Image forming apparatus and image forming method

The image forming apparatus optimizes heating processes based on preview settings to prevent unnecessary heating of the fixing unit, reducing power consumption and FCOT by managing preheating and conversion processes effectively.

JP7806495B2Active Publication Date: 2026-01-27BROTHER KOGYO KK
View PDF 6 Cites 0 Cited by

Patent Information

Application Number
JP2021214857
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2021-12-28
Publication Date
2026-01-27
Estimated Expiration
2041-12-28

AI Technical Summary

Technical Problem

Image forming devices with a preview function unnecessarily heat the fixing unit when a timeout occurs during the print data expansion process, leading to increased power consumption and prolonged heating times.

Method used

The image forming apparatus includes a control unit that manages a preheating process to a lower temperature when the preview setting is enabled, and executes the heating process only after the conversion process is complete, while maintaining the fixing unit at a preparation temperature during preview display to reduce unnecessary heating and power consumption.

Benefits of technology

This approach prevents unnecessary heating of the fixing unit, reduces power consumption, and shortens the First Copy Output Time (FCOT) by optimizing the heating process based on the preview setting.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 0007806495000001
    Figure 0007806495000001
  • Figure 0007806495000002
    Figure 0007806495000002
  • Figure 0007806495000003
    Figure 0007806495000003
Patent Text Reader

Abstract

To provide an image formation apparatus which prevents a fixation unit from being heated wastefully.SOLUTION: A control unit executes image reading processing (S2) of reading an image of a document, conversion processing (S5, S9) of converting a read image into raster data, heating processing (S13) of heating a heating unit, and image formation processing (S18). The control unit executes display processing (S11) of displaying on a display unit a preview image after the conversion processing is executed (S10:YES) when preview setting is set (S3:YES), and executes the heating processing (S13) with the execution instruction of the image formation processing (S12:YES) as a trigger.SELECTED DRAWING: Figure 5
Need to check novelty before this filing date? Find Prior Art

Description

[Technical Field]

[0001] The present invention relates to an image forming apparatus equipped with an image reading unit and an image forming method. [Background technology]

[0002] In the past, in image forming devices equipped with a fixing unit, if a timeout occurs in which the print data expansion process is not completed even after a predetermined time has elapsed since the heater was turned on after receiving a print command, the heater is turned off to prevent the fixing unit from being heated for a long period of time (see, for example, Patent Document 1). [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Patent Publication No. 2021-99441 Summary of the Invention [Problem to be solved by the invention]

[0004] There are image forming devices that have a preview function that displays a preview image before printing. If the image forming device described in Patent Document 1 is equipped with a preview function, when the timeout occurs while the preview image is being displayed on the display unit, the heater is turned off in the middle of heating the fixing unit, which causes the fixing unit to be unnecessarily heated.

[0005] The present disclosure has been made to solve the above-mentioned problems, and its purpose is to provide an image forming apparatus and an image forming method that prevent the fixing unit from being unnecessarily heated. [Means for solving the problem]

[0006] In order to solve the above-mentioned problems, an image forming apparatus according to one aspect of the present disclosure includes a conveying unit that conveys a sheet, an image forming unit that forms a developer image on the sheet conveyed by the conveying unit, a fixing unit that has a heating unit that heats the sheet and fixes the developer image to the sheet, an image reading unit that reads an image of an original document, a display unit that displays the image, and a control unit. The control unit executes an image reading process that reads the image of the original document using the image reading unit, a conversion process that converts the read image, which is the image read by the image reading unit in the image reading process, into raster data, a heating process that heats the heating unit so that the temperature of the heating unit reaches a fixing temperature that is a temperature for fixing the image to the sheet, and an image forming process that, after the heating process, causes the image forming unit to form a developer image on the sheet and fixes the developer image to the sheet using the fixing unit. When a preview setting is set to display a preview image corresponding to the scanned image on the display unit, the control unit executes the conversion process, then executes a display process to display the preview image on the display unit, and executes the heating process in response to an instruction to execute the image forming process. On the other hand, when the preview setting is not set, the control unit executes a preheating process to preheat the heating unit to a temperature lower than the fixing temperature, and then executes the heating process without executing the display process.

[0007] According to the image forming apparatus having the above configuration, when the preview setting is enabled, the preheating process is not executed, which prevents the heating unit from being heated unnecessarily and reduces power consumption. On the other hand, when the preview setting is not enabled, the heating process is executed after the preheating process, which shortens the heating process time and reduces the FCOT (First Copy Output Time).

[0008] In addition, in an image forming apparatus according to one aspect of the present disclosure, the control unit, in the image reading process, reads an image of at least one page of the original document using the image reading unit, and in the conversion process, converts the read image of at least one page into raster data; in a ready mode in which the temperature of the fixing unit is maintained at a first preparation temperature that is lower than the fixing temperature, if the preview setting is set, executes the conversion process and the display process while maintaining the temperature of the fixing unit at the first preparation temperature; in the heating process, raises the temperature of the fixing unit from the first preparation temperature to the fixing temperature; while, if the preview setting is not set, in the preheating process, preheats the heating unit to a second preparation temperature that is higher than the first preparation temperature, and executes the heating process after the conversion process for the first page is completed.

[0009] According to the image forming apparatus having the above configuration, when the preview setting is enabled in the ready mode, the temperature of the fixing unit is maintained at the first preparation temperature while the conversion process and display process are being performed, thereby preventing the fixing unit from being unnecessarily heated by the heating unit. On the other hand, when the preview setting is not enabled, the heating unit is preheated to the second preparation temperature in the preheating process, and the heating process is performed immediately after the conversion process of the first page is completed. This reliably shortens the FCOT.

[0010] In addition, in an image forming apparatus according to one aspect of the present disclosure, when the control unit is in sleep mode in which the heating unit is turned off, if the preview setting is set, after the image reading process is performed, the control unit increases the temperature of the heating unit from room temperature to the first preparation temperature, maintains the temperature of the fixing unit at the first preparation temperature, and then performs the heating process, whereas if the preview setting is not set, the control unit performs the heating process after the temperature of the fixing unit reaches the first preparation temperature through the preheating process.

[0011] According to the image forming apparatus having the above configuration, when a preview image is displayed in sleep mode, the temperature of the fixing unit is maintained at the first preparation temperature, thereby preventing the fixing unit from being unnecessarily heated by the heating unit. On the other hand, when a preview image is not displayed, the heating process is performed after the temperature of the fixing unit reaches the first preparation temperature through preheating. This shortens the execution time of the heating process and reduces FCOT.

[0012] In addition, in an image forming apparatus according to one embodiment of the present disclosure, when the preview setting is not set in the sleep mode, the control unit starts the heating process when the temperature of the fixing unit reaches the first preparation temperature through the preheating process.

[0013] According to the image forming device having the above-described configuration, when a preview image is not displayed in sleep mode, the FCOT can be further shortened by starting the heating process when the temperature of the fixing device reaches the first preparation temperature through the preheating process.

[0014] In addition, in an image forming apparatus according to one embodiment of the present disclosure, when the preview setting is not set in the ready mode, the control unit starts the conversion process after the preheating process is started, and when the conversion process for the first page is not completed even after a predetermined time has elapsed since the start of the conversion process, the control unit changes the temperature of the heating unit from the second preparation temperature to the first preparation temperature.

[0015] According to the image forming device having the above-described configuration, if the conversion process for the first page is not completed even after a predetermined time (for example, about 10 seconds) has elapsed since the conversion process began, the temperature of the heating unit is changed from the second preparation temperature to the first preparation temperature, thereby preventing the fixing unit from being heated unnecessarily and reducing power consumption.

[0016] According to another aspect of the present disclosure, an image forming apparatus further includes a first drive source, a second drive source, a feed roller for feeding a sheet, and a feed clutch switchable between a transmission state in which the drive force from the first drive source is transmitted to the feed roller and a disconnection state in which the drive force of the first drive source is not transmitted to the feed roller. The fixing unit has a roller driven by the second drive source. The control unit further executes a roller drive process in which, after starting the heating process, the second drive source is driven to start driving the roller, and a feed start process in which, after executing the roller drive process, the feed clutch is switched to a transmission state to start rotation of the feed roller.

[0017] According to the image forming apparatus having the above-described configuration, the temperature of the heating section is set to the fixing temperature, and by rotating the roller, the temperature of the fixing device can be efficiently raised, and the fixing device can be brought to the fixing temperature before the sheet is transported to the fixing device.

[0018] An image forming method according to one aspect of the present disclosure includes an image reading step of reading an image of a document, a conversion step of converting the read image read in the image reading step into raster data, a heating step of heating the fuser so that the temperature of the fuser reaches a fixing temperature for fixing the image to a sheet, and an image forming step of forming a developer image on a sheet using an image forming unit and fixing the developer image to the sheet using the fuser after the heating step is performed. If a preview setting is set to display a preview image corresponding to the read image on a display unit, after the conversion step is completed, a display step of displaying the preview image on the display unit is performed, and the heating step is performed in response to an instruction to perform the image forming step. On the other hand, if the preview setting is not set, a preheating step is performed to preheat the heating unit to a temperature lower than the fixing temperature, and then the heating step is performed without performing the display step.

[0019] According to the image forming method described above, when the preview setting is enabled, the preheating step is not executed, which prevents the heating unit from being heated unnecessarily and reduces power consumption. On the other hand, when the preview setting is not enabled, the heating step is executed after the preheating step, which shortens the processing time of the heating step and reduces FCOT. [Effects of the Invention]

[0020] According to one aspect of the present disclosure, it is possible to prevent the fixing unit from being unnecessarily heated. [Brief explanation of the drawings]

[0021] [Figure 1] 1 is a perspective view showing the appearance of a multifunction peripheral according to a first embodiment of the present invention. [Figure 2] 1 is a cross-sectional view showing the internal configuration of an image forming unit of a multifunction peripheral according to a first embodiment. [Figure 3] 1 is a block diagram showing the electrical configuration of a multifunction peripheral according to a first embodiment. [Figure 4] 5A to 5C are diagrams showing transitions of display screens on a display unit of an operation panel of the multifunction peripheral according to the first embodiment. [Figure 5] 10 is a flowchart showing a control flow when the multifunction peripheral according to the first embodiment starts image formation from a ready mode. [Figure 6] 10 is a diagram illustrating the operations of the image reading unit and the fixing unit when a preview is displayed in the multifunction peripheral according to the first embodiment. [Figure 7] 4 is a timing chart showing control of each unit when a preview display is not performed by the multifunction peripheral according to the first embodiment. [Figure 8] 4 is a timing chart showing control of each unit when a preview is displayed by the multifunction peripheral according to the first embodiment. [Figure 9] 10 is a flowchart showing a control flow when an image is formed by a multifunction peripheral according to a second embodiment of the present invention. [Figure 10] 10 is a timing chart showing control of each unit when a preview display is not performed by the multifunction peripheral according to the second embodiment. [Figure 11] 10 is a timing chart showing the control of each unit when a preview is displayed by the multifunction peripheral according to the second embodiment. DETAILED DESCRIPTION OF THE INVENTION

[0022] [Embodiment 1] [Outline of the multifunction device] A multifunction peripheral 1 according to a first embodiment will be described below with reference to FIGS. 1 to 8. FIG. 1 is a perspective view showing the appearance of the multifunction peripheral 1 according to the first embodiment. The multifunction peripheral (MFP) 1 shown in FIG. 1 is an example of an image forming apparatus, and is equipped with a print function, a copy function, a scan function, a fax function, and the like. Note that the image forming apparatus is not limited to a multifunction peripheral equipped with all of the functions described above, and may be, for example, a multifunction peripheral without a fax function. Hereinafter, the up-down direction, front-rear direction, and left-right direction of the multifunction peripheral 1 will be defined as shown by the arrows in FIG. 1.

[0023] The multifunction device 1 includes a printer unit 2 and a scanner unit 3. The printer unit 2 has a print function of forming an image on a sheet P. The scanner unit 3 has a scan function of reading an image of an original document and generating image data (hereinafter referred to as scan data) of the read image (hereinafter referred to as scanned image).

[0024] The image forming method of the printer unit 2 is an electrophotographic method. The printer unit 2 may be capable of forming color images and monochrome images, or may be capable of forming only monochrome images. The scanner unit 3 may be capable of reading color images and monochrome images, or may be capable of reading only monochrome images.

[0025] The multifunction device 1 has an operation panel 110 on the front side. As shown in Fig. 3, the operation panel 110 has a display unit 111 and an operation unit 112. The display unit 111 is made up of a liquid crystal display. As shown in Fig. 4, the operation unit 112 has operation keys such as a preview key 112A and start keys 112B, 112C, and 112D.

[0026] [Image forming unit configuration] Next, the configuration of the printer unit 2 will be described with reference to Figures 1 and 2. As shown in Figure 1, the printer unit 2 includes a housing 20. A feed tray 21 is provided at the bottom of the housing 20 so as to be movable in the front-to-rear direction. The feed tray 21 is configured to be able to support a plurality of sheets P. A discharge tray 22 is provided at the top of the housing 20. The discharge tray 22 supports the sheets P on which an image has been formed. It is assumed that the sheets P are, for example, A4-sized plain paper. The number of feed trays 21 can be changed as appropriate.

[0027] Fig. 2 is a cross-sectional view showing the internal configuration of the printer unit 2 of the multifunction device 1. As shown in Fig. 2, the printer unit 2 is provided with a feed roller 23, a conveying path R1, registration rollers 24, the image forming unit 4, a fixing unit 5, conveying rollers 25 and 26, a discharge roller 27, a re-conveying path R2, and reversing rollers 28 and 29.

[0028] The feed roller 23 is provided in the feed tray 21 and feeds the sheets P stored in the feed tray 21 one by one to the conveying path R1. The conveying path R1 is a path that runs from the feed tray 21, through the photosensitive drums 6Y, 6M, 6C, and 6K and the fixing unit 5, through the discharge port 2A, and to the discharge tray 22.

[0029] This is a conveying section that conveys the sheet P through the registration rollers 24, conveying rollers 25 and 26, discharge rollers 27, and reversing rollers 28 and 29, conveying path R1, or re-conveying path R2. The registration rollers 24 align the direction of the leading edge of the sheet P, and then convey the sheet P toward the photosensitive drum 6Y.

[0030] The image forming unit 4 has a transfer unit 40, four photosensitive drums 6Y, 6M, 6C, and 6K, four developing units 7Y, 7M, 7C, and 7K, and an exposure unit 8. The four photosensitive drums 6Y, 6M, 6C, and 6K correspond to the colors of yellow (Y), magenta (M), cyan (C), and black (K), respectively, and are arranged in order from the upstream side in the conveying direction of the sheet P, spaced apart from one another in the front-to-rear direction. The photosensitive drums 6Y, 6M, 6C, and 6K are driven to rotate by a driving force from a drive motor (not shown). The arrangement order of the photosensitive drums 6Y, 6M, 6C, and 6K is not limited to this and can be changed as appropriate.

[0031] The surfaces of the photosensitive drums 6Y, 6M, 6C, and 6K are uniformly charged by chargers (not shown). Four developing units 7Y, 7M, 7C, and 7K are disposed above the photosensitive drums 6Y, 6M, and 6C, respectively. Each developing unit 7Y, 7M, 7C, and 7K contains a toner corresponding to the corresponding color. Developing rollers 71Y, 71M, 71C, and 71K are disposed at the rear lower end of each developing unit 7Y, 7M, 7C, and 7K, respectively.

[0032] An exposure unit 8 is disposed above the four developing units 7Y, 7M, 7C, and 7K. The exposure unit 8 exposes the photosensitive drums 6Y, 6M, 6C, and 6K by irradiating them with laser light L based on image data. As a result, electrostatic latent images based on the image data to be formed on the sheet P are formed on the surfaces of the photosensitive drums 6Y, 6M, 6C, and 6K.

[0033] The four developing rollers 71Y, 71M, 71C, and 71K supply toner to the photosensitive drums 6Y, 6M, 6C, and 6K, respectively, so that the electrostatic latent images formed on the surfaces of the photosensitive drums 6Y, 6M, 6C, and 6K become developer images.

[0034] A transfer unit 40 is disposed in the front-to-rear direction below the four photosensitive drums 6Y, 6M, 6C, and 6K. The transfer unit 40 includes an endless belt 41 and four transfer rollers 42Y, 42M, 42C, and 42K. As the belt 41 rotates, the upper surface of the belt 41 moves from front to rear while contacting the four photosensitive drums 6Y, 6M, 6C, and 6K.

[0035] The four transfer rollers 42Y, 42M, 42C, and 42K are arranged at intervals from one another in the front-to-rear direction. Each transfer roller 42Y, 42M, 42C, and 42K is located below the corresponding photosensitive drum 6Y, 6M, 6C, and 6K, with the belt 41 sandwiched between each roller and the corresponding photosensitive drum 6Y, 6M, 6C, and 6K.

[0036] The fixing device 5 is located behind the transfer unit 40 and has a fixing roller 51 including a heater 53, and a pressure roller 52. The heater 53 is an example of a heating section and is made of, for example, a halogen heater. The heater 53 heats the sheet P via the fixing roller 51. The fixing device 5 fixes the developer image to the sheet P by the fixing roller 51 and the pressure roller 52. Note that the heating section does not have to be the heater 53, and any device capable of heating the sheet P will do.

[0037] Conveying rollers 25 are disposed downstream of the fixing unit 5 on the conveying path R1, and convey the sheet P toward conveying rollers 26. Conveying rollers 26 convey the sheet P toward discharge rollers 27. Discharge rollers 27 discharge the sheet P onto discharge tray 22.

[0038] The re-conveying path R2 is a path for transporting a sheet P with an image formed on one side toward the passage opening 2B via the flap 9, then reversing the conveying direction by the reversing rollers 28, 29, conveying the sheet downward, and supplying it to the conveying path R1 from the underside of the feed tray 21.

[0039] The flap 9 is located above and behind the conveying roller 25 and is rotatable between a discharge position shown by a solid line in which the conveying path R1 is opened and the re-conveying path R2 is closed, and a re-conveying position shown by a virtual line in which the conveying path R1 is closed and the re-conveying path R2 is opened.

[0040] [Image reading unit configuration] Next, the configuration of the scanner unit 3 will be described with reference to Fig. 1. As shown in Fig. 1, the scanner unit 3 has a housing 30, an ADF (Auto Document Feeder) 31, and a document cover 32. The ADF 31 is for automatically transporting documents and is provided integrally with the document cover 32. The document cover 32 is provided rotatably with respect to the housing 30 and opens and closes the top surface of the housing 30. The scanner unit 3 may be capable of reading both color images and monochrome images, or may be capable of reading only monochrome images.

[0041] Contact glasses 33 and 34 are provided side by side in the width direction on the top surface of the housing 30. Inside the housing 30, an image reading unit 35 shown in Fig. 3 is provided below the contact glasses 33 and 34 so as to be movable in the width direction, i.e., the sub-scanning direction.

[0042] The image reading unit 35 includes a light source, an image sensor, etc. The image reading unit 35 is, for example, a CIS (Contact Image Sensor). The image sensor has optical elements arranged in a row in the main scanning direction, and converts reflected light from the document into an electrical signal and outputs it.

[0043] The image reading unit 35 reads one line of the document image in the main scanning direction by irradiating light emitted from the light source onto the object to be read on the contact glass 33 or the contact glass 34, and the light reflected from the object to be read is received by the image sensor.

[0044] The scanner unit 3 is capable of reading an image of a document using both the FB (flatbed) method and the ADF method. When reading a document using the FB method, the document cover 32 is opened to the open position, and the document is placed on the upper surface of the contact glass 33. Thereafter, the document cover 32 is closed to the closed position, and the document is covered from above by the document cover 32. Then, in response to a command to execute scanning, the image reading unit 35 starts to move in the sub-scanning direction, and the document is read by the image reading unit 35 while being moved in the sub-scanning direction.

[0045] On the other hand, when reading a document using the ADF method, the document is placed on a supply tray (not shown) of the ADF 31, and the image reading unit 35 stops below the contact glass 34. Thereafter, in response to a command to start execution of the image reading process, the document starts to be conveyed by a supply roller (not shown). The image reading unit 35 reads the surface of the document conveyed along a conveyance path (not shown).

[0046] [Electrical configuration of image forming device] Fig. 3 is a block diagram showing the electrical configuration of the multifunction peripheral 1 of embodiment 1. As shown in Fig. 3, the multifunction peripheral 1 further includes an ASIC (Application Specific Integrated Circuit) 100, a ROM (Read Only Memory) 102, a RAM (Random Access Memory) 103, an NVM (Non Volatile Memory) 104, and a communication interface (I / F) 120.

[0047] The ASIC 100 is equipped with a CPU (Central Processing Unit) 101. The CPU 101 is an example of a control unit, and performs overall control of each unit of the multifunction peripheral 1. The ASIC 100 is electrically connected to a ROM 102, a RAM 103, an NVM 104, a motor 91, a motor 92, an image reading unit 35, an operation panel 110, and a communication I / F 120. The ASIC 100 may also be used as the control unit.

[0048] The ROM 102 stores various control programs and various settings for controlling the multifunction device 1. The RAM 103 is used as a work area from which the various control programs are read, and as a storage area for temporarily storing image data, raster data, etc. The NVM 104 stores various data such as the magnitude of the fixing temperature Q3 (described later) in advance. The CPU 101 controls the motor 91, the motor 92, the image reading unit 35, etc. based on the control programs read from the ROM 102.

[0049] Motor 91 is an example of a first drive source. The drive force of motor 91 is transmitted to the transport unit, which includes registration roller 24, transport rollers 25 and 26, discharge roller 27, and reversing rollers 28 and 29. The drive force of motor 91 is also transmitted to feed roller 23 via feed clutch 93. Feed clutch 93 can be switched between a connected state in which the drive force of motor 91 is supplied to feed roller 23 and a disconnected state in which the drive force is not supplied. Feed clutch 93 is, for example, an electromagnetic clutch.

[0050] The motor 92 is an example of a second drive source. The drive force of the motor 92 is transmitted to the fixing roller 51 of the fixing unit 5 via a gear train (not shown). The first drive source and the second drive source are not limited to motors, and may be any device capable of driving the conveying units 24 to 29 and the fixing roller 51. Alternatively, the first drive source and the second drive source may be realized by a single motor, which drives the feed roller 23 and the fixing roller 51, respectively.

[0051] CPU 101 controls the display on display unit 111 of operation panel 110. When operation unit 112 is operated by a user, CPU 101 executes various processes in accordance with the operation content of operation unit 112.

[0052] The communication I / F 120 is connected to a network such as a LAN, and enables connection to an external device incorporating a driver for the multifunction device 1. The multifunction device 1 can receive a command to start image formation processing via the communication I / F 120.

[0053] [Control flow during image formation by the CPU] Next, the control flow during image formation by the CPU 101 will be described with reference to Figs. 4 to 8. Fig. 4 is a diagram showing the transition of the display screen on the display unit 111 of the operation panel 110 of the multifunction device 1. Fig. 5 is a flowchart showing the control flow when the multifunction device 1 starts image formation from the ready mode. Fig. 6 is a diagram showing the operation of the image reading unit 35 and the fixing unit 5 when a preview is displayed in the multifunction device 1. Fig. 7 is a timing chart showing the control of each unit when a preview is not displayed by the multifunction device 1. Fig. 8 is a timing chart showing the control of each unit when a preview is displayed by the multifunction device 1.

[0054] In the first embodiment, it is assumed that the multifunction device 1 is in a ready mode and reads and copies an original. The "ready mode" refers to a mode in which, after image formation on a preceding sheet P is completed, the temperature of the fixing roller 51 is maintained at a first preparation temperature Q1 for a predetermined time, and the device waits for an instruction to execute image formation processing on a subsequent sheet P. The first preparation temperature Q1 is a temperature lower than the fixing temperature Q3, for example, about 150°C. The fixing temperature Q3 is a temperature for fixing an image on the sheet P, for example, about 200°C.

[0055] 5, first, CPU 101 determines whether or not the user has pressed start key 112B or start key 112C (S1). The user presses start key 112B to make a monochrome copy, and presses start key 112C to make a color copy.

[0056] If start key 112B or start key 112C has not been pressed (S1: NO), CPU 101 repeats S1, and if start key 112B or start key 112C has been pressed (S1: YES), CPU 101 starts image reading processing by scanner unit 3 at T1 shown in FIGS. 7 and 8 (S2: image reading step). Specifically, CPU 101 reads an image of a document using image reading unit 35 and generates scan data of the scanned image, which is the read image. CPU 101 continuously executes image reading processing between T1 and T31 in FIG. 6. Note that in the first embodiment, it is assumed that images of multiple documents are read using ADF 31.

[0057] Furthermore, when start keys 112B and 112C are pressed, if preview key 112A shown in the upper diagram of FIG. 4 has been selected, CPU 101 transitions the display screen of display unit 111 to the display screen shown in the lower diagram of FIG. 4, whereas if preview key 112A has not been selected, CPU 101 does not transition the display screen of display unit 111.

[0058] After S2, CPU 101 determines whether a preview setting has been made (S3). As shown in the upper diagram of FIG. 4, the user can make a preview setting to display a preview image on display unit 111 by selecting preview key 112A in advance. A "preview image" is any image corresponding to a scanned image. For example, the preview image may be only the scanned image. Alternatively, the preview image may be an image showing the scanned image printed on sheet P, i.e., an image showing the scanned image arranged within the area of ​​sheet P.

[0059] 7, the CPU 101 sets the set temperature of the heater 53 to a second preparation temperature Q2 and raises the temperature of the heater 53 (S4). In S4, the CPU 101 executes a preheating process to preheat the heater 53 to the second preparation temperature Q2, which is lower than the fixing temperature Q3. The second preparation temperature Q2 is a temperature higher than the first preparation temperature Q1, and is, for example, about 170°C.

[0060] Next, CPU 101 starts a conversion process to convert the scan data of the scanned image into raster data (S5: conversion step). In the first embodiment, the scan data of multiple pages of documents is converted into raster data. After S5, CPU 101 determines whether the conversion process for the first page is complete (S6).

[0061] 7, if the conversion process for the first page is completed (S6: YES), the CPU 101 proceeds to S13. On the other hand, if the conversion process for the first page is not completed (S6: NO), the CPU 101 determines whether a predetermined time, for example, 10 seconds, has elapsed (S7).

[0062] The CPU 101 returns to S6 until 10 seconds have passed (S7: NO), and when 10 seconds have passed (S7: YES), the CPU 101 sets the temperature of the heater 53 to Q1 (S8) and returns to S6.

[0063] On the other hand, if a preview setting has been made (S3: YES), the CPU 101 starts the conversion process (S9: conversion step) in the same manner as in S5 at T21 shown in Fig. 8. At this time, as shown in Fig. 8, the temperature of the heater 53 of the fixing unit 5 is maintained at the first preparation temperature Q1.

[0064] Next, CPU 101 determines whether or not the conversion process is complete (S10). CPU 101 repeats S10 until the conversion process is complete (S10: NO), and when the conversion process is complete (S10: YES) at T41 shown in Fig. 8, displays a preview on display unit 111 (S11: display step). Preview display refers to displaying the above-mentioned preview image 111G on display unit 111, as shown in Fig. 4.

[0065] After S11, CPU 101 determines whether or not start key 112D has been pressed by the user in the lower diagram of Fig. 4 (S12). If start key 112D has not been pressed (S12: NO), CPU 101 repeats S12. On the other hand, when start key 112D is pressed as an instruction to execute image forming processing, CPU 101 executes heating processing (S13: heating step).

[0066] In S13, the CPU 101 increases the temperature of the heater 53 to the fixing temperature Q3. Specifically, if a preview setting is not performed, the temperature of the heater 53 is increased from the second preparation temperature Q2 to the fixing temperature Q3 at T5 shown in Fig. 7. On the other hand, if a preview setting is performed, the set temperature of the heater 53 is increased from the first preparation temperature Q1 to the fixing temperature Q3 at T51 shown in Fig. 8.

[0067] After S13, CPU 101 determines whether or not a predetermined drive start time has arrived (S14). CPU 101 repeats S14 until the drive start time of the fixation roller 51 arrives (S14: NO). When the drive start time of the fixation roller 51 arrives (S14: YES), CPU 101 executes roller drive start processing (S15) to start driving of the fixation roller 51 by rotating motor 91 at T6 in FIG. 7 or T61 in FIG. 8.

[0068] After S15, CPU 101 determines whether it is time to turn on feed clutch 93 (S16). CPU 101 repeats S16 until it is time to turn on feed clutch 93 (S16: NO), and when it is time to turn on feed clutch 93 (S16: YES), it turns on feed clutch 93 at T7 in FIG. 7 or T71 in FIG. 8. That is, CPU 101 executes a feed start process that starts rotation of feed roller 23 by putting feed clutch 93 into a transmission state (S17). When feed roller 23 rotates, sheet P stored in feed tray 21 is supplied to conveyance path R1.

[0069] After S17, the CPU 101 executes image forming processing in which the image forming unit 4 forms a developer image on the sheet P and the fixing unit 5 fixes the developer image on the sheet P (S18: image forming step). Specifically, the sheet P is transported along the transport path R1 and passes between the photosensitive drums 6Y, 6M, 6C, and 6K and the belt 41 in order. At this time, the developer images formed on the surfaces of the photosensitive drums 6Y, 6M, 6C, and 6K are transferred to the sheet P by the action of transfer biases applied to the four transfer rollers 42Y, 42M, 42C, and 42K. As a result, a color image is formed on the sheet P, in which a color or monochrome image based on raster data is formed.

[0070] Thereafter, the sheet P is conveyed to the fixing device 5, and passes between the fixing roller 51 and the pressure roller 52, thereby fixing the developer image to the sheet P. As a result, an image based on the scan data is formed on the sheet P, and the sheet P on which the image has been formed is discharged to the discharge tray 22. In this way, the flow shown in FIG. 5 ends.

[0071] [Effects of the First Embodiment] In the multifunction peripheral 1 of the present embodiment described above, when a preview setting is made (S3: YES), the CPU 101 does not perform the preheating process (S4) during preview display, as shown in Fig. 6, thereby preventing the heater 53 from being unnecessarily heated and reducing power consumption. On the other hand, when a preview setting is not made (S3: NO), the CPU 101 performs the heating process (S13) after the preheating process (S4), thereby shortening the time for the heating process (S13) and reducing the FCOT (First Copy Output Time).

[0072] Furthermore, in the ready mode, if a preview setting is made (S3: YES), the CPU 101 maintains the temperature of the fixing unit 5 at the first preparation temperature Q1 while executing the conversion process (S9) and the display process (S11), as shown in Fig. 8, thereby preventing the fixing unit 5 from being unnecessarily heated by the heater 53. On the other hand, if a preview setting is not made (S3: NO), the CPU 101 preheats the heater 53 in the preheating process (S4) so ​​that the temperature of the heater 53 reaches the second preparation temperature Q2, and immediately executes the heating process (S13) after the conversion process for the first page is completed (S6: YES). This reliably shortens the FCOT.

[0073] Furthermore, if the conversion process for the first page is not completed (S7: YES) even after 10 seconds have passed since the start of the conversion process (S5), the CPU 101 lowers the temperature of the heater 53 from the second preparation temperature Q2 to the first preparation temperature Q1. This prevents the fixing unit 5 from being unnecessarily heated, and reduces power consumption.

[0074] Furthermore, before executing the feeding start process (S17), the CPU 101 starts the rotation of the fixing roller 51 in a state in which the heater 53 is heated so that the temperature of the heater 53 becomes the fixing temperature Q3 (S15). This allows the temperature of the fixing device 5 to be efficiently increased to the fixing temperature Q3 before the sheet P is conveyed to the fixing device 5.

[0075] [Embodiment 2] Next, the multifunction peripheral 1 in the second embodiment will be described with reference to FIGS. 9 to 11. FIG. 9 is a flowchart showing the flow of control when an image is formed by the multifunction peripheral 1 of the second embodiment. FIG. 10 is a timing chart showing the control of each unit when a preview is not displayed by the multifunction peripheral 1 of the second embodiment. FIG. 11 is a timing chart showing the control of each unit when a preview is displayed by the multifunction peripheral 1 of the second embodiment. For ease of explanation, members having the same functions as those described in the first embodiment above will be denoted by the same reference numerals, and their description will not be repeated.

[0076] [Control flow during image formation by the CPU] In the second embodiment, it is assumed that the multifunction device 1 is in sleep mode and then scans and copies an original. "Sleep mode" refers to a mode in which the heater 53 is turned off after a predetermined time, for example, 10 minutes, has elapsed since the image formation process ended. In sleep mode, the temperature of the multifunction device 1 is assumed to be room temperature.

[0077] 9, first, CPU 101 determines whether or not start key 112B or start key 112C has been pressed by the user (S21). If start key 112B or start key 112C has not been pressed (S1: NO), CPU 101 repeats S1, and if start key 112B or start key 112C has been pressed (S21: YES), CPU 101 starts image reading processing by scanner unit 3 at T1 shown in FIGS. 10 and 11 (S22: image reading step).

[0078] 10 and T23 in FIG. 11, the CPU 101 sets the set temperature to Q1 and turns on the heater 53 (S23). Then, the CPU 101 determines whether or not a preview setting has been made (S24). If a preview setting has not been made (S24: NO), the CPU 101 starts a conversion process (S25: conversion step).

[0079] After S25, CPU 101 determines whether the temperature of fuser 5 has reached Q1 (S26). CPU 101 repeats S26 until the temperature of fuser 5 has reached Q1 (S26: NO), and when the temperature of fuser 5 has reached Q1 (S26: YES), determines whether the conversion process for the first page has been completed (S27).

[0080] If the conversion process for the first page is not complete (S27: NO), CPU 101 repeats S27, and if the conversion process for the first page is complete (S27: YES) at T32 in FIG. 10, proceeds to S32.

[0081] On the other hand, if a preview setting has been made (S23: YES), CPU 101 starts conversion processing (S28: conversion step). After S28, CPU 101 determines whether or not the conversion processing has been completed (S29). CPU 101 repeats S29 until the conversion processing is completed (S29: NO), and when the conversion processing is completed (S29: YES), at T43 shown in FIG. 11, displays a preview on display unit 111 (S30: display step).

[0082] After S30, CPU 101 determines whether or not start key 112D has been pressed by the user (S31) in the lower diagram of Fig. 4. If start key 112D has not been pressed (S31: NO), CPU 101 repeats S31, and if start key 112D has been pressed (S31: YES), the process proceeds to S32.

[0083] In heating step S32, CPU 101 increases the temperature of heater 53 to fixing temperature Q3. Specifically, if a preview setting is not performed, CPU 101 changes the set temperature of heater 53 from first preparation temperature Q1 to fixing temperature Q3 at T52 in Fig. 10. On the other hand, if a preview setting is performed, CPU 101 changes the set temperature of heater 53 from first preparation temperature Q1 to fixing temperature Q3 at T53 in Fig. 11.

[0084] After S32, CPU 101 determines whether or not it is time to start driving the fixing roller 51 (S33). CPU 101 repeats S33 until it is time to start driving the fixing roller 51 (S33: NO).

[0085] When the drive start time for the fixing roller 51 is reached (S33: YES), the CPU 101 executes roller drive start processing (S34) to start driving the fixing roller 51 by rotating the motor 91 at T62 in Fig. 10 and T63 in Fig. 11. After S34, the CPU 101 determines whether the time has come to turn on the feed clutch 93 (S35).

[0086] CPU 101 repeats S35 until it is time to turn on feed clutch 93 (S35: NO), and when it is time to turn on feed clutch 93 (S35: YES), it turns on feed clutch 93 at T72 in Fig. 10 and T73 in Fig. 11. That is, CPU 101 executes a feed start process that starts rotation of feed roller 23 by putting feed clutch 93 into a transmission state (S36). When feed roller 23 rotates, sheet P stored in feed tray 21 is supplied to conveyance path R1.

[0087] After S36, CPU 101 executes image forming processing in the same manner as S18 (S37: image forming step), and thus the flow shown in FIG.

[0088] [Effects of the second embodiment] In the multifunction device 1 of the second embodiment described above, when a preview setting is made in sleep mode (S24: YES), the CPU 101 maintains the temperature of the fixing device 5 at the first preparation temperature Q1, thereby preventing the fixing device 5 from being unnecessarily heated by the heater 53.

[0089] Furthermore, in the sleep mode, if the preview setting is not set (S24: NO), the CPU 101 starts the heating process (S32) when the temperature of the fixing unit 5 reaches the first preparation temperature Q1 through the preheating process (S26: YES). This shortens the execution time of the heating process (S32), thereby further shortening the FCOT.

[0090] Other Embodiments In the multifunction peripherals 1 of the first and second embodiments, the fixing unit 5 includes the fixing roller 51, the heater 53 for increasing the temperature of the fixing roller 51, and the pressure roller 52. However, the fixing unit 5 is not limited to this. For example, the fixing unit 5 may include a heater, a nip plate that receives radiant heat from the heater, a heating belt that rotates around the nip plate, and a pressure roller.

[0091] The fixing unit 5 may also be configured to include a substrate provided with a heat generating pattern, a belt that rotates around the substrate, and a pressure roller, with the substrate and the belt in contact with each other.Furthermore, the fixing unit 5 may also be configured to include a fixing roller, a heater for increasing the temperature of the fixing roller, and a pressure belt.

[0092] Furthermore, although the sheet P is described as being plain paper, the type of sheet P is not limited to this and may be, for example, thick paper or thin paper. Furthermore, the magnitude of the fixing temperature Q3 may be varied depending on the type of sheet P. That is, the thicker the sheet P, the higher the fixing temperature Q3 may be.

[0093] In the multifunction peripheral 1 of the first and second embodiments, when the preview setting is set, the heating process (S13, S32) is executed when the start key 112D is pressed, but this is not limiting. The heating process may also be started when the sheet P is fed by the feed rollers 23, or when the passage of the sheet P is detected by a sheet sensor (not shown) provided upstream of the registration rollers 24 on the conveying path R1.

[0094] In the above-described first and second embodiments, the case where the images of a plurality of original documents are read using the ADF 31 has been described, but the present invention is not limited to this. The image of a single original document placed on the upper surface of the contact glass 33 may be read by the image reading unit 35, and the read image may be formed on the sheet P.

[0095] [Software implementation example] The control block of the multifunction peripheral 1 (particularly the CPU 101) may be realized by a logic circuit (hardware) formed on an integrated circuit (IC chip) or the like, or may be realized by software.

[0096] In the latter case, the multifunction device 1 includes a computer that executes instructions of a program, which is software that realizes each function. This computer includes, for example, one or more processors and a computer-readable recording medium that stores the program. The object of the present invention is achieved by having the processor in the computer read and execute the program from the recording medium.

[0097] The processor may be, for example, a CPU (Central Processing Unit). The recording medium may be a "non-transitory tangible medium," such as a ROM (Read Only Memory), a tape, a disk, a card, a semiconductor memory, or a programmable logic circuit. The computer may also be provided with a RAM (Random Access Memory) for expanding the program.

[0098] The program may be supplied to the computer via any transmission medium capable of transmitting the program (such as a communication network or broadcast waves). Note that one aspect of the present invention may also be realized in the form of a data signal embedded in a carrier wave, in which the program is embodied by electronic transmission.

[0099] The present invention is not limited to the above-described embodiments, and various modifications are possible within the scope of the claims. Embodiments obtained by appropriately combining the technical means disclosed in different embodiments are also included in the technical scope of the present invention. [Explanation of symbols]

[0100] 1 Multifunction device 2 Printer section 3 Scanner section 4 Image forming unit 5 Fixing unit 23 Feeding roller 31 ADF 35 Image reading unit 51 Fuser roller 52 Pressure roller 53 Heater 91 Motor 92 Motor 93 Feeding clutch 101 CPU 110 Operation Panel 111 Display section 112 Operation section Q1 1st preparation temperature Q2 Second preparation temperature Q3 Fixing temperature S2, S22 Image reading process S5, S9, S25, S28 conversion process S11, S30 display processing S13, S32 Heat treatment S18, S37 Image formation processing S15, S34 Roller drive processing S17,S36 Feeding start processing

Claims

1. a conveying unit that conveys a sheet; an image forming unit that forms a developer image on the sheet conveyed by the conveying unit; a fixing device having a heating section for heating the sheet and fixing the developer image on the sheet; an image reading unit that reads an image of a document; a display unit for displaying an image; A control unit; Equipped with The control unit an image reading process for reading an image of a document by the image reading unit; a conversion process for converting the read image, which is the image read by the image reading unit in the image reading process, into raster data; a heating process in which the temperature of the heating section is heated to a fixing temperature, which is a temperature for fixing an image on a sheet; an image forming process in which, after the heat treatment, a developer image is formed on the sheet by the image forming unit and the developer image is fixed to the sheet by the fixing device; Run When a preview setting is set to display a preview image corresponding to the read image on the display unit, after the conversion process is performed, a display process is performed to display the preview image on the display unit, and when an instruction to perform the image formation process is issued, While carrying out the heat treatment, An image forming apparatus characterized in that, when the preview setting is not made, a preheating process is performed to preheat the heating unit to a temperature lower than the fixing temperature, and then the heating process is performed without performing the display process.

2. The control unit In the image reading process, an image of at least one page of the document is read by the image reading unit; In the conversion process, at least one page of the scanned image is converted into raster data; In a ready mode in which the temperature of the fixing device is maintained at a first preparation temperature that is lower than the fixing temperature, When the preview setting is set, the conversion process and the display process are executed while maintaining the temperature of the fixing unit at the first preparation temperature, and the temperature of the fixing unit is increased from the first preparation temperature to the fixing temperature in the heating process. The image forming apparatus according to claim 1, characterized in that, when the preview setting is not set, the preheating process preheats the heating unit to a second preparation temperature higher than the first preparation temperature, and the heating process is performed after the conversion process of the first page is completed.

3. The control unit In a sleep mode in which the heating unit is turned off, If the preview setting is set, after the image reading process is performed, the temperature of the heating unit is increased from room temperature to the first preparation temperature, and the temperature of the fixing unit is maintained at the first preparation temperature, and then the heating process is performed; 3. The image forming apparatus according to claim 2, wherein, when the preview setting is not performed, the heating process is performed after the temperature of the fixing unit reaches the first preparation temperature by the preheating process.

4. The control unit 4. The image forming apparatus according to claim 3, wherein, in the sleep mode, if the preview setting is not set, the heating process is started when the temperature of the fixing unit reaches the first preparation temperature through the preheating process.

5. The control unit In the ready mode, if the preview setting is not made, The image forming apparatus according to claim 2, characterized in that the conversion process is started after the preheating process is started, and if the conversion process for the first page is not completed even after a predetermined time has elapsed since the start of the conversion process, the temperature of the heating unit is changed from the second preparation temperature to the first preparation temperature.

6. a first drive source; A second drive source; a feeding roller for feeding a sheet; a feed clutch switchable between a transmission state in which the driving force from the first drive source is transmitted to the feed roller and a disconnection state in which the driving force of the first drive source is not transmitted to the feed roller; Further provided with the fixing unit has a roller driven by the second driving source, The control unit a roller driving process of starting driving the roller by driving the second driving source after starting the heating process; a feeding start process for starting rotation of the feeding roller by bringing the feeding clutch into a transmission state after the roller driving process is executed; 6. The image forming apparatus according to claim 1, further comprising:

7. an image reading step of reading an image of a document; a conversion step of converting the read image, which is the image read in the image reading step, into raster data; a heating step of heating the fixing device to a fixing temperature for fixing an image on a sheet; an image forming step of forming a developer image on the sheet by an image forming unit after the heating step is performed, and fixing the developer image on the sheet by the fixing device; Including, When a preview setting is set to display a preview image corresponding to the read image on a display unit, after the conversion step is completed, a display step is executed to display the preview image on the display unit, and the heating step is executed in response to an instruction to execute the image forming step. An image forming method characterized in that, when the preview setting is not made, after performing a preheating step of preheating the fixing unit to a temperature lower than the fixing temperature, the heating step is performed without performing the display step.

Citation Information

Patent Citations

  • Image forming device

    JP1992372979A

  • Image forming apparatus

    JP2015069039A

  • Image forming apparatus, power-saving returning method, and power-saving returning program

    JP2018169560A

  • Image forming apparatus

    JP2021099441A

  • Image forming apparatus having the function of an advertisement display, and method for an ad displaying thereof

    KR1020130059616A