The present invention relates to an electric strike lock, particularly to one that is eccentrically positioned for adjusting the electric strike lock to be fail-safe or fail-secure.
As we know, electric strike locks are basically categorized into fail-secure locks and fail-safe locks. At early stages the type of the strike locks is unalterable, and then there are adjusting structures for electric strike locks to be adjusted when needed. However, the structures and steps in the adjustment are rather complicated and sophisticated, making it inconvenient to alter, and the manufacturing process of such structures consumes time as well.
The present invention aims to solve the inconveniences of altering a strike lock into fail-safe or fail-secure strike lock and to provide an electric strike lock that can be adjusted between the two types by simple adjustment in the structure thereof.
To achieve the object mentioned above, the present invention comprises a strike body engaged with a cover plate; a latch having a latch bolt and a deadlatch, said latch engaging a spring and being disposed inside the strike body together with said spring; a keeper having a screw hole and a stop block in correspondence to the deadlatch and connecting to a solenoid which has a movable rod engaging through the keeper and engaging the stop block; whereby the stop block is pushed by the solenoid and moves between a position blocking the latch and a position unblocking the latch; and an adjusting section including an elliptical adjusting hole on the cover plate in correspondence to the screw hole, and an elliptical adjusting piece corresponding to the adjusting hole, said adjusting piece having an eccentric through hole for an adjusting screw to pass through and to be screwed with the screw hole, a major axis of said adjusting hole arranged in the same direction as an axis of the solenoid; whereby the eccentric through hole enables the adjusting piece to be disposed in two different positions by rotating 180° for adjusting the electric strike lock to be fail-safe or fail-secure.
Moreover, the strike body includes a lower section and an upper section. The upper section engages the lower section and has a first installation space for the latch to be disposed therein, a second installation space for the keeper to be disposed therein, and a passage connecting the first and second installation space; and the lower section has an opening for the latch bolt to operate. The deadlatch is exposed by the passage and the latch bolt is exposed by the opening; both of which can be seen from outside.
With the structures disclosed above, the present invention is able to be conveniently adjusted into a fail-safe or a fail-secure strike lock simply by rotating the adjusting piece, thus overcoming the inconveniences of adjustment of an electric strike lock in the prior art.
The strike body 100 is engaged with a cover plate 101 by a plurality of screws 102 and includes a lower section 10 and an upper section 20 disposed therein. The lower section 10 has an opening 11 and engages a faceplate 13 by a plurality of screws 12. The upper section 20 engages the lower section 10 by a plurality of screws 24 and has a first installation space 21 for the latch 30 to be disposed therein, a second installation space 22 for the keeper 40 to be disposed therein, and a passage 23 connecting the first and second installation space 21, 22. In an embodiment, the lower section 10 can also extend and form a faceplate 13 in one-piece without screws or further engagement.
The latch 30 has a latch bolt 31 and a deadlatch 32. It further engages a spring 33 to be disposed inside the first installation space 21 together with the spring 33. The latch bolt 31 and the deadlatch 32 are respectively exposed in the opening 11 and the passage 23.
The keeper 40 has a screw hole 401 and a stop block 44 in correspondence to the deadlatch 32 and connecting to a solenoid 41 by a bumper piece 42 and a C ring 43. The solenoid 41 further has a movable rod 411 passing through the keeper 40 and engaging the stop block 44. Thereby the stop block 44 is pushed by the solenoid 41 and moves between a position blocking the latch 30 and a position unblocking the latch 30. The keeper 40 is disposed in the second installation space 22 and is covered by the cover plate 101.
The adjusting section 50 includes an elliptical adjusting hole 51 on the cover plate 101 in correspondence to the screw hole 401, and an elliptical adjusting piece 52 corresponding to the adjusting hole 51. A major axis of the adjusting hole 51 is arranged in the same direction as an axis of the solenoid 41, and the adjusting piece 52 has an eccentric through hole 521 for an adjusting screw 53 to pass through and to be screwed with the screw hole 401.
With the structure disclosed, the eccentric through hole 521 enables the adjusting piece 52 to be disposed in two different positions by rotating 180° for adjusting the electric strike lock to be fail-safe or fail-secure.
Referring to
Similarly, when adjusting the electric strike lock to be fail-safe, simply remove the adjusting screw 53 from the screw hole 401. Then remove the adjusting piece 52 from the adjusting hole 51 and rotated 180° for the through hole 521 to be eccentric to the right; adjust the keeper 40 to align the screw hole 401 with the through hole 521. Finally place back the adjusting piece 52 and screw back the adjusting screw 53. Thereby the present invention is a fail-safe strike lock as illustrated in
Further referring to
Although particular embodiments of the invention have been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the invention. Accordingly, the invention is not to be limited except as by the appended claims.
Number | Date | Country | Kind |
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104216592 U | Oct 2015 | TW | national |
Number | Name | Date | Kind |
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6299225 | Chang | Oct 2001 | B1 |
6874830 | Bashford | Apr 2005 | B2 |
Number | Date | Country | |
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20170107740 A1 | Apr 2017 | US |