pre-print areas D22a, D22b, D22c, D22d, D22e, D22f, D22g, D22h and D22i.
According to this configuration, the printer 1 can make a distance between the pre-print area D22a and the pre-print area D22i larger than a distance between the pre-print area D22a or the pre-print area D22i and another printed area. Therefore, even when the pre-print color of the pre-print area D22a and the pre-print color of the pre-print area D22i are the same type of color each other, the printer 1 can suppress the user from confusing the pre-print color of the pre-print area D22a and the pre-print color of the pre-print area D22i each other in the print result 40.
As shown in
A virtual line V1 passes through a bar center G1 of the thermosensitive label 30 and extends in the width direction. Note that, the virtual line V1 may pass through the barycenter G1 and extend in the longitudinal direction, or may extend so as to intersect both the longitudinal direction and the width direction. The first information area D28 is arranged at a central part of the thermosensitive label 30, and a barycenter of the first information area D28 coincides with the barycenter G1 of the thermosensitive label 30. The first information area D28 has a line-symmetrical shape with respect to the virtual line V1. The pair of pre-print areas D22a is located on one side and the other side of the first information area D28 in the width direction, and are arranged at line-symmetrical positions with respect to the virtual line V1. The pair of pre-print areas D22b is located on one side and the other side of the first information area D28 in the width direction, and are arranged at line-symmetrical positions with respect to the virtual line V1. The pair of pre-print areas D22c is located on one side and the other side of the first information area D28 in the width direction, and are arranged at line-symmetrical positions with respect to the virtual line V1. Therefore, the thermosensitive label 30 is line-symmetrical with respect to the virtual line V1 as a whole.
For example, the user may place the print result at a corner of a target object. In this case, since each of the pair of pre-print areas D22a, the pair of pre-print areas D22b and the pair of pre-print areas D22c is arranged at line-symmetrical positions with respect to the virtual line V1, the user is likely to arrange the print result at the corner of the target object so that one group of the pre-print areas D22a, D22b and D22c can be seen from one direction and the other group of the pre-print areas D22a, D22b and D22c can be seen from the other direction. Therefore, for example, when thermal printing is performed so as to be line-symmetrical with respect to the virtual line V1, the user can identify the same information of information by one group of the pre-print areas D22a, D22b and D22c and information by the other group of the pre-print areas D22a, D22b and D22c in the print result, from the two directions.
As shown in
The first information area D28 is arranged at a central part of the thermosensitive label 30, and the barycenter of the first information area D28 coincides with the barycenter G1 of the thermosensitive label 30. The first information area D28 has a point-symmetrical shape with respect to the virtual line G1. The pair of pre-print areas D22a is located on one side and the other side of the first information area D28 in the width direction, and is arranged at point-symmetrical positions with respect to the virtual line G1. The pair of pre-print areas D22b is located on one side and the other side of the first information area D28 in the width direction, and is arranged at point-symmetrical positions with respect to the virtual line G1. The pair of pre-print areas D22c is located on one side and the other side of the first information area D28 in the width direction, and is arranged at point-symmetrical positions with respect to the virtual line G1. Therefore, the thermosensitive label 30 is point-symmetrical with respect to the virtual line G1 as a whole.
For example, the user may place the print result at a corner of a target object. In this case, since each of the pair of pre-print areas D22a, the pair of pre-print areas D22b and the pair of pre-print areas D22c is arranged at point-symmetrical positions with respect to the virtual line G1, the user is likely to arrange the print result at the corner of the target object so that one group of the pre-print areas D22a, D22b and D22c can be seen from one direction and the other group of the pre-print areas D22a, D22b, D22c can be seen from the other direction. Therefore, for example, when thermal printing is performed so as to be line-symmetrical with respect to the virtual line V1, the user can identify the same information of information by one group of the pre-print areas D22a, D22b and D22c and information by the other group of the pre-print areas D22a, D22b and D22c in the print result, from the two directions.
As shown in
It is assumed that the user sees the pre-print area with the barycenter of the pre-print area in the print result as a center of the viewpoint. In this case, since the barycenter G2 of the pre-print area D22a and the barycenter G2 of the pre-print area D22b coincide with each other, the user does not have to shift the viewpoint when seeing the pre-print area D22a and when seeing the pre-print area D22b in the print result. Therefore, the user can easily identify the information by the pre-print areas D22a and the information by the pre-print area D22b in the print result.
As shown in
The pre-print area groups G21, G22, G23 and G24 are arranged in the width direction and are arranged in a zigzag pattern each other. In the pre-print area group G21, ends on one side, in the width direction, of the plurality of pre-print areas D22a are located on one side in the width direction further than ends on the other side, in the width direction, of the plurality of pre-print areas D22a in the pre-print area group G22, in the pre-print area group G22, ends on one side, in the width direction, of the plurality of pre-print areas D22a are located on one side in the width direction further than ends on the other side, in the width direction, of the plurality of pre-print areas D22a in the pre-print area group G23. In the pre-print area group G23, ends on one side, in the width direction, of the plurality of pre-print areas D22a are located on one side in the width direction further than ends on the other side, in the width direction, of the plurality of pre-print areas D22a in the pre-print area group G24.
According to this configuration, the pre-print area groups G21, G22, G23 and G24 are arranged in a zigzag pattern each other, so that the plurality of pre-print areas D22a are further densely arranged than the plurality of pre-print areas D22a are arranged in a grid pattern as a whole. Therefore, the printer 1 can suppress an increase in size of the thermosensitive label 30.
As shown in
The pre-print area groups G21, G22, G23, G24, G25 and G26 adjacent to each other are adjacent to each other without a gap. Note that, the pre-print area groups G21, G22, G23, G24, G25 and G26 adjacent to each other may also be arranged at positions apart from each other. Each of the pre-print area groups G21, G22, G23, G24, G25 and G26 is configured by repeating a pattern in which the pre-print area D22a, the pre-print area D22b and the pre-print area D22c are arranged in this order in the longitudinal direction, as the predetermined rule. Note that, the predetermined rule means that the pattern of the combination of the plurality of pre-print areas is repeated. For example, a pattern in which the pre-print area D22a, the pre-print area D22b, the pre-print area D22c and the pre-print area D22b are arranged in this order in the longitudinal direction may be repeated.
According to this configuration, for example, when thermal printing is performed so that the print area overlaps with all of the plurality of pre-print areas D22a, all of the plurality of pre-print areas D22b and all of the plurality of pre-print areas D22c are associated with exposed areas. In this case, the printer 1 can express a mixed color of the pre-print color of the pre-print area D22b and the pre-print color of the pre-print area D22c in the print result. In this way, the printer 1 can easily express a mixed color of a plurality of pre-print colors in the print result.
The modified embodiments of the thermosensitive label 30, the print data 50, and the print result 40 are described with reference to
The thermosensitive label 30 of the modified embodiment is described with reference to
The first information area D38 is arranged on a side opposite to the plurality of pre-print areas D32d and D32e with respect to the plurality of pre-print areas D32a, D32b and D32c in the width direction. Arbitrary information F31 is printed in advance in the first information area D38. The information F31 is, for example, “X PRODUCT”.
A virtual line V2 passes between the plurality of pre-print areas D32a, D32b and D32c and the first information area D38, and extends in the longitudinal direction in parallel with the short side 31. Note that, when the first information area D38 is arranged with the plurality of pre-print areas D32a, D32b, D32c, D32d and D32e in the longitudinal direction, the virtual line V2 may extend in the width direction in parallel with the long side 32. The second information area D39 is located on an opposite side to the first information area D38 with respect to the virtual line V2. Specifically, the second information area D39 is arranged at a position on a side opposite to the virtual line V2 with respect to the pre-print area D32a in the width direction and opposite to the pre-print area D32d with respect to the pre-print area D32e the longitudinal direction. Note that, the second information area D39 may also be arranged at any one position of, for example, the pre-print areas D32a, D32b, D32c, D32d and D32e, or may also be arranged on an opposite side to the first information area D38 with respect to the pre-print areas D32a, D32b, D32c, D32d and D32e in the width direction.
The print data 50 of the modified embodiments is described with reference to
The print data 50 shown in
The printer 1 creates a print result 40 shown in
The print results 40 of the modified embodiments are described with reference to
In the print result 40 shown in
When the user sees the print result 40 shown in
According to this configuration, since the thermosensitive label 30 has the second information area D39, the printer 1 can also record information in the second information area D39. Note that, in the printing processing, other arbitrary information may be thermally printed in the second information area D39, instead of or in addition to the correspondence information. Information may also be printed in advance in the second information area D39.
The print areas D33a, D33b, D33c and D33d are arranged apart from each other. According to this configuration, the user can easily identify the positions of the pre-print areas D32a, D32b, D32c, D32d and D32e, as compared to a case where a part or all of the print areas D33a, D33b, D33c and D33d are connected to each other.
A modified embodiment of the print data 50 and the print result 40 is described with reference to
In this case, when thermal printing is performed on the thermosensitive label 30 shown in
According to this configuration, the printer 1 can show the shape of the text (for example, “◯” (while circle)) in the print result 40 by the pre-print color. Therefore, the user can easily identify the information by the pre-print area.
The thermosensitive layer 13 may be capable of developing two colors different from each other depending on a difference in heating temperature by thermal printing, or may be capable of developing three or more colors different from each other. The thermosensitive tape 10 may include two thermosensitive layers that develop colors different from each other depending on the difference in heating temperature by thermal printing. In this case, the CPU 71 may perform thermal printing on a plurality of print areas with different print colors in the printing processing, respectively. Specifically, in the print result 40 shown in
The area of the pre-print area D2 may be smaller than 25 mm2. The area of the pre-print area D2 is preferably equal to or larger than 3 mm2, When the area of the pre-print area D2 is equal to or larger than 3 mm2, the printer 1 can increase the area of the pre-print area D2 to the extent that the user can easily visually recognize the pre-print color. Therefore, the user can easily visually recognize the information by the exposed area D5 on the print result 40. When there are a plurality of pre-print areas as in each modified embodiment, a part or all of each area of the plurality of pre-print areas may be equal to or larger than 25 mm2, may be equal to or larger than 3 mm2, or may be smaller than 3 mm2.
Note that, It is preferable that the printer 1 adopts, as the pre-print color, a color that can be easily distinguished from the background color or the print color, for example. By adopting a color that can be easily distinguished as the pre-print color, the printer 1 can appropriately convey information in a print result to, for example, a color-blind person. The easily distinguishable color is, for example, a high-chroma accent color. Specifically, the high-chroma accent color is defined by color values of (C, M, Y, K)=(0,75,90,0), (0,0,100, 0), (75,0,65,0), (100,45,0,0), (55,0,0,0), (0,55,35,0), (0,45,100, 0), (30,95,0,0) and (55,90,100,0) in the CMYK color space (4-color process color printing, Japanese Color compliance) or color values of (R, G, B)=(255,75, 0), (255,241,0), (3,175,122), (0,90,255), (77,196,255), (255,128,130), (246,170,0) (153,0,153) and (128,64,0) in the RCSB color space (sRGB-compliant display). The pre-print color is preferably one of the high-chroma accent colors. When there are a plurality of pre-print colors, at least one of the plurality of pre-print colors is preferably a high-chroma accent color.
The thermosensitive tape 10 of the first embodiment or the thermosensitive label 30 of the second embodiment corresponds to the “thermosensitive medium” of the present disclosure. The platen roller 26 corresponds to the “conveying unit” of the present disclosure. The CPU 71 corresponds to the “controller” of the present disclosure.
While the invention has been described in conjunction with various example structures outlined above and illustrated in the figures, various alternatives, modifications, variations, improvements, and/or substantial equivalents, whether known or that may be presently unforeseen, may become apparent to those having at least ordinary skill in the art. Accordingly, the example embodiments of the disclosure, as set forth above, are intended to be illustrative of the invention, and not limiting the invention. Various changes may be made without departing from the spirit and scope of the disclosure. Therefore, the disclosure is intended to embrace all known or later developed alternatives, modifications, variations, improvements, and/or substantial equivalents.
Number | Date | Country | Kind |
---|---|---|---|
2021-126248 | Jul 2021 | JP | national |