The present invention relates to a cylinder lock and a key for the cylinder lock.
In the prior art, a key with an inner groove may be used for a cylinder lock. Such a key includes an elongated key plate. A key groove, or inner groove, extends in the longitudinal direction of the key plate and is formed between serrated walls in at least one surface of the key plate. Such a key is referred to as an inner groove key (refer to, for example, Japanese Laid-Open Patent Publication No. 7-259400). The inner groove key is difficult to duplicate. Further, a cylinder lock using the inner groove key is resistant to picking. For such reasons, grooved keys are used in various fields.
In recent years, a so-called electronic key system has been proposed to provide a higher level of security and improve convenience (refer to, for example, Japanese Laid-Open Patent Publication No. 2005-226254). In an electronic key system, identification codes are transmitted between a portable device and a locking device to lock and unlock the locking device. The identification codes are authenticated to ensure a high level of security. With the electronic key system, a key does not have to be inserted into a keyway. Due to its convenience, the use of electronic key systems in vehicles and houses has increased dramatically.
In this manner the electronic key system provides both security and convenience at high levels. Nevertheless, it is still desirable for a mechanical key to be on hand just in case the electronic key system fails to function normally for one reason or another (e.g., failure in the electric system or communication system). Accordingly, most portable devices are equipped with an emergency mechanical key. During an emergency, the emergency key is removed from the portable device and used to lock and unlock the locking device.
Based on thickness, portable devices for electronic key systems, which remotely controls locking and unlocking, may be classified into two types, a card-type and a box-type. An emergency key for a card-type portable device must be thin so that it can be accommodated in the portable device. However, it is preferable that the emergency key be thick due to the torque applied when turning the key in the cylinder lock to perform locking or unlocking. Thus, an emergency key for a box-type portable device is thick.
In the prior art, a thick key cannot be inserted into a cylinder lock designed for thin keys. Further, when inserting a thin key into a cylinder lock designed for thick keys, the thin key would be loose in the cylinder lock. This would hinder stable locking and unlocking with the thin key.
Selection of the type of portable device depends on the application or assumed user of the portable device. However, it is desirable that a cylinder lock, or key locking device, be applicable to both thin keys and thick keys. Accordingly, there is a strong demand for the development of such a key locking device.
The present invention provides a cylinder lock enabling the use of keys having different thicknesses, a key for such a cylinder lock, and a portable device incorporating such a key.
One aspect of the preset invention is a cylinder lock including a first key. The first key includes an elongated base having two opposite surfaces. A serrated wall extends from at least one of the surfaces of the base. A key groove is formed by the serrated wall and extends in a longitudinal direction of the base. A rib is formed on at least one of the surfaces of the base and extends in the longitudinal direction of the base. The cylinder lock further includes a rotatable rotor. The rotor includes a keyway into which the first key is insertable. A first cavity is formed in the keyway and shaped to enable insertion of the base of the first key. A second cavity is formed in the keyway and shaped to enable insertion of the serrated wall of the first key. A third cavity is formed in the keyway and shaped to enable insertion of the rib of the first key. The keyway enables insertion of a key differing from the first key in lieu of the first key.
A further aspect of the present invention is a key for use with a cylinder lock. The cylinder lock includes a rotatable rotor having a keyway into which the key is insertable. The key includes an elongated base having two opposite surfaces. A serrated wall extends from at least one of the surfaces of the base. A key groove is formed by the serrated wall and extends in a longitudinal direction of the base. A rib is formed on at least one of the surfaces of the base and extends in the longitudinal direction of the base.
Other aspects and advantages of the present invention will become apparent from the following description, taken in conjunction with the accompanying drawings, illustrating by way of example the principles of the invention.
The invention, together with objects and advantages thereof, may best be understood by reference to the following description of the presently preferred embodiments together with the accompanying drawings in which:
A preferred embodiment of the present invention will now be discussed with reference to the drawings.
With reference to
The rotor 4 includes a plurality of tumbler slots 8. The tumbler slots 8 extend radially through the rotor 4. Each tumbler slot 8 receives a plate tumbler 9, which is projectable from the tumbler slot 8. In the preferred embodiment, a spring seat 10 extends from one side of each tumbler slot 8 to receive a coil spring 12. A tab 11 extends from one side of each plate tumbler 9. In each tumbler slot 8, the tab 11 of the plate tumbler 9 is engaged with one end of the corresponding coil spring 12. This urges the plate tumbler 9 in a direction in which it projects out of the tumbler slot 8. The plate tumbler 9 projected out of the tumbler slot 8, that is, out of a circumferential surface 4a of the rotor 4, by the elastic force of the coil spring 12 is engaged with an engagement recess 13, which is formed in the wall surface 5a of the cylinder 5. This restricts rotation of the rotor 4.
Each plate tumbler 9 has a key receptacle 14, which receives the key 2 when the key 2 is inserted into the keyway 3, and a projection 15, which extends into the key receptacle 14. When the proper key 2 is inserted into the keyway 3, the key 2 engages the projection 15 and moves each plate tumbler 9 into the corresponding tumbler slot 8 against the elastic force of the coil spring 12. When the insertion of the proper key 2 moves each one of the plate tumblers 9 into the circumferential surface 4a of the rotor 4, the rotation of the rotor 4 is enabled. In other words, locking and unlocking is enabled.
More specifically, in the preferred embodiment, the key 2 used for the cylinder lock 1 includes an elongated key plate 21, which has a width and a thickness. Two relatively wide surfaces are defined on opposite sides of the key plate 21 in the thicknesswise direction. A key groove 22 extends longitudinally along one of the wide surfaces of the key plate 21. The key groove 22 is formed by two serrated surfaces 22a and 22b, which engage the projections 15 and move the plate tumblers 9 into the circumferential surface 4a of the rotor 4. Accordingly, the serrated surfaces 22a and 22b function as engagement surfaces 23 and 24.
The key 2 for the cylinder lock 1 in the preferred embodiment is the so-called inner groove key. Thus, the projection 15 of each plate tumbler 9 is set so that when the proper key 2 is inserted into the keyway 3 and located at a predetermined insertion position, the plate tumbler 9 is completely moved into the corresponding tumbler slot 8. As a result, only the proper key 2 enables locking and unlocking with the cylinder lock 1.
In the preferred embodiment, the rotor 4 includes plate tumblers 9a to 9d, which correspond to the engagement surface 23, and plate tumblers 9e to 9h, which correspond to the engagement surface 24. Each of the tumblers 9a to 9h is provided with the tumbler slot 8, the spring seat 10, and the coil spring 12.
In the preferred embodiment, a thick key 2a and a thin key 2b may both be used as the proper key 2 in the cylinder lock 1. The thick key 2a is retained as an emergency key in a box-type portable device 25a, which is shown in
In the preferred embodiment, the thick key 2a differs from the thin key 2b in that two ribs 26 extend longitudinally along the surface opposite to the surface of the key groove 22. Thus, the thickness da of the thick key 2a is greater than the thickness db of the thin key 2b (da>db).
As shown in
Each rib 26 of the thick key 2a has an end 26a, which is located near a distal end 21a of the key plate 21. The key 2 is inserted into the keyway 3 from the distal end 21a of the key plate 21. Each serrated wall 28 has an end 28a, which is also located near the distal end 21a of the key 2. The ends 26a of the ribs 26 are located farther from the distal end 21a of the key plate 21 than the ends 28a of the serrated walls 28. Thus, the length L3 from the distal end 21a of the key plate 21 to the end 26a of each rib 26 is greater than the length L2 from the distal end 21a of the key plate 21 to the end 28a of each serrated wall 28.
Referring to
In the preferred embodiment, each rib 26 of the thick key 2a has a thickness (projecting height) d3 that is less than the thickness d2 of the serrated wall 28. Accordingly, the third cavities 33 and the rib guides 37 each have a dimension D3 in the thicknesswise direction that is smaller than the dimension D2 of the second cavities 32 and the serrated wall guide 36. The cylinder lock 1 of the preferred embodiment is formed so that when the key 2 is inserted into the keyway 3 in a reversed state, the third cavities 33 and the rib guides 37 do not permit the insertion of the serrated walls 28. The ribs 26 of the thick key 2a each have a width w3 that is set so that the ribs 26 do not engage the projection 15 of each plate tumbler 9.
The preferred embodiment has the advantages described below.
(1) The thick key 2a differs from the thin key 2b in that the ribs 26 extend longitudinally along the surface opposite the surface of the key groove 22. Thus, the thickness da of the thick key 2a is greater than the thickness db of the thin key 2b (da>db). Further, the keyway 3 of the cylinder lock 1 includes the first cavity 31, the second cavities 32, and the third cavities 33. The first cavity 31 enables insertion of the base 27. The second cavities 32 enable insertion of the serrated walls 28 projecting from the base 27 and including the serrated surfaces 22a and 22b of the key groove 22. The third cavities 33 enable the insertion of the ribs 26.
With the above structure, during insertion of the key 2, the base 27 of the key 2 is held in the first cavity 31. Thus, even when the thin key 2b, which does not have the ribs 26, is inserted into the keyway 3, the thin key 2b is not held loosely and performs stable locking and unlocking. This enables keys of different thicknesses to be used as the proper key. Consequently, the box-type portable device 25a, which incorporates the thick key 2a as the emergency key, and the card-type portable device 25b, which incorporates the thin key 2b as the emergency key, may both be used for the cylinder lock 1.
(2) The thick key 2a is shaped to increase torsion rigidity while also enabling use of the thin key 2b in the cylinder lock 1.
(3) The third cavities 33 and the rib guides 37 are shaped to hinder insertion of the serrated wall 28. This prevents insertion of the key 2 into the keyway 3 in a reversed state.
(4) The end 26a of each rib 26 is located farther from the distal end 21a of the key plate 21 than the end 28a of each serrated wall 28. This prevents insertion of the key 2 into the keyway 3 in a reversed state.
(5) The width w3 of each rib 26 on the thick key 2a is set so that the rib 26 does not engage the projections 15 of the plate tumblers 9. This prevents insertion of the key 2 into the keyway 3 in a reversed state.
It should be apparent to those skilled in the art that the present invention may be embodied in many other specific forms without departing from the spirit or scope of the invention. Particularly, it should be understood that the present invention may be embodied in the following forms.
In the preferred embodiment, the present invention is embodied in a lock cylinder and emergency key for an electronic key system. However, the present invention may be embodied in any type of lock cylinder and key.
In the preferred embodiment, the thick key 2a includes the ribs 26, which extend longitudinally along the surface opposite to the surface having the key groove 22. Thus, the thickness da of the thick key 2a is greater than the thickness db of the thin key 2b. However, the present invention may also be applied when both sides of the key plate 21 include a key groove. In this case, a rib is formed on at least one side of the key plate 21.
More specifically, referring to
Referring to
The keys 42a and 42b have the key grooves 52 in two sides. Thus, the keys 42a and 42b are apt to being inserted into the keyway 43 in a reversed state. Accordingly, the rib 56 of the thick key 42a has a thickness (projecting height) d7 that is greater than the thickness d5 of the serrated walls 58. The third cavity 73 and the rib guide 77 each have a dimension D7 in the thicknesswise direction that is larger than the dimension D5 of the second cavities 72 and the serrated wall guides 76. Accordingly, when the thick key 42a is inserted into the keyway 3 in a reversed state, the serrated wall 28 cannot be inserted into the third cavity 73 and the rib guide 77. Even if the thin key 42b were to be inserted into the keyway 43 in a reversed state, the rib 56 of the thick key 42a has a width w3 that is set so that the rib 56 is narrower than the serrated walls 58 and so that the rib 56 does not engage the projection 15 of each plate tumbler 9. Further, the rib 56 is formed so that its end 56a is located farther from a distal end 51a of the key plate 51 than ends 58a of the serrated walls 58. Thus, the length L7 from the distal end 51a of the key plate 51 to the end 56a of each rib 56 is greater than the length L5 from the distal end 51a of the key plate 51 to the end 58a of each serrated wall 58.
In the present invention, the keyway 3 does not necessarily have to extend through the rotor 4 and may extend, for example, up to only an intermediate portion of the rotor 4.
In the preferred embodiment, the third cavities 33 are shaped to prevent insertion of the serrated walls 28. However, the second cavities 32 may be formed to prevent insertion of the ribs 26.
The present examples and embodiments are to be considered as illustrative and not restrictive, and the invention is not to be limited to the details given herein, but may be modified within the scope and equivalence of the appended claims.
Number | Date | Country | Kind |
---|---|---|---|
2005-292877 | Oct 2005 | JP | national |
Number | Name | Date | Kind |
---|---|---|---|
1957851 | Rubner | May 1934 | A |
RE20865 | Olson | Sep 1938 | E |
2775884 | Fresard et al. | Jan 1957 | A |
2829513 | Fresard et al. | Apr 1958 | A |
4075879 | Christopher | Feb 1978 | A |
5372024 | Ruckert | Dec 1994 | A |
5561331 | Suyama et al. | Oct 1996 | A |
6308543 | Yoshizawa | Oct 2001 | B1 |
6968717 | Suzuki et al. | Nov 2005 | B2 |
6973814 | Keller | Dec 2005 | B2 |
7240525 | Sevillano Gil | Jul 2007 | B2 |
20040237613 | Shimura et al. | Dec 2004 | A1 |
20050166650 | Shimura et al. | Aug 2005 | A1 |
20050223766 | Hashimoto et al. | Oct 2005 | A1 |
20060000251 | Ceron et al. | Jan 2006 | A1 |
20060150696 | Eychenne et al. | Jul 2006 | A1 |
20060201216 | Gil | Sep 2006 | A1 |
20060260370 | Miwa et al. | Nov 2006 | A1 |
Number | Date | Country |
---|---|---|
07-259400 | Oct 1995 | JP |
2005-226254 | Aug 2005 | JP |
Number | Date | Country | |
---|---|---|---|
20070074552 A1 | Apr 2007 | US |