BACKGROUND OF THE INVENTION
Field of the Invention
[0001] The present invention relates to an ink jet apparatus as disclosed in the preamble
of Claim 1 and a method for installing an ink jet head on an ink jet apparatus as
disclosed in the preamble of claim 2.
Description of the Related Art
[0002] In a liquid jet recording apparatus having an exchangeable liquid injecting/recording
head, the recording head must be positioned precisely so as to allow the accuracy
with which a recording liquid can be discharged at a required position on a recording
material to be improved or so as to allow the recording head to be electrically connected
to an apparatus body.
[0003] Conventional methods of, or devices for, positioning a recording head have been proposed
in the specification of, for example, U.S. Patent No. 4,709,246.
[0004] From US-A-4,709,246 an ink jet recording apparatus according to the preamble of claim
1 is known, said apparatus comprising: a mounting portion (carriage nest) on which
an ink jet cartridge is detachably mounted, said cartridge having a connector (connector
pads 26) and a recording head portion for discharging ink to perform image recording
(orifice plate 27), said mounting portion having a body connector (terminals 14 in
the nest bottom) associated therewith for electrically connecting the connector of
said cartridge to said apparatus; recording head positioning means (cantilever spring
39 and/or knife edge 37) for positioning the recording head portion of the cartridge
on said mounting portion; and operation means (fastening means 40 comprising the features
lever arm portions 41, hinge portions 42, camming portions 43 and seating portions
44) for displacing said cartridge and said body connector relative to each other in
order to connect said body connector with said cartridge connector.
SUMMARY OF THE INVENTION
[0005] In view of the aforementioned conventional techniques, an object of the present invention
is to provide a simple and reliable structure for positioning a recording head relative
to a carriage with a higher degree of accuracy and to provide a method for installing
an ink jet head on an ink jet apparatus in a simple and reliable way.
[0006] The structure provided by the present invention is particularly suitable for use
in a recording apparatus which employs a plurality of recording heads for recording
images.
[0007] In other words, an object of the present invention is to provide a structure for
positioning a plurality of recording heads relative to a carriage with a high degree
of accuracy so as to allow an ink discharged from the plurality of recording heads
to be attached to predetermined positions with a high degree of accuracy.
[0008] According to the present invention, this objects are solved by the features in the
characterising portion of claim 1 or claim 2.
[0009] In the present invention, both electrical connection and disconnection and reliable
positioning of the recording head and releasing of that positioning can be achieved
by a single series of recording head mounting/removing operations.
[0010] Furthermore, in the present invention, each of the individual recording heads is
fixed relative to the carriage using as a contacting surface (a reference surface
for positioning) a surface of the recording head which is in the same plane as that
on which a plurality of ink discharge openings are disposed linearly. In consequence,
variations in the structures of the plurality of recording heads have less effect
on the accuracy with which the discharge opening arrays of the recording heads are
disposed relative to the carriage. Variations in the structures of the recording heads
may be caused by variations in the thickness or of warpage of the supporting plates,
the substrates, or the ceiling plates of the recording heads. As a result, the individual
recording heads can be readily disposed on the carriage with a high degree of accuracy.
BRIEF DESCRIPTION OF THE DRAWINGS
[0011]
Fig. 1A is a schematic side view, partly in cross-section, of a liquid jet recording
apparatus showing a first embodiment of the present invention;
Fig. 1B is a top view of the liquid jet recording apparatus of Fig. 1A;
Figs. 2A and 2B show a state where a recording head is removed from the recording
apparatus of Figs. 1A and 1B;
Figs. 3A, 3B and 3C show the relation between an engagement hole and an engagement
shaft in the recording apparatus of Figs. 1A and 1B;
Fig. 4 is a schematic side view of an example of a link mechanism of the recording
apparatus of Figs. 1A and 1B;
Fig. 5 is a side view of an example of a connector portion;
Figs. 6 and 7 are side views of another example of an engagement hole - an engagement
shaft structure;
Figs. 8 and 9 are perspective views of examples of an ink jet cartridge employed in
the present invention;
Figs. 10A, 10B, 10C and 10D show a second embodiment of the liquid jet recording apparatus
according to the present invention;
Fig. 11 is a perspective view of another example of the cartridge employed in the
present invention;
Fig. 12A is a plan view, partly in cross-section, of an example of a full-color liquid
jet recording apparatus to which the present invention is applied;
Fig. 12B is a schematic perspective view of the liquid jet recording apparatus of
Fig. 12A;
Fig. 13 is a plan view, partly in cross-section, of another example of the vicinity
of a pushing shaft (pushing pin);
Fig. 14 is a schematic view of an example of a liquid jet recording apparatus body
to which the present invention is applied;
Fig. 15 is a schematic view of an example of the vicinity of a lever operation portion
of the apparatus shown in Fig. 14;
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0012] Embodiments of the present invention will now be described below with reference to
the accompanying drawings.
[Embodiment 1]
[0014] In this embodiment, a connector on a body is made movable. During the insertion of
the connector on the body into a connector on a recording head of a carriage, the
connector on the body is fixed by a positioning means. After the insertion, fixing
of the body connector is released, and the body connector is thereby made movable
relative to the body so as to achieve highly accurate positioning of the recording
head. Thus, in the present embodiment, both electrical connection and reliable positioning
of the recording head can be achieved by a series of recording head mounting/removing
operations. In this embodiment, the accuracy of recording head positioning is further
improved by conducting positioning utilizing the pressure applied by a pressurizing
member.
[0015] Referring first to Figs. 1A and 1B, a carriage 2 on which a cartridge C with a recording
head 1 (the cartridge C will be described later) can be detachably mounted is placed
on a scanning rail 11 in such a manner as to be slidable therealong. One end of the
carriage 2 is supported by a sliding rail 12. The carriage 2 is movable along a recording
medium 30 for scanning. As the carriage 2 is moved along the recording medium 30 for
scanning, ink particles supplied from an ink tank 13 are discharged from a plurality
of discharge openings 3 (having an electrothermal energy conversion member 3a for
forming droplets of ink in accordance with an image to be recorded) of the recording
head 1 in accordance with an image to be recorded so as to record on the recording
medium 30 images such as characters or figures. The recording medium 30 is conveyed
by rollers 15, 16, 17 and 18 in synchronism with the recording of images. During the
recording, the recording medium 30 is maintained at a predetermined position relative
to the recording head 1 by a guide 50. The ink jet cartridge C having the recording
head 1 and the ink tank 13 can be mounted on the carriage 2, as will be described
in detail later (see Figs. 8 and 9).
[0016] The cartridge C is mounted on the carriage 2 in the manner described below.
[0017] The recording head 1 of the cartridge C is arranged such that it is positioned with
vertical contact surfaces 1a and 1b and a horizontal contact surface 1c thereof being
in contact with and pressed against vertical contact surfaces 2a and 2b and a horizontal
contact surface 2c of the carriage 2. More specifically, when the cartridge C is to
be mounted on a mounting portion 2f of the carriage 2, the cartridge C is first located
just above the mounting portion 2f, and then moved downward so as to insert the recording
head 1 between a front end portion 2g and a rear end portion 2h of the mounting portion
2f, as shown in Fig. 2B. Thereafter, a lever 7, which will be described later, is
operated and a connector holder 40 and a pressing pin 10 engaging with the connector
holder 40 are thereby moved in the direction indicated by the arrow A (movement of
the pressing pin 10, a connector 6 and the connector holder 40 in a direction indicated
by the arrow A will be described in detail later) so as to press the cartridge C in
a direction indicated by the arrow A. This allows the contact surfaces 1a and 1b of
the recording head to come into contact with the contact surfaces 2a and 2b, thereby
horizontally positioning the recording head 1 relative to the carriage 2. A surface
1d of the recording head 1 which engages with the pressing pin 10 is an inclined surface,
and this generates a component of the pushing force which presses the horizontal contact
surface 1c of the recording head 1 against the horizontal contact surface 2c of the
carriage 2 and thereby positions the recording head 1 in a vertical direction. The
pressing pin 10 slidably provided on the connector holder 40 is urged by a coil spring
10a. The recording head 1 is positioned in its crosswise direction in the manner described
below.
[0018] Fig. 1B shows a state where the recording head 1 is positioned in a direction of
scanning (in the crosswise direction of the cartridge C). As shown in Fig. 1B, the
recording head 1 of the cartridge C has three protrusions 1ℓ and 1m (one of them being
not shown) on its side edge, which make contact with contact surfaces 2ℓ and 2m of
the carriage 2 when the recording head is positioned in the scanning direction. At
that time, since the presence of the inclined surface 1d of the recording head 1 generates
a component f2 of a pushing force f1 generated by the pressing pin 10 in a direction
indicated by the arrow A in the crosswise direction of the recording head 1, in addition
to the above-described component having a vertical direction, the protrusions 1ℓ and
1m are pressed against the contact surface 2ℓ and 2m of the carriage, by means of
which the recording head 1 is positioned in its crosswise direction. More specifically,
in this embodiment, as the cartridge C is pressed by the pressing pin 10, forward,
crosswise and vertical components of the pressing force are generated.
[0019] The connector 6 is mounted on the connector holder 40 with a backlash (a play) therebetween
by means of a tension spring 41 which urges the connector 6 in the direction indicated
by the arrow B. Reference numerals 1e and 1f denote rough guides for guiding the recording
head 1 when it is inserted into the carriage 2.
[0020] The cartridge C is removed from the carriage 2 in the following manner.
[0021] Fig. 2A shows a state where the recording head (cartridge C) is released from its
positioned state, and Fig. 2B shows a state where the recording head (cartridge C)
is being removed from the carriage 2.
[0022] When the cartridge C is to be removed from the carriage 2, the lever 7, which will
be described later, is operated and the connector holder 40 is thereby moved in the
rightward direction, as shown in Fig. 2A, so as to release the recording head 1 from
its fixed state. When the connector holder 40 is moved in the rightward direction,
the recording head 1 abuts against the rough guides 1e and 1f and is thereby restricted
from moving further to the right. In consequence, the body connector 6 is separated
from the head connector 5, and at the same time the pressing pin 10 is separated from
the recording head 1 and thereby releases the recording head 1 from its positioned
state (as shown in Fig. 2A). After the recording head 1 has been released from its
positioned state, the connector 6 is weakly urged in the rightward direction (in the
direction indicated by the arrow B) by the elastic force of the tension spring 41,
and engagement shafts 6a, 6b and 6c of the body connector 6 are thereby fitted into
engaging portions 40b, 40ℓa and 40ma of engagement hole 40a and two engagement holes
(40ℓ and 40m) for positioning the connector 6.
[0023] Fig. 2B shows a state where the cartridge C is being removed (released) from the
carriage 2.
[0024] After the separation of the head connector 5 from the body connector 6 and that of
the pressing pin 10 from the recording head 1, the recording head can be raised in
the direction indicated by the arrow a, as stated above.
[0025] Next, engagement and disengagement between the head connector 5 on the cartridge
C and the body connector 6 will be described in detail.
[0026] Figs. 3A to 3C respectively show states where the engagement shaft is fitted into
the engagement hole.
[0027] Turning to Fig. 3A, when the body connector 6 is to be inserted into the head connector
5, the lever 7, which will be described later, is operated in a state where the engagement
shaft 6a integrally formed with the body connector 6 is fitted into the fitting portion
40b of the engagement hole in the connector holder 40 so as to move the body connector
6 and the connector holder 40 together. At that time, the head connector 5 is roughly
positioned as a consequence of the insertion of the cartridge C into the mounting
portion 2f of the carriage 2, and the body connector 6 is roughly positioned as a
consequence of the fitting of the engagement shaft 6a into the fitting portion 40b.
After the body connector 6 has been fitted into the head connector 5 with an inclined
surface (not shown) of the body connector 6 acting as a guide surface, the connector
holder 40 is moved rightwardly by a distance ℓ , as shown in Fig. 3B (this movement
of the connector holder 40 is achieved by the pivot of the lever 7, as will be described
later). Movement of the connector holder 40 by this distance ℓ allows the engagement
shaft 6a to be separated from the fitting portion 40b. This results in releasing of
the body connector 6 from its positioned state (it is to be noted that the body connector
6 is movable when it is in the state shown in Fig. 3A). The body connector 6 is engaged
with the head connector 5 more firmly than it is urged by the tension spring 41, so
it is released from the connector holder 40, i.e., the connector 6 is disengaged from
the connector holder 40. At that time, since a large diameter portion 40c of the engagement
hole 40a has a larger diameter than the engagement shaft 6a of the body connector
6, the engagement shaft 6a is loosely fitted into the large diameter portion 40c with
a gap g therebetween. This means that, while the body connector 6 is in engagement
with the head connector 5, the body connector 6 is disengaged from the connector holder
40. Therefore, the cartridge C (the recording head 1) is positioned relative to the
carriage 2 only by the pressing force of the pressing pin 10, which ensures accurate
positioning of the recording head 1 relative to the carriage 2.
[0028] Fig. 3C shows a fitting state of the engagement shaft 6a into the engagement hole
40a which is obtained when the cartridge C (the recording head 1) is removed (released).
When the cartridge C is removed from the carriage 2, the lever 7, which is in its
vertical position, is pivoted counterclockwise and is thereby positioned in its horizontal
position so as to move the connector holder 40 rightwardly. Although the body connector
6 is engaged with the head connector 5 firmly, as the connector holder 40 moves rightwardly,
a left edge L of the engagement hole 40a abuts against the engagement shaft 6a, and
then pushes the engagement shaft 6a in the direction indicated by the arrow b (see
Fig. 3C). As a result, the body connector 6 is disengaged (released) from the head
connector 5. Concurrently with this, the pressing pin 10 moves together with the connector
holder 40 and is separated from the recording head 1.
[0029] Thereafter, the cartridge C can be removed from the mounting portion 2f in the manner
shown in Figs. 2A and 2B.
[0030] In the above description, only the relation between the engagement shaft 6a and the
engagement hole 40a of the connector holder 40 has been explained. However, the same
relation is established between the other engagement shafts 6b and 6c and the other
corresponding two engagement holes.
[0031] Fig. 4 shows an example of a mechanism for moving the connector holder 40.
[0032] As shown in Fig. 4, a shaft 20 provided on the connector holder 40 is connected to
a link 21. The shaft 20 is fitted into a slide hole 2a formed in the carriage 2 in
such a manner as to be slidable therealong. A slide hole 21a formed in the link 21
receives a carriage shaft 9 in such a manner that the carriage shaft 9 can slide along
the hole 21a. The lever 7 is rotatably engaged with the carriage shaft 9. A nib 21b
of the link 21 is fitted into a cam hole 7a of the lever 7. In consequence, as the
lever 7 is rotated, the link 21 is moved in the rightward and leftward directions.
In Fig. 4, the position of the lever 7 shown by the solid line represents a recording-head-released
state, and the lever position shown by the broken line represents a recording-head-locked
state (positioned state). As the operator pivots the lever 7 from its recording-head-released
state (shown by the solid line) to its recording-head-locked state (shown by the broken
line), the connector holder 40 connected to the link 21 moves leftwardly first. After
the body connector (not shown) has been inserted into the head connector (not shown),
the link 21 moves back to the right by the distance ℓ while being guided along the
cam hole 7a. The cam hole 7a is so designed that the rotation of the lever 7 stops
after the link 21 has moved back by the distance ℓ. Also, the cam hole 7a is so designed
that the lever 7 is pushed by the reaction of the pushing force of the pressing pin
10 which presses the recording head 1, which is transmitted to the lever 7 through
the link 21, and is thereby fixed at its stop position.
[0033] More specifically, by pivoting the lever 7 clockwise, connection of the body connector
6 to the head connector 5, release of the body connector 6 from its positioned state,
and the positioning of the recording head 1 can be performed in series.
[0034] The body connector 6 can be removed from the head connector 5 by pivoting the lever
6 counterclockwise.
[0035] The above-described embodiment employs a pair of connectors consisting of the edge
of a printed circuit board, and a card-edge connector. However, the present invention
is not limited to this, and a pair of connectors such as those shown in Fig. 5 may
also be employed. This example is a combination of male and female connectors consisting
of a plurality of pins 23a and a plurality of recesses 22a which receive the pins
23a.
[0036] In this embodiment, only one recording head is mounted on and removed from the carriage.
However, the present invention can also be applied to, for example, a full-color ink
jet recording apparatus which employs a plurality of recording heads.
[0037] Figs. 6 and 7 show another example of a structure for mounting a cartridge on a carriage.
In Figs. 6 and 7, arms 53 and 54 are rotatably supported on a connector holder 50
through arm shafts 51 and 52. The arm 53 is urged by a spring 55 clockwise, whereas
the arm 54 is urged by a spring 56 counterclockwise. The body connector 6 is mounted
on the connector holder 50 with a backlash (a play) therebetween. The body connector
6 is urged rightwardly by the tension spring 41.
[0038] When the recording head 1 is in its released state, the body connector 6 is weakly
urged rightwardly by the tension spring 41. At that time, the engagement shaft 6a
is in contact with contact portions 53a and 54a of the arms 53 and 54, by means of
which the connector 6 is positioned.
[0039] Fig. 7 shows a state in which the connectors are connected with each other. When
the body connector 6 is inserted into the head connector 5, the body connector 6 moves
leftwardly together with the connector holder 50 in a state where the engagement shaft
6a of the body connector 6 is in contact with the contact portions 53a and 54a of
the arms. After the body connector 6 has been engaged with the head connector 5, the
arm 53 on the connector holder 50 abuts against a contact pin 46 provided on a carriage
45 and starts to rotate counterclockwise, whereas the arm 54 abuts against a contact
pin 47 and begins to rotate clockwise.
[0040] This results in release of the contact of the body connector 6 with the arms 53 and
54. At that time, since the body connector 6 is connected to the head connector 5
more firmly than it is urged by the tension spring 41, it is released from the connector
holder 50. Furthermore, since an engagement hole 50a has a larger diameter than the
engagement shaft 6a of the body connector 6, the engagement shaft 6a is loosely fitted
into the engagement hole 50a with a gap g therebetween. This means that, while the
body connector 6 is in engagement with the head connector 5, the body connector 6
is disengaged from the connector holder 50.
[0041] More specifically, by pivoting the lever (not shown) and thereby moving the connector
holder 50 leftwardly, connection of the body connector 6 to the head connector 5,
release of the body connector 6 from its positioned state and fixing of the recording
head 1 can be performed in sequence.
[0042] In the above description, only the relation between the engagement hole 50a of the
connector holder 50 and the engagement shaft 6a of the body connector 6 has been described.
The same relation, however, holds between the other engagement shafts and the other
engagement holes.
[0043] Next, the cartridge C will be described below in detail with reference to Fig. 8
which is a perspective view of the cartridge C employed in this embodiment.
[0044] As shown in Fig. 8, an upper portion of the cartridge C forms the ink tank 13, while
a lower portion thereof constitutes the recording head 1. The recording head 1 has
at its left edge the contact surfaces 1a and 1b and at its right edge the head connector
5. The cartridge C can be mounted on the carriage 2.
[0045] Fig. 9 is a perspective view of another example of the cartridge C.
[0046] As shown in Fig. 9, a tank portion 80 and a connector 85 are arranged side by side
so as to reduce the height H of the cartridge C. Thus, the height H of the cartridge
C mounted on the carriage can be maintained low.
[0047] Furthermore, since the thickness W of the cartridge is small, it is possible to reduce
the size of the carriage 3, which accommodates a plurality of cartridges in an aligned
state.
[0048] Connector covers 83 are formed integrally with the outer wall of the tank so as to
prevent careless contact of the connector 85. A positioning portion 81 consists of
contact surfaces 81a and 81b. Provision of contact surfaces (not shown) on the recording
head 86 at positions separated from these positioning surfaces 81a and 81b through
a sufficient distance ensures that the recording head is fixed firmly when an inclined
portion 84 thereof is pressed by the pressing pin (not shown).
[Embodiment 2]
[0049] Next, a second embodiment of the present invention will be described below with reference
to Figs. 10A to 10D.
[0050] In this embodiment, the pressing pin which acts as a pressurizing shaft has at its
distal end a tapered or rounded portion which makes contact with the recording head.
The recording head has an inclined surface which makes contact with the distal end
of the pressuring shaft. The carriage has a contact surface which makes contact with
the outer peripheral surface of the pressuring shaft and thereby receives components
having a direction perpendicular to the pressurizing shaft. Pressure is applied to
the recording head by the pressurizing shaft so as to position the recording head
in the mounting portion of the carriage. In this way, when the cartridge is mounted
on the mounting portion, a large amount of moment is prevented from being applied
to the pressing pin. This allows the pressing pin to advance smoothly from the connector
holder and ensures that the recording head is positioned accurately by the elastic
force of the spring of the pressing pin.
[0051] In Figs. 10A to 10D, the same reference numerals are used to denote parts which are
the same as those in the first embodiment, description thereof being omitted.
[0052] When the recording head 1 is mounted on the mounting portion 2f, it is positioned
with its contact surfaces 1a, 1b and 1c in contact with and pressed against the contact
surfaces 2a, 2b and 2c of the carriage 2. More specifically, a pressure f is applied
to the recording head 1 by the pressing pin 10 engaging with the connector holder
40 which is a retaining member so as to bring the contact surfaces 1a and 1b of the
recording head 1 into contact with the contact surfaces 2a and 2b of the carriage
2 and thereby position the recording head in a horizontal direction. Both the pressing
pin 10 and the pressurized surface 1d of the recording head 1 are inclined. This generates
a component f1 of the pressure f generated by the pressing pin 10, which brings the
contact surface 1c of the recording head 1 into contact with the contact surface 2c
of the carriage 2 and thereby positions the recording head 1 in a vertical direction.
The pressing pin 10 is urged by a coil spring 10a.
[0053] Fig. 10B shows a state in which the recording head is positioned in a direction of
scanning. As shown in Fig. 10B, the recording head 1 has three protrusions 1ℓ and
1m (one of them being not shown), which make contact with contact surfaces 2ℓ and
2m on the carriage 2 so as to position the recording head in the direction of scanning.
The presence of the inclined surface 1d of the recording head 1 generates a component
f2 of the pressure f applied by the pressing pin 10, which presses the protrusions
1ℓ and 1m against the contact surfaces 2ℓ and 2m on the carriage 2 and thereby positions
the recording head in the direction of scanning.
[0054] Thus, as the pressing pin 10 is moved in the direction indicated by the arrow A and
the distal end 10b of the pressing pin 10 thereby abuts against the the inclined surface
1d of the recording head 1, generating the pushing force f, the components f1 and
f2 of the pushing force f are generated by the presence of the inclined surface 1d,
and the recording head 1 is pressed and positioned in both the vertical and horizontal
directions. Furthermore, in the present embodiment, since the outer peripheral surface
10c of the pressing pin 10 is in contact with an inclined surface 2s of the carriage,
reactions f1' and f2' of the components f1 and f2 are received by this inclined surface
2s, as shown in Fig. 10C. Moreover, an engagement slit 40s formed in the connector
holder 40 into which the pressing pin 10 is inserted is elongated, and this elongated
slit 40s and the inclined surface 2s form a right angle (90 degrees). In consequence,
even if the pressing pin 10 is inserted between the inclined surface 1d of the recording
head 1 and the inclined surface 2s of the carriage 2 in a slightly shifting state,
neither the component f1 nor f2 is applied to the pin 10.
[0055] Thus, in the present invention, when the cartridge C is mounted on the mounting portion
2f, no moment is applied to the pressing pin 10 which is the pressurizing shaft, and
this allows the pressing pin 10 to advance from the connector holder 40 smoothly and
thereby ensures that the recording head 1 is positioned accurately by the elastic
force of the spring 10a. As a result, only the pushing force f in an axial direction
of the pressing pin 10 acts between the pressing pin 10 and the connector holder 40,
thus eliminating scuffing of the pressing pin 10 and reducing the force required to
move the connector holder 40.
[0056] Fig. 11 shows another example of the cartridge C.
[0057] In this example, the thickness W of the cartridge in the direction of scanning is
small, and this allows a carriage which accommodates a plurality of cartridges in
a aligned state to be made small.
[0058] The cartridge C has an ink tank portion 80 for containing ink. Connector covers 83
are formed integrally with the outer wall of the tank portion 80 so as to prevent
careless contact of the connector 85. A positioning portion 81 consists of contact
surfaces 81a and 81b. Provision of contact surfaces on the recording head 86 (having
a plurality of nozzles whose discharge surfaces are directed downward) at positions
which are separated from these contact surfaces 81a and 81b sufficiently allows the
recording head to be fixed reliably when the inclined surface 84 is pressed by the
pressing pin 10. A knob 82 is used when the cartridge C is mounted on and removed
from the mounting portion. The knob 82 has an air vent 82a. A notch 83a and guides
83b are guides of the cartridge C which are used when the cartridge is mounted on
the mounting portion.
[0059] Figs. 12A and 12B show an example of a full color ink jet recording apparatus which
employs a plurality of recording head. It is assumed that the cartridge shown in Fig.
11 is employed in this recording apparatus. In Figs. 12A and 12B, the same reference
numerals are used to denote parts which are the same as those of the preceding embodiment.
[0060] In this example, four cartridges C1, C2, C2 and C4 (containing ink of different colors,
e.g., yellow, magenta, cyan and black) of the type shown in Fig. 11 are positioned
on the carriage 2.
[0061] The connector holder 40 has four pressing pins 10, which are urged in the leftward
direction as viewed in Figs. 12A and 12B by the corresponding springs 10a. The connector
holder 40 engages with the links 21 through the shafts 20, and is movable in the rightward
or leftward direction as the lever 7 engaged with the links 21 is rotated clockwise
or counterclockwise. When the connector holder 40 is moved in the rightward direction,
pressurization is removed and the cartridges become exchangeable. When the cartridges
are mounted on the carriage, the connector holder 40 is moved in the leftward direction.
[0062] When the cartridges C are to be mounted on the mounting portions 2f, the recording
heads 86 of the cartridges C are inserted into recesses 2f1 of the mounting portions
2f from above. At that time, rectangular portions 2h of the carriage 2 are fitted
between the guides 83b of the cartridges C, by means of which the cartridges C are
roughly positioned. Thereafter, the operation lever 7 is pivoted clockwise so as to
advance the holder 40. As the holder 40 is moved forward, the guides 54 of the carriage
2 are inserted into the notches 83a of the cartridges C and the pins 10 are brought
into engagement with the cartridges C, whereby the cartridges C are mounted on the
mounting portions 2f. Springs 59 are provided on the carriage 2 for pressing the cartridges
C mounted on the mounting portions 2f rearwardly and thereby positioning the cartridges
with a high degree of accuracy. When the cartridges C have been mounted on the respective
mounting portions 2f, the distal ends 10b of the pressing pins 10 are in contact with
the contact surfaces 1d of the cartridges C (C1 to C4), pressing the cartridges. Also,
the outer peripheral surfaces 10c of the pins 10 are in contact with the contact surfaces
2S of the carriage 2 which separately receive thrusts in directions perpendicular
to the pressing pin. In consequence, the retaining member 40 receives only reactions
of the springs 10a, no thrusts being applied to the retaining member 40. This enables
the lever 7 to be operated with a small amount of force when a plurality of cartridges
are simultaneously removed from the mounting portions. Reference numerals 11a denote
bearings, 51 a flexible cable, and 52 a toothed belt through which a driving force
for moving back and forth the carriage 2 is transmitted to the carriage 2.
[0063] Fig. 13 shows another example of the pushing pin.
[0064] A pushing pin 150 of this example has a rounded distal end 150a, which makes contact
with the inclined surface 2d of the recording head. Like the pushing pin shown in
Fig. 10B, the pushing pin 150 having such a rounded distal end is capable of generating
a pushing force f having a component f2 thereof in a direction perpendicular to the
axial direction, which acts on the inclined surface 1d of the recording head, when
the pushing pin 150 is pressed in its axial direction.
[0065] In this invention, the body connector may be connected to the cartridge connector
by moving both connectors or either of them.
[0066] Fig. 14 schematically shows a recording apparatus, such as a printer, a copier, or
a facsimile, in which the present invention is carried out.
[0067] A recording apparatus body 100 has an openable cover 101 at an operation side thereof.
When the cover 101 is pivoted about a central shaft thereof and is thereby opened,
the interior of the apparatus body becomes exposed. This opening of the cover 101
permits pivotal operation of the lever 7 and, hence, mounting and removal of bubble-jet
type recording head cartridges A, B, C and D on and from the apparatus body. When
the lever 7 is pivoted to a position shown by the solid line in Fig. 14, the cartridges
shown in Fig. 11 can be mounted on the carriage. Positioning of the lever 7 at that
position precludes closing of the cover 101, so that the device is protected from
accidental closing. The cartridge C shown by the broken line in Fig. 14 represents
that which is being mounted on the apparatus, and the solid line in Fig. 14 represents
the cartridge after it has been located at a predetermined position in the apparatus
body for recording. When the cartridge is at its predetermined position in the apparatus,
the recording head protrudes downwardly between recording medium conveying rollers
16 and 18, and the discharge openings of the recording head face the guide surface
of a platen 50. A reference numeral 102 denotes a flexible sheet of an electric wiring
portion, and reference numerals 11 and 12 designate carriage guiding rails.
[0068] The connector holder 40 is shown as in a state where the cartridge has been inserted
and then fixed relative to the carriage by the pivot of the lever to a position shown
by the broken line. For details, see Figs. 10A, 10B, 10C, 10D, 11, 12A and 12B and
the descriptions made with reference to these figures. Shafts 20 and 202 are provided
on the two sides with respect to the direction in which the connector holder 40 is
moved relative to the carriage. The shafts 20 and 202 are aligned at the same level.
The shafts 20 and 202 are fitted into two slots elongated in a straight line with
each other on the two side surfaces of the carriage in such a manner as to be slidable
therealong. The shafts 20 and 202 located at the positions shown by the solid line
correspond to the lever 7 shown by the solid line. The shafts 20 and 202 shown by
the broken line correspond to the lever 7 shown by the broken line. The shafts 20
and 202 ensure more reliable parallel movement of the connector holder. In this embodiment,
the shafts 20 and 202 are not provided on the connector body but are disposed above
and in the vicinity of the recording head positioning pushing pin 10 so as to improve
the accuracy with which the pushing pin is positioned. Alternatively, shafts similar
to the shafts 20 and 202 may be provided on the connector body so as to ensure stable
parallel movement of the connector body. In that case, it is preferable to arrange
the body connector such that it becomes movable in the leftward and rightward directions
by a distance equal to a gap after it has been connected to the cartridge connector.
In this embodiment, the elongated slot for the shaft 202 may be formed such that the
shaft 202 becomes movable in the rightward and leftward directions after the connection
of the connectors so that the pushing pin 10 can be positioned only through the shaft
20.
[0069] Fig. 15 is a view similar to Fig. 12A, and shows the engagement of the lever 7 with
the shaft 20. As has been described with reference to Fig. 12A, the link 21 connects
the lever 7 with the shaft 20. The recording apparatus body of this embodiment is
a copier, the configuration of which is described below in brief. Below an original
pressing plate and an original glass table are disposed an optical reading means and
a means for converting the information which is read by the optical reading means
to produce an electrical signal. The obtained electrical signal is converted by the
flexible sheet into a recording head driving signal, which is supplied to the recording
head to form a full color ink image. A cassette 210 is inserted into the lower portion
of the apparatus body from the side of a discharge tray 213. The recording medium
is conveyed out of the cassette by a feeding roller 211 in the direction opposite
to that of the insertion of the cassette.
[0070] The present invention is not limited to the aforementioned embodiments and various
changes may be possible without departing from the scope of the invention.
[0071] As will be understood from the foregoing description, in the first and second embodiments,
the connector for electrically connecting the recording head with the apparatus body
is in a positioned state while it is inserted into the recording head. The connector
is released from its positioned state after the insertion. In consequence, the recording
head can be exchanged by a simple operation, and accurate positioning of the recording
head and the reliable electrical connection are enabled. More specifically, according
to the first and second embodiments, both the electrical connection between the recording
head and the carriage and positioning of the recording head can be achieved by one
operation. While the body connector is being inserted into the head connector, the
body connector is in a positioned state. After the insertion, the body connector is
released from its positioned state. This allows the recording head to be positioned
only by the pushing of the pressing member, thus eliminating involvement of the connector
in the positioning of the recording head.
[0072] Thus, the recording head can be mounted on and removed from the apparatus body by
a series of operations, improving the mounting and removal operation.
[0073] In the aforementioned structures, positioning of the cartridge (the recording head)
relative to the carriage is performed utilizing part of the frame of the cartridge
with the recording head.