Abstract:
Eine Verriegelungsvorrichtung (22) für einen Schaltschrank (10) mit einer Mehrzahl von Türen (16) umfasst einen Verriegelungsschieber (24), der zwischen einer entriegelten Stellung und einer verriegelten Stellung verschiebbar ist; ein mit dem Verriegelungsschieber (24) verbundenes erstes Sperrelement (26); ein elektrisch betätigbares zweites Sperrelement (30), das dazu ausgeführt ist, mit dem ersten Sperrelement (26) in der verriegelten Stellung des Verriegelungsschiebers (24) in Eingriff zu gehen, und das dazu ausgeführt ist, beim Empfang eines Entsperrsignals das erste Sperrelement (26) freizugeben; für wenigstens zwei Türen (16) jeweils einen Türsicherungsschieber (32), der entlang der jeweiligen Türe (16) zwischen einer entriegelten Stellung und einer verriegelten Stellung verschiebbar ist und der in einer geschlossenen Stellung der Türe (16) mit dem Verriegelungsschieber (24) gekoppelt ist, so dass der Verriegelungsschieber (24) und der Türsicherungsschieber (32) zusammen verschiebbar sind; und für wenigstens zwei Türen (16) jeweils wenigstens eine Verschlussstange (36), die entlang der jeweiligen Türe (16) zwischen einer entriegelten Stellung und einer verriegelten Stellung verschiebbar ist, wobei die jeweilige Verschlussstange (36) in ihrer verriegelten Stellung mit einem Rahmen (12) des Schaltschranks (10) in Eingriff steht. Der Türsicherungsschieber (32) greift in seiner verriegelten Stellung in die jeweilige Verschlussstange (36) ein, um ein Verschieben der Verschlussstange (36) zu verhindern.
Abstract:
Disclosed is a refrigerator. The refrigerator includes a cabinet (10) defining a first storage region (2) in which food is stored, a door (20) rotatably connected to a first rotating shaft (42), located at the front of the cabinet (10), via a first hinge member (40) to open or close the first storage region (2), a gasket (26) provided at the door (20), a container (100) defining a second storage region (52) received in the first storage region (2), the container (100) being rotatably connected to a second rotating shaft, located at the door (20), via a second hinge member (200), a latch member installed to the container (100), and a fastening device (600) provided at the door (20), the fastening device (600) being caught by the latch member to selectively couple the door (20) and the container (100) to each other. The fastening device (600) includes a seal (626) configured to prevent outward movement of cold air through the fastening device (600) in a coupled state of the door (20) and the container (100).
Abstract:
본 발명은 도어의 실외측면에 설치되는 외부케이스 및 상기 도어의 실내측면에 상기 도어를 사이에 두고 상기 외부케이스와 결합되는 내부케이스로 이루어진 하우징; 상기 하우징의 외부케이스에 설치되고 비밀번호를 입력하기 위한 키입력부; 상기 하우징의 내부에 설치되고, 제어부의 제어신호에 따라 도어의 개폐동작을 수행하는 출입문개폐부; 상기 키입력부를 통해 입력된 비밀번호와 기 설정된 비밀번호를 비교하여 상기 출입문개폐부의 개폐동작을 제어하는 제어부; 상기 하우징의 내부케이스에 설치되고 상기 제어부에 연결되어 자동으로 도어를 오픈하는 오픈버튼부; 상기 도어의 닫힘시 도어의 잠금이 자동으로 이루어지지 않도록 제어부에 신호를 인가하는 수동개방버튼부; 및 상기 각 구성으로 구동 전원을 공급하는 전원공급부;를 포함하며, 상기 출입문개폐부는 손잡이부를 도어가 개방되는 방향으로 밀거나 당기는 동작으로 도어의 개방이 이루어지며, 손잡이부를 밀거나 당기는 동작에 연동되는 롤러의 상승이동으로 가감되는 속도를 감지하여 도어가 개방되는 것이 감지되는 것을 특징으로 하는 디지털 출입구 개폐장치를 제공한다. 본 발명은, 도어의 손잡이부를 도어가 개방되는 방향으로 밀거나 당기면, 손잡이부가 밀림 또는 당김되는 속도 및 롤러의 구름운동으로 도어가 개방되는 것을 감지할 수 있고, 도어의 부드러운 개방 동작이 이루어져 도어의 안전성 및 작동의 편의성이 향상된다.
Abstract:
A manually driven electronic deadbolt assembly configured with an electro¬ mechanical coupling mechanism to selectively couple a manually operable bezel to a torque blade for operation of a deadbolt mechanism. The electro-mechanical coupling mechanism is configured such that in a locked condition the manually operable bezel is drivably decoupled from the torque blade, such that the manually operable bezel is free-spinning when rotated so as to be rendered incapable of rotating the torque blade to operate the deadbolt mechanism. Also, the electro-mechanical coupling mechanism is configured to drivably couple the manually operable bezel to the torque blade when a valid code is input to a code input mechanism to facilitate the unlocked condition, such that a rotation of the manually operable bezel effects a rotation of the torque blade to operate the deadbolt mechanism.
Abstract:
A remotely operable lock for a vehicle compartment includes a rotary latch; a detent moveable from a locked position to an unlocked position for preventing and allowing turning of the rotary latch; an electrical actuator mechanically coupled to the detent to selectively move the detent from the locked position to the unlocked position; and a key operated member arranged to selectively interfere with movement of the detent to thereby hold the detent in the locked position or the unlocked position irrespective of operation of the electrical actuator.
Abstract:
A highly secure electronical-mechanical lock DaWoX which involves the mechanisms of the lock, handles, cylinder (1) with the mechanism of a cylinder (4), mini cogwheel (3) and a cogwheel (2), a sliding bar (6) with integrated notches (8) at the side of the bar which runs above the cylinder (1), and which is driven by a cogwheel (2) in the manner that the cogs of the cogwheel (2) run over the notches (8) of the sliding bar (6). The cogwheel (2) activates a mini cogwheel (3) placed inside of the cylinder (1) of the lock. A mini cogwheel (3) activates the mechanism of the cylinder (4) where the key of the cylinder (1) turns. The key can be turned inside of the cylinder (1) up to ten times. Alternative II involves a cylinder with five blades (9) sharply serrated which drive the sliding bar (10) with integrated notches (12) sharply serrated at the lower part of the bar. Alternative III involves a cylinder with five blades (13) roundly serrated which drive the sliding bar (14) with integrated notches (16) roundly serrated at the lower part of the bar.
Abstract:
A lock system having a remote actuating key device, e.g., a portable member arranged to wirelessly transmit a wireless signal, and a passive lock device for receiving that signal. The lock device includes an actuatable trigger mechanism and a control circuit. The control circuit receives the wireless signal, which powers it. The control circuit also determines if the wireless signal is appropriate to unlock the lock, whereupon it produces a trigger signal. The trigger mechanism is responsive to the trigger signal to actuate and enable the lock device to be opened. The key device is also arranged to communicate via a wireless communications connection to a computer network. The communication with the computer network may carry commands and information. The key device may relay communications between the lock device and the computer network.
Abstract:
A locking mechanism for a child safety barrier (1 ) may be activated by a foot pedal (6) which can only be operated when an auxiliary lock (8) has been activated. The auxiliary lock (8) is formed by a mechanical unit, which has an electrical receiver (8a) which, when receiving an electrical signal, e.g. an electromagnetic signal from a transmitter (9), can activate the auxiliary lock (8), following which the foot pedal (6) may be activated. The transmitter (9) may be incorporated in a remote control unit of the hand-held type, or it may be mounted on a wall, where an adult can activate the transmitter, e.g. by an elbow. The transmitter may also be a unit which continuously transmits electromagnetic signals which activate the auxiliary lock when they are interrupted.