Electronic padlock
11708707 ยท 2023-07-25
Assignee
Inventors
Cpc classification
E05B2015/0437
FIXED CONSTRUCTIONS
E05B67/22
FIXED CONSTRUCTIONS
International classification
E05B47/00
FIXED CONSTRUCTIONS
E05B67/22
FIXED CONSTRUCTIONS
Abstract
The electronic actuator of an electronic padlock according to the invention is arranged to turn the cam piece (5) to release the latch parts (7) from a locking state and to turn the cam piece (5) to hold the latch parts (7) in the locking state. The cam piece (5) comprises a cover part (5A) and a shaft part (5B). The cover part has a central hole (12) for the shaft part. The shaft part (5B) has a shaft pin (15), which is set into the central hole (12). The shaft part also has a connecting part 19, which is arranged to be in contact with the electronic actuator 4. The cam piece further comprises a spring (9) which is between the shaft pin (15) and the cover part (5A). The spring comprises a first end (9A) and a second end (9B). The first end 9A is arranged to be in contact with the cover part 5A. The second end 9B is arranged to be in contact with the shaft part 5B. The spring is arranged to transmit turning force of the electronic actuator from the shaft pin 15 to the cover part 5A in the direction of said locking state.
Claims
1. An electronic padlock, which comprises a body and a shackle, in which the body has latch parts, a cam piece, and an electronic actuator, in which the electronic actuator is arranged to turn the cam piece to release the latch parts from a locking state and to turn the cam piece to hold the latch parts in the locking state, in which, when in the locking state, the latch parts prevent the moving of the shackle to open the electronic padlock, wherein the cam piece comprises a cover part and a shaft part, in which the cover part has a central hole for the shaft part and recesses on the surface of the cover part, and in which the shaft part has a shaft pin, which is set in the central hole, and a connecting part, which is arranged to be in contact with the electronic actuator, in which the cam piece additionally comprises a spring installed between the shaft pin and the cover part, in which the spring comprises a first end and a second end, in which the first end is arranged to be in contact with the cover part and in which the second end is arranged to be in contact with the shaft part, in which the spring is arranged to transmit a turning force of the electronic actuator from the shaft pin to the cover part in the direction of said locking state, and in which the shaft part further comprises at least one protrusion on the surface of the shaft pin and/or on the surface of the connecting part, in which the protrusion is arranged to transmit turning force of the electronic actuator from the shaft pin to the cover part to release the latch parts, and in which the spring is further arranged to allow turning of the cover part against the turning force of the electronic actuator if the spring is tensioned due to an external force, and the central hole comprises at least one recess for said at least one protrusion, in which the recess is wider than the protrusion, and the cover part comprises a hole for the first end of the spring, in which the hole has a side surface for transmitting the turning force between the end of the spring and the cover part.
2. The electronic padlock according to claim 1, wherein the shaft pin comprises a groove or hole for the second end of the spring.
3. The electronic padlock according to claim 2, wherein the connecting part comprises a transmission surface, via which the shaft part is arranged to be in contact with the electronic actuator.
4. The electronic padlock according to claim 3, wherein the transmission surface comprises at least one recess and/or protrusion.
5. The electronic padlock according to claim 4, wherein the diameter of the connecting part is wider than the diameter of the shaft pin, while both diameters are perpendicular to the longitudinal axis of the shaft pin.
6. The electronic padlock according to claim 5, wherein the electronic padlock comprises a separate power transmission part between the electronic actuator and the connecting part.
7. The electronic padlock according to claim 6, wherein the latch parts are balls or pins, the ends of which pins are hemispherical.
8. The electronic padlock according to claim 7, wherein the electronic actuator is an electric motor or a solenoid.
Description
LIST OF FIGURES
(1) In the following, the invention will be described in more detail with reference to the appended figures, in which
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DESCRIPTION OF THE INVENTION
(16)
(17) The electronic padlock according to the invention comprises a body 2 and a shackle 3. The body has latch parts 7, a cam piece 5 and an electronic actuator 4. The electronic actuator is arranged to turn the cam piece 5 to release the latch parts 7 from a locking state, and to turn the cam piece 5 to hold the latch parts 7 in the locking state. In the locking state, the latch parts 7 prevent the shackle 3 from being moved to open the electronic padlock. The locking state is shown in
(18) The body 2 of the electronic padlock 1 has spaces (such as drillings) for different parts of the padlock. These spaces are not shown in more detail in
(19) The electronic actuator 4 can be directly connected to the cam piece 6, so that the electronic actuator can turn the cam piece. The electronic actuator turns the cam piece to open the locking of the electronic padlock or to lock the electronic padlock. The electronic padlock can also comprise a separate power transmission part 6 between the electronic actuator 4 and the shaft part 5B. Thus, the power transmission part 6 transmits the force turning the electronic actuator to the cam piece 5. The power transmission part can also comprise other functions. It can for example also functions as a blocking mechanism. The blocking mechanism allows turning of the cam piece with the electronic actuator, but strives to prevent any other turning of the cam piece 5 in relation to the body 2.
(20) An embodiment of the cam piece 5 according to the invention is shown in
(21) The spring comprises a first end 9A and a second end 9B. The first end 9A is arranged to be in contact with the cover part 5A. The second end 9B is arranged to be in contact with the shaft part 5B. The spring is arranged to transmit turning force of the electronic actuator from the axle pin 15 to the cover part 5A in the direction of said locking state. In other words, the spring is arranged to transmit the turning force of the electronic actuator, which turns the shaft pin, via the first end 9A of the spring to the cover part 5A to turn it into the locking position.
(22) The shaft part further comprises at least one protrusion 17 on the surface of the shaft pin 15 and/or on the surface of the connecting part 19. This protrusion is arranged to transmit turning force of the electronic actuator from the shaft pin 15 to the cover part 5A to release the latch parts. In other words, when the locking of the electronic padlock is opened, the electronic actuator 4 turns (either directly or via a power transmission part 6) the connecting part 19, the protrusion/protrusions 17, 18 of which transmit the turning force to the cover part 5A. The force used for opening the electronic padlock is thus transmitted via at least one protrusion 17, 18 and the force used for locking via the spring 9. In the embodiment of
(23) The spring is further arranged to allow turning of the cover part 5A against the turning force of the electronic actuator from the shaft pin 15 to the cover part 5A. Such a situation can happen, if simultaneously a jerk is directed at the shackle, which jerk strives to move the shackle to the open position. In the open position, the shackle can be set in the target, so that the target can be locked, when the electronic padlock is locked.
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(28) The spring 9, however, allows the cover part to turn in such a situation in the opening direction A, even though the shaft pin turns as turned by the electronic actuator in the locking direction K. Thus, only a part of the force of the jerk is directed at the electronic actuator, because a part of the force goes into tensing the spring 9.
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(30) The electronic padlock according to the invention can be implemented in many different ways. For example, there can be various embodiments of the parts of the cam piece 5. As
(31) The latch parts 7 are balls or pins, the ends of which pins are hemispherical. The electronic actuator 4 can be an electric motor or a solenoid. Using an electric motor is usually more straight-forward, but turning the cam piece can be done also with a solenoid. Thus, the electronic actuator 4 has some kind of power transmission to transmit the movement of the solenoid (such as the movement of the pin of the solenoid) into a turning movement. The opening and locking of the electronic padlock (entering the opening code, lock ready to be locked, locking command) is implemented in an otherwise known manner, so it is not described in further detail in this context.
(32) The solution according to the invention effectively prevents breaking of the electronic actuator of the electronic padlock, such as the electric motor, if an external force, which pulls the shackle away from the body of the electronic padlock, is directed at the shackle at the closing phase.
(33) The electronic padlock according to the invention can be realized in many different ways, as can be discerned from the description above. The invention is thus not limited to the examples presented herein, but can be implemented in different ways within the scope of the independent claim.