EP1994242B1 - Free-running locking cylinder - Google Patents
Free-running locking cylinder Download PDFInfo
- Publication number
- EP1994242B1 EP1994242B1 EP07712516A EP07712516A EP1994242B1 EP 1994242 B1 EP1994242 B1 EP 1994242B1 EP 07712516 A EP07712516 A EP 07712516A EP 07712516 A EP07712516 A EP 07712516A EP 1994242 B1 EP1994242 B1 EP 1994242B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- key
- cylinder
- blocking
- blocking element
- free
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Not-in-force
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Classifications
-
- E—FIXED CONSTRUCTIONS
- E05—LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
- E05B—LOCKS; ACCESSORIES THEREFOR; HANDCUFFS
- E05B9/00—Lock casings or latch-mechanism casings ; Fastening locks or fasteners or parts thereof to the wing
- E05B9/10—Coupling devices for the two halves of double cylinder locks, e.g. devices for coupling the rotor with the locking cam
- E05B9/105—Coupling devices for the two halves of double cylinder locks, e.g. devices for coupling the rotor with the locking cam including disengagement means, e.g. opening from one side being still possible even if the key is inserted from the other side
Definitions
- the invention relates to a freewheeling cylinder according to the preamble of claim 1.
- Such a freewheel lock cylinder is of the DE 4242522 A1 described.
- the cylinder core is by means of tumbler pins, which eino in housing or core holes of the housing or the cylinder core with not key inserted locked. If a key is inserted, the tip of the key enters a coupling slot of a coupling piece.
- the coupling piece is rotatable with not key inserted opposite the cylinder core, so that the closing member can rotate freely when the key is not inserted.
- Such freewheeling cylinders are used in particular on gear locks.
- DE 3026480 and DE 3424603 lock cylinders are known in which the closing member is rotatably coupled with not inserted key with the cylinder core. If a key is inserted into the closing channel of the cylinder core, then a swivel coupling is pivoted, so that an opposite cylinder core is uncoupled from the closing member.
- the invention has for its object to provide measures with which the opening method is counteracted using a narrow lockpick.
- Claim 1 provides, first and foremost, a blocking element which can be brought from the key tip on entry into the coupling slot into a form-locking connection to the cylinder core.
- This blocking element is designed as a pivoting element. It is a two-armed swivel lever. When the key is not inserted, the blocking element is held in a position in which one arm of the blocking element lies outside a blocking recess of the cylinder core. In this position, the coupling piece can be rotated freely relative to the cylinder core. The coupling piece is located in an axial cavity of the cylinder core.
- the operating portion of the blocking element which normally locks the coupling slot, pivoted by the tip of the key or by the end of a Dietrichs, so enters its blocking portion in the blocking recess of the cylinder core.
- the coupling piece is now rotatably coupled with the cylinder core. If, according to the cylinder core, not correctly sorted tumbler pins are locked in rotation, then the coupling piece can not be turned. A rotation of the coupling piece is possible only with simultaneous rotation of the cylinder core.
- the lock cylinder nevertheless has a freewheeling function.
- the closing member can assume a position in which the blocking element is not aligned with the blocking recess of the cylinder core.
- the lock cylinder can be turned, since the key tip can displace the entire coupling piece axially.
- the key can thus be fully inserted into the keyway of the cylinder core, without the tip of the operating portion of the Blocking element must pivot.
- the coupling piece does not rotate with. Only when the blocking recess is aligned with the blocking portion of the blocking element, so that the latter can enter into the blocking recess, the key tip can enter the coupling slot. Then the closing member is again rotatably with the cylinder core over the coupling piece coupled.
- the closing element can only be brought into a position in which the blocking section engages in the blocking recess.
- the tumbler pins lock the rotatability of the cylinder core, the closing member of the lockpick can not be rotated further.
- the embodiment is a double lock cylinder.
- This has a cylinder housing made of metal, which has a flange, in which core holes 13 are arranged.
- stuck tumbler pins not shown, which are supported by tumblers on the bottom of the core holes 13.
- the core holes 13 open into a hole in which a cylinder core 2 is inserted.
- the two cylinder cores 2 of the double-locking cylinder have mutually aligned axes of rotation. They have to the housing bores 13 aligned core holes 14.
- In this stuck core pins which correspond to housing pins, not shown.
- the core holes 14 open into a key channel 8, in which a flat key 5 can be inserted.
- the two opposite broad sides of the key are profiled with different deep recesses for the differently long core pins. With an inserted matching key 5, the cylinder core 2 can be rotated.
- the tip 6 of the key 5 is inserted in a coupling slot 7 of a Krupplungs Westerns 4.
- the coupling piece 4 has a substantially circular cylindrical portion in which it rests in a frontal cavity of the cylinder core 2.
- the coupling slot 4 has a profile section 16. This has a non-circular cross section and is in a cross-section adapted profile opening 15 of the closing member 3, so that rotation of the coupling piece 4 on the closing member. 3 can be transferred.
- the wall 2 'of the frontal opening of the cylinder core 2, in which the circular cylindrical portion of the coupling piece 4 is located, has diagonally opposite recesses.
- the keyhole 5 'associated recess 12 forms a blocking recess.
- a blocking portion 9 "of a blocking element 9 engage when an operating portion 9 'is pivoted by the key tip 6 of a key 5.
- the blocking element 9 is formed in the embodiment of a two-armed lever. This is within the coupling slot 7.
- the blocking element 9 is pivotable about a pivot axis 10, which is formed by a pivot pin.
- the actuating arm 9 ' is acted upon by a compression spring 11, which is supported on the bottom of a recess which is introduced into the bottom of the coupling slot 7.
- the spring 11 acts on the actuating portion 9 'such that it closes the coupling slot 7.
- the entry of the key tip 6 in the coupling slot 7 is only possible if this is aligned with the keyway 8. This is for example in the FIGS. 2 and 3 shown.
- the blocking element 9 is pivoted so that the blocking section 9 "can enter into the blocking recess 12 of the cylinder core 2.
- the coupling piece 4 is connected in a rotationally fixed manner to the cylinder core 2 by a positive connection Key, it can be rotated ..
- the closing member 3 can be rotated freely, for example in the in FIG. 8 shown position.
- the blocking section 9 ' now lies in front of a wall 2' of the front side opening of the cylinder core 2. If a key were now inserted, it can not enter the coupling slot 7 with its tip 6, since it is not aligned with the keyway 8. Rather, the key shifts, as in the FIGS. 9 and 10 represented, the entire coupling piece 4 against the force of the above-mentioned compression spring and not shown on the other cylinder core 2 shown on the right in the drawings.
- the displacement path of the coupling piece 4 is so large that the key 5 can be completely inserted into the key channel 8 until the tumblers are sorted.
- the cylinder half of the double-lock cylinder shown on the right in the drawings is essentially identical to the cylinder half shown on the left in the drawings. While on the left side of the blocking recess 12 is formed by a diametrical slit, it is formed on the right side of a bore. This is a bore 12 in the jacket wall 2 'of the frontal cavity of the cylinder core. 2
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Lock And Its Accessories (AREA)
- Pens And Brushes (AREA)
- Vending Machines For Individual Products (AREA)
- Reinforced Plastic Materials (AREA)
- Preventing Unauthorised Actuation Of Valves (AREA)
Abstract
Description
Die Erfindung betrifft einen Freilaufschließzylinder gemäß Gattungsbegriff des Anspruchs 1.The invention relates to a freewheeling cylinder according to the preamble of
Ein derartiger Freilaufschließzylinder wird von der
Wird durch den Schlüsselkanal, in welchem normalerweise der passende Schlüssel eingesteckt werden soll, ein schmaler Dietrich eingesteckt, kann dessen verbreitetes Ende in eine Kupplungsstellung mit dem Kupplungsstück gebracht werden. Das Ende des Dietrichs tritt dabei in den Kupplungsschlitz. Das Kupplungselement und somit auch das damit drehfest gekoppelte Schließglied kann dann vom Dietrich gedreht werden.If a narrow locking peg is inserted through the keyway, in which normally the matching key is to be inserted, its widespread end can be brought into a coupling position with the coupling piece. The end of the lockpick enters the coupling slot. The coupling element and thus also the rotatably coupled therewith closing member can then be rotated by Dietrich.
Aus der
Der Erfindung liegt die Aufgabe zugrunde, Maßnahmen anzugeben, mit denen der Öffnungsmethode unter Verwendung eines schmalen Dietrichs entgegengewirkt wird.The invention has for its object to provide measures with which the opening method is counteracted using a narrow lockpick.
Gelöst wird die Aufgabe durch die im Anspruch 1 angegebene Erfindung.The problem is solved by the invention defined in
Der Anspruch 1 sieht zunächst und im Wesentlichen ein von der Schlüsselspitze beim Eintritt in den Kupplungsschlitz in eine Formschlussverbindung zum Zylinderkern bringbares Blockierelement vor. Dieses Blockierelement ist als Schwenkelement ausgebildet. Es handelt sich um einen zweiarmigen Schwenkhebel. Bei nicht eingestecktem Schlüssel wird das Blockierelement in einer Stellung gehalten, in der ein Arm des Blockierelementes außerhalb einer Blockierausnehmung des Zylinderkernes liegt. In dieser Stellung kann das Kupplungsstück gegenüber dem Zylinderkern frei gedreht werden. Das Kupplungsstück liegt in einer Axialhöhlung des Zylinderkernes ein. Wird der Betätigungsabschnitt des Blockierelementes, welcher normalerweise den Kupplungsschlitz sperrt, durch die Spitze des Schlüssels oder durch das Ende eines Dietrichs verschwenkt, so tritt sein Blockierabschnitt in die Blockierausnehmung des Zylinderkernes ein. Das Kupplungsstück ist jetzt drehfest mit dem Zylinderkern gekuppelt. Ist der Zylinderkern zufolge nicht richtig einsortierter Zuhaltungsstifte drehgesperrt, so kann das Kupplungsstück nicht gedreht werden. Eine Drehung des Kupplungsstücks ist nur unter gleichzeitiger Drehung des Zylinderkernes möglich. Der Schließzylinder besitzt gleichwohl eine Freilauffunktion. Das Schließglied kann eine Stellung einnehmen, in welcher das Blockierelement nicht zur Blockierausnehmung des Zylinderkernes fluchtet. Wird in dieser Stellung der passende Schlüssel eingesteckt, so kann der Schließzylinder gedreht werden, da die Schlüsselspitze das gesamte Kupplungsstück axial verlagern kann. Der Schlüssel kann also vollständig in den Schlüsselkanal des Zylinderkernes eingesteckt werden, ohne dass die Spitze den Betätigungsabschnitt des Blockierelementes verschwenken muss. Wird jetzt der Zylinderkern von dem passenden Schlüssel gedreht, so dreht sich das Kupplungsstück nicht mit. Erst wenn die Blockierausnehmung mit dem Blockierabschnitt des Blockierelementes fluchtet, so dass letzteres in die Blockierausnehmung eintreten kann, kann die Schlüsselspitze in den Kupplungsschlitz eintreten. Dann ist das Schließglied wieder drehfest mit dem Zylinderkern über das Kupplungsstück gekuppelt. Wird letzteres mit Hilfe eines Dietrichs versucht, so lässt sich das Schließglied nur bis in eine Position bringen, in welcher der Blockierabschnitt in die Blockierausnehmung einrastet. Da die Zuhaltungsstifte aber die Drehbarkeit des Zylinderkernes sperren, kann das Schließglied von dem Dietrich nicht weiter gedreht werden.
Ein Ausführungsbeispiel der Erfindung wird nachfolgend anhand beigefügter Zeichnungen erläutert. Es zeigen:
- Fig. 1
- eine Stirnseitendraufsicht auf einen Doppelschließzylinder,
- Fig. 2
- einen Schnitt gemäß der Linie II-II in
,Figur 1 - Fig. 3
- einen Schnitt gemäß der Linie III-III in
,Figur 1 - Fig. 4
- einen Schnitt gemäß der Linie IV-IV in
,Figur 2 - Fig. 5
- eine Darstellung gemäß
bei abgezogenem Schlüssel,Figur 3 - Fig. 6
- eine Darstellung gemäß
mit um 90° gedrehtem Schlüssel,Figur 2 - Fig. 7
- Darstellung gemäß
mit abgezogenem Schlüssel, aber einem um 90° verdrehten Schließglied,Figur 1 - Fig. 8
- einen Schnitt gemäß der Linie VIII-VIII in
,Figur 7 - Fig. 9
- eine Darstellung gemäß
mit eingestecktem Schlüssel und axial verlagertem Kupplungsstück,Figur 8 - Fig. 10
- ein Schnitt gemäß der Linie X-X in
.Figur 9
- Fig. 1
- a front side plan view of a double lock cylinder,
- Fig. 2
- a section along the line II-II in
FIG. 1 . - Fig. 3
- a section along the line III-III in
FIG. 1 . - Fig. 4
- a section along the line IV-IV in
FIG. 2 . - Fig. 5
- a representation according to
FIG. 3 with the key removed, - Fig. 6
- a representation according to
FIG. 2 with key turned 90 °, - Fig. 7
- Representation according to
FIG. 1 with removed key, but with a 90 ° twisted closing element, - Fig. 8
- a section along the line VIII-VIII in
FIG. 7 . - Fig. 9
- a representation according to
FIG. 8 with inserted key and axially displaced coupling piece, - Fig. 10
- a section along the line XX in
FIG. 9 ,
Bei dem Ausführungsbeispiel handelt es sich um einen Doppelschließzylinder. Dieser besitzt ein Zylindergehäuse aus Metall, welches einen Flanschabschnitt besitzt, in dem Kernbohrungen 13 angeordnet sind. In diesen Kernbohrungen 13 stecken nicht dargestellte Zuhaltungsstifte, die mittelst Zuhaltungsfedern auf dem Boden der Kernbohrungen 13 abgestützt sind. Die Kernbohrungen 13 münden in eine Bohrung, in welcher ein Zylinderkern 2 steckt. Die beiden Zylinderkerne 2 des Doppelschließzylinders haben zueinander fluchtende Drehachsen. Sie besitzen zu den Gehäusebohrungen 13 fluchtende Kernbohrungen 14. In diesen stecken nicht dargestellte Kernstifte, die mit nicht dargestellten Gehäusestiften korrespondieren. Die Kernbohrungen 14 münden in einen Schlüsselkanal 8, in den ein Flachschlüssel 5 einsteckbar ist. Im Ausführungsbeispiel sind die beiden sich gegenüberliegenden Breitseiten des Schlüssels mit unterschiedlich tiefen Aussparungen für die verschieden langen Kernstifte profiliert. Bei einem eingesteckten passenden Schlüssel 5 lässt sich der Zylinderkern 2 drehen.In the embodiment, it is a double lock cylinder. This has a cylinder housing made of metal, which has a flange, in which core holes 13 are arranged. In this core holes 13 stuck tumbler pins, not shown, which are supported by tumblers on the bottom of the core holes 13. The core holes 13 open into a hole in which a
Die Spitze 6 des Schlüssels 5 steckt in einem Kupplungsschlitz 7 eines Krupplungsstücks 4. Das Kupplungsstück 4 besitzt einen im Wesentlichen kreiszylindrischen Abschnitt, in welchem es in einer stirnseitigen Höhlung des Zylinderkernes 2 einliegt. Der Kupplungsschlitz 7 ist ein Diametralschlitz der Stirnseite dieses kreiszylindrisches Abschnittes dieses Kupplungsstückes 4. Das Kupplungsstück 4 besitzt einen Profilabschnitt 16. Dieser besitzt einen unrunden Querschnitt und steckt in einer querschnittsangepassten Profilöffnung 15 des Schließgliedes 3, so dass eine Drehung des Kupplungsstückes 4 auf das Schließglied 3 übertragen werden kann.The
Es sind insgesamt zwei Kupplungsstücke 4 vorgesehen, die jeweils aus den beiden Breitseiten des Schließgliedes 3 herausragen und jeweils kreiszylindrische Abschnitte aufweisen, mit denen sie jeweils in Stirnseitenöffnungen der voneinander beabstandeten Zylinderkerne 2 einliegen. Der Zylinderkern 2 der in den Zeichnungen rechts dargestellten Zylinderhälfte besitzt eine Verlängerung. Beide Kupplungsstücke 4 sind mit dem Schließglied 3 drehfest verbunden. Sie können sich aber geringfügig in Achsrichtung verlagern. Die beiden Kupplungsstücke 4 sind mit einer nicht dargestellten Feder derartig gegeneinander abgefedert, dass sie unter Druck dieser Feder in die Stirnseitenöffnungen der Zylinderkerne 2 hineinragen. Sie liegen mit ihren Stirnflächen an den Böden der Stirnseitenöffnungen an. Bei nicht eingestecktem Schlüssel kann das Schließglied 3 gedreht werden. Die Zylinderkerne 2 können, da sie von den Zuhaltungen gesperrt sind, nicht gedreht werden. Es drehen sich die Kupplungsstücke 4 innerhalb der Zylinderkerne 2.There are a total of two
Die Wandung 2' der stirnseitigen Öffnung des Zylinderkernes 2, in welcher der kreiszylindrische Abschnitt des Kupplungsstückes 4 liegt, besitzt sich diagonal gegenüberliegende Aussparungen. Die einer Schlüsselbrust 5' zugeordnete Aussparung 12 bildet eine Blockierausnehmung.The wall 2 'of the frontal opening of the
In diese Btockierausnehmung 12 kann ein Blockierabschnitt 9" eines Blockierelementes 9 eingreifen, wenn ein Betätigungsabschnitt 9' von der Schlüsselspitze 6 eines Schlüssels 5 verschwenkt wird.In this
Das Blockierelement 9 wird im Ausführungsbeispiel von einem zweiarmigen Hebel ausgebildet. Dieser liegt innerhalb des Kupplungsschlitzes 7. Das Blockierelement 9 ist um eine Schwenkachse 10, die von einem Achsbolzen gebildet wird, schwenkbar. Der Betätigungsarm 9' wird von einer Druckfeder 11 beaufschlagt, die sich auf den Boden einer Vertiefung abstützt, die in den Boden des Kupplungsschlitzes 7 eingebracht ist. Bei nicht eingestecktem Schlüssel beaufschlagt die Feder 11 den Betätigungsabschnitt 9' derartig, dass er den Kupplungsschlitz 7 verschließt.The blocking
Das Eintreten der Schlüsselspitze 6 in den Kupplungsschlitz 7 ist nur möglich, wenn dieser mit dem Schlüsselkanal 8 fluchtet. Dies ist beispielsweise in den
Wird der Schlüssel abgezogen, wird die in der
In dieser Stellung kann das Schließglied 3 frei gedreht werden, beispielsweise in die in
Wird in der in
Die in den Zeichnungen rechts dargestellte Zylinderhälfte des Doppelschließzylinders ist im Wesentlichen mit der in den Zeichnungen links dargestellten Zylinderhälfte identisch. Während auf der linken Seite die Blockierausnehmung 12 von einem Diametralschlitz ausgebildet wird, wird sie auf der rechten Seite von einer Bohrung ausgebildet. Es handelt sich hierbei um eine Bohrung 12 in der Mantelwandung 2' der stirnseitigen Höhlung des Zylinderkernes 2.The cylinder half of the double-lock cylinder shown on the right in the drawings is essentially identical to the cylinder half shown on the left in the drawings. While on the left side of the blocking
Claims (8)
- A free-running cylinder with a cylinder housing (1), a cylinder core (2) mounted therein, the cylinder core having a key channel (8) for insertion of a key, with a locking member (3) and with a coupling piece (4) that is rotationally fixed with respect to the locking member (3) and is rotatable with respect to the cylinder core (2) when no key is inserted into the key channel (8), the coupling piece (4) having a coupling slot (7) into which the tip (6) of a key, which has been inserted into the key channel (8) of the cylinder core (2), can be inserted when the coupling slot (7) is aligned with the key channel (8), characterized by a blocking element (9) which can be brought into a positively-locked connection to the cylinder core (2) by the key tip (6) upon entry into the coupling slot (7), wherein, in a position in which the blocking element (9) is not actuated by the key tip (6), an actuating portion (9') of the blocking element closes off the coupling slot (7) and a blocking portion (9") of the blocking element is located outside a blocking recess (12) of the cylinder core, and, in a position which the blocking element is actuated by the key tip (6), the blocking portion (9') of the blocking element is located in the coupling slot (7) and the blocking portion (9") is located within the blocking recess (12) of the cylinder core (2).
- A free-running locking cylinder according to Claim 1, characterized in that the blocking element (9) is a pivot member.
- A free-running locking cylinder according to Claim 2, characterized in that the blocking element (9) is formed by a two-armed lever, the lever arms (9', 9"), which are substantially at right angles to one another, forming the actuation portion and the blocking portion respectively.
- A free-running locking cylinder according to any of the preceding claims, characterized in that the blocking element (9) is held, by means of a spring (11), in a position in which it blocks the coupling slot (7).
- A free-running locking cylinder according to any of the preceding claims, characterized in that the coupling piece (4) is displaceable slightly in the axial direction by the tip (6) of the key (5), in particular against the restoring force of a spring.
- A free-running locking cylinder according to any of the preceding claims, characterized in that the blocking recess is an opening or a slot in the wall (2') of the cylinder core (2).
- A free-running locking cylinder according to any of the preceding claims, characterized in that the portion of the coupling piece (4) that forms the blocking element (9) is located in an axial cavity of the cylinder core (2).
- A free-running locking cylinder according to any of the preceding claims, characterized in that the free-running locking cylinder has a double locking cylinder with two coupling pieces (4) that are spring biased against one another and each of which has a blocking element (9).
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE102006011612A DE102006011612A1 (en) | 2006-03-14 | 2006-03-14 | Freewheel lock cylinder |
PCT/EP2007/052348 WO2007104759A1 (en) | 2006-03-14 | 2007-03-13 | Free-running locking cylinder |
Publications (2)
Publication Number | Publication Date |
---|---|
EP1994242A1 EP1994242A1 (en) | 2008-11-26 |
EP1994242B1 true EP1994242B1 (en) | 2009-10-07 |
Family
ID=38197715
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP07712516A Not-in-force EP1994242B1 (en) | 2006-03-14 | 2007-03-13 | Free-running locking cylinder |
Country Status (6)
Country | Link |
---|---|
EP (1) | EP1994242B1 (en) |
AT (1) | ATE445061T1 (en) |
DE (2) | DE102006011612A1 (en) |
ES (1) | ES2331816T3 (en) |
PT (1) | PT1994242E (en) |
WO (1) | WO2007104759A1 (en) |
Families Citing this family (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE102012103925A1 (en) | 2012-05-04 | 2013-11-07 | Witte Automotive Gmbh | Lock cylinder e.g. steering wheel lock cylinder for motor car, has locking projection that is held before the locking unit, if key is not inserted into key channel so that cylinder core is not rotated |
DE102013013786B4 (en) * | 2013-08-09 | 2016-03-10 | Assa Abloy Sicherheitstechnik Gmbh | lock cylinder |
DE102015100469A1 (en) | 2015-01-14 | 2016-07-14 | C.Ed. Schulte Gesellschaft mit beschränkter Haftung Zylinderschlossfabrik | lock cylinder |
Family Cites Families (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE3026480C2 (en) * | 1980-07-12 | 1986-03-27 | Zeiss Ikon Ag, 7000 Stuttgart | Double lock cylinder |
DE3424603A1 (en) * | 1984-06-18 | 1984-12-06 | Sigismund 6700 Ludwigshafen Laskowski | Locking bit with additional stop for a cylinder lock |
DE8705041U1 (en) * | 1987-04-04 | 1987-05-27 | Zeiss Ikon Ag, 7000 Stuttgart | Double cylinder lock |
DE4242522C2 (en) * | 1992-12-16 | 1996-05-02 | Wilka Schliestechnik Gmbh | Coupling device in double locking cylinders |
DE19635010A1 (en) * | 1996-08-29 | 1998-03-05 | Winkhaus Fa August | Coupling device for a cylinder lock |
-
2006
- 2006-03-14 DE DE102006011612A patent/DE102006011612A1/en not_active Ceased
-
2007
- 2007-03-13 PT PT07712516T patent/PT1994242E/en unknown
- 2007-03-13 DE DE502007001683T patent/DE502007001683D1/en active Active
- 2007-03-13 EP EP07712516A patent/EP1994242B1/en not_active Not-in-force
- 2007-03-13 AT AT07712516T patent/ATE445061T1/en active
- 2007-03-13 ES ES07712516T patent/ES2331816T3/en active Active
- 2007-03-13 WO PCT/EP2007/052348 patent/WO2007104759A1/en active Application Filing
Also Published As
Publication number | Publication date |
---|---|
DE102006011612A1 (en) | 2007-09-27 |
EP1994242A1 (en) | 2008-11-26 |
DE502007001683D1 (en) | 2009-11-19 |
ES2331816T3 (en) | 2010-01-15 |
PT1994242E (en) | 2009-10-28 |
WO2007104759B1 (en) | 2007-11-08 |
WO2007104759A1 (en) | 2007-09-20 |
ATE445061T1 (en) | 2009-10-15 |
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