TECHNICAL FIELD
[0001] The present invention relates to ink-jet printers, and, more particularly, to alignment
of the printhead and carriage and an electrical interconnect lock-in mechanism for
controlling the printhead.
BACKGROUND ART
[0002] In ink-jet printing technology, a printhead, comprising a plurality of nozzles in
a nozzle plate, is fluidically associated with a reservoir of ink. The printhead is
mounted on one end of a print cartridge and the reservoir is provided inside the cartridge.
[0003] An interconnect means is provided, which carries electrical signals from a microprocessor
in the printer to the printhead. For thermal ink-jet printers, these signals provide
a current to resistors associated with the nozzles and thus control the heating of
specific resistors, which in turn form droplets of ink. The droplets of ink are expelled
through the nozzles toward a print medium, such as paper. The particular pattern of
resistor heating controls the pattern of characters formed on the print medium.
[0004] The print cartridge is supported in a carriage, which is adapted to move bidirectionally,
normal to the movement of the print medium through the printer. The carriage movement
is controlled by a motor and an associated belt drive, with the motor controlled by
the microprocessor.
[0005] Insertion of an ink-jet cartridge into the carriage often necessitates use of two
hands or two operations. Further, many cartridge/carriage configurations do not provide
simultaneous alignment of the nozzle plate in the X, Y, and Z directions. Finally,
contact between the printhead and the interconnect means must be reliably made, in
order to ensure proper nozzle firing.
[0006] Accordingly, it is desired to provide a cartridge/carriage assembly that includes
the foregoing advantages without the limitations of the prior art.
[0007] EP-A-0122577 (Siemens AG) describes a printer cartridge/carriage assembly comprising
a carriage mounted on a guide rail and a printer cartridge. The cartridge is slotted
onto the carriage and secured in place by means of a spring-loaded snap fitting arm
attached to the mounting of the carriage.
[0008] The present invention provides a printhead cartridge/carriage lock-in assembly, for
printing on a print medium, comprising:
a. a cartridge having electrical contacts, a reference system, and a plurality of
print elements, the print elements being disposed out of the plane of the electrical
contacts;
b. carriage means;
c. said carriage means including base support means for receiving the cartridge;
d. said base support means depending into referencing means, for aligning the cartridge
in proper printing position along the x, y and z directions;
e. electrical interconnect means on the carriage means, to supply control signals
to the cartridge electrical contacts when the cartridge is inserted in the carriage
means, said electrical interconnect means being disposed out of the plane of the print
elements.
[0009] The cartridge has top, bottom, sides, front and rear surfaces and preferably includes
a printhead on the bottom surface, a contact on the back surface connected to the
printhead, referencing pads on the side surfaces, and a lip on the back surface for
accepting a snap spring for locking the cartridge in position in the carriage. The
securing means includes the snap spring and means for receiving the referencing pads
on the cartridge. The force loading means urge the interconnect means against the
contact of the cartridge.
[0010] The printhead cartridge/carriage assembly of the invention requires only one hand
of the operator to both insert and lock the cartridge in position. Further, the cartridge/carriage
assembly provides simultaneous alignment of the nozzle plate in the X, Y, and Z directions
Finally, contact between the printhead and the interconnect means is reliably made
each time the cartridge is inserted and locked in position, thereby ensuring proper
nozzle firing each time.
BRIEF DESCRIPTION OF THE DRAWINGS
[0011]
FIG. 1 is a perspective view of an assembled carriage/cartridge assembly, together
with electrical interconnect thereto;
FIG. 2 is an exploded side elevational view showing the assembly of the electrical
interconnect and an elastomeric support in the cartridge;
FIG. 3 is a perspective view, partly cut-away, of the elastomeric support;
FIG. 4 is a front elevational view of the carriage;
FIG. 5 is a side elevational view of the carriage, without the cartridge;
FIG. 6a is a cross-sectional view of the assembly depicted in FIG. 5, showing the
cartridge inserted into the carriage, but not locked into place;
FIG. 6b is a view similar to that of FIG. 6a, but showing the cartridge locked in
position;
FIG. 7 is a view similar to that of FIG. 6b, but showing a greatly enlarged view of
the electrical interconnect and elastomeric support assembled in the carriage;
FIG. 8 is a side elevational view similar to that of FIG. 4, with the cartridge chute
removed in order to show the positioning of the electrical interconnect in the carriage;
and
FIG. 9 is a perspective view of the cartridge, showing the printhead electrical contact,
which provides electrical connection to the resistors in the printhead, and the reference
pads.
BEST MODES OF CARRYING OUT THE INVENTION
[0012] Referring now to the drawings wherein like numerals of reference designate like elements
throughout, a print cartridge/carriage assembly, denoted generally at 10, is shown
in FIG. 1. The assembly 10 comprises a carriage 12 in which a print cartridge 14 is
depicted, locked into position. An interconnect strip 16 provides electrical signals
from a microprocessor (not shown) to the cartridge 14, as discussed more fully below.
[0013] As shown in FIG. 2, the carriage 12 comprises a base support 18 and a chute 20 affixed
thereto by fastening means 22. The carriage 12 advantageously comprises a glass-filled,
carbon-filled, polytetrafluoroethylene-filled, silicon-filled polycarbonate.
[0014] The interconnect strip 16 and a spring pad 24 are sandwiched by the support 18 and
chute 20. The spring pad 24 comprises a resilient, elastomeric material and, as seen
in FIG. 3, comprises a plurality of resilient bumps 26. The spring pad 24 is seated
in a depression 25 (shown in FIG. 4) in the carriage base support 18, behind a portion
of the interconnect strip 16, as described more fully below.
[0015] The base support 18 and chute 20 are aligned in proper relationship by molded-in
features such as pipe 27, which engage through corresponding openings in the interconnect
strip 16 into opposed openings in the other member.
[0016] The interconnect strip 16 comprises a strip of flexible dielectric material, carrying
a plurality of electrically conducting lines 28, as seen more clearly in FIG. 8. The
conducting lines 28 terminate in convex contact bumps or dimples 30, which are configured
in a particular pattern.
[0017] The bumps 26 on the spring pad 24 are configured in the same pattern as the contact
dimples 30 on the interconnect strip 16. As seen in FIG. 7, the spring pad pumps 26
provide a force loading means against the contact dimples 30 to urge them against
the cartridge 14.
[0018] The cartridge 14 comprises top 32, bottom 34, sides 36, 38, front 40 and back 42
surfaces. The cartridge 14 advantageously comprises a modified polyphenylene oxide.
[0019] A printhead 44 is provided on the bottom surface 34. The printhead 44 comprises a
plurality of resistors (not shown) associated with a plurality of nozzles (not shown)
formed in a nozzle plate (not shown). Ink (not shown) is stored in a reservoir interior
the cartridge 14.
[0020] The cartridge 14 also includes a contact strip 46 on the back surface 42, which wraps
around to the bottom surface 34 to provide a plurality of conducting paths or traces
to the resistors. In particular, each resistor is supplied by an electrical signal
along a unique conducting path. The contact strip 46 includes a plurality of concave
contact pads 48, which are arranged in the same pattern as the convex contact dimples
30 on the interconnect strip 16. Locking of the cartridge 14 in the carriage 12, as
described in greater detail below, matches up the contact dimples 30 with the contact
pads 48, to provide an electrical path from the microprocessor to each of the resistors
in the printhead 44.
[0021] The contact strip 46 comprises a flexible material having a plurality of electrical
traces thereon. Preferably, a tape automated bond (TAB) circuit of the type manufactured
and sold by 3M Company (Minneapolis, MN) is employed.
[0022] The top surface 32 of the cartridge 14 is provided with a pair of finger grips 50a,
50b. The larger finger grip 50a terminates in a V-shaped member 52a, which may be
provided with an arrowhead insignia to denote the proper direction of orientation
of the cartridge 14. When the cartridge 14 is locked in the carriage 12, the cartridge
is received by a similarly shaped surface on the carriage to provide a visual reference
for proper orientation. Lock-out ears 54 further act to prevent mis-orientation of
the cartridge 14 in the carriage 12.
[0023] Reference pads 56, seen more clearly in FIG. 9, are provided on the cartridge 14
near the base thereof. In particular, two sets of reference pads 56 are provided;
these comprise sculpted surfaces that align the nozzle plate in the X, Y and Z directions.
The X reference pad 56x is a surface parallel to the side surface 38. (There is only
one X reference pad 56x, since the carriage 12 is provided with a side spring 58 which
urges against the opposite side surface 36 to force the cartridge against one side
of the chute 20. The Y reference pad comprises the upper vertical surface 56y of the
sculpted surface. The Z reference pad comprises the inner horizontal surface 56z of
the sculpted surface. The junction of 56y and 56z comprises a pivot or rotation point
56r, about which the cartridge 14 rotates during the lock-in operation.
[0024] Downwardly depending L-shaped members 60a,b on the support base 18 each cooperatively
engage one of the reference pads 56 in mating association. A snap-spring 62 in the
upper portion of the chute 20 engages a ledge member 64 on the back surface 42 of
the cartridge 14.
[0025] The L-shaped members 60a,b provide reference surface against which the reference
pads 56 of the cartridge bear. In particular, reference pad 56x bears against reference
surface 60x on member 60a (the member on the opposite side of the side spring 58).
Reference pads 56y push back against reference surfaces 60y (shown in FIG. 2). Reference
pads 56z bear down on reference surfaces 60z.
[0026] The snap-spring 62 is housed in a molded-in feature 66 of the carriage support base
18. A mating housing 67, which sits above the snap-spring 62 when the base 18 and
chute 20 are assembled, includes an inward V-shaped surface 67a, which receives the
similarly-shaped surface 52a of the cartridge 14. The rear of the housing 66 comprises
a finger grip 68. The front of the cartridge chute 20 is also provided with a finger
grip 20b.
[0027] The support 18 of the carriage 12 includes a bearing 70, which is associated with
a carriage rod (not shown). The carriage rod is positioned substantially parallel
with the paper drive axis (not shown), and permits bidirectional movement of the carriage
12 therealong. The carriage 12 is moved by a belt (not shown), attached to the carriage
by a belt attachment 72. The belt is attached to a carriage drive motor (not shown),
which is controlled by the microprocessor.
[0028] A reference means, or slider bump, 74 rides on the surface of a carriage guide 76.
The weight of the carriage 12 preloads the slider bump 74 against the carriage guide
76, thereby making constant contact. The slider bump 74 comprises a low-friction,
long wearing material and may be a separate piece or a molded-in feature of the carriage
12. The slider bump 74 serves to maintain the printhead 44 a constant, fixed distance
from the print medium.
[0029] The carriage base 18 also includes an interposer arm 78 secured in a tube 80. The
function of the interposer arm is related to mechanically triggering certain features
in the service station where the assembly 10 resides in between printing operations,
and is not relevant to the invention herein.
[0030] The printhead lock-in mechanism is considered unique, since it simultaneously aligns
the nozzle plate in the X, Y and Z directions and aligns, wipes, and loads the contact
pads of the electrical interconnect strip 16. This is accomplished with no additional
bail, latch or lever arm, as seen on other ink-jet printers. The alignment of the
nozzle plate and the loading of the interconnect strip 16 occurs when the user rotates
the cartridge 14 in the direction of the arrow 82 (FIG. 6a), about the pivot point
56r. The user does this by squeezing the cartridge thumbhold 50a and the carriage
finger hold 68 between the thumb and forefinger.
[0031] Before the user can squeeze the cartridge 14 into its locked-in position, the user
must be able to easily drop the cartridge into the carriage chute 20. The springs
58, 62 which align the cartridge 14 do not apply any force to the cartridge until
the cartridge begins to rotate into the locked-in position (shown in FIG. 6b). This
leaves an unobstructed path for the user to easily drop the cartridge 14 into the
pre-rotation position, depicted in FIG. 6a. However, the side-kicker spring 58 applies
light force when inserting the cartridge 14.
[0032] The cartridge 14 rotates about the reference pads 56, specifically, point 56r. As
the user rotates the cartridge 14, the alignment functions are performed before the
electrical interconnect strip 16 is loaded. First, one side 36 of the cartridge 14
engages the molded-in carriage side spring 58. This spring 58 references the cartridge
14 in the X direction by pushing the cartridge sideways until the X reference pad
56x is touching the X reference pad 60x on the cartridge. The result is an accurate,
no slop alignment of the nozzle plate in the X direction.
[0033] The next action to occur is the alignment in the Z direction. As the rear ledge 64
of the cartridge 14 encounters the rear metal snap-spring 62, the spring pushes the
cartridge in the Z direction until the Z reference pads 56z are in contact with the
Z reference pads 60z on the carriage 12. The result is an accurate, no slop registration
of both the electrical interconnect 16 and the nozzle plate in the Z direction.
[0034] As the cartridge 14 continues to rotate about the rotation point 56r into position,
the electrical interconnect concave contact pads 48 on the cartridge contact 46 get
wiped slightly by the convex contact dimples 30 on the carriage interconnect strip
16. This offers improved reliability over the dimpled interconnect on prior art printers,
because the oxides and contamination are wiped off the contacts 30 and 48 before the
interconnect 16 is loaded.
[0035] The wiping action is followed by the alignment of the cartridge electrical contact
pads 48 in the X direction. This occurs when the cartridge's outer rear heel lock
tabs 84a,c engage the sides 86a,c of the heel lock slot 86 on the carriage 12. The
interconnect strip 16 on the carriage 12 is referenced accurately to the heel lock
slot 86 by pins 27, thereby providing the required alignment of the interconnect strip
to the cartridge's electrical contact pads 48. The contact strip 46 is fastened, such
as by glue or adhesive, to the cartridge 14 and is referenced by an assembly machine.
[0036] Finally, the cartridge 14 is aligned accurately in the Y direction. The electrical
interconnect's rubber spring pad 24 on the carriage 12 must be deflected the proper
distance in the Y direction in order to maintain the required contact force. In the
back 42 of the cartridge 14, the rubber spring 24 pushes back against the electrical
contacts 30 and 48 so that the Y reference pads 56y on the cartridge contact the Y
reference pads 60y on the carriage. This maintains the necessary force on the contact
pads 48 located on the contact strip 46, on the rear surface 42 of the cartridge 14.
This also provides an accurate Y registration of the nozzle plate as well as controlling
the rotational alignment of the nozzles.
[0037] At the top 32 of the cartridge 14, the required contact force in the Y and Z directions
is maintained by the rear snap-spring 62. As the cartridge 14 rotates into the locked-in
position, the rear lip 64 of the cartridge 14 deflects the rear spring-snap 62 and
passes over an over-center point 62a (FIG. 6a) on the snap-spring. The snap-spring
62 is designed to apply about 70% of its force in the Y direction. This is the force
required to maintain the electrical interconnect 16 in the rear 42 of the cartridge
14.
[0038] As the cartridge 14 passes the over-center point 62a on the rear snap-spring 62,
the cartridge makes an audible "snap", signalling to the user that the cartridge is
in the proper locked-in position. The force of the rubber interconnect spring pad
24 is adequate to hold the cartridge into its accurately aligned position under the
large accelerations and shock loads the cartridge encounters in normal printing operations.
[0039] To remove the cartridge 14 from the carriage 12, the user simply rotates the cartridge
by squeezing the cartridge finger hold 50b and the carriage thumb hold 20b between
the thumb and forefinger. The rear ledge 64 on the carriage 14 deflects the rear snap-spring
62 until the cartridge over-centers into the unlocked position. There is an audible
"snap" which tells the user that the cartridge 14 can now be lifted out of the carriage
12 for disposal.
INDUSTRIAL APPLICABILITY
[0040] The print cartridge/carriage assembly disclosed herein is suitably employed in ink-jet
printers, particularly thermal ink-jet printers.
[0041] Thus, there has been disclosed an ink-jet print cartridge/carriage assembly which
is easily assembled and disassembled, with reproducibly accurate registration of the
cartridge in the carriage. Various changes and modifications of an obvious nature
will be readily apparent to those of ordinary skill in this art, and all such changes
and modifications are considered to fall within the scope of the invention, as defined
by the appended claims.
1. A printhead cartridge/carriage lock-in assembly (10), for printing on a print medium,
comprising:
a. a cartridge having electrical contacts (46, 48), a reference system (56), and a
plurality of print elements, the print elements being disposed out of the plane of
the electrical contacts;
b. carriage means (12);
c. said carriage means including base support means (18) for receiving the cartridge;
d. said base support means depending into referencing means (60a, 60b, 60z), for aligning
the cartridge in proper printing position along the x, y and z directions;
e. electrical interconnect means on the carriage means, to supply control signals
to the cartridge electrical contacts when the cartridge is inserted in the carriage
means, said electrical interconnect means being disposed out of the plane of the print
elements.
2. The assembly as defined in claim 1, wherein said referencing means includes a pair
of downwardly depending, spaced-apart, generally oppositely disposed L-shaped members
(60a, 60b), for engaging said reference system of the cartridge.
3. The assembly as defined in claim 1 or claim 2, further including securing means (62)
for causing the cartridge to be locked in position relative to said carriage means,
and wherein the cartridge includes a rear ledge (64), and wherein said retention means
includes spring means (62) for engaging said rear ledge in order to retain the cartridge
in a locked position.
4. The assembly as defined in any one of claims 1 to 3, wherein said carriage means further
includes chute means (20), secured to said base support means (18), for helping guide
the cartridge in position.
5. The assembly as defined in any one of claims 1 to 4, wherein said electrical interconnect
means includes an interconnect strip (16) disposed intermediate said base support
means and the cartridge, and terminating in a plurality of dimples (30) disposed in
a predetermined arrangement for effecting electrical contact with the cartridge.
6. The assembly as defined in claim 5, wherein the cartridge contacts include a contact
strip (46) having a plurality of electrically conducting pads (48) disposed in a predetermined
array for effecting electrical contact with said interconnect strip (16); wherein
the cartridge includes a plurality of resistors; and wherein said contact strip (46)
provides a conducting path to each of said resistors generally terminating in said
conducting pads.
7. The assembly as defined in claim 5 or claim 6, further including spring pad means
(24) disposed intermediate said base support means (18) and said interconnect strip
(16), for forcing said interconnect strip against the cartridge, in order to maintain
a good electrical interconnection therebetween.
1. Eine Druckkopf-Kartuschen-/Wagen-Verriegelungsanordnung (10) zum Drucken auf einem
Druckmedium, mit folgenden Merkmalen:
a. einer Kartusche mit elektrischen Kontakten (46, 48), einem Referenzsystem (56),
und einer Mehrzahl von Druckelementen, wobei die Druckelemente außerhalb der Ebene
der elektrischen Kontakte angeordnet sind;
b. einer Wageneinrichtung (12);
c. wobei die Wageneinrichtung eine Basistrageeinrichtung (18) zum Aufnehmen der Kartusche
einschließt;
d. wobei sich die Basistrageeinrichtung zur Ausrichtung der Kartusche in eine geeignete
Druckposition entlang der X-, Y- und Z-Richtung (60a, 60b, 60z) in eine Referenzeinrichtung
erstreckt;
e. einer elektrischen Verbindungseinrichtung auf der Wageneinrichtung, um den elektrischen
Kontakten der Kartusche Steuerungssignale Zuzuführen, wenn die Kartusche in die Wageneinrichtung
eingeführt ist, wobei die elektrische Verbindungseinrichtung außerhalb der Ebene der
Druckelemente angeordnet ist.
2. Die Anordnung nach Anspruch 1, bei der die Referenzeinrichtung ein Paar von sich nach
unten erstreckenden, beabstandeten, im allgemeinen gegenüberliegend angeordneten L-förmigen
Baugliedern (60a, 60b) zur Ineingriffnahme mit dem Referenzsystem der Kartusche einschließt.
3. Die Anordnung nach Anspruch 1 oder 2, die ferner eine Sicherungseinrichtung (62) einschließt,
um zu veranlassen, daß die Kartusche relativ zu der Wageneinrichtung an Ort und Stelle
verriegelt wird, und bei der die Kartusche einen hinteren Vorsprung (64) einschließt,
und bei der die Beibehaltungseinrichtung eine Federeinrichtung (62) zur Ineingriffnahme
mit dem hinteren Vorsprung einschließt, um die Kartusche in einer verriegelten Position
zu halten.
4. Die Anordnung nach irgendeinem der Ansprüche 1 bis 3, bei der die Wageneinrichtung
ferner eine Abdeckeinrichtung (20) einschließt, die an der Basistrageeinrichtung (18)
befestigt ist, um die Führung der Kartusche an die Position zu unterstützen.
5. Die Anordnung nach irgendeinem der Ansprüche 1 bis 4, bei der die elektrische Verbindungseinrichtung
einen Verbindungsstreifen (16) einschließt, der zwischen der Basistrageeinrichtung
und der Kartusche angeordnet ist, und in einer Mehrzahl von Vertiefungen (30) abschließt,
die in einer vorbestimmten Anordnung angeordnet sind, um den elektrischen Kontakt
mit der Kartusche zu bewirken.
6. Die Anordnung nach Anspruch 5, bei der die Kartuschenkontakte einen Kontaktstreifen
(46) mit einer Mehrzahl von elektrisch leitfähigen Flächen (68) einschließt, die in
einem vorbestimmten Array angeordnet sind, um den elektrischen Kontakt mit dem Verbindungsstreifen
(16) zu bewirken; bei der die Kartusche eine Mehrzahl von Widerständen einschließt;
und bei der der Kontaktstreifen (46) einen leitfähigen Weg zu jedem der Widerstände,
die im allgemeinen die leitfähigen Flächen abschließen, schafft.
7. Die Anordnung nach Anspruch 5 oder 6, die ferner eine Federflächeneinrichtung (24)
einschließt, die zwischen der Basistrageeinrichtung (18) und dem Verbindungsstreifen
(16) angeordnet ist, um den Verbindungsstreifen gegen die Kartusche zu drücken, um
eine gute elektrische Verbindung zwischen diesen beizubehalten.
1. Ensemble à verrouillage de cartouche de tête d'impression et de chariot (10) pour
imprimer sur un support d'impression, comprenant:
a. une cartouche ayant des contacts électriques (46, 48), un système de référence
(56), et une pluralité d'éléments d'impression, les éléments d'impression étant disposés
en dehors du plan des contacts électriques;
b. des moyens formant chariot (12);
c. lesdits moyens formant chariot incluant des moyens de support de base (18) pour
recevoir la cartouche;
d. lesdits moyens de support de base dépendant de moyens de référence (60a, 60b, 60z),
pour aligner la cartouche dans une position d'impression correcte le long de directions
x, y et z;
e. des moyens d'interconnexion électrique prévus sur les moyens formant chariot, pour
fournir des signaux de commande aux contacts électriques de cartouche lorsque la cartouche
est insérée dans les moyens formant chariot, lesdits moyens d'interconnexion électrique
étant disposés en dehors du plan des éléments d'impression.
2. Ensemble selon la revendication 1, dans lequel lesdits moyens de référence comprennent
une paire d'éléments en forme de L dirigés vers le bas, écartés, et disposés globalement
de façon opposée (60a, 60b), pour s'engager avec ledit système de référence de la
cartouche.
3. Ensemble selon la revendication 1 ou 2, comprenant également des moyens de retenue
(62) pour verrouiller en position la cartouche par rapport auxdits moyens formant
chariot, et dans lequel la cartouche comprend une corniche arrière (64), et dans lequel
lesdits moyens de retenue comprennent des moyens élastiques (62) pour s'engager dans
ladite corniche arrière afin de retenir la cartouche en position verrouillée.
4. Ensemble selon l'une quelconque des revendications 1 à 3, dans lequel lesdits moyens
formant chariot comprennent également des moyens de guidage de chute (20), fixés auxdits
moyens de support de base (18), pour aider au guidage en position de la cartouche.
5. Ensemble selon l'une quelconque des revendications 1 à 4, dans lequel lesdits moyens
d'interconnexion électrique comprennent un ruban d'interconnexion (16) disposé entre
lesdits moyens de support de base et la cartouche, et se terminant en une pluralité
de bosses (30) disposées selon une configuration prédéterminée afin de réaliser un
contact électrique avec la cartouche.
6. Ensemble selon la revendication 5, dans lequel les contacts de cartouche comprennent
un ruban de contact (46) ayant une pluralité de plots électriquement conducteurs (48)
disposés en un réseau prédéterminé pour réaliser un contact électrique avec ledit
ruban d'interconnexion (16); dans lequel la cartouche comprend une pluralité de résistances;
et dans lequel ledit ruban de contact (46) fournit un chemin de conduction pour chacune
desdites résistances se terminant globalement dans lesdits plots conducteurs.
7. Ensemble selon la revendication 5 ou 6, comprenant également des moyens formant plots
élastiques (24) disposés entre lesdits moyens de support de base (18) et ledit ruban
d'interconnexion (16), pour amener de force ledit ruban d'interconnexion contre la
cartouche, afin de maintenir entre eux une bonne interconnexion électrique.