1. Field of the Invention
The invention relates to a recording apparatus for recording an image by applying ink which is supplied from an ink tank onto a recording medium and a detecting method of a remaining amount of the ink in the ink tank and, more particularly, to a recording apparatus having a detecting mechanism which can detect that the remaining amount of the ink in the ink tank is equal to or less than a predetermined amount and a remaining ink amount detecting method.
2. Description of the Related Art
Hitherto, a method of optically detecting whether or not a remaining amount of ink in an ink tank for enclosing the ink is equal to or less than a predetermined amount or a method of optically detecting the presence or absence of the ink has been known. For example, in Japanese Patent Application Laid-Open No. H08-112907, there has been disclosed a method whereby in order to detect a remaining amount of ink in an ink tank having a negative pressure generating member (absorber), light is made to pass through a part of a light transmissive ink tank wall surface and a change in light reflectance of a boundary portion between the wall surface and the negative pressure generating member is detected.
In Japanese Patent Application Laid-Open No. H07-218321, there has been disclosed an ink tank having an optical ink detecting section which is formed by a light transmissive member made of the same material as that of the ink tank in which an interface with ink and which has a predetermined angle from an optical path. Further, in Japanese Patent Application Laid-Open No. H09-29989 or Japanese Patent Application Laid-Open No. 2000-198222, there has been disclosed a technique for detecting the presence or absence of ink and the presence or absence of an ink tank by one photosensor in which a light emitting device and a light receiving device are constructed in common.
In addition, in Japanese Patent Application Laid-Open No. H07-89090, there has been disclosed an apparatus for detecting the presence or absence of a liquid enclosed in a liquid enclosing container having a negative pressure generating member enclosing chamber and a liquid enclosing chamber communicating with the negative pressure generating member enclosing chamber.
A conventional remaining ink amount detecting mechanism using a light transmissive prism will be described with reference to
If the ink tank has sufficiently been filled with the ink, the incident light passes along a path of [an optical path (1)→an optical path (2)′] and is not returned to the light receiving device 1063. On the contrary, if the ink has been consumed and the little ink remains in the ink tank, the incident light is reflected by an oblique side portion of the prism 1060, passes along a path of [the optical path (1)→an optical path (2)→an optical path (3)], and reaches the light receiving device 1063. As mentioned above, the presence or absence of the ink is detected by checking whether or not the light irradiated from the light emitting device 1062 is returned to the light receiving device 1063. The light emitting device 1062 and the light receiving device 1063 are provided on the recording apparatus main body side.
The optical remaining ink amount detecting mechanism described above can be considered to be a rational method as a method whereby whether or not the remaining amount of the ink in the ink tank is equal to or less than the predetermined amount is discriminated or the presence or absence of the ink is detected at low costs.
Further features of the present invention will become apparent from the following description of exemplary embodiments (with reference to the attached drawings).
Under an environment of a high temperature, dispersibility of a coloring agent in the ink becomes unstable and the coloring agent is liable to be adsorbed into an inner wall of the ink tank. Particularly, such a phenomenon is typical in the case of using ink of a dispersed system. As ink of the dispersed system, for example, there can be mentioned: water pigment ink in which a pigment as a coloring agent has been dispersed into the water by a dispersing agent; water pigment ink using a pigment of a self-dispersing type in which by improving the surface of the pigment, the pigment can be stably dispersed without using the dispersing agent. Further, microemulsion ink in which an oil dye has been emulsion-dispersed is also incorporated in the ink of the dispersed system.
As mentioned above, if the coloring agent has been adsorbed into the inner wall of the ink tank, the light which entered the ink tank is absorbed by the coloring agent. Thus, in spite of the state where no ink remains in the liquid enclosing chamber of the ink tank, it is erroneously determined that the ink still remains. If such an erroneous decision occurs, it is difficult to notify the user of the absence of ink at proper timing.
The invention is made in consideration of such a problem. In a construction using a detecting mechanism which can optically detect whether or not a remaining ink amount is equal to or less than a predetermined amount, it is an object of the invention to provide a recording apparatus in which even in the case where a coloring agent has been adhered onto an inner wall of a tank and the optical detection cannot be accurately performed, it is possible to detect that the remaining ink amount is equal to or less than the predetermined amount and to provide a remaining ink amount detecting method.
Another object of the invention is to provide an ink jet recording apparatus and a remaining ink amount detecting method which can properly notify the user of when the exhaustion of ink occurs.
To accomplish the above objects, according to the invention, there is provided a recording apparatus for recording an image on a recording medium by applying ink which is supplied from an ink tank, comprising: first detecting means adapted to optically detect whether or not an ink amount in the ink tank is equal to or less than a predetermined amount; second detecting means adapted to detect whether or not the ink amount in the ink tank is equal to or less than the predetermined amount on the basis of information corresponding to an amount of ink consumed by a recording operation and a recovery operation; and notifying means adapted to notify of information showing that the ink amount in the ink tank is equal to or less than the predetermined amount if it is detected by either the first detecting means or the second detecting means that the ink amount in the ink tank is equal to or less than the predetermined amount.
According to the invention, there is provided a recording apparatus for recording an image on a recording medium by applying ink which is supplied from an ink tank onto a recording medium, comprising: first discriminating means adapted to discriminate whether or not an ink amount in the ink tank is equal to or less than a predetermined amount by using an optical sensor; calculating means adapted to calculate a value corresponding to an amount of ink consumed in the ink tank; and second discriminating means adapted to discriminate whether or not the ink amount in the ink tank is equal to or less than the predetermined amount on the basis of the calculated value, wherein even when it is determined by the first discriminating means that the ink amount in the ink tank is larger than the predetermined amount, if it is determined by the second discriminating means that the ink amount in the ink tank is equal to or less than the predetermined amount, information showing that the ink amount in the ink tank is equal to or less than the predetermined amount is notified.
According to the invention, there is provided a recording apparatus for recording an image on a recording medium by applying ink which is supplied from an ink tank, comprising: a light emitting device adapted to irradiate light to a prism provided in an ink enclosing chamber in the ink tank; a light receiving device adapted to receive the reflection light from the prism; first discriminating means adapted to discriminate the presence or absence of the ink in the ink enclosing chamber on the basis of the presence or absence of light receiving of the light receiving device; and second discriminating means adapted to discriminate the presence or absence of the ink in the ink enclosing chamber on the basis of information regarding an amount of ink consumed in the ink tank, wherein if the absence of the ink is determined by either the first discriminating means or the second discriminating means, information indicative of the absence of the ink is notified.
According to the invention, there is provided a method of detecting a remaining amount of ink in an ink tank mounted in a recording apparatus, comprising: a first detecting step of optically detecting whether or not the ink amount in the ink tank is equal to or less than a predetermined amount; a second detecting step of detecting whether or not the ink amount in the ink tank is equal to or less than the predetermined amount on the basis of information corresponding to an amount of ink consumed by a recording operation and a recovery operation; and a notifying step of notifying of information showing that the ink amount in the ink tank is equal to or less than the predetermined amount if it is detected in either the first detecting step or the second detecting step that the ink amount in the ink tank is equal to or less than the predetermined amount.
According to the invention, there is provided a method of detecting a remaining amount of ink in an ink tank mounted in a recording apparatus, comprising: a first discriminating step of discriminating whether or not the ink amount in the ink tank is equal to or less than a predetermined amount by using an optical sensor; a calculating step of calculating a value corresponding to an amount of ink consumed in the ink tank; and a second discriminating step of discriminating whether or not the ink amount in the ink tank is equal to or less than the predetermined amount on the basis of the calculated value, wherein even when it is determined in the first discriminating step that the ink amount in the ink tank is larger than the predetermined amount, if it is determined in the second discriminating step that the ink amount in the ink tank is equal to or less than the predetermined amount, information showing that the ink amount in the ink tank is equal to or less than the predetermined amount is notified.
According to the invention, there is provided a method of detecting a remaining amount of ink in an ink tank mounted in a recording apparatus having a light emitting device for irradiating light to a prism provided in an ink enclosing chamber in the ink tank and a light receiving device for receiving the reflection light from the prism, comprising: a first discriminating step of discriminating the presence or absence of the ink in the ink enclosing chamber on the basis of the presence or absence of the light receiving of the light receiving device; and a second discriminating step of discriminating the presence or absence of the ink in the ink enclosing chamber on the basis of information regarding an amount of ink consumed in the ink tank, wherein if the absence of the ink is determined in either the first discriminating step or the second discriminating step, information indicative of the absence of the ink is notified.
According to the invention, even if an error occurred in a result of the detection by the optical detecting mechanism for optically detecting whether or not the remaining amount of ink in the ink tank is equal to or less than the predetermined amount, the correct situation of the remaining amount of ink in the ink tank can be detected. Therefore, it is possible to notify at proper timing that the remaining amount of ink in the ink tank is equal to or less than the predetermined amount.
Further features of the present invention will become apparent from the following description of exemplary embodiments (with reference to the attached drawings).
A preferred embodiment of the invention will be described in detail hereinbelow with reference to the drawings.
In
When the recording corresponding to the scan of the recording head 1 is finished, the recording operation is interrupted. The recording medium locating on a platen 8 is conveyed by a predetermined amount by the driving of a feed motor 9. Subsequently, while the carriage 2 is moved again along the guide shaft 3, an image corresponding to the next one scan is formed. A driving force of the feed motor 9 is transferred not only to an inherent recording medium conveying mechanism but also to an automatic sheet feeder (ASF) 13.
A recovery device 10 to execute the recovery operation for keeping a good ink discharge state of the recording head 1 is arranged on the right side of the apparatus main body. The recovery device 10 has: a cap 11 for capping the recording head 1; a wiper 12 for wiping an ink discharge surface of the recording head 1; a suction pump (not shown) for sucking the ink from an ink discharge nozzle of the recording head 1; and the like.
Further, an optical unit 14 constructed by an infrared LED (light emitting device) 15 and a phototransistor (light receiving device) 16 is provided beside the recovery device 10. The light emitting device 15 and the light receiving device 16 are arranged in parallel along the conveying direction (direction shown by an arrow F) of the recording paper. The optical unit 14 is attached to a chassis 17 of the apparatus main body. When the ink cartridge 20 is mounted on the carriage 2 and moved to the right than a position shown in
Subsequently, a control construction for executing recording control of the recording apparatus shown in FIG. 1 will be described.
The operation of the above control construction will be described. When the recording signal is inputted to the interface 1700, the recording signal is converted into the recording data for printing between the gate array 1704 and the MPU 1701. The motor drivers 1706 and 1707 are driven under the control of the MPU 1701 and the recording head 1 is driven in accordance with the recording data sent to the head driver 1705, so that the recording is performed.
Reference numeral 1710 denotes a display section having: an LCD 1711 for displaying various messages regarding the recording operation and the state of the recording apparatus; and an LED lamp 1712 of various colors for notifying the apparatus of the recording operation and the state of the recording apparatus.
Liquid droplet number detecting means, what is called, a dot counter (not shown) for counting the number of ink droplets discharged from the recording head is provided for the gate array 1704. The dot counter can count both of the number of ink droplets which are discharged to form an image and the number of ink droplets which are discharged for a preliminary discharge which is executed as a part of a recovery process.
In the embodiment, since consumed ink amounts in each ink tank in various suction recovery processes have previously obtained by experiments, the consumed ink amount in the case where the suction recovery process has been executed can be managed every ink tank. Therefore, in the embodiment, the amount of consumed ink can be calculated by summing the amount obtained by multiplying the number of dots counted by the dot counter mentioned above by an amount of the ink droplet and the consumed ink amount in association with the suction recovery process. This calculation is also executed by the gate array 1704.
As mentioned above, in the embodiment, the amount of ink consumed by the recording operation and the recovery operation is calculated by a data arithmetic operation. Means having such a calculating function is called “consumed ink amount calculating means”. The consumed ink amount calculating means is included in the gate array 1704.
The calculated consumed ink amount is written into a memory area (not shown) of the ink tank 7 mentioned above at predetermined timing. In the present recording apparatus, by writing the information similar to that mentioned above into a non-volatile memory (EEPROM) equipped for the recording apparatus, the information can be backed up. The operation of a remaining ink amount detecting section 25 for detecting the presence or absence of the remaining ink amount in the liquid enclosing chamber 360 of the ink tank 7 integrated with the recording head 1 is controlled by the MPU 1701. The remaining ink amount detecting section 25 will be described in detail hereinafter.
In the construction shown in
The infrared light is reflected by the optical prism (hereinafter, simply referred to as a prism) 180 and returned to the light receiving device 16 constructing the optical unit 14. The light receiving device 16 as a phototransistor converts the received light into an electric signal and outputs the electric signal to a low pass filter (LPF) 31. The LPF 31 cuts high frequency noises in the electric signal inputted from the light receiving device 16 and sends only the signal of low frequencies to the controller 32. The controller 32 A/D-converts the output signal from the LPF 31 into a digital signal. Converted digital values are transferred to the MPU 1701.
As shown in
An outline of a construction of the ink tank which can be applied to the invention will now be described with reference to
The ink tank 7 has a memory section (not shown) which can store the information such as a consumed ink amount and the like. The information from the recording apparatus can be written into the memory section at predetermined timing through a memory contact section (not shown) provided on the carriage. The ink tank 7 has almost a rectangular parallelepiped shape. An atmosphere communication port 120 as a hole communicating with the inside of the ink tank is formed in an upper wall 7U of the ink tank 7.
An ink supply tube 140 having an ink supply port is formed in a lower wall 7B of the ink tank 7 so as to be projected like a tube. In a physical distribution process, the atmosphere communication port 120 has been sealed with a film or the like. The ink supply tube 140 is sealed by being closed by a cap as an ink supply port sealing member. Reference numeral 160 is a lever member which is integratedly molded in the outside of the ink tank 7 so as to be freely elastically deformed. A projection for retaining is formed in an intermediate portion of the lever member 160.
Reference numeral 200 is the head holder which is formed integratedly with the recording head and to which the ink tank 7 is attached (refer to
A plurality of discharge ports are downwardly formed in the recording head 1 (hereinbelow, the surface of the head in which the discharge ports have been formed is called “discharge port forming surface”). The ink tank 7 is attached to the head holder 200 from the state shown in
An internal structure of the ink tank 7 will now be described with reference to
A plurality of ribs 420 are integratedly molded to the upper wall 7U of the ink tank 7 forming the negative pressure generating member enclosing chamber 340 so as to be projected to the inside of the ink tank. The ribs 420 are in contact with the absorber 320 which is enclosed in a compressing state in the negative pressure generating member enclosing chamber 340. In this manner, an air buffer chamber 440 is formed between the upper wall 7U and the upper surface of the absorber 320. The absorber 320 is made of a thermo compression urethane foam and enclosed in the negative pressure generating member enclosing chamber 340 in the compressing state so as to generate a predetermined capillary force, as will be explained hereinafter. An absolute value of a pore size of the absorber 320 to generate the predetermined capillary force differs depending on the kind of ink which is used, dimensions of the ink tank 7, a position (head difference H) of the discharge port forming surface of the recording head 1, and the like.
A disk-shaped or columnar pressure contact member 460 is arranged in the ink supply tube 140 forming an ink supply port 140A. The pressure contact member 460 is made of, for example, a felt of polypropylene. The pressure contact member itself is not easily deformed by an external force. In the state shown in
When the ink in the absorber 320 is consumed in the ink tank as shown in
Therefore, by providing the prism 180 serving as a part of the remaining ink amount detecting mechanism for the liquid enclosing chamber 360 of the ink tank as mentioned above, the user can detect that the ink in the liquid enclosing chamber 360 has been consumed, so that the user can be notified that the ink has been exhausted.
In the embodiment, the prism 180 functions as an ink presence/absence detecting section mentioned above.
The prism 180 has a shape of a triangular prism as an isosceles triangle whose vertical angle is equal to 90°. Therefore, if a length (a) of the bottom side of the isosceles triangle and a length (b) in the prismatic direction (direction perpendicular to the paper in
By providing the ink presence/absence detecting section (for example, prism) for the ink tank as mentioned above, the optical detection in which the error is smaller than that in the remaining amount detection by the consumed ink amount calculating means (hereinbelow, referred to as “data arithmetic operation detection”) can be performed. However, the optical detecting mechanism is not always perfect but there is a case where an erroneous detection occurs. That is, as mentioned above, if the coloring agent is adhered to the prism, in spite of the fact that no ink remains in the liquid enclosing chamber of the ink tank, it is determined that the ink exists. If the presence of the ink is determined in spite of the absence of the ink, the apparatus cannot notify the user that the ink has been exhausted.
In the embodiment, in order to make it possible to notify the user of the ink exhaustion even if such an erroneous detection occurred, in addition to the optical detecting mechanism, the data arithmetic operation detecting mechanism is also used, thereby discriminating the presence or absence of the ink. Specifically speaking, as shown in
In the recording apparatus of the embodiment, the number of dots in the case where about one sheet of solid painted image has been printed to the whole surface of the recording paper of A4 as a maximum size is set as a threshold value. If the count value does not reach the threshold value in step S2, the ink presence/absence detection is not executed and the processing routine is finished. If the count value has reached the threshold value in step S2, the ink presence/absence detection is executed (step S3).
If it is determined that no ink exists in the liquid enclosing chamber 360 in the ink tank 7 as a result of the ink presence/absence detection in step S3, a remaining ink amount warning flag is set to ON in step S6 and the processing routine is finished. On the basis of information of the remaining ink amount warning flag, the user is notified that the ink in the ink tank has been exhausted through the display section having the LED lamp 1712 of various colors (refer to
If it is decided in step S4 that the ink exists in the liquid enclosing chamber 360 in the ink tank, step S5 follows. In step S5, whether or not the value showing the consumed ink amount (specifically speaking, the amount of ink which is consumed in association with the recording operation and the recovery operation) which is calculated by the consumed ink amount calculating means has reached a predetermined level corresponding to the ink exhaustion is discriminated. Thus, if such a value has reached the predetermined level, the remaining ink amount warning flag is set to ON in step S6 and the processing routine is finished. That is, even when the presence of the ink has been determined by the optical detection, if the ink exhaustion is decided by the data arithmetic operation, the user is preventively notified of a warning of the ink exhaustion. Thus, even in the case where the coloring agent has been adhered onto the inner wall of the ink tank and the optical detection is not accurately performed, it is possible to early notify the user of the ink exhaustion. On the other hand, if the value corresponding to the consumed ink amount calculated by the consumed ink amount calculating means does not reach the predetermined level, the results of both of the optical detection and the data arithmetic operation indicate that the ink exists. In this case, since there is hardly a possibility of the occurrence of the ink exhaustion, the warning of the ink exhaustion is not made and the processing routine is finished as it is.
In the embodiment, as a method of notifying the user of the information indicative of the ink exhaustion, the method of displaying the ink exhaustion information onto the display section of the recording apparatus or the display section of the host apparatus connected to the recording apparatus has been used. However, the information indicative of the ink exhaustion is not limited to the display information but may be, for example, voice information.
In the embodiment, since the ink tank as shown in
As described above, according to the embodiment, both of the means for discriminating the absence of the ink by using the optical sensor and the means for discriminating the absence of the ink on the basis of the consumed ink amount are used. Therefore, even if there has occurred such a situation that a part of the compositions of the liquid such as a coloring agent or the like has been adhered and remained onto the surface of the prism in the ink tank, so that the presence or absence of the remaining ink amount in the ink tank cannot be accurately detected, the inconvenience due to the optical detection can be recovered and the user can be stably notified of the remaining ink amount in the ink tank.
The presence or absence of the remaining ink amount in the liquid enclosing chamber (ink enclosing chamber) in the ink tank is optically detected in the foregoing embodiment. That is, whether or not the remaining ink amount is substantially equal to zero is discriminated. However, the invention is not limited to such an example. A point of time when it is possible to decide that the remaining ink amount is small can be also detected instead of detecting a point of time when the remaining ink amount is substantially equal to zero.
Although the ink tank having the absorber as shown in
While the present invention has been described with reference to exemplary embodiments, it is to be understood that the invention is not limited to the disclosed exemplary embodiments. The scope of the following claims is to be accorded the broadcast interpretation so as to encompass all such modifications and equivalent structures and functions.
While the present invention has been described with reference to exemplary embodiments, it is to be understood that the invention is not limited to the disclosed exemplary embodiments. The scope of the following claims is to be accorded the broadest interpretation so as to encompass all such modifications and equivalent structures and functions.
This application claims priority from Japanese Patent Application No. 2005-199967 filed on Jul. 8, 2005, which is hereby incorporated by reference herein.
Number | Date | Country | Kind |
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2005-199967 | Jul 2005 | JP | national |
This application is a continuation of International Application No. PCT/JP2006/313915, filed Jul. 6, 2006, which claims the benefit of Japanese Patent Application No. 2005-199967, filed Jul. 8, 2005.
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Number | Date | Country | |
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Number | Date | Country | |
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Parent | PCT/JP2006/313915 | Jul 2006 | US |
Child | 11515712 | US |