The embodiment of the present invention will hereinafter be described in detail with reference to the drawings.
To begin with, the overall configuration of an image forming apparatus 1 according to the present embodiment will be described.
Image forming apparatus 1 according to the present embodiment includes an image reader 40A (
As shown in
The original placement table 2, scanner portion 3 and automatic document processor 40 and others constitute the image reader 40A.
Arranged under scanner portion 3 are an image forming portion 10, a fixing unit 30 and a paper discharge portion 22. Provided further below is a paper feed cassette 23 which stores recording paper as recording media.
Scanner portion 3 is essentially composed of first and second scanner units 4 and 5 which are arranged under original placement table 2 and move reciprocatively in parallel therewith, an original image reading unit including a CCD (photoelectric transducer) 7 and an exposure lamp (light source) 3A.
Exposure lamp 3A has a light source and an optical lens element, and is fixed on one end side inside the body of scanner portion 3, at a position opposing the side end of first scanner unit 4 with respect to the main scan direction and in an area where it will not interfere with the movement of first scanner unit 4 and second scanner unit 5, and illuminates first scanner unit 4 along the sub-scan direction of scanner portion 3.
In the drawing, the optical path of the emitted light from exposure lamp 3A is shown with a dashed line.
CCD (charge coupled device) 7 reads the light image of an original image and photoelectrically converts it into electric signals to thereby create original image information (original image data) and outputs the original image information to an aftermentioned image processor 57 (see
Image processor 57 performs image processing on the original image information output from CCD 7 to produce printing image information (printing image data) with a resolution, density, etc. suited for printing. The printing image information obtained as a result of the image processing is transferred to an image data input portion of a laser scanning unit (LSU) 8.
Laser scanning unit 8 emits laser beams in accordance with the printing image information output from image processor 57 to illuminate the surface of a photoreceptor drum 11 as a constituent of image forming portion (image forming process) 10. Thereby, an electrostatic latent image of the printing image information is written on photoreceptor drum 11.
As shown in
Main charger 12 of image forming portion 10 also has the function of an unillustrated charge erasing device for erasing electricity on the photoreceptor drum 11 surface after cleaning by cleaning unit 15.
Fixing unit 30 has a heat roller 31 and a pressing roller 32 as shown in
The paper P with a toner image transferred thereon as it being nipped between photoreceptor drum 11 and transfer roller 14 is separated from photoreceptor drum 11 and conveyed along a main conveying path 16 that joins the photoreceptor drum 11 and fixing unit 30 into and between heat roller 31 and pressing roller 32 of the fixing unit 30. Heat roller 31 and pressing roller 32 abut each other with a predetermined pressing force, forming a nip portion at that contact.
In fixing unit 30, the paper P held between heat roller 31 and pressing roller 32, i.e., at the nip portion, is heated by heat roller 31 and pressed by pressing roller 32, so that the unfixed toner image that has been transferred from the photoreceptor drum 11 is fixed to the paper P.
The paper P after the fixing by fixing unit 30 is conveyed to paper discharge path 17 and further conveyed by a paper discharge drive roller 18 toward a paper discharge roller 19 on the paper discharge port 20 side.
The passage status of paper P being conveyed into paper discharge path 17 is detected by a fixing detection switch 21A arranged downstream of fixing unit 30 when the paper P passes by the nip between heat roller 31 and pressing roller 32.
For a case of usual one-sided printing, the paper is directly conveyed by the rotational drives of paper discharge drive roller 18 and paper discharge roller 19 and discharged through paper discharge port 20 onto a paper output tray 22a which is formed in a space under scanner portion 3. The passage status of paper P through paper discharge roller 19 is adapted to be detected by a paper discharge detecting switch 21B arranged upstream of paper discharge roller 19.
Paper P is discharged to the side of the image forming portion 10 and the discharged paper P is output over cassette 23 and under scanner portion 3.
Arranged at the inner bottom of main apparatus body la is an exchangeable paper feed cassette 23, in which a stack of recording paper P of a predetermined paper size is accommodated. A crescent-shaped sheet pickup roller 24 is arranged over the paper delivering side of this paper feed cassette 23.
This paper pickup roller 24 picks up the paper, sheet by sheet, from the topmost of a stack of paper P in paper feed cassette 23 and conveys the paper downstream (for convenience, the delivery side of recording paper P (the cassette side) is referred to as upstream and the direction of conveyance is referred to as downstream) to a registration roller (also called “idle roller”) 26 in paper feed path 25.
A reference numeral Pa in the drawing designates the front end of paper P and Pb designates the rear end of paper P.
Arranged on the upstream side of registration roller 26 is a pre-registration detection switch 21C. This pre-registration detection switch 21C detects paper P that is fed and conveyed from paper feed cassette 23. This signal is used to adjust the paper feed timing of the paper to be fed to the aforementioned image forming portion 10.
In the case where duplex printing is performed, after printing by image forming portion 10 has been performed on one side of paper P, the paper P is sent into paper discharge path 17 after passage through fixing unit 30, then once conveyed to the paper discharge roller 19 side. In this condition, a paper path switching gate 27 that is disposed near fixing unit 30 is changed over, then paper discharge roller 19 is driven in reverse so that the paper P is switched back and guided into a sub conveyance path 28 for reversing the paper. Then, the thus guided paper P is rotationally driven by a sub-drive roller (inversion roller) 29 provided on this sub conveyance path 28 and conveyed to the upstream side of registration roller 26 once again, so that printing on the other side of paper P is performed.
On original placement table 2 of main apparatus body la an automatic document processor (document conveyor) 40 of a document feed type reversing automatic document reader (R-SPF) integrated with an original presser (original pressing cover) 51a is mounted in an openable manner, so that it constitutes image reader 40A in combination with scanner portion 3.
Image reader 40A is constructed so as to be able to perform an original reading operation for an individual document in the same control manner as in the conventional apparatus, and provision of automatic document processor (document conveyor) 40 makes it possible to perform double-sided reading of original G and also perform automatic sequential reading of a multiple number of originals G.
As shown in
Provided on the upstream side of this PS roller 45 is a document input sensor 46 for enabling detection of the document size of original G. This document input sensor 46 detects the leading and trailing edges of original G, so that the original G can be controlled and conveyed to an original reading station 9 of a glass slit located adjacent to one side of original placement table 2, taking into account the timing of delivery based on the detected signals.
In this case, first scanner unit 4 of scanner portion 3 has been controlled and moved so that it is positioned for standby under document reading station 9.
As to the scan of original G that is conveyed over this document reading station 9, one side of the original, namely, the first image-scan side G1 is scanned at document reading station 9 by first scan unit 4 of scanner portion 3 while the original is being moved. Provided at this document reading station is a contact glass 102 which keeps the distance between the original and scanner portion 3 uniform.
Other operations such as image reading by CCD 7, image processing of image information, image forming including printing etc., are performed in the same manner as above.
The original G that has been scanned over contact glass 102 is then conveyed by a conveying roller 47 through a document discharge path 48 toward the document discharge roller 49 side.
When document reading is performed for one side only, the original is discharged onto a document output tray 51 by the switching control of a document switching gate 50.
When document reading is performed for both sides, by the switching control of document switching gate 50 original G is once discharged onto a middle tray 52 disposed between document tray 41 and document output tray 51, then is switched back into a document reversing path 53 by driving document discharge roller 49 in reverse. Then the original G is once again fed into document feed path 44 so that the original image on the underside of original G, namely the side G2 facing the image reader is scanned while the original image on the underside of original G is printed out on the first printing side P1 of paper P in the same manner as in the above-described one-side printing operation.
When this printing operation for the first printing side P1 of paper P has been finished, paper P is reversed by the above-described sheet reversing device, then fed again into image forming portion 10 so that the original image on the front side of original G that has been previously stored in the memory is printed on the second printing side P2.
As shown in
Paper discharge portion 22 is mainly comprised of paper discharge path 17, paper discharge drive roller 18, paper discharge roller 19, paper discharge port 20 and paper output tray 22a.
Arranged on the outer side of paper discharge port 20 (on the paper output tray 22a side) is a paper stack quantity detecting sensor 21D, also called a full stack detecting sensor.
Paper stack quantity detecting sensor 21D is mainly composed of a detecting piece 21D1 which operates when the paper discharged and stacked abuts the detecting piece, and a sensor body 21D2 which outputs a signal in accordance with the operation of detecting piece 21D1.
Detecting piece 21D1 has a rod-shaped configuration with its one end engaged with the sensor body 21D2 side so that the other end side can pivot on the first end, and the piece is arranged obliquely downward and outward from the apparatus side (paper discharge port 20 side).
With this structure, paper stack quantity detecting sensor 21D is adapted to output a detection signal from sensor body 21D2 as the second end of detecting piece 21D1 is pushed upward when the discharged amount of stacked paper has reached a predetermined amount (height).
Next, a specific paper conveyance path configuration for the image forming apparatus of the present embodiment will be described.
As shown in
Paper feed path 25 is extended approximately linearly but gently curved, from an unillustrated separation roller which separates the paper, sheet by sheet if double or multiple sheets of paper are fed and is located on the downstream side of paper pickup roller 24 with respect to the paper's direction of conveyance, to registration roller 26 arranged in the vicinity of the lower side (the upstream side with respect to the paper's direction of conveyance) of photoreceptor drum 11 of image forming portion 10.
Main conveyance path 16 is formed approximately linearly from the downstream side of registration roller 26 to fixing unit 30 by way of image forming portion 10, and is followed by a curved part 16a that bends smoothly extending approximately upward from the exit side (the downstream side with respect to the paper's direction of conveyance) of fixing unit 30 toward paper discharge drive roller 18 (to the left in the drawing).
Paper discharge path 17 is extended approximately linearly between paper discharge drive roller 18 and paper discharge roller 19. Here it should be noted that the configuration of paper discharge drive roller 18 is not limited to the above.
In order to invert and convey paper P by driving paper discharge roller 19 in reverse, sub conveyance path 28 is joined to curved part 16a of main conveyance path 16 is configured so as to guide the paper that is switched back, by switching paper path switching gate 27 and convey the paper downwards by means of inversion roller 29 toward registration roller 26, once again.
Specifically, sub conveyance path 28 includes a first curved part 28a for deflecting the direction of movement of paper P that is conveyed in reverse from paper discharge path 17 towards the bottom of the machine and a second curved part 28b for deflecting the direction of movement of paper P that is conveyed around the bottom of the machine towards the registration roller 26.
Next, the control system of image forming apparatus 1 according to the embodiment will be described in detail with reference to the drawings.
As shown in
In image forming apparatus 1, the image information of an original (original image data) captured by scanner portion (original reading portion) 3, or original image information transmitted from other terminal devices connected via an unillustrated communication network, is adapted to be input to image processing portion 57 by way of a communication processor 58.
Image processor 57 shapes the original image information stored in the storage such as RAM 56 or the like into a printing image that is suitable for printing (image forming onto paper), in accordance with the aforementioned program.
The printing image information is input to image forming portion 10.
Image forming portion 10, paper conveying portion (performing various detections and controls of paper P in paper feed path 25, main conveyance path 16 and sub conveyance path 28 (these are also called paper guides)) 59, fixing unit 30 and paper discharge processor (performing various detections and controls of paper P in paper discharge path 17) 60 are linked with respective drive controllers 62.
Paper conveying portion 59 conveys paper P through the printing stage (image information is printed in image forming portion 10) and the fixing stage where the paper P having been printed is fixed (in fixing unit 30) and then discharges the sheet to paper discharge portion (paper output tray 22a).
Here, paper conveying portion 59 receives detection signals from fixing detection switch 21A, paper discharge detecting switch 21B, pre-registration detection switch 21C etc.
Image forming apparatus 1 has an operational condition setter 77. This operational condition setter 77 sets up operational conditions for image forming and conditions of conveyance etc., in image forming apparatus 1, in accordance with the image forming request and the image forming conditions such as the type of recording media etc., designated by the user through control switches 76.
Further, in image forming apparatus 1, based on the set operating conditions, drive controller 62 is adapted to control drive actuators for the aforementioned scanner portion 3, paper conveying portion 59, image forming portion 10, fixing unit 30, paper discharge processor 60 etc., namely, an original reading driver 64, a paper conveyance driver 66, a printing process driver 68, a fixing driver 70 and a paper discharge driver 72 so that they can operate in synchronization with instructions from CPU 54 in accordance with the program stored in ROM 55.
Paper discharge processor 60 makes control of a paper discharge process of discharging the printed paper to the paper output tray and performs the paper discharge process based on the signal output from paper stack quantity detecting sensor 21D.
Original reading driver 64 includes a drive actuator for the first scan unit 4 and the second scan unit 5 of scanner portion 3.
Paper conveyance driver 66 means paper conveying portion 59, specifically, drive motors for paper pickup roller 24 and registration roller 26 along the aforementioned paper feed path 25.
Printing process driver 68 is a drive motor for photoreceptor drum 11.
Fixing driver 70 includes drive motors for heat roller 31 and pressing roller 32 in fixing unit 30.
Paper discharge driver 72 includes drive motors for paper discharge drive roller 18, paper discharge roller 19 etc. All these drive motors of the drivers may be configured of common or different motors or drive sources with appropriate power transmission mechanisms.
Further, image forming apparatus 1 may be used with automatic document processor (document conveyor) 40 as an optional configuration 74. Each optional configuration 74 incorporates an individual controller 74a separately from the controller of the image forming apparatus 1 so as to operate in synchronization with the main apparatus by performing timing adjustment via the aforementioned communication processor 58.
A recording medium detecting portion 78 detects arrival of the leading end of the recording medium at fixing unit 30 or the discharge portion. Recording medium detecting portion 78 is adapted to detect the timings at which the paper P arrives at (enters) fixing unit 30 and paper discharge drive roller 18, based on the conveyance timing of the recording medium detected by an aftermentioned conveyance timing detecting portion 79b.
Specifically, recording medium detecting portion 78 includes: a conveyance time measuring portion 79a for measuring the time of conveyance of paper P from when the paper P is delivered from registration roller 26 at the entrance of paper feed path 25 where the paper P is introduced; and a conveyance timing detecting portion 79b for detecting the timings at which paper P is conveyed in main conveying path 16 and in paper discharge path 17, based on the distances from registration roller 26 to fixing unit 30 and paper discharge drive roller 18 to be controlled and the paper P's speed of conveyance.
Next, image reader 40 which characterizes the present embodiment will be described in detail with reference to the drawings.
In automatic document processor 40 according to the present embodiment, as shown in
These document positioning plates 41a are arranged so as to hold originals G sideways therebetween and adapted so that the width or distance between document positioning plates 41a and 41a can be adjusted in accordance with the width size of originals G. Also, an unillustrated document size sensor is provided so as to detect the size of originals G based on the set position of document positioning plates 41a, and its detected result is supplied to an unillustrated controller.
Document pickup roller 42 is composed of two units (42a and 42b) arranged, side by side, along the direction (document width direction) approximately perpendicular to the direction of conveyance of loaded originals G, as shown in
In
Pickup roller holder 42c is constructed as shown in
In the bottom surface 42c1 of pickup roller holder 42c, a cam-actuated part 42c3 that abuts an aftermentioned cam element 142a or 142b is projectively formed on the opposite side across drive shaft 43a from the document pickup roller 42 side.
Arranged at one end of drive shaft 43a is a driven gear 43b as shown in
A driven pulley 42e (
Arranged on the opposite side across document drive roller 43 from the side of document pickup rollers 42a and 42b is a pickup roller selecting mechanism (pickup roller selector) 142.
This pickup roller selecting mechanism 142 has a camshaft 142c on which cam elements (pickup roller shifters) 142a and 142b which respectively correspond to two units of document pickup rollers 42a and 42b are integrally provided.
As shown in
The camshaft rotational position detector piece 142g in combination with photo interrupter 142h detects the rotational position of camshaft 142c so as to detect the initial position of operation (reference position).
Cam element 142a and 142b are arranged as shown in
With regard to the outer peripheral shapes of cam elements 142a and 142b, each element has a top dead center 142p1 and bottom dead center 142p2 formed at predetermined rotational angles.
For example, as describing the action of cam element 142a, when top dead center 142p1 of cam element 142a reaches the cam actuated part 42c3, cam actuated part 42c3 is pushed down, pivoting on drive shaft 43a. With this movement document pickup roller 42a is moved upwards in the drawing, separating from original G, as shown in
On the other hand, when bottom dead center 142p2 of cam element 142a reaches the cam actuated part 42c3, cam actuated part 42c3 returns to the original position. With this movement document pickup roller 42a moves downwards in the drawing, abutting original G, as shown in
Next, the operation of document pickup rollers 42 caused by pickup roller selecting mechanism 142 according to the present embodiment will be described in detail with reference to the drawings.
Document pickup rollers 42a and 42b are adapted to pivot (shift) in accordance with the rotational angles of cam elements 142a and 142b of pickup roller selecting mechanism 142 as the cam elements rotate.
To begin with, in the initial state of document pickup rollers 42a and 42b, the top dead centers of cam elements 142a and 142b are set to abut and press down cam actuated parts 42c3 of pickup roller holders 42c, so that document pickup rollers 42a and 42b are kept away from original G, as shown in
When the set position of document positioning plates 41a (
As camshaft 142c rotates by a predetermined amount, the bottom dead center 142p2 of cam element 142a reaches cam actuated part 42c3 so that cam element 142a moves pickup roller holder 42c of document pickup roller 42a upwards while document pickup roller 42a located at the center, which defines the reference of document feed, moves down in the drawing and takes the position of abutment against the original G, as shown in
In this situation, cam element 142b rotates keeping the position of its top dead center so as to keep document pickup roller 42b away from original G.
That is, in this case, document pickup roller 42a abuts original G while document pickup roller 42b is separated from original G.
In a case where a document of a different size is detected or where a different document set condition is detected, camshaft 142c is further rotated by a predetermined amount, and the bottom dead center 142p2 of cam element 142b reaches cam actuated part 42c3 so that cam element 142b moves pickup roller holder 42c of document pickup roller 42b upwards while document pickup roller 42b located at one side in the document width moves down in the drawing and takes the position of abutment against the original G, as shown in
In this situation, cam element 142a rotates keeping the position of its bottom dead center so as to keep document pickup roller 42a in abutment with original G.
That is, in this case, both document pickup rollers 42a and 42b take the positions of abutment against original G.
In the above way, it is possible to select the conditions of abutment of document pickup rollers 42a and 42b against original G, by turning camshaft 142c in accordance with the document size and the document set state so as to change the timings of abutment of cam elements 142a and 142b that abut respective pickup roller holders 42c in accordance with the amount of rotation of camshaft 142c.
Here, though in the present embodiment, the gravity acting on document pickup rollers 42a and 42b is used to apply the predetermined contact pressure against original G, it is also possible to control the contact pressure of document pickup rollers 42a and 42b against original G by arranging elastic elements such as coil springs, leaf springs, rubber material, etc. to respective pickup roller holders 42c, so as to urge document pickup rollers 42a and 42b against original G.
Further, though in the present embodiment, the document pickup rollers 42 to be operated are selected in accordance with the output signal that is output corresponding to the document size when document positioning plates 41a are set in accordance with the document size, it is also possible to previously set up an output signal depending on the document weighting and select the document pickup rollers 42 to be operated in accordance with this output signal.
It is also possible to provide a configuration in which the size of an original to be read is designated through a control panel so that the document pickup rollers 42 to be operated are selected in accordance with the designated document size when an output request is made.
Next, automatic feed of originals G by automatic document processor 40 according to the present embodiment will be described in detail with reference to the drawings.
When, for example, original G is set with its center adjusted to the center reference in accordance with the size of the original G, the document pickup roller 42a that is located at the approximate center in the document width is selected to operate by pickup roller selecting mechanism 142 (
On the other hand, when original G is set with its center not adjusted to the center reference, an example where an original G having a different size is mixed in a stack of loaded documents is the case. In this case, if the original G is conveyed by document pickup roller 42a, document pickup roller 42a comes into contact with this original G at a point displaced from its center. As a result, the original G is pulled with its side closer to the document pickup roller first, so that the original G is conveyed on a skew, as shown in
To avoid this, when original G is set with its center not adjusted to the center reference, the document pickup roller 42b that is located away from document pickup roller 42a is also selected to operate in combination with document pickup roller 42a as shown in
Here, the state in which original G is set with its center not adjusted to the center reference also includes the case where an original G is set with its side edge adjusted as a reference, the case where an original G is incorrectly stacked, the case where an original G is set with its lateral direction vertical or vice versa, and other cases, in addition to the aforementioned case where an original G having a different size is mixed in a stack of loaded documents.
According to the present embodiment thus constructed as described heretofore, since two units of document pickup rollers 42a and 42b which are located so as to abut original G at different positions are provided, and these document pickup rollers 42a and 42b are selected to operate by pickup roller selecting mechanism 142 in accordance with the set state of original G, it is possible to constantly feed and convey originals G correctly without causing any mis-feed, multiple page feeding and skewing pages.
As a variational example of the present embodiment, a registration roller 145 may be arranged adjacent to document drive roller 43 on its downstream side with respect to the document's direction of conveyance, as shown in
Further, though in the present embodiment, two document pickup rollers 42a and 42b are laid out at the center of original G and at a position near one side edge, the present invention should not be limited to the number and layout of pickup rollers. For example, a document pickup roller 242 having the same configuration as document pickup roller 42b and a cam element 242c corresponding to this document pickup roller 242 may be arranged on the opposite side with respect to the document width direction, as shown in
Also, the present invention should not be limited to the material of document pickup rollers 42. For example, it possible to develop the arrangement of the present invention into a configuration in which multiple units of document pickup rollers which are constituted of optimal materials supporting for different materials of documents may be provided so that these document pickup rollers are selectively operated in accordance with the material of the document to be handled.
Number | Date | Country | Kind |
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2006-130521 | May 2006 | JP | national |