FIELD OF THE INVENTION
[0001] This invention relates to inkjet printers and the like and, more particularly, to
a mechanical and electrical keying system which assures that an inkjet printer will
only operate when a replaceable ink cartridge has been inserted that contains ink
which is compatible with the printer.
BACKGROUND OF THE ART
[0002] The prior art has suggested that replaceable inkjet printheads and ink cartridges
incorporate a parameter memory for storage of operating parameters that are used to
control print operations. For instance, U.S. Patent 5,138,344 to Ujita stores information
on a replaceable ink cartridge, which information relates to control parameters for
the printer. U.S. Patent 5,365,312 to Hillmann et al. describes the use of a memory
device integral with an ink reservoir for storage of ink consumption data. European
Patent EP 0 720 916 describes an ink reservoir which includes a memory for storage
of data regarding the identity of the ink supply and its fill level.
[0003] EP0789322 which falls under Article 54(3) EPC and is thus only relevant to the question
of novelty, discloses a printer/copier apparatus adapted to receive a replacement
ink cartridge. The apparatus includes a receptacle with a first connector that is
coupled to a processor which controls operation of the apparatus. The cartridge includes
a second connector which mates with the first connector and a serial access memory.
Data transfers are enabled both to and from the memory, which contains data such as
cartridge usage data.
[0004] The problems of compatibility between replaceable ink cartridges and printers which
receive those ink cartridges have been addressed in the prior art by providing mechanical
keying features which prevent insertion of replaceable ink cartridges that contain
inks that are incompatible with the printer. So long as a printer only used a single
replaceable ink cartridge, the mechanical keying system is a sufficient solution to
the problem. However, in full-color inkjet printers, four replaceable cartridges are
employed, requiring four different mechanical keying arrangements. More recently,
various types of inks have become available which are designed to be used for specific
applications. For instance, some ink categories are specifically designed for application
to plain paper print jobs wherein high-edge acuity is a principal requirement. Other
ink types have been developed for use with glossy-finish media sheets, etc. Accordingly,
mechanical keying methods have become increasingly complex.
[0005] It has been suggested that an electronic keying method be employed wherein a parameter
stored in a memory module mounted on an ink cartridge would contain an identifier
that would enable a printer to know if the ink contained in the cartridge was compatible
or incompatible. However, if a cartridge containing an incompatible ink is allowed
to couple to a fluidic connector in the printer, before the electronic interrogation
of the memory is enabled, there is a likelihood that some of the incompatible ink
will contaminate at least the fluidic interconnection to the printer. In such case,
if the ink is highly incompatible (e.g., creates a precipitate when combined with
a previously used ink), is a wrong color, manifests a viscosity which will plug the
orifices of a print head, etc.., such a coupling can result in severe printer damage.
[0006] Accordingly, it is an object of the invention to provide a keying system which prevents
insertion of a replaceable ink cartridge into a printer if the ink cartridge contains
a severely incompatible ink.
[0007] It is another object of this invention to provide a keying system for a printer which
allows an initial insertion of a replaceable ink cartridge if the ink cartridge contains
either a compatible ink or an ink which, while incompatible, will not create irreversible
printer damage as a result of a fluidic coupling thereof to the printer.
SUMMARY OF THE INVENTION
[0008] The present invention provides, as recited in the appendent claims, a printing system
comprising a replaceable ink cartridge in combination with an inkjet printer.
BRIEF DESCRIPTION OF THE DRAWINGS
[0009] Fig. 1 is a schematic representation of a printing system, showing an ink cartridge
of the present invention which forms a fluid interconnect and an electrical interconnect
with the printing system.
[0010] Fig. 1a is a schematic representation of certain parameters stored in a memory mounted
on the ink cartridge of the present invention
[0011] Fig. 2 is a perspective view of an inkjet printer, with cover removed, which incorporates
the ink cartridge of the present invention.
[0012] Fig. 3 is an ink supply receptacle of the type used in the printer of Fig. 2, shown
broken away, with an ink cartridge positioned for insertion thereinto.
[0013] Fig. 4 depicts a simplified sectional view, partially broken away, taken across line
A-A' of Fig. 3 with the ink cartridge installed in an ink cartridge receptacle of
Fig.3.
[0014] Fig. 5 illustrates a logic flow diagram of the effect of the mechanical and electronic
keying of the invention on a receiving inkjet printer.
DETAILED DESCRIPTION OF THE INVENTION
[0015] Fig. 1 schematically depicts an inkjet printer 10 that includes an ink cartridge
12 which incorporates the invention. Inkjet printer 10 further includes an ink cartridge
receiving station 14 which comprises a plurality of cartridge-receiving receptacles
15. An inkjet printhead 16 and a print controller 18 (e.g., a microprocessor) are
also included with an inkjet printer 10. Printing is accomplished by printer 10 causing
ejection of ink from printhead 16 under control of print controller 18.
[0016] Printhead 16 is connected to controller 18 by an electrical link 19. Ink is provided
to printhead 16 by way of fluid conduit 21 which fluidically connects to printhead
16 to ink cartridge receiving station 14. Ink container 12 includes a fluidic coupler
20 which is in fluid communication with fluid in ink reservoir 22. Ink cartridge 12
further includes a plurality of electrical contacts 24 which are electrically connected
to a memory 26.
[0017] Fluidic coupler 20 and electrical contacts 24 allow ink cartridge 12 to reliably
interconnect with a fluid inlet coupler 28 and electrical contacts 30, respectively,
associated with receptacle 15. Receptacle 15 enables ink to be transferred from ink
reservoir 22 to printhead 16, via fluid conduit 21. In addition, receptacle 15 allows
the transfer of information between memory 26 and print controller 18 via an electrical
link 32.
[0018] Fig. 2 depicts a perspective view of inkjet printer 10, with its cover removed, containing
plural ink cartridges 12. Printer 10 includes a tray 40 for holding a paper supply.
When a printing operation is initiated, a sheet of paper from tray 40 is fed into
printer 10, using a sheet feeder (not shown). During printing, paper sheets pass through
a print zone 42 whereupon a scanning carriage 44, containing one or more printheads
16, is scanned across the sheet for printing a swath of ink thereon. The sheet of
paper is stepped through the print zone 42 as the scanning carriage 44 prints a series
of swaths of ink to form images thereon. After printing is complete, the sheet is
positioned into an output tray 46 and the process repeats.
[0019] Scanning carriage 44 moves through print zone 42 on a scanning mechanism which includes
a slide rod 48. A positioning means, such as a coded strip (not shown), is used in
conjunction with a photo detector in scanning carriage 44 for precisely positioning
scanning carriage 44. A stepper motor (not shown), connected to scanning carriage
44 via a drive belt and pulley arrangement, is used for transporting scanning carriage
44 across print zone 42.
[0020] Scanning carriage 44 in Fig. 2 is shown positioned at a nonprinting position, disposed
adjacent print zone 42. The nonprinting position is known as a "service station" which
maintains printhead 16 to assure optimum print quality over time. Each of printheads
16 is coupled by a cable (not shown) to print controller 18 that, in turn, controls
the print actions thereof.
[0021] The present invention relates to apparatus for enabling ink container 12 to be received
within a receptacle 15 and to operate with printer 10 only if the ink contained within
reservoir 22 is of a compatible type to that utilized by printer 10. As will be understood
from the description below, a combination of mechanical and electrical keying is used
to accomplish the invention. However, before describing details of the keying arrangement,
further description of the structure of ink container 21 and receptacle 15 will be
considered.
[0022] Ink cartridge 12 is referred to as an off-axis ink supply because it is spaced from
a scan axis along which scanning carriage 44 moves. Once ink cartridge 12 is properly
inserted and latched into place in a receptacle 15, electrical, mechanical and fluidic
interfacing is accomplished with printer 10. Ink passes through the fluid interface
in receptacle 15, through fluid conduit 21 (e.g., tubing which fluidically connects
ink containers 54, 56, 58 and 60) to corresponding printheads 16 on print scanning
carriage 44.
[0023] Ink cartridge 12 contains a supply of ink which is either (i) from a first class
of inks that are compatible with the receptacle into which ink cartridge 12 is to
be inserted or (ii) from a second class of inks that are incompatible. The first class
of inks are those which, if brought into contact with a fluidic connector in the receptacle
will not damage printer 10. The second class of inks are those which, if allowed into
contact with the fluid connector will cause severe damage. Such inks may be of the
type which precipitate upon mixing with a previous ink connected to the fluidic connector,
have a different colorant, a different viscosity, etc.. For instance, it is critical
to prevent mixing of black and color inks in this system.
[0024] In Fig. 3, ink cartridge 12 is depicted, positioned for insertion into a receptacle
15 within ink cartridge receiving station 14. Each cartridge 12 includes an aligning/guide
feature 62 and a latch feature 64 which provide both alignment, latching and keying
functions. The aligning/guide features 62 are preferably positioned on opposite sides
of ink cartridge 12. Corresponding aligning feature 66 are disposed at opposite ends
of each receptacle 15. The use of aligning/guide 62 on opposite ends of cartridge
14 eliminates any need for partition walls between cartridges 12 during insertion.
[0025] Ink cartridge 12 has an elongate cross section perpendicular to the direction of
its insertion into receptacle 15. Aligning features 62 are positioned at opposite
ends, with the elongate shape of the cartridge maximizing the distance between the
aligning features. Placing the features at these locations minimizes the angular variation
between the ink cartridge and the receptacle during insertion, improves alignment
of fluid outlet 20 to fluid inlet 28 and improves alignment of connector 24 to connector
30. However, the narrow ends of ink cartridge 12 allow only a minimal number of mechanical
keying combinations. Cartridge 12 needs to be kept narrow to minimize the space occupied
by supply station 14. This limitation is resolved with an electronic keying system
that enhances the number of keying combinations (to be discussed below).
[0026] Aligning/guide features 62 provide a keying function to insure that only a cartridge
12, containing ink of the class which will not create damage to a fluidic coupler
28, may be inserted into a receptacle 15. Such class of inks may not all be usable
within printer 10, but will not damage the fluidic intercoupling means used to couple
cartridge 12 into printer 10. Should a cartridge 12 include ink that will damage printer
10, aligning/guide features 62 prevent any insertion of a cartridge 12 into a receptacle
15.
[0027] Once ink cartridge 12 is properly aligned and inserted into receptacle 14 (assuming
that the keying arrangement enables such insertion), a latching feature 68 engages
a corresponding latching feature 64 on ink cartridge 12 to latch ink cartridge 12
into a receptacle 15. At such time, fluid coupler 28, associated with receptacle 15,
engages the corresponding fluidic coupler 20 on ink cartridge 12 to allow a fluid
flow into printer 10.
[0028] Insertion of ink cartridge 12 into receptacle 15 also forms an electrical interconnect
between the cartridge 12 and receptacle 14. More specifically, electrical contacts
24 associated with cartridge 12 engage corresponding electrical contacts 30 associated
with receptacle 15 to allow information to be transferred between print controller
18 and memory 26.
[0029] Fig. 4 depicts a sectional view of ink cartridge 12 taken across line A-A in Fig.
3. Fig. 4 illustrates the interaction between aligning/guide features 62 on ink cartridge
12 and keying features 66 on receptacle 15. Keying features 66 are disposed on a first
side 70 and a second side 72 of receptacle 15. First and second sides 70 and 72 are
positioned at opposite ends of receptacle 15 and aligning/guide features 62 are disposed
at opposite ends of cartridge 12. In side 72, projections 74 are variously positioned
within keying features 66 to enable reception of a cartridge 12 which incorporates
a mating physical keying feature. Accordingly, unless a cartridge 12 includes such
a mating physical feature, it is prevented from insertion into a receptacle 15, thereby
preventing any coupling between fluidic couplers 20 and 28.
[0030] Further details of the mechanical guiding and aligning features are discussed in
the following copending U.S. Patent Applications: Model No. 08/566,833, filed December
4, 1995; Model No. 08/791,290, filed January 30, 1997 and Model No. 08/789,957, filed
January 30, 1997, all assigned to the same Assignee as this application. The disclosure
of each of the aforesaid copending patent applications is incorporated herein by reference.
[0031] Returning to Fig. 1a, a schematic view of memory 26 illustrates a plurality of data
segments stored therein which contain parameters for control of printer 10. One such
parameter 90 enables an identity of ink contained within reservoir 22 to be determined
by print controller 18. It is preferred that the parameter be a model number assigned
to cartridge 12 by the manufacture. At least a portion of that model number will then
include a value which unambiguously identifies the specific ink within the reservoir
22. Thus, when cartridge 12 is fully inserted into a receptacle 15 and connection
is made between electrical contacts 24 and 30, print controller 18 is enabled to read
out the model number from memory 26 and to identify the specific ink type within reservoir
22.
[0032] As will be recalled, electrical interconnection between contacts 24 and 30 cannot
be made (by virtue of the mechanical keying, described above) if the ink within reservoir
22 is within a class of seriously incompatible inks. Thus, the electrical interconnection
only occurs upon successful insertion of a cartridge 12. At such time, controller
18 determines, by analysis of ink identity parameter 90, the specific ink type in
cartridge 12. If the ink type is compatible with printer 10, controller 18 enables
further use of cartridge 12. If the ink is determined to be not a compatible type,
controller 18 issues a signal which causes display of a message to a user indicating,
at the least, a warning that the ink is incompatible with further operations of printer
10. The electronic keying feature may also provide a warning that an ink container,
for instance, contains pressurized ink (which may cause long term printer damage)
rather than ink at ambient pressure which the printer is designed to accept.
[0033] Fig. 5 illustrates a logic flow diagram of the effect of the mechanical and electronic
keying on a receiving inkjet printer. As above indicated, the ink cartridge container
may contain ink from the above-mentioned first class of inks, i.e., inks that do not
have severe incompatibility problems, or the second class of inks, i.e., inks which
exhibit serious incompatability with those to be used on the printer, e.g., the colorant
(cyan, magenta, yellow, black, red, etc.) is not the same as is to be received into
a receptacle. If the cartridge contains ink of the second class, the mechanical keying
prevents its insertion into a receptacle.
[0034] If the cartridge contains an ink from the first class, the mechanical keying enables
insertion of the cartridge into the receptacle. Then the system reads a model number
from the cartridge memory and determines if the correct first class of ink is being
installed. Thus, small differences in ink composition or differences in the internal
construction of the ink cartridge would determine the correct first class. If not
correct, the system blocks printing; otherwise, the system begins printing. An optional
system behavior would be to allow the user to override the blocking of use of the
ink cartridge if the ink will not do any long term damage to the printing system.
[0035] As an alternative, printer 18 can also disable further actions of printer 10 until
cartridge 12 is changed. The user message is preferably displayed via a connected
host processor that includes a display terminal.
[0036] As can be seen from the above, a cartridge 12 will be received into a receptacle
15 only if it contains an ink which falls into a class of inks that will not damage
printer 10 as a result of an initial installation. Once received into a receptacle
15, a determination of the ink type is made by controller 18 which allows further
use of ink from cartridge 12 only if the ink is fully compatible with printer 10.
Otherwise, further use of cartridge 12 is inhibited. The combined mechanical/electrical
keying enables a wide range of inks to be discriminated by printer 10 and avoids the
need for complex mechanical keying systems.
[0037] It should be understood that the foregoing description is only illustrative of the
invention. Various alternatives and modifications can be devised by those skilled
in the art without departing from the invention. Accordingly, the present invention
is intended to embrace all such alternatives, modifications and variances which fall
within the scope of the appended claims.
1. A printing system comprising a replaceable ink cartridge (12) in combination with
an inkjet printer (10) for receiving such a cartridge (12) in a receptacle (14), said
cartridge (12) comprising:
a casing including a fluidic coupler (20), a reservoir (22) connected to said fluidic
coupler (20) for holding an ink and an electrical connector (24);
a memory (26) coupled to said electrical connector (24), for storing an identity parameter
from which an identity of an ink stored in said reservoir (22) can be identified;
and
key means (62,64) positioned on a portion of said casing, successful insertion of
said casing into receptacle (14) indicating that an ink type in said reservoir (22)
is within a first class of compatible ink types, but not that it is useable with said
printer (10);
said printer system comprising:
said receptacle (14) positioned to receive said ink cartridge (12), the receptacle
(14) including both fluidic coupler means (28) and electrical connection means (30),
the receptacle (14) further including a mechanical key feature (66) for accepting
only ink cartridges (12) containing said first class of compatible ink types and for
rejecting ink cartridges (12) containing a second class of incompatible ink types;
and
processor means (18) for reading said identity parameter from said memory (26) via
said electrical connector (24), upon successful insertion of said casing into said
receptacle (14), and for determining from the identity parameter if ink in said reservoir
(22) is an ink that can be used with the printer (10) and only if said ink can be
used in said printer (10), enabling full use of said cartridge (12).
2. The printing system of claim 1, wherein said replaceable ink cartridge key means (62,64)
comprises a physical shape which is formed so that upon an attempted insertion of
said leading portion of said ink cartridge (12) into said receptacle (14), insertion
can only be accomplished if said ink in the reservoir (22) of said cartridge (12)
is within said first class of compatible ink types.
3. The printing system of claim 1, wherein said replaceable ink cartridge key means (62,64)
comprises a physical shape which is formed so that upon an attempted insertion of
said leading portion of said ink cartridge (12) into said receptacle (14), insertion
cannot be accomplished if said ink in the reservoir (22) of said cartridge (12) is
within said second class of incompatible ink types.
4. The printing system of any preceding claim, wherein said replaceable ink cartridge
identity parameter is a model number assigned to said replaceable ink cartridge (12).
5. The printing system of any preceding claim, wherein if said identity parameter enables
said processor means (18) to determine that said ink is not to be used in said printer
(10), said processor means (18) issues a signal which at least causes a caution message
to be displayed to a user.
6. The printing system of any preceding claim, wherein said receptacle mechanical key
feature (66) comprises a physical shape which is formed so that upon an attempted
insertion of a leading portion of an ink cartridge (12) into said receptacle (14),
said key means (62,64) on said leading portion enables insertion only if ink in the
reservoir (22) of said cartridge (12) is within said first class of compatible ink
types.
7. The printing system of any of claims 1 to 5, wherein said receptacle mechanical key
feature (66) comprises a physical shape which is formed so that upon an attempted
insertion of a leading portion of an ink cartridge (12) into said receptacle (14),
said key means (62,64) on said leading portion prevents insertion if ink in the reservoir
of said cartridge (12) is within said second class of incompatible ink types.
8. The printing system (10) of any preceding claim, wherein said identity parameter causes
said processor means (18) to issue a warning to a user if the ink cartridge (12) contains
an ink type within said first class, but said identity parameter denotes a feature
that does not match a feature required by said printing system (10).
1. Ein Drucksystem, das eine austauschbare Tintenkassette (12) in Kombination mit einem
Tintenstrahldrucker (10) zum Empfangen einer solchen Kassette (12) in einer Aufnahme
(14) umfaßt, wobei die Kassette (12) folgende Merkmale aufweist:
ein Gehäuse, das einen fluidischen Koppler (20), ein Reservoir (22), das mit dem fluidischen
Koppler (20) zum Halten einer Tinte verbunden ist, und einen elektrischen Verbinder
(24) umfaßt;
einen Speicher (26), der mit dem elektrischen Verbinder (24) gekoppelt ist, zum Speichern
eines Identitätsparameters, aus dem eine Identität einer Tinte, die in dem Reservoir
(22) gespeichert ist, identifiziert werden kann; und
Schlüsseleinrichtungen (62, 64), die an einem Abschnitt des Gehäuses positioniert
sind, wobei ein erfolgreiches Einbringen des Gehäuses in die Aufnahme (14) anzeigt,
daß ein Tintentyp in dem Reservoir (22) innerhalb einer ersten Klasse von kompatiblen
Tintentypen ist, jedoch nicht, daß er mit dem Drucker (10) verwendbar ist;
wobei das Druckersystem folgende Merkmale aufweist:
die Aufnahme (14), die positioniert ist, um die Tintenkassette (12) zu empfangen,
wobei die Aufnahme (14) sowohl eine fluidische Kopplereinrichtung (28) als auch eine
elektrische Verbindungseinrichtung (30) umfaßt, wobei die Aufnahme (14) ferner ein
mechanisches Schlüsselmerkmal (66) zum ausschließlichen Aufnehmen von Tintenkassetten
(12), die die erste Klasse von kompatiblen Tintentypen enthalten, und zum Auswerfen
von Tintenkassetten (12), die eine zweite Klasse von inkompatiblen Tintentypen enthalten,
umfaßt; und
die Prozessoreinrichtung (18) zum Lesen des Identitätsparameters aus dem Speicher
(26) über den elektrischen Verbinder (24) nach erfolgreichem Einbringen des Gehäuses
in die Aufnahme (14) und zum Bestimmen anhand des Identitätsparameters, ob Tinte in
dem Reservoir (22) eine Tinte ist, die mit dem Drucker (10) verwendet werden kann,
und nur wenn die Tinte in dem Drucker (10) verwendet werden kann, die volle Verwendung
der Kassette (12) ermöglicht.
2. Das Drucksystem gemäß Anspruch 1, bei dem die austauschbare Tintenkassetten-Schlüsseleinrichtung
(62, 64) eine physische Form aufweist, die so gebildet ist, daß nach versuchtem Einbringen
des führenden Abschnitts der Tintenkassette (12) in die Aufnahme (14) das Einbringen
nur vollzogen werden kann, wenn die Tinte in dem Reservoir (22) der Kassette (12)
innerhalb der ersten Klasse der kompatiblen Tintentypen ist.
3. Das Drucksystem gemäß Anspruch 1, bei dem die austauschbare Tintenkassetten-Schlüsseleinrichtung
(62, 64) eine physische Form aufweist, die so gebildet ist, daß nach versuchtem Einbringen
des führenden Abschnitts der Tintenkassette (12) in die Aufnahme (14) das Einführen
nicht vollzogen werden kann, wenn die Tinte in dem Reservoir (22) der Kassette (12)
innerhalb der zweiten Klasse von inkompatiblen Tintentypen ist.
4. Das Drucksystem gemäß einem der vorhergehenden Ansprüche, bei dem das Identitätsparameter
der austauschbaren Tintenkassette eine Modellnummer ist, die der austauschbaren Tintenkassette
(12) zugeteilt wurde.
5. Das Drucksystem gemäß einem der vorhergehenden Ansprüche, bei dem das Identitätsparameter
der Prozessoreinrichtung (18) ermöglicht, zu bestimmen, daß die Tinte in dem Drucker
(10) nicht verwendet werden soll, wobei die Prozessoreinrichtung (18) ein Signal ausgibt,
das zumindest bewirkt, daß dem Anwender eine Warnnachricht angezeigt wird.
6. Das Drucksystem gemäß einem der vorhergehenden Ansprüche, bei dem das mechanische
Schlüsselmerkmal (66) der Aufnahme eine physische Form aufweist, die so gebildet ist,
daß nach einem versuchten Einbringen des führenden Abschnitts einer Tintenkassette
(12) in die Aufnahme (14) die Schlüsseleinrichtung (62, 64) an dem führenden Abschnitt
das Einbringen nur ermöglicht, wenn die Tinte in dem Reservoir (22) der Kassette (12)
innerhalb der ersten Klasse der kompatiblen Tintentypen ist.
7. Das Drucksystem gemäß einem der Ansprüche 1 bis 5, bei dem das mechanische Schlüsselmerkmal
(66) der Aufnahme eine physische Form aufweist, die so gebildet ist, daß nach einem
versuchten Einbringen eines führenden Abschnitts einer Tintenkassette (12) in die
Aufnahme (14) die Schlüsseleinrichtung (62, 64) an dem führenden Abschnitt das Einführen
verhindert, wenn die Tinte in dem Reservoir der Kassette (12) innerhalb der zweiten
Klasse der inkompatiblen Tintentypen ist.
8. Das Drucksystem gemäß einem der vorhergehenden Ansprüche, bei dem das Identitätsparameter
bewirkt, daß die Prozessoreinrichtung (18) an den Anwender eine Warnung ausgibt, wenn
die Tintenkassette (12) einen Tintentyp innerhalb der ersten Klasse enthält, aber
das Identitätsparameter ein Merkmal bezeichnet, das nicht einem Merkmal, das durch
das Drucksystem (10) erforderlich ist, angepaßt ist.
1. Système d'impression comprenant une cartouche d'encre remplaçable (12) en combinaison
avec une imprimante à jet d'encre (10) pour recevoir une telle cartouche (12) dans
un réceptacle (14), ladite cartouche (12) comprenant :
◆ un boîtier incluant un coupleur fluidique (20), un réservoir (22) raccordé audit
coupleur fluidique (20) pour conserver une encre et un connecteur électrique (24)
;
◆ une mémoire (26) couplée audit connecteur électrique (24), pour mémoriser un paramètre
d'identité à partir duquel une identité d'une encre stockée dans ledit réservoir (22)
peut être identifiée ; et
◆ un moyen de codage (62, 64) positionné sur une partie dudit boîtier, une insertion
satisfaisante dudit boîtier dans le réceptacle (14) indiquant qu'un type d'encre dans
ledit réservoir (22) est à l'intérieur d'une première classe de types d'encre compatibles,
mais qui n'est pas utilisable avec ladite imprimante (10) ;
◆ ledit système d'imprimante comprenant :
• ledit réceptacle (14) positionné pour recevoir ladite cartouche d'encre (12), le
réceptacle (14) incluant à la fois un moyen de coupleur fluidique (28) et un moyen
de connexion électrique (30), le réceptacle (14) incluant, en outre, un organe de
codage mécanique (66) pour n'accepter que les cartouches d'encre (12) contenant ladite
première classe de type d'encre compatible et pour rejeter les cartouches d'encre
(12) contenant une seconde classe de types d'encre incompatibles ; et
• un moyen de processeur (18) pour lire ledit paramètre d'identité provenant de ladite
mémoire (26) via ledit connecteur électrique (24), sur insertion satisfaite dudit
boîtier dans ledit réceptacle (14) et pour déterminer à partir du paramètre d'identité
si l'encre dans ledit réservoir (22) est une encre qui peut être utilisée avec l'imprimante
(10) et seulement si ladite encre peut être utilisée dans ladite imprimante (10),
permettant une utilisation complète de ladite cartouche (12).
2. Système d'impression selon la revendication 1, dans lequel ledit moyen de codage de
cartouche d'encre remplaçable (62, 64) comprend une forme physique qui est formée
de sorte que sur essai d'insertion de ladite partie avant de ladite cartouche d'encre
(12) dans ledit réceptacle (14), l'insertion peut être accomplie seulement si ladite
encre dans le réservoir (22) de ladite cartouche (12) est à l'intérieur de ladite
première classe des types d'encre compatibles.
3. Système d'impression selon la revendication 1, dans lequel ledit moyen de codage d'une
cartouche d'encre remplaçable (62, 64) comprend une forme physique qui est formée
de sorte que sur essai d'insertion de ladite partie avant de ladite cartouche d'encre
(12) dans ledit réceptacle (14), l'insertion ne peut pas être accomplie si ladite
encre dans le réservoir (22) de ladite cartouche (12) est à l'intérieur de ladite
seconde classe des type d'encres incompatibles.
4. Système d'impression selon l'une quelconque des revendications précédentes, dans lequel
ledit paramètre d'identité de cartouche d'encre remplaçable est un numéro de modèle
affecté à ladite cartouche d'encre remplaçable (12).
5. Système d'impression selon l'une quelconque des revendications précédentes, dans lequel
si ledit paramètre d'identité permet audit moyen de processeur (18) de déterminer
que ladite encre ne doit pas être utilisée dans ladite imprimante (10), ledit moyen
de processeur (18) sort un signal qui au moins amène un message d'avertissement à
être affiché à un utilisateur.
6. Système d'impression selon l'une quelconque des revendications précédentes, dans lequel
ledit organe de codage mécanique de réceptacle (66) comprend une forme physique qui
est formée de sorte que sur essai d'insertion d'une partie avant d'une cartouche d'encre
(12) dans ledit réceptacle (14), ledit moyen de codage (62, 64) sur ladite partie
avant ne permet l'insertion que si l'encre dans le réservoir (22) de la cartouche
(12) est à l'intérieur de ladite première classe des types d'encre compatibles.
7. Système d'impression selon l'une quelconque des revendications 1 à 5, dans lequel
ledit organe de codage mécanique de réceptacle (66) comprend une forme physique qui
est formée de sorte que sur essai d'insertion d'une partie avant d'une cartouche d'encre
(12) dans ledit réceptacle (14), lesdits moyens de codage (62, 64) sur ladite partie
avant empêchent l'insertion si l'encre dans le réservoir de ladite cartouche (12)
est à l'intérieur de ladite seconde classe des types d'encre incompatibles.
8. Système d'impression (10) selon l'une quelconque des revendications précédentes, dans
lequel ledit paramètre d'identité amène ledit moyen de processeur (18) à sortir un
avertissement à un utilisateur si la cartouche d'encre (12) contient un type d'encre
à l'intérieur de ladite première classe mais ledit paramètre d'identité indique une
caractéristique qui ne correspond pas à une caractéristique requise par ledit système
d'impression (10).