FIELD OF THE INVENTION
[0001] The present invention relates to a feeding device for an apparatus such as a copying
machine, a laser printer, and an overhead projector, the feeding device being capable
of feeding copy material laterally or longitudinally oriented with respect to a feeding
direction. More particularly, the invention relates to a feeding device that has a
pivotal copy material holding plate for lifting up copy material, the holding plate
being let down when a copy material storing unit of the feeding device is removed
from the main body of the apparatus.
BACKGROUND OF THE INVENTION
[0002] There are conventionally known copying machines provided, under the main body thereof,
with a desk for accommodating several paper feed cassettes in tiers. Those copying
machines are capable of storing copy papers of various sizes in the cassettes, feeding
paper laterally or longitudinally oriented, and automatically selecting paper to be
fed, thereby reducing the operation required for changing papers to be used (see Japanese
Patent Publication Laid-Open No. 192637/1986 (Tokukaisho 61-192637)).
[0003] In such an apparatus, it is essential that a top sheet in a stack of copy papers
stored in the cassette be lifted up until it comes in contact with a pick-up roller,
in order to be picked up and sent out by the pick-up roller. Several approaches to
meet the above requirement have been provided. For example, Japanese Patent Publication
Laid-Open No. 59245/1981 (Tokukaisho 56-59245) and Japanese Patent Publication Laid-Open
No. 59251/1981 (Tokukaisho 56-59251) disclose a paper feed cassette having a paper
holding plate that is pivotally disposed for lifting up paper and a lever for raising
the paper feeding end of the holding plate.
[0004] However, when the above arrangement is employed in a copying machine having a cassette
that can be mounted in and removed from the main body of the copying machine for supplying
paper in the cassette or settling a paper jam, if the cassette is taken out from the
main body with the pivotal paper holding plate being raised, the paper feeding end
of the holding plate touches with the feeding mechanism provided in the main body,
resulting in damage to both holding plate and feeding mechanism.
[0005] Another principle is disclosed by DE-A1-3 403 456 wherein a lifter provided in the
main body raises a sheet support plate accommodated in a cassette so that the sheet
on the sheet support plate is fed through a pick-up roller. During withdrawing the
cassette from the main body, the cassette must be raised at the outer end causing
a lever system to lower the sheet support plate. The complicated structure of the
lever system accommodated in the main body of the apparatus, and the indefinite frictional
behaviour of the levers leads to unreliable operation of the system whereby a feeding
roller keeps contact with the sheet or the sheet support plate causing damage of the
feeding roller.
Summary of the Invention
[0006] The present invention aims to provide a feeding device with high compactness and
reliability, with a copy material feed unit removable from the main body of an apparatus
to which the feeding device is adapted, without raising the outer end of the copy
material feed unit.
[0007] The solution for achieving the above object is given in the characterizing part of
claim 1. The feeding device of the present invention is characterized in that driving
means and parts of means for arresting the driving force are provided within said
removable copy material feed unit and that corresponding parts of said means for arresting
the driving force are provided within the main body of said apparatus.
[0008] Such an arrangement improves compactness of the copy material feed unit resulting
in a high reliability of releasing the copy material holding plate from its raised
condition.
[0009] With such an arrangement, even if the copy material feed unit is taken out - from
the main body of the apparatus for supplying copy paper or settling a jam when the
pivotal copy material holding plate is in a raised condition, the paper feeding end
of the holding plate can be prevented from touching with the feeding mechanism disposed
within the main body so that damage to the contacted parts can be avoided, since the
holding plate is released from its raised condition in cooperation with the removal
of the copy material feed unit from the main body.
[0010] The invention and its various advantages will become more apparent to those skilled
in the art from the ensuing detailed description of preferred embodiments, reference
being made to the accompanying drawings.
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figs. 1 to 6 show one preferred embodiment of the present invention.
Fig. 1 is a perspective view showing a rotatable cassette.
Fig. 2 is a plan view showing the rotatable cassette in which coupling parts of a
first coupling and a second coupling are disengaged when the rotatable cassette is
removed.
Fig. 3 is a schematic front view of a copying machine showing the internal structure
thereof.
Fig. 4 is a plan view of a feeding mechanism.
Fig. 5(a) is a side view of the feeding mechanism.
Fig. 5(b) is a side view of the feeding mechanism wherein paper pushing back member
is actuated.
Figs. 6(a) to 6(d) are the plan view of the rotatable cassette respectively showing
the rotation of the rotatable cassette.
DESCRIPTION OF THE EMBODIMENTS
[0012] Referring now to Figs. 1 to 6, one embodiment of the present invention will be described
below.
[0013] As shown in Fig. 3, a document glass plate 2 of a copying machine 1 is provided with
an automatic document feeder 3 (hereinafter referred to as "ADF"). The ADF 3 conveys
a document (not shown) from a document tray 3a to a position on the document glass
plate 2, the position being predetermined in accordance with the size and orientation
("lateral orientation" or "longitudinal orientation" with respect to a paper feed
direction) of the document, and ejects the document outward after the completion of
the copying operation. In the case of duplex copying operation, the ADF 3 turns over
the document one face of which has been copied, conveys it onto the predetermined
position on the document glass plate 2 again and ejects it outward after both faces
are copied. The document tray 3a is provided with detection switches 4 and 5 for detecting
the size of a document placed on the document tray 3a.
[0014] Under the document glass plate 2 is provided an optical system 6 comprising a plurality
of reflection mirrors 6a and a plurality of lenses 6b. The optical system 6 basically
functions to guide the optical image of a document onto a photosensitive drum 7 and
has a function of varying magnification in order to perform enlarging copying and
reducing copying, in addition to real-size copying.
[0015] Around the photosensitive drum 7 are disposed a cleaner 8, a static eliminating charger
9, a main charger 10, a developing device 11 in which toners for full color copying
are stored and a developing device 12 in which black toner is stored. With those members,
a series of operations, that is, the removal of residual toner from the photosensitive
drum 7, static elimination, electrification, exposure (performed by the optical system
6), and development are performed in this order.
[0016] There are provided a transferring charger 13, and a separating charger 14 under the
photosensitive drum 7. When a copy paper (copy material) not shown in the drawing
passes between the photosensitive drum 7 and the transferring charger 13, a toner
image formed on the photosensitive drum 7 is transferred onto the paper by the transferring
charger 13. The paper is then separated from the photosensitive drum 7 by the separating
charger 14 and conveyed by a conveyor belt 17 to a fixing device 18 which fixes the
toner on the paper by heating or pressurizing.
[0017] After passing through the fixing device 18, the paper is basically ejected outside
the main copy machine 1, that is, discharged onto one of a plurality of paper receiving
trays 19a via the sorter 19. When duplex copying or composite copying is performed,
the paper that has passed through the fixing device 18 passes through a paper return
path 20 and is guided to a duplex/composite unit 21. In the case of duplex copying,
the paper is turned over and placed on an intermediate tray 21c after passing through
a first delivery path 21a within the duplex/composite unit 21. The paper then is sent
out to a paper feed path 22 by a forwarding roller 21d. In the case of composite copying,
the paper that has been guided to the duplex/composite unit 21 is sent to a second
delivery path 21b within the unit 21 and after the trailing edge of the paper is detected
thereat, the paper returns and is backwardly guided to the first delivery path 21a.
Thereafter, the paper is turned over so as to be placed on the intermediate tray 21c,
and then sent out by the forwarding roller 21d to the paper feed path 22.
[0018] The paper feed path 22 is a path for guiding a paper to the photosensitive drum 7
and is provided, at the forward end thereof, with a paper stop roller 15 for determining
timing for rotating the photosensitive drum 7 and sending out a paper. The paper feed
path 22 is connected to a plurality of paper feed means from which paper is appropriately
fed. More concretely, in an ascending scale, there are installed in the copying machine
a first fixed cassette 25, a first rotatable cassette 26, a second rotatable cassette
27, the duplex/composite unit 21, a second fixed cassette 28, a third fixed cassette
29, and a manual paper feeder 30. The first fixed cassette 25, the second fixed cassette
28 and the third fixed cassette 29 (these cassettes are copy material feed units)
are respectively detachable from the copying machine 1. The first rotatable cassette
26 and the second rotatable cassette 27 (these cassettes are copy material feed units)
are detached together with their bed-plates 31 from the copying machine 1.
[0019] As shown in Fig. 1, the first and second rotatable cassettes 26 and 27 are respectively
provided with the bed-plate 31 which is a housing for the cassette, having a washer
31a secured thereto. At the washer 31a, a pivot pin 31b is vertically disposed. One
end of an arm 32 is supported by the pivot pin 31b such that the arm 32 horizontally
pivots on the pivot pin 31b. At the other end of the arm 32, there is vertically disposed
a pivot pin 32a by which a rotating section 35 (copy material orientation changing
means) is pivotally supported. The rotating section 35 has a two-sheet structure,
comprising a paper feed base 33 (copy material feed base) and a pivotal paper holding
plate 34 (pivotal copy material holding plate) positioned on the paper feed base 33.
The rotating section 35 turns through 90° thereby conveying copy papers stacked on
the pivotal paper holding plate 34 to a position from which paper laterally oriented
with respect to a feed direction is fed (the position is hereinafter referred to as
"lateral feed position") or a position from which paper longitudinally oriented with
respect to the same is fed (the position is hereinafter referred to as "longitudinal
feed position"). The position at which one end of the arm 32 is pivotally supported
by the pivot pin 31b is so determined that when the stack of papers are rotatively
conveyed to the lateral feed position or longitudinal feed position, the center of
the papers is always located on the pivot pin 32a.
[0020] The paper feed base 33 is provided with wall portions 33a, 33b, 33f and 33e. The
wall portions 33a, 33f and 33e define, together with the pivotal paper holding plate
34, a paper stacking position for lateral feed (lateral copy material stacking position),
and function to prevent a stack of copy papers from shifting from the above position
when the papers are laterally fed. On the other hand, the wall portions 33b, 33e and
33f define, together with the pivotal paper holding plate 34, a paper stacking position
for longitudinal feed (longitudinal copy material stacking position), and prevent
stacked papers shifting from the above position when they are longitudinally fed.
The wall portions 33a and 33b are integrally formed with the paper feed base 33, vertically
raising therefrom. Each of the wall portions 33a and 33b is provided with an opening
33c at the substantially central part thereof. The opening 33c turns, extending a
predetermined distance toward the center of the paper feed base 33. When the rotating
section 35 is set in either of the feed positions, a lift member 40 is located beneath
the opening 33c and when the lift member 40 is pivoted upward in this condition, the
lift member 40 can be brought into contact with the bottom face of the pivotal paper
holding plate 34, passing through the opening 33c. The structure of the lift member
40 will be later described in detail.
[0021] The wall portions 33f and 33e are secured to the upper face of the paper feed base
33, facing to the wall portions 33a and 33b respectively. The wall portion 33f raises
passing through an opening 34b and the wall portion 33e raises passing through an
opening 34a, these openings 34a and 34b being provided for the pivotal paper holding
plate 34. Therefore, the wall portions 33f and 33e do not interfere with the raising
movement of the pivotal paper holding plate 34.
[0022] The pivotal paper holding plate 34 is provided with inclined parts 34f and 34g which
respectively bend forwardly. When the holding plate 34 is raised by the lift member
40 for longitudinal feed, the inclined part 34f makes an optimum tilt angle for feeding
paper to the main body of the copying machine 1. Similarly, when the holding plate
34 is raised for lateral feed, the inclined part 34g makes an optimum tilt angle.
At one corner of the pivotal paper holding plate 34, there is provided a supporting
segment 34c outwardly bending from the upper end of the wall portion 34d. At that
corner, the trailing end of paper comes in contact in both cases paper is placed in
the paper stacking position for lateral feed and the paper stacking position for longitudinal
feed. The supporting segment 34c is provided with a supporting member 36 for supporting
the pivotal paper holding plate 34 at one point.
[0023] A guide means 37 is disposed at a predetermined distance from the supporting member
36 in the feed direction for longitudinal feed. The guide means 37 guides the pivotal
paper holding plate 34 when the holding plate 34 is raised for longitudinal feed,
and functions as a supporting point on which the holding plate 34 pivots when it is
raised for lateral feed.
[0024] The rotatable cassettes 26 and 27 are respectively provided, at the paper feeding
end thereof with which the leading edge of copy paper comes in contact, with a driving
means 42 comprising a driving motor 41 for turning the rotating section 35 through
90° as well as turning the lift member 40 in order to lift up a stack of papers on
the pivotal paper holding plate 34. In the driving means 42, a gear 41a is secured
to the driving shaft of the driving motor 41. The gear 41a is in mesh with a group
of gears 43 through which the driving force of the driving motor 41 is transmitted
to a first clutch 44 and a second clutch 45.
[0025] The first clutch 44 is disposed at the side of the paper feeding end of the rotating
section 35 in order to suspend and execute the transmission of the driving force utilized
for turning the rotating section 35 through 90°. The first clutch 44 has a driving
shaft 44a to which a pulley 46 is secured. The other side of the paper feeding end
of the rotating section 35 is provided with a pulley 47, and an endless belt 48 passes
around these pulley 46 and 47. The lower part of the belt 48, which passes under the
pulleys 46 and 47 is provided with a moving block 50 secured to a predetermined position
thereof such that the moving block 50 reciprocates as the belt 48 moves. At the substantially
central part of the moving block 50 is provided a through-hole through which a guide
shaft 51 passes. The guide shaft 51, by which the moving block 50 is linearly guided,
is disposed between the pulleys 46 and 47 in a direction orthogonal to the feed direction.
On the moving block 50 is provided a pivot pin 50a by which a holding member 52 is
pivotally supported. A substantially L-shaped angle section 52a provided for the holding
member 52 is attached to one corner of the rotating section 33 at which the wall portion
33a comes in contact with the wall portion 33b. As shown in Fig. 2, in the vicinity
of one end of the guide shaft 51, a position detection switch 100 is provided, while
a position detection switch 101 is provided in the vicinity of the other end thereof.
The position detection switch 100 is switched on by a switch actuating segment 52b
secured to the angle section 52a and the position detection switch 101 by an actuating
segment 50b secured to the moving block 50.
[0026] The second clutch 45 effects and suspends the transmission of the driving force for
lifting up copy papers stacked on the rotating section 34 and the output force of
the second clutch 45 is transmitted to the rotary shaft 54 via the group of gears
53. More specifically, the output force of the second clutch 45 is transmitted to
the rotary shaft 54 disposed in a direction perpendicular to the driving shaft of
the second clutch 45, via the group of gears 53, a worm gear 53a and a wheel gear
53b which meshes with a worm gear 53a.
[0027] At the other end of the rotary shaft 54, there is secured a coupling part 55a which
is one component of a first coupling 55 (coupling means). At the end of a rotary shaft
56 rotatably supported at the main body of the copying machine 1 is secured a coupling
part 55b which is the other component of the first coupling 55. A gear 56b secured
to the rotary shaft 56 is in mesh with a gear 57a secured to a rotary shaft 57. Likewise,
the rotary shaft 57 juxtaposed with the rotary shaft 56 is pivotally supported by
the main body of the copying machine 1. At the end of the rotary shaft 57, a coupling
part 58b which is one component of a second coupling 58 (coupling means) is secured.
A coupling part 58a, which is the other component of the second coupling 58, is secured
to one end of the lift-up shaft 60 (rotary lift-up member). The lift-up shaft 60 is
in parallel with the rotary shaft 54 and the substantially central part thereof is
provided with a lift member 40 secured thereto. This lift member 40 is pivoted by
the rotation of the lift-up shaft 60, thereby raising the paper feeding end of the
pivotal paper holding plate 34. The other end of the lift-up shaft 60 is just pivotally
held without any member connected thereto. The lift-up shaft 60 is provided with a
switch actuating segment 60a (shown in Fig. 2) secured thereto and there is disposed
a lift detection switch 61 in the vicinity of the switch actuating segment 60a, the
lift detection switch 61 being switched ON and OFF by the pivot of the switch actuating
segment 60a. Whether the pivotal paper holding plate 34 is raised or not is detected
by the turning of the lift detection switch 61.
[0028] A driving force is transmitted to the lift member 40 by means of the group of gears
53, the rotary shaft 54, the first coupling 55, the rotary shafts 56 and 57, the second
coupling 58 and the lift-up shaft 60. The coupling means, by which the driving force
is cut off in cooperation with the removal of the rotatable cassette 26 or 27, is
made up of the first coupling 55 and the second coupling 58. The lift-up shaft 60
functions as the rotary lift-up member for releasing the pivotal paper holding plate
34 from its raised condition. More concretely, the lift-up shaft 60 is let down by
the disengagement of the coupling means and the lift member 40 secured to the lift-up
shaft 60 gets free and pivots downward because of its own weight, thereby releasing
the holding plate 34 from its raised condition. Each of the coupling parts 55b and
58b is resiliently supported by a spring coil (not shown) in the axial direction.
Therefore, a shock generated at the time of the engagement of the coupling parts 55a
and 55b and that of the coupling parts 58a and 58b is absorbed and the coupling condition
is ensured.
[0029] As shown in Fig. 4, there is provided a supporting board 63 above the paper feeding
end of the rotating section 35, being secured to the main body of the copying machine
1. On the supporting board 63, there is provided a paper feed mechanism 62 for delivering
copy paper to the paper feed path 22. The supporting board 63 is provided with openings
63a, 63b and 63c. The opening 63a allows a part of a pick-up roller 65 disposed in
the paper feed mechanism 62 and a part of a paper feed roller 66 to respectively project
downward from the supporting board 63. The opening 63b allows a part of a paper pushing
back member 81 to project downward from the supporting board 63 and the opening 63c
allows a part of a pressure contact releasing lever 76 to project downward from the
same.
[0030] In the paper feed mechanism 62, the pick-up roller 65 is positioned above the paper
feeding end of the rotating section 35, and the paper feed roller 66 is juxtaposed
with the pick-up roller 65, being at a predetermined distance therefrom in the feed
direction. An endless belt 67 passes around each of these rollers 65 and 66 at one
end, whereby the rollers 65 and 66 are rotated in the same direction. A pair of roller
arms 68 stretch between a supporting shaft 65a for rotatably supporting the pick-up
roller 65 and the rotary shaft 66a for transmitting the driving force to the paper
feed roller 66, with these rollers 65 and 66 between. The pick-up roller 65 goes up
and down as the pair of roller arms 68 rotate on the rotary shaft 66a, whereby the
pick-up roller 65 comes in contact with or is separated from the copy paper.
[0031] Each of the roller arms 68 is provided with a projection part 68a at one end close
to the paper feed roller 66. The projection parts 68a are pressed downward by a paper
feed operation angle 70 so that the roller arms 68 pivot upward. The paper feed operation
angle 70 is secured to one end of a paper feed operation shaft 71 and pivots as the
paper feed operation shaft 71 rotates.
[0032] A solenoid connecting plate 72 is secured at the other end of the paper feed operation
shaft 71. At the end of the solenoid connecting plate 72, there is formed an elongated
hole with which an operation shaft 73a of a paper feed solenoid 73 is coupled. The
upward/downward movements of the operation shaft 73a are converted to the rotating
movement of the paper feed operation shaft 71 via the solenoid connecting plate 72.
[0033] As shown in Figs. 5(a) and 5(b), a mounting board 75 is installed under the paper
feed roller 66. The mounting board 75 is provided with a reversing roller 74 for conveying
a copy paper in the reverse direction as it rotates in the same direction as the rotation
of the paper feed roller 66. The mounting board 75 pivots upward and downward whereby
the reversing roller 74 is brought in contact with or is separated from the paper
feed roller 66. A rotary shaft 74a for transmitting the rotary force to the reversing
roller 74 is disposed under the rotary shaft 66a of the paper feed roller 66, being
in parallel with the shaft 66a. An actuating segment 76a of the substantially L-shaped
pressure contact releasing lever 76 is interposed between the rotary shafts 66a and
74a. The pressure contact releasing lever 76 pivots on the shaft 76c on a vertical
plane and when the lever 76 pivots downward, the reversing roller 74 is pressed by
the lever 76 so as to separate from the paper feed roller 66.
[0034] A connecting segment 76b of the pressure contact releasing lever 76 is connected
to one end 77a of a pressure contact connecting/releasing member 77 and when the pressure
contact connecting/releasing member 77 pivots on a shaft 77c (see Fig. 4), the pressure
contact releasing lever 76 is rotated. The other end 77b of the pressure contact connecting/releasing
member 77 is connected to a pin of an operation shaft 80a of a paper pushing back
solenoid 80, and the operation shaft 80a moves forward and backward so that the pressure
contact connecting/releasing member 77 is pivoted.
[0035] The operation shaft 80a of the paper pushing back solenoid 80 is connected to the
paper pushing back member 81 for pushing a copy paper back toward the rotating section
35. The paper pushing back member 81 pivots on the shaft 81a on a vertical plane.
The shaft 81a is interposed between the pick-up roller 65 and the paper feed roller
66, being at a higher position than the position of the pin of the operation shaft
80a. When the operation shaft 80a moves backward, the paper pushing back member 81
pivots such that a copy paper (not shown) is pushed back to the rotating section 35.
[0036] On the mounting board 63, a detection switch 82 is positioned at one side of the
pick-up roller 65 and a paper detection switch 83 at the other side thereof. An actuating
segment 82a of the detection switch 82 and an actuating segment 83a of the paper detection
switch 83 respectively extend downward from the mounting board 63 passing through
the opening 63a. The actuating segment 82a of the detection switch 82 is pressed by
the pivotal paper holding plate 34 when the plate 34 is raised, while the actuating
segment 83a of the paper detection switch 83 is pressed by the copy papers stacked
on the plate 34 when the plate 34 is raised. In the above arrangement, the pivotal
paper holding plate 34 is provided with an opening (not shown) at the paper stacking
position for longitudinal feed. The plate 34 is provided with another opening (not
shown) at the paper stacking position for lateral feed. Therefore, when no paper is
placed on the pivotal paper holding plate 34, the actuating segment 83a pierces the
opening so that the paper detection switch 83 is not switched ON while the detection
switch 82 is switched ON. On the other hand, when papers are placed on the pivotal
paper holding plate 34, the detection switch 82 and the paper detection switch 83
are both switched ON.
[0037] Now, reference is made to Figs. 6(a) to 6(d) for explaining the movement of the rotating
section 35 when it moves from the lateral feed position to longitudinal feed position.
[0038] As shown in Fig. 6(a), when the rotating section 35 is in the lateral feed position,
the wall portion 33b is in juxtaposition with the paper feeding end of the rotatable
cassette 26 (or 27). In this condition, the moving block 50 and the holding member
52, which constitute the moving means, are positioned on one end of the guide shaft
51.
[0039] When the driving force of the driving motor 41 is transmitted to the pulley 46 via
the first clutch 44, the pulley 46 is rotated thereby rotating the belt 48. Then,
the moving block 50 fixed to the belt 48 is guided by the guide shaft 51 to move to
the other end of the shaft 51.
[0040] As the moving block 50 linearly moves, the rotating section 35 is rotated in the
direction indicated by the arrow A. Since the rotating section 35 is connected to
the moving block 50 and the moving block 50 linearly moves, the center of the rotation
of the rotating section 35 is moved. Such a movement is controlled by the arm 32 for
pivotally supporting the rotating section 35. More specifically, the arm 32 rotates
on the pivot pin 31 in the direction indicated by the arrow D, thereby ensuring the
movement of the rotation of the rotating section 35. The rotation of the arm 32 in
the direction indicated by the arrow D is carried out until the line X between the
pivot pin 50a of the moving block 50 and the pivot pin 32a makes a right angle with
the guide shaft 51.
[0041] As shown in Fig. 6(c), when the angle made by the line X with the guide shaft 51
exceeds 90°, the arm 32 starts to rotate in the direction indicated by the arrow C
while the rotating direction of the rotating section 35 is unchanged. Thereafter,
the moving block 50 comes to the other end of the guide shaft 51 as shown in Fig.
6(d), the position detection switch 101 is switched ON by the actuating segment 50b
secured to the moving block 50. The control unit of the copying machine 1 detects
the operation of the position detection switch 101, and then controls the first clutch
44 to suspend the transmission of the driving force, thereby halting the movement
of the moving block 50. At that time, the wall portion 33a of the rotating section
35 is turned to be in juxtaposition with the paper feeding end of the rotatable cassette
26 (or 27).
[0042] The rotation of the rotating section 35 from the longitudinal feed position to the
lateral feed position can be achieved by reversely rotating the driving motor 41 and
carrying out the operations opposite to the foregoing procedures. When the rotating
section 35 is set in the lateral feed position, the position detection switch 100
is switched ON by the switch actuating segment 52b of the holding member 52. The control
unit of the copying machine 1 detects the operation of the position detection switch
100 and controls the first clutch 44 to suspend the transmission of the driving force,
thereby halting the movement of the moving block 50.
[0043] The following description explains the operation for raising the paper feeding end
of the pivotal paper holding plate 34. With the actuation of the second clutch 45,
the driving force of the driving motor 41 is transmitted through the group of gears
53; the rotary shaft 54; the first coupling 55; the rotary shaft 56; the rotary shaft
57; the second coupling 58; and the lift-up shaft 60. The rotation of the lift-up
shaft 60 causes the lift member 40 to be pivoted. After pivoting upward, the lift
member 40 passes through the opening 33c of the paper feed base 33 and comes in contact
with the bottom face of the pivotal paper holding plate 34, thereby raising the paper
feeding end of the pivotal paper holding plate 34. After the pivotal paper holding
plate 34 is raised, the paper feed mechanism 62 picks up the copy paper.
[0044] It is assumable that at the stage of the raising of the pivotal paper holding plate
34, the absence of copy paper may be detected by the paper detection switch 83 or
a jam may occur in picking up a copy paper. In that case, the user takes out the rotatable
cassette 26 or 27 from the main body of the copying machine 1. When the rotatable
cassette 26 or 27 is taken out, the rotating section 35, driving motor 41, and the
first and second clutches 44 and 45, which are all disposed within the cassette 26
(27), are taken out together with the cassette 26 (27), while the paper feed mechanism
62, and the rotary shafts 56 and 57 remain within the main body of the copying machine
1, as shown in Fig. 2. Thanks to the fact that the rotary shafts 56 and 57 remain
within the main body, the coupling part 55a is disengaged from the coupling part 55b
in the first coupling 55 and the coupling part 58a is disengaged from the coupling
part 58b in the second coupling 58, whereby the transmission of the driving force
of the driving motor 41 to the lift member 40 is suspended. In cooperation with the
above, the lift-up shaft 60 gets free, and the lift member 40 is pivoted downward
by its own weight, so that the pivotal paper holding plate 34 is released from its
raised condition to be let down. With such an arrangement, even if the user is not
aware the pivotal paper holding plate 34 is in its raised condition and takes out
the rotatable cassette 26 or 27 from the main body of the copying machine 1, the contact
of the pivotal paper holding plate 34 and the paper feed mechanism 62 can be prevented
since the plate 34 is let down in cooperation with the cassette-taking-out action.
As a result, damage to the contacted parts can be avoided.
[0045] In the foregoing embodiment, the coupling parts 55a and 58a are disengaged from the
coupling parts 55b and 58b respectively, when the rotatable cassette unit 26 or 27
is drawn 6mm from the main body for example. Fig. 2 shows a condition in which the
cassette 26 or 27 is drawn 26mm from the main body and the coupling parts 55a/55b,
and 58a/58b are completely disengaged.
[0046] In the foregoing embodiment, the mechanism for raising/lowering the pivotal paper
holding plate is adapted to a rotatable cassette, but the invention is not limited
to this. For example, the mechanism may be adapted to a fixed cassette in the similar
manner.
[0047] The feeding device according to the present invention comprises:
(1) a cassette detachable from the main body of a copying machine, comprising a pivotal
paper holding plate capable of being raised;
(2) a lift member which is disposed under the pivotal paper holding plate and pivots
on a vertical plane so as to raise the pivotal paper holding plate;
(3) a rotary lift-up member for allowing the lift member to pivot thereon, the lift
member being secured to the rotary lift-up member;
(4) driving means for transmitting a driving force to the rotary lift-up member; and
(5) coupling means interposed in the driving means, for effecting and suspending the
transmission of the driving force for rotating the rotary lift-up member.
[0048] With such an arrangement, even if the cassette is taken out from the main body of
the copying machine for supplying copy paper or settling a paper jam when the cassette
is in a raised condition, the paper feeding end of the pivotal paper holding plate
can be prevented from touching with the feeding mechanism provided within the main
body of the copying machine so that damage to the contacted parts can be avoided,
since the lift member is pivoted downward by its own weight in cooperation with the
removal of the cassette and the pivotal paper holding plate is released from its raised
condition.
1. A feeding device comprising
- a copy material feed unit (26, 27) to be mounted in and removed from an apparatus
(1) to which the device is adapted, and which has a pivotal copy material holding
plate (34) on which copy materials are stacked and which is capable of being raised;
- driving means (42, 60, 40) for transmitting a driving force for raising the pivotal
copy material holding plate (34) until copy material placed thereon comes into contact
with a feeding mechanism disposed within the main body of the apparatus (1); and
- means (55, 58) for arresting the driving force in cooperation with the removal of
the copy material feed unit (26, 27) from the main body of the apparatus (1), thereby
preventing the transmission of the driving force to the pivotal copy material holding
plate (34) in order to release the copy material holding plate (34) from its raised
condition;
characterized in that said driving means (42, 60, 40) and parts (55a, 58a) of said means for arresting
the driving force are provided within said removable copy material feed unit (26,
27) and that corresponding parts (55b, 58b) of said means for arresting the driving
force are provided within the main body of said apparatus (1).
2. The feeding device according to claim 1,
characterized in that
- a lift member (40) is provided for raising the pivotal copy material holding plate
(34), disposed under the pivotal copy material holding plate (34) so as to pivot on
a vertical plane;
- a rotary lift-up member (60) is provided for allowing the lift member (40) to pivot
thereon, the lift member (40) being secured to the rotary lift-up member (60);
- the driving means (42) are provided for transmitting the driving force to the rotary
lift-up member (60); and that
- the means for arresting the driving force comprise coupling means (55, 56, 57, 58)
interposed in the driving means (42) for effecting and suspending the transmission
of the driving force for rotating the rotary lift-up member (60),
wherein when the copy material feed unit (26, 27) is taken out from the main body
(1), the lift member (40) pivots downward due to its own weight, thereby releasing
the pivotal copy material holding plate (34) from its raised condition.
3. The feeding device according to claim 2, wherein the copy material feed unit (26,
27) includes copy material orientation changing means (35) which is rotatable to at
least two feed positions, i.e., a longitudinal feed position from which copy material
longitudinally oriented with respect to a feed direction is fed and a lateral feed
position from which copy material laterally oriented with respect to the feed direction
is fed.
4. The feeding device according to claim 3, wherein the copy material orientation changing
means (35) includes at least two copy material stacking positions, i.e., a longitudinal
copy material stacking position on which copy materials are stacked for longitudinal
feed and a lateral copy material stacking position on which copy materials are stacked
for lateral feed.
5. The feeding device according to claim 4, wherein the copy material orientation changing
means (35) has a two-sheet structure consisting of a copy material feed base (33)
and the pivotal copy material holding plate (34) positioned on the copy material feed
base (33), and is rotated through 90° so as to change the orientation of the copy
materials stacked thereon with respect to the feed direction.
6. The feeding device according to claim 5, further comprising guide means which includes
(1) a sustaining member (34c) having a guide hole formed in a vertical direction;
and (2) a guide member (36) which engages with the guide hole, such that the pivotal
copy material holding plate (34) is guided by the guide means when the copy materials
stacked on one of the copy material stacking positions of the pivotal copy material
holding plate (34) are lifted up, and the pivotal copy material holding plate (34)
pivots on the guide means when the copy materials stacked on the other copy material
stacking position are lifted up.
7. The feeding device according to claim 6, wherein the driving means (42) comprises
a single driving motor (41) for driving the copy material orientation changing means
so as to rotate through 90° and driving the pivotal copy material holding plate (34)
so as to pivot for lifting up the copy material.
8. The feeding device according to claim 7, wherein the driving means (42) comprises
(1) a group of gears (41a, 43) for transmitting the driving force of the driving motor
(41); (2) a first clutch (44) for effecting and suspending the transmission of the
driving force through the group of gears (41a, 43), the driving force being utilized
for rotating the copy material orientation changing means (35) through 90°; and (3)
a second clutch (45) for effecting and suspending the transmission of the driving
force toward the lift member (40), the driving force being utilized for lifting up
the copy materials stacked on the pivotal copy material holding plate (34).
9. The feeding device according to claim 8, wherein the driving means further comprises
a rotary shaft (54) for transmitting the driving force from the second clutch (45),
the rotary shaft being connected to the coupling means (55, 58).
10. The feeding device according to claim 9, wherein the coupling means (55, 58) disposed
in the main body of the apparatus (1) is connected to the group of gears (56b, 57a)
which transmits the driving force from the rotary shaft (54) to the rotary lift-up
member (60) so that the rotary lift-up member (60) is rotated, causing the lift member
(40) to pivot.
11. The feeding device according to claim 10, wherein one end of the rotary lift-up member
(60) is secured to the coupling means (55, 58) while the other end thereof is just
pivotally held without a member connected thereto and the lift member (40) is secured
to the substantially central part of the rotary lift-up member (60), so that the feeding
end of the pivotal copy material holding member (34) is raised by the lift member
(40) when it pivots upward in cooperation with the rotation of the rotary lift-up
member (60) while the pivotal copy material holding member (34) is released from its
raised condition when the rotary lift-up member (60) is disengaged from the coupling
means (55, 58), causing the lift member (40) to pivot downward by its own weight.
12. The feeding device according to claim 1 or 2, wherein the copy material may be a copy
paper used for a copying machine and laser printer, or a film used for an overhead
projector.
13. The feeding device according to claim 1 or 2, wherein the copy material feed unit
(26, 27) is a cassette for feeding copy material whose orientation with respect to
the feed direction is not changed.
1. Zuführvorrichtung mit
- einer Kopiermaterial-Zuführeinheit (26, 27) zum Einsetzen in und Entfernen von einem
Gerät (1), für das die Vorrichtung angepaßt ist, mit einer schwenkbaren Kopiermaterial-Trägerplatte
(34), auf der Kopiermaterial gestapelt ist und die anhebbar ist;
- einer Antriebseinrichtung (42, 60, 40) zum Übertragen einer Antriebskraft zum Anheben
der Trägerplatte (34), bis das darauf gelagerte Kopiermaterial in Kontakt mit einem
im Hauptgehäuse des Gerätes (1) angebrachten Zuführmechanismus gelangt; und mit
- einer Einrichtung (55, 58) zum Unterbrechen der Antriebskraft beim Entfernen der
Zuführeinheit (26, 27) aus dem Hauptgehäuse des Gerätes (1), wodurch die Übertragung
der Antriebskraft auf die Trägerplatte (34) vermieden wird, um die Trägerplatte (34)
aus der angehobenen Stellung abzusenken;
dadurch gekennzeichnet, dar die Antriebseinrichtung (42, 60, 40) und Teile (55a, 58a) der Einrichtung zum
Unterbrechen der Antriebskraft in der Zuführeinheit (26, 27) angeordnet sind und daß
entsprechende Teile (55b, 58b) der Einrichtung zum Unterbrechen der Antriebskraft
im Hauptgehäuse des Gerätes (1) angeordnet sind.
2. Zuführvorrichtung nach Anspruch 1,
dadurch gekennzeichnet, daß
- ein unterhalb der schwenkbaren Kopiermaterial-Trägerplatte (34) angeordnetes Hubelement
(40) vorhanden ist, zum Anheben der Trägerplatte (34) durch Schwenken in einer vertikalen
Ebene;
- ein Dreh-Hebeelement (60) zum Schwenken des Hubelements (40) vorhanden ist, wobei
das Hubelement (40) auf dem Dreh-Hebeelement (60) befestigt ist;
- die Antriebseinrichtung (42) zum Übertragen der Antriebskraft auf das Dreh-Hebeelement
(60) vorhanden ist; und daß
- die Einrichtung zum Unterbrechen der Antriebskraft zum Herstellen und Unterbrechen
der Antriebskraft-Übertragung eine in der Antriebseinrichtung (42) angeordnete Kupplungseinrichtung
(55, 56, 57, 58) aufweist, um das Dreh-Hebeelement (60) zu drehen,
wobei das Hubelement (40) aufgrund seines eigenen Gewichts nach unten schwenkt und
dabei die Trägerplatte (34) aus ihrer angehobenen Stellung absenkt, wenn die Zuführeinheit
(26, 27) aus dem Hauptgehäuse (1) herausgenommen wird.
3. Zuführvorrichtung nach Anspruch 2, dadurch gekennzeichnet, daß die Kopiermaterial-Zuführeinheit (26, 27) eine Wechseleinrichtung (35) zum Ändern
der Ausrichtung des Kopiermaterials aufweist, die in mindestens zwei Zuführstellungen
schwenkbar ist, d.h., in eine Längszuführstellung, aus der im Verhältnis zu einer
Zuführrichtung in Längsrichtung ausgerichtetes Kopiermaterial zuführbar ist, sowie
in eine Querzuführstellung, aus der im Verhältnis zu der Zuführrichtung in Querrichtung
ausgerichtetes Kopiermaterial zuführbar ist.
4. Zuführvorrichtung nach Anspruch 3, dadurch gekennzeichnet, daß die Wechseleinrichtung (35) mindestens zwei Kopiermaterial-Stapelstellungen aufweist,
d.h. eine Längsstapelstellung, in der Kopiermaterial für Längszuführung stapelbar
ist, und eine Querstapelstellung, in der Kopiermaterial für Querzuführung stapelbar
ist.
5. Zuführvorrichtung nach Anspruch 4, dadurch gekennzeichnet, daß die Wechseleinrichtung (35) einen Zwei-Träger-Aufbau aufweist, bestehend aus
einer Zuführbasis (33) für Kopiermaterial und der auf der Zuführbasis (33) angeordneten,
schwenkbaren Kopiermaterial-Trägerplatte (34), und daß die Wechseleinrichtung um 90°
schwenkbar ist, um die Ausrichtung des auf ihr gestapelten Kopiermaterials in Bezug
auf die Zuführrichtung zu ändern.
6. Zuführvorrichtung nach Anspruch 5, gekennzeichnet durch eine Führungseinrichtung mit (1) einer eine in senkrechter Richtung ausgebildete
Führungsöffnung aufweisende Stütze (34c); und mit (2) einem in die Führungsöffnung
eingreifenden Führungsteil (36), so daß die schwenkbare Trägerplatte (34) durch die
Führungseinrichtung führbar ist, wenn das in einer der Kopiermaterial-Stapelstellungen
der Trägerplatte (34) gestapelte Kopiermaterial angehoben wird, und daß die schwenkbare
Trägerplatte (34) um die Führungseinrichtung schwenkbar ist, wenn das in der anderen
Kopiermaterial-Stapelstellung gestapelte Kopiermaterial angehoben wird.
7. Zuführvorrichtung nach Anspruch 6, dadurch gekennzeichnet, daß die Antriebseinrichtung (42) einen einzelnen Antriebsmotor (41) aufweist, zum
Antreiben der Wechseleinrichtung, um sie um 90° zu drehen, und zum Antreiben der schwenkbaren
Trägerplatte (34), um sie zum Anheben des Kopiermaterials zu schwenken.
8. Zuführvorrichtung nach Anspruch 7, dadurch gekennzeichnet, daß die Antriebseinrichtung (42) aufweist (1) eine Gruppe von Zahnrädern (41a, 43)
zum Übertragen der Antriebskraft vom Antriebsmotor (41); (2) eine erste Kupplung (44)
zum Herstellen und Unterbrechen der Übertragung der Antriebskraft über die Gruppe
von Zahnrädern (41a, 43), wobei die Antriebskraft zum Drehen der Wechseleinrichtung
(35) um 90° genutzt wird; und (3) eine zweite Kupplung (45) zum Herstellen und Unterbrechen
der Übertragung der Antriebskraft zu dem Hubelement (40), wobei die Antriebskraft
zum Heben des auf der schwenkbaren Trägerplatte (34) gestapelten Kopiermaterials genutzt
wird.
9. Zuführvorrichtung nach Anspruch 8, dadurch gekennzeichnet, daß die Antriebseinrichtung eine Drehwelle (54) zum Übertragung der Antriebskraft
von der zweiten Kupplung (45) aufweist, wobei die Drehwelle mit der Kupplungseinrichtung
(55, 58) verbunden ist.
10. Zuführvorrichtung nach Anspruch 9, dadurch gekennzeichnet, daß die im Hauptgehäuse des Gerätes (1) angeordnete Kupplungseinrichtung (55, 58)
mit der Gruppe von Zahnrädern (56b, 57a) verbunden ist, die die Antriebskraft von
der Drehwelle (54) zu dem Dreh-Hebeelement (60) übertragen, so daß das Dreh-Hebeelement
(60) gedreht und dadurch das Hubelement (40) geschwenkt wird.
11. Zuführvorrichtung nach Anspruch 10, dadurch gekennzeichnet, daß ein Ende des Dreh-Hebeelements (60) mit der Kupplungseinrichtung (55, 58) befestigt
ist, während sein anderes Ende schwenkbar gehalten ist ohne ein daran befestigtes
Teil, und daß das Hubelement (40) ungefähr an dem Mittelbereich des Dreh-Hebeelements
(60) befestigt ist, so daß das Zuführende der schwenkbaren Trägerplatte (34) durch
das Hubelement (40) anhebbar ist, wenn dieses in Abhängigkeit von der Drehung des
Drehhebelements (60) nach oben schwenkt, während andererseits die Trägerplatte (34)
aus der angehobenen Stellung abgesenkt wird, wenn das Drehhebeelement (60) außer Eingriff
der Kupplungseinrichtung (55, 58) gelangt, wodurch das Hubelement (40) aufgrund seines
Gewichts nach unten schwenkt.
12. Zuführvorrichtung nach Anspruch 1 oder 2, dadurch gekennzeichnet, daß das Kopiermaterial ein für ein Kopiergerät oder einen Laserdrucker zu verwendendes
Kopierpapier oder ein für einen Overheadprojektor zu verwendender Film ist.
13. Zuführvorrichtung nach Anspruch 1 oder 2, dadurch gekennzeichnet, daß die Kopiermaterial-Zuführeinheit (26, 27) eine Kassette zum Zuführen von Kopiermaterial
ist, deren Ausrichtung in Bezug auf die Zuführrichtung nicht änderbar ist.
1. Dispositif d'alimentation comprenant:
- une unité d'alimentation en papier de reproduction (26, 27) destinée à être montée
dans et retirée d'un appareil (1) auquel le dispositif est adapté, et qui comporte
une plaque de maintien de matière de reproduction pivotante (34) sur laquelle sont
empilées des matières de reproduction et qui est capable d'être soulevée;
- des moyens d'entraînement (42, 60, 40) pour transmettre une force d'entraînement
servant à soulever la plaque de maintien de matière de reproduction pivotante (34)
jusqu'à ce que la matière de reproduction placée sur elle vienne en contact avec un
mécanisme d'alimentation installé à l'intérieur du corps principal de l'appareil (1);
et
- des moyens (55, 58) pour suspendre la force d'entraînement en association avec le
retrait de l'unité d'alimentation en matière de reproduction (26, 27) hors du corps
principal de l'appareil (1), ce qui empêche la transmission de la force d'entraînement
à la plaque de maintien de matière de reproduction pivotante (34) dans le but de libérer
la plaque de maintien de matière de reproduction (34) de sa condition soulevée;
caractérisé en ce que lesdits moyens d'entraînement (42, 60, 40) et des parties
(55a, 58a) desdits moyens de suspension de la force d'entraînement sont placés à l'intérieur
de ladite unité d'alimentation en matière de reproduction amovible (26, 27) et en
ce que des parties correspondantes (55b, 58b) desdits moyens de suspension de la force
d'entraînement sont placées à l'intérieur du corps principal dudit appareil (1).
2. Dispositif d'alimentation selon la revendication 1, caractérisé en ce que:
- un élément de levage (40) est prévu pour soulever la plaque de maintien de matière
de reproduction pivotante (34), ledit élément de levage (40) étant placé sous la plaque
de maintien de matière de reproduction pivotante (34) de façon à pivoter sur un plan
vertical;
- un organe de levage rotatif (60) est prévu pour permettre à l'élément de levage
(40) de pivoter sur lui, l'élément de levage (40) étant assujetti à l'organe de levage
rotatif (60);
- les moyens d'entraînement (42) sont prévus pour transmettre la force d'entraînement
à l'organe de levage rotatif (60); et en ce que
- les moyens de suspension de la force d'entraînement comprennent des moyens de couplage
(55, 56, 57, 58) intercalés dans les moyens d'entraînement (42) pour effectuer et
suspendre la transmission de la force d'entraînement destinée à entraîner en rotation
l'organe de levage rotatif (60),
dans lequel, lorsque l'unité d'alimentation en matière de reproduction (26, 27)
est retirée du corps principal (1), l'élément de levage (40) pivote vers le bas sous
l'effet de son propre poids, ce qui libère la plaque de maintien de matière de reproduction
pivotante (34) de sa condition soulevée.
3. Dispositif d'alimentation selon la revendication 2, dans lequel l'unité d'alimentation
en matière de reproduction (26, 27) comprend des moyens de changement d'orientation
de matière de reproduction (35) qui peuvent être entraînés en rotation pour se placer
dans au moins deux positions d'alimentation, à savoir une position d'alimentation
longitudinale à partir de laquelle s'effectue l'alimentation en matière de reproduction
orientée longitudinalement par rapport à une direction d'alimentation, et une position
d'alimentation latérale à partir de laquelle s'effectue l'alimentation en matière
de reproduction orientée latéralement par rapport à la direction d'alimentation.
4. Dispositif d'alimentation selon la revendication 3, dans lequel les moyens de changement
d'orientation de matière de reproduction (35) comprennent au moins deux positions
d'empilement de matière de reproduction, à savoir une position d'empilement de matière
de reproduction longitudinale, dans laquelle les matières de reproduction sont empilées
en vue d'une alimentation longitudinale, et une position d'empilement de matière de
reproduction latérale, dans laquelle les matières de reproduction sont empilées en
vue d'une alimentation latérale.
5. Dispositif d'alimentation selon la revendication 4, dans lequel les moyens de changement
d'orientation de matière de reproduction (35) présentent une structure à deux plaques
qui se compose d'une base d'alimentation en matière de reproduction (33) et de la
plaque de maintien de matière de reproduction pivotante (34) placée sur la base d'alimentation
en matière de reproduction (33), et sont entraînés en rotation sur 90° de façon à
changer l'orientation des matières de reproduction empilées sur eux par rapport à
la direction d'alimentation.
6. Dispositif d'alimentation selon la revendication 5, comprenant, en outre, des moyens
de guidage qui comportent (1) un élément de support (34c) dans lequel est formé un
orifice de guidage orienté verticalement; et (2) un élément de guidage (36) qui s'engage
avec l'orifice de guidage, de telle manière que la plaque de maintien de matière de
reproduction pivotante (34) est guidée par les moyens de guidage lorsque les matières
de reproduction empilées dans l'une des positions d'empilement de matière de reproduction
de la plaque de maintien de matière de reproduction pivotante (34) sont soulevées,
et que la plaque de maintien de matière de reproduction pivotante (34) pivote sur
les moyens de guidage lorsque les matières de reproduction empilées dans l'autre position
d'empilement de matière de reproduction sont soulevées.
7. Dispositif d'alimentation selon la revendication 6, dans lequel les moyens d'entraînement
(42) comprennent un moteur d'entraînement unique (41) pour entraîner les moyens de
changement d'orientation de matière de reproduction de façon à ce qu'ils tournent
de 90° et pour entraîner la plaque de maintien de matière de reproduction pivotante
(34) de façon à ce qu'elle pivote pour soulever la matière de reproduction.
8. Dispositif d'alimentation selon la revendication 7, dans lequel les moyens d'entraînement
(42) comprennent (1) un jeu d'engrenages (41a, 43) pour transmettre la force d'entraînement
du moteur d'entraînement (41); (2) un premier embrayage (44) pour effectuer et suspendre
la transmission de la force d'entraînement par l'intermédiaire du jeu d'engrenages
(41a, 43), la force d'entraînement étant utilisée pour entraîner en rotation les moyens
de changement d'orientation de matière de reproduction (35) sur 90°; et (3) un second
embrayage (45) pour effectuer et suspendre la transmission de la force d'entraînement
dirigée vers l'élément de levage (40), la force d'entraînement étant utilisée pour
soulever les matières de reproduction empilées sur la plaque de maintien de matière
de reproduction pivotante (34).
9. Dispositif d'alimentation selon la revendication 8, dans lequel les moyens d'entraînement
comprennent en outre un arbre rotatif (54) pour transmettre la force d'entraînement
en provenance du second embrayage (45), l'arbre rotatif étant relié aux moyens de
couplage (55, 58).
10. Dispositif d'alimentation selon la revendication 9, dans lequel les moyens de couplage
(55, 58) disposés dans le corps principal de l'appareil (1) sont reliés au jeu d'engrenages
(56b, 57a) qui transmet la force d'entraînement de l'arbre rotatif (54) à l'organe
de levage rotatif (60) de sorte que l'organe de levage rotatif (60) est entraîné en
rotation ce qui entraîne le pivotement de l'élément de levage (40).
11. Dispositif d'alimentation selon la revendication 10, dans lequel une extrémité de
l'organe de levage rotatif (60) est assujettie aux moyens de couplage (55, 58), tandis
que son autre extrémité est simplement supportée de façon pivotante sans qu'un élément
y soit relié, et l'élément de levage (40) est assujetti approximativement au niveau
de la partie centrale de l'organe de levage rotatif (60), si bien que l'extrémité
d'alimentation de la plaque de maintien de matière de reproduction pivotante (34)
est soulevée par l'élément de levage (40) lorsque ce dernier pivote vers le haut en
association avec la rotation de l'organe de levage rotatif (60), tandis que la plaque
de maintien de matière de reproduction pivotante (34) est libérée de sa condition
soulevée lorsque l'organe de levage rotatif (60) est désengagé des moyens de couplage
(55, 58), l'élément de levage (40) étant alors amené à pivoter vers le bas sous l'effet
de son propre poids.
12. Dispositif d'alimentation selon la revendication 1 ou la revendication 2, dans lequel
la matière de reproduction peut être une feuille de papier de reproduction utilisée
pour une machine à copier et une imprimante laser, ou un film utilisé pour un rétroprojecteur.
13. Dispositif d'alimentation selon la revendication 1 ou la revendication 2, dans lequel
l'unité d'alimentation en matière de reproduction (26, 27) est une cassette servant
à fournir la matière de reproduction dont l'orientation reste inchangée par rapport
à la direction d'alimentation.