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(11) |
EP 0 048 418 B2 |
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NEW EUROPEAN PATENT SPECIFICATION |
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Date of publication and mentionof the opposition decision: |
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21.01.1987 Bulletin 1987/04 |
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Mention of the grant of the patent: |
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13.06.1984 Bulletin 1984/24 |
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Date of filing: 12.09.1981 |
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International Patent Classification (IPC)4: B41J 35/00 |
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Multiposition ribbon cassette system
Anordnung mit mehreren Schaltstellungen für eine Bandkassette
Dispositif pour changer la position d'une cassette à bande
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Designated Contracting States: |
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DE FR IT NL |
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Priority: |
22.09.1980 US 189122
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Date of publication of application: |
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31.03.1982 Bulletin 1982/13 |
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Applicant: DATAPRODUCTS CORPORATION |
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Woodland Hills
California 91365 (US) |
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Inventors: |
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- van Horne, Arthur C.
Lake Oswego, Oregon 97034 (US)
- Branson, Terry Lee
Dripping Springs, Texas 78620 (US)
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| (74) |
Representative: Zenz, Joachim Klaus, Dipl.-Ing. et al |
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Huyssenallee 58-64 45128 Essen 45128 Essen (DE) |
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[0001] This invention relates to a multicolor ribbon cassette system for use in a printer
or the like comprising a shuttle which is adapted to carry said printhead across a
printing medium, and supporting means, coupled to said shuttle and movable in conjunction
with the print head for supporting a ribbon cassette having a ribbon therein, said
ribbon cassette carrying a portion of said ribbon parallel to the printing medium,
said supporting means being pivotal about an axis to change the vertical position
of the ribbon cassette and of the printing bands of the ribbon with respect to the
printhead.
[0002] In most types of printing mechanisms, ranging from simple typewriters to complex
printers, ribbon shifting is accomplished by hohding a section of the ribbon in a
pivoting bail arm which moves the ribbon up or down to align the correct color band
with the printing mechanism such as a printhead. The bail arm supports the ribbon
in an operating plane which is parallel to a printing medium. One particular arrangement,
which is directed to a ribbon cassette with bicolor-capability, is disclosed in US-A-4,088,218
to Depew. This system, which is specifically designed for use with a matrix printhead,
includes a body portion having a chamber for storing a ribbon. The ribbon passes around
an extension which is pivotal to move the ribbon either up or down with respect to
its position within the cassette. Although a pivotal bail arm is generally satisfactory
when only two colors are to be employed, excessive vertical movement of the ribbon
can cause snagging and dragging, especially when the ribbon is carried within a cassette.
[0003] DE-A-2,337,626 discloses a multiposition ribbon cassette system of the type specified
above in which the shifting of the ribbon is accomplished by pivotal motion of the
cassette rather than translational motion of the ribbon. In this prior art system
the ribbon cassette is pivoted about an axis which is parallel to the printing medium.
As a result the ribbon plane is tilted with respect to the printing medium when changing
the vertical position of the ribbon cassette with respect to the printhead. Therefore
the ribbon cannot be accurately positioned in a plane parallel to the printing medium.
[0004] Therefore it is an object of the present invention to provide a simple and reliably
operating multiposition ribbon cassette system for shifting the ribbon to enable each
one of a plurality of printing bands on the ribbon to be positioned in a constant
plane with respect to the printing medium and aligned accurately with respect to the
printhead.
[0005] This object is achieved in a system of the type specified above in that said pivot
axis of said supporting means is perpendicular to said printing medium and said portion
of said ribbon is maintained in a plane parallel to said printing medium when changing
the vertical position of said ribbon cassette with respect to said printhead.
[0006] Movement of the entire ribbon assembly eliminates any kind of snagging of the ribbon.
Although the entire cassette is moved in order to change printing bands and color
respectively on the ribbon, the mechanism by which this is accomplished is extremely
simple. When another color is desired, the mechanism is shifted to align a different
printing band to the printhead with the effective ribbon portion remaining in the
same plane parallel to the printing medium.
[0007] The system is particlarly useful in conjunction with matrix printer which includes
a print head that is carried on a shuttle mechanism. Other printers which can utilize
the invention include ball and daisy wheel types. A pivot plate has one end secured
to the shuttle so as to enable the pivot plate to totate about an axis which is perpendicular
to both printing medium and the portion of the ribbon which is in a printing position.
A ribbon cassette is detachably mounted on the pivot plate. A ribbon drive motor is
secured to the underside of the pivot plate and advances the ribbon within the cassette.
By pivoting the pivot plate, different portions of the ribbon carried in the cassette
will be positioned adjacent the print head. However, since the ribbon is pivoting
about an axis perpendicular to the printing medium, it will remain parallel to the
printing medium as it is moved.
[0008] The movement of the pivot plate is controlled by means of a barrel cam which is driven
by a stepper motor. The barrel cam and the stepper motor is attached to the shuttle,
and the cam is coupled to the pivot plate by means of a cam follower. The position
of the cam is controlled by a suitable logic circuit. Other types of positioning arrangements
such as a movable ramp, may also be utilized. The cam arrangement, however, provides
a simple means of accurately positioning the ribbon cassette with respect to the print
head.
[0009] In the drawings:
FIGURE 1 is a perspective view of a portion of a printer assembly showing the multicolor
ribbon cassette system of the present invention in a lowered position;
FIGURE 2 is a top plan view of the ribbon cassette of the present invention;
FIGURE 3 is a rear plan view of the multicolor ribbon cassette system of the present
invention;
FIGURE 4 is a side plan view of the multicolor ribbon cassette system of the present
invention;
FIGURE 5 is a plan view of the track of a cam used to control the position of a ribbon
cassette, showing the orientation of a ribbon corresponding to each position of the
cam; and
FIGURE 6 is a perspective view of a portion of a printer assembly showing the ribbon
cassette system in a varied position.
[0010] Referring to FIGURES 1 and 6, a printer 10 is shown having a wire matrix print head
12 carried on a shuttle mechanism 14. The print head 12 is biased against a front
portion 14a of the shuttle. The shuttle moves along a pair of rails 16 which are attached
to a frame 18. A ribbon cassette 20 is carried on the shuttle and includes an opening
20a through which the print head 12 extends. The ribbon cassette 20 carries a ribbon
22, an exposed portion of which (22a) is carried in a front of the print head and
is substantially parallel to a printing medium 24.
[0011] Referring now to FIGURES 2, and 4, the ribbon cassette 20 is detachably connected
to a pivot plate 26 which serves to position the ribbon cassette 20 with respect to
the print head 12. The pivot plate 26 is pivotally connected to the shuttle 14 by
means of a pair of hinges 28 which enable the pivot plate 26 to rotate about an axis
which is perpendicular to the printing medium 24 and ribbon portion 22a. Because of
this configuration, the ribbon portion 22a will remain parallel to the printing medium
24 as the pivot plate 26 and ribbon cassette 20 are pivoted. The pivoting of the pivot
plate 26 will align a different portion of the height of the ribbon portion 22a with
the front 12a of the print head. The ribbon 22 is advanced by means of a ribbon drive
motor 38 which is connected to the underside of the pivot plate 26. This enables the
ribbon 22 to be advanced within the cassette 20 even when the pivot plate 26 is in
a tilted postion. It should be noted that the tilting of the cassette 20 will not
impair the printing action of the printer. At all times, the ribbon portion 22a will
be parallel to both the front of the print head 12 and the printing medium 24.
[0012] The position of the pivot plate 26 is controlled by means of a barrel cam 32 which
is attached to the shuttle 14. The barrel cam is driven by a motor 36 and is coupled
to the pivot plate 26 by means of a bar shaped cam follower 34. The cam 32 includes
a substantially spiral groove 32a having four flat rest positions which serve to define
four distinct printing positions (FIGURE 5) for the ribbon cassette 20. The cam follower
includes a protrusion 34a which cooperates with the spiral groove 32a and a protrusion
34b which extends into a notch 26a in the pivot plate. The motor 36, which is a stepper
motor in the present embodiment of the invention, operates to rotate the cam 32 so
that the cam follower portion 34a is positioned in one of the four flat portions of
the spiral groove 32a. The flat portions enable accurate ribbon height positioning
to be achieved despite slight inaccuracies in motor position, and also prevents rotation
of the cam 32 which would otherwise be caused by the application of downward force
on the cassette 20. The motor 36 is controlled by a suitable logic circuit 39. In
the present embodiment of the invention, the logic circuit 39 is such that when power
is first applied to the printer 10, the stepper motor 36 is commanded to bring the
cassette 20 down to the horizontal position by shifting the cam follower 34 down four
times. If the cassette 20 is already down or partially down, the motor 36 simply stalls
for all or some of the four shift commands. Once this initiallizing process has been
completed, the logic circuit 39 knows that the cassette is on band one of the ribbon
22 and keeps track of the position of the cassette as long as the power remains on.
The positions of a four band ribbon 22 with respect to the front of the printhead
12a corresponding to different positions of the cam 32 are shown in FIGURE 5. When
the ribbon cassette 20 is horizontal, band 1 of the ribbon 22 is aligned with the
printhead 12a, while when the cassette 20 is tilted fully upward, band 4 of the ribbon
22 is aligned with the printhead 12a.
[0013] In the present embodiment of the invention two different types of ribbon cassettes
can be employed. the first type includes four separate color bands to provide four
color printing capability. The second type includes an all black (or other single
color) ribbon. Both types of cassettes utilize a ribbon having the same width (one
inch). In order to automatically determine what type of cassette is installed in the
printer, a two step process is utilized. Each ribbon cassette includes a projection
or fin 40 extending from the bottom . surface of the cassette. When the pivot plate
is in its horizontal position, the projection 40 on either cassette is detected by
means of an optical sensor 42 located on the shuttle 14. After it has been determined
that a ribbon cassette is in place, the pivot plate is shifted up two positions and
the sensor 42 again activated. The length of the projection 40 on a cassette having
a four color ribbon is shorter than that on a cassette having a single color ribbon.
The length of a single color projection is shown in in FIGURE 3 by a dashed line 40a.
When the pivot plate is in a raised position, the sensor 42 will detect only the longer
of the two projections. The logic circuit 39 receives information from the sensor
42 in order to determine the presence and type of cassette being used.
[0014] In summary, the present invention is directed to a simple and effective way of utilzing
a multi-color ribbon cassette in a printing mechanism. Although the invention has
been described in terms of use with a matrix printer, it could easily be adapted for
use with other types of printers. By shifting the position of the entire cassette
instead of simply moving a portion of the ribbon, installation of a cassette is a
very simple procedure, since nothing special has to be done with the ribbon (i.e.,
threading into a bail arm). The system can easily handle more than two colors despite
the large distance between the plural color tracks. In addition, the system provides
for more accurate positioning than do typical bail systems.
[0015] Although the invention has been described in terms of a single embodiment, it should
be recognized that modifications and variations will readily occur to those skilled
in the art. For example, many alternate methods could be utilized to actuate and position
the pivot plate, including use of a rotating bar, solenoids or a cable instead of
a stepper motor or the use of a linear wedge ramp instead of a barrel cam. Consequently,
it is intended that the claims be interpreted to cover such modifications and equivalents.
1. A multiposition ribbon cassette system for positioning a ribbon having two or more
printing bands with respect to the printhead of a printer or the like comprising:
a shuttle (14) which is adapted to carry said printhead (12) across a printing medium
(24), and supporting means (26), coupled to said shuttle and movable in conjunction
with the print head for supporting a ribbon cassette (20), having a ribbon (22) therein,
said ribbon cassette carrying a portion (22a) of said ribbon parallel to the printing
medium (24), said supporting means (26) being pivotal about an axis to change the
vertical position of the ribbon cassette (20) and of the printing bands of the ribbon
with respect to the printhead (12).
characterized in that sadi pivot axis of said supporting means (26) is perpendicular
to said printing medium (24) and said portion (22a) of said ribbon (22) is maintained
in a plane parallel to said printing medium (24) when changing the vertical position
of said ribbon cassette (20) with respect to said printhead.
2. A system according to claim 1, characterized in that the supporting means comprises
a pivot plate (26) pivotally secured to the shuttle (14), wherein said pivot plate
is pivotal about said axis.
3. A system according to claim 2, characterized by comprising a ribbon drive motor
(38) attached to the pivot plate (26), said ribbon drive motor coupling to a ribbon
cassette (20) and operable to advance the ribbon (22) in the cassette.
4. A system according to claim 2 or 3, characterized by further including a multiposition
cam (32) coupled to the pivot plate (26), said cam being movable to position the pivot
plate in one of a plurality of locations.
5. A system according to claim 4, characterized in that said cam (32) is mounted on
said shuttle (14) and further including:
a cam motor (36) attached to the shuttle for controlling the position of the cam (32);
and
a cam follower (34) connecting the cam to the pivot plate (26).
6. A system according to claim 5, characterized in that said cam (32) is cylindrical
and includes a substantially spiral slot (32a) on its outer surface and in that said
cam follower (34) comprises a rod coupled to said slot.
7. A system according to claim 5 or 6, characterized in that said cam motor (36) is
a stepper motor.
8. A system according to one of claims 1 to 7, characterized by further including
an optical sensor (42) for detecting the presence of a fin (40) located on each'ribbon
cassette (20).
9. A system according to claim 8, characterized in that the configuration of said
fin (40) is a function of one of two types of ribbon (22) carried within the ribbon
cassette (20) and in that said sensor (42) is such that when the pivot plate (26)
is in a first position either configuration of said fin (40) will be detected and
when the pivot plate (26) is in a second position only one configuration will be detected,
thereby facilitating determination opf the type of ribbon carried within the ribbon
cassette.
1. Anordnung mit mehreren Schaltstellungen für die Positionierung einer Bandkassette
mit einem Band mit zwei oder mehreren Druckbereichen relativ zu einem Druckkopf eines
Druckers o. dgl., aufweisend: einen Wagen (14), der geeignet ist, den Druckkopf (12)
über ein Druckmedium zu führen, Trägermittel (26), verbunden mit dem Wagen und bewegbar
in Verbindung mit dem druckkopf, zur Halterung einer ein Band (22) enthaltenden Bandkassette
(20), wobei die Bandkassette einen Abschnitt (22a) des Bandes parallel zum Druckmedium
(24) führt und die Trägermittel (26) um eine Achse schwenkbar sind, um die vertikale
Stellung der Bandkassette (20) und der Druckbereiche des Bandes relativ zum Druckkopf
(12) zu ändern, dadurch gekennzeichnet, daß die Schwenkachse der Trägermittel (26)
rechtwinklig zum Druckmedium (24) verläuft und der Abschnitt (22a) des Bandes (22)
in einer parallelen Ebene zum Druckmedium (24) gehalten ist, wenn die vertikale Position
der Bandkassette (20) relativ zum Druckkopf (12) geändert wird.
2. Anordnung nach Anspruch 1, dadurch gekennzeichnet, daß die Trägermittel eine Schwenkplatte
(26) aufweisen, die schwenkbar am Wagen (14) gelagert ist, wobei die Schwenkplatte
um die genannte Achse schwenkbar ist.
3. Anordnung nach Anspruch 2, dadurch gekennzeichnet, daß sie einen Bandabtriebsmotor
(38) aufweist, der an der Schwenkplatte angebracht, mit einer Bandkassette (20) gekuppelt
und so ausgebildet ist, daß er das Band (22) in der Kassette antreiben kann.
4. Anordnung nach Anspruch 2 oder 3, dadurch gekennzeichnet, daß sie des weiteren
einen Multipositions-Kurvenkörper (32) aufweist, der mit der Schwenkplatte (26) gekuppelt
ist, wobei der Kurvenkörper (32) zum Postionieren der Schwenkplatte in eine von mehreren
Stellungen verstellbar ist.
5. Anordnung nach Anspruch 4, dadurch gekennzeichnet, daß der Kurvenkörper (32) auf
dem Wagen (14) montiert ist und die Anordung ferner enthält: einen Motor (36), angebracht
auf dem Wagen zur Steuerung der Position des Kurvenkörpers (32) und eine Stoßstange
(34), die den Kurvenkörper mit der Schwenkplatte (26) verbindet.
6. Anordnung nach Anspruch 5, dadurch gekennzeichnet, daß der Kurvenkörper (32) zylindrisch
ist und an seiner Außenfläche eine im wesentlichen spiralförmige Nut (32a) und die
Stoßstange (36) einen Stift aufweist, der mit der Nut gekuppelt ist.
7. Anordnung nach Anspruch 5 oder 6, dadurch gekennzeichnet, daß der Motor (36) ein
Schrittmotor ist.
8. Anordnung nach einen der Ansprüche 1 bis 7, dadurch gekennzeichnet, daß sie ferner
einen optischen Fühler (42) für die Erkennung des Vorhandenseins einer Rippe (40)
enthält, die an jeder Bandkassette (20) angebracht ist.
9. Anordnung nach Anspruch 8, dadurch gekennzeichnet, daß die Rippe (40) eine von
zwei Typen von in der Bandkassette (20) befindlichen Bändern (22) abhängige Konfiguration
hat und daß der Fühler (42) derart ausgebildet ist, dä er in einer ersten Position
der Schwenkbarplatte (26) jede Konfiguration der Rippe (40) erkennt und in einer zweiten
Position der Schwenkplatte (26) nur eine Konfiguration erkennt, wodurch die Erkennung
des Typs des in der Bandkassette befindlichen Bandes erleichtert wird.
1. Système de cassette pour ruban à position multiple pour mettre en position un ruban,
ayant deux ou plus de deux bandes imprimantes, par rapport à la tête d'impression
d'une imprimante ou appareil analogue, comprenant:
une navette (14) agencée pour faire passer ladite tête d'impression (12) en travers
d'un élément d'impression (24) et
un moyen support (26) accouplé à ladite navette et mobile en même temps que la tête
d'impression pour supporter une cassette de ruban (20) munie d'un ruban à l'intérieur,
cette cassette portant une portion (22a) de ce ruban paralléle à l'élément d'impression
(24), ledit moyen support (26) étant monté pivotant autour d'un axe pour changer la
position verticale de la cassette (20) et des bandes imprimantes du ruban par rapport
à la tête d'impression (12),
caractérisé par le fait que ledit axe de pivotement dudit moyen support (26) est perpendiculaire
audit élément imprimant (24) et ladite portion (22a) dudit ruban (22) est maintenue
dans un plan parallèle audit élément d'impression (24) quand la change la position
verticale de la dite cassette (20) par rapport à la dite tête d'impression.
2. Système selon la revendication 1, caractérisé par le fait que le moyen support
comprend une plaque pivotante (26) montée pivotante sur la navette (14), pivotant
autour dudit axe.
3. Système selon la revendication 2, caractérisé par le fait qu'il comprend un moteur
(38) d'entraînement du ruban fixé sur la plaque pivotante (26), ledit moteur étant
accouplé à une cassette de ruban (20) et actionnable pour entraîner le ruban (22)
dans la cassette.
4. Système selon la revendication 2 ou 3, caractérisé par le fait qu'il comprend,
en outre, un came (32) à position multiple, accouplée à la dite plaque pivotante (26),
ladite came étant déplaçable pour mettre la plaque pivotante dans une de ses diverses
positions.
5. Système selon la revendication 4, caractérisé par le fait que ladite came (32)
est montée sur ladite navette (14) et qu'elle comprend, en outre, un moteur de came
(36) fixé sur la navette pour commander la position de la came (32), et un suiveur
de came (34) reliant la came à la plaque pivotante (26).
6. Système selon la revendication 5, caractérisé par le fait que ladite came (32)
est cylindrique et comporte une fente (32a), sensiblement en former de spirale, sur
sa surface extérieure et ledit suiveur de came (34) comprend une tige accouplée à
ladite fente.
7. Système selon la revendication 5 ou 6, caractérisé par le fait que l'edit moteur
de came (36) est un moteur pas-à-pas.
8. Système selon l'une des revendications 1 à 7, caractérisé par le fait qu'il comprend,
en outre, un capteur optique (42) pour détecter la présence d'une patte (40) prévue
sur chaque cassette (20).
9. Système selon la revendication 8, caractérisé par le fait que la configuration
de ladite patte (40) est fonction de l'un des deux types de ruban (22) portés par
la cassette (20) et ledit capteur (42) est tel que, lorsque la plaque pivotante (26)
est dans une première postion, chacune des deux configurations de la patte (40) est
détectée et, lorsque la plaque pivotante (26) est dans une seconde position, seule
und des configurations est détectée, ce qui facilite la détermination du type de ruban
porté dans la cassette.