Abstract:
A filtration system interconnection structure having a filter manifold including a sump housing and a first correlated magnet located on or connected to a portion of the manifold, and a filter cartridge including a filter media, first and second end caps sealed to the filter media, and a second, paired correlated magnet located on or connected to the filter cartridge housing body. The first and second correlated magnets are interconnected via magnetic communication upon insertion of the filter cartridge into the sump housing, and upon movement of the filter cartridge into an alignment position, the correlated magnet located on or connected to the manifold is permitted to translate as a result of the magnetic communication. The polarity profiles of the paired correlated magnets are aligned such that a repulsion force is created when the filter cartridge is inserted within the manifold sump housing.
Abstract:
A switch for activating the turn signals (blinkers) of a vehicle is actuated by a lever movable from a central position in opposite first and second directions to respective first and second switching positions. A first electromagnet is located such that movement of the lever to the first switching position brings a portion of the lever closer thereto. A second electromagnet is located such that movement of the lever to the second switching position brings the portion of the lever closer thereto. A control unit controls energization of the first and second electromagnets in a manner to attract and/or repel the lever to alternatively: a) hold the lever in the first switching position; b) hold the lever in the second switching position; and c) release the lever to return to the central position from the first switching position and from the second switching position.
Abstract:
The present invention is provided with a delay unit for applying a function of a double-pole contact switch and a control function of an activation switch, so as for the contact switch and the activation switch not to operate simultaneously when turned on. Accordingly, when a predetermined time elapses after the double-pole contact switch operates first to prevent an inrush current shock, the activation switch generates a control signal to safely operate an internal circuit such as a central processing device or a control device, so that an electronic product is turned on without an electrical shock or a significant spark. Moreover, if power is cut off by software or the internal circuit is turned off in response to a control signal of the activation switch after an ON button of the electronic product is pressed, the double-pole contact switch is automatically turned off immediately or over a time interval, so that standby power is cut off completely, safely, conveniently, and effectively.
Abstract:
Provided are a standby power cut-off device for automatically cutting off standby power according to power-on/off of an electronic product and a control method for the standby power cut-off device. By providing an electronic product to which the standby power cut-off device and the control method therefor are applied, the present invention can efficiently cut off standby power by using an existing general outlet without a need to use an outlet having a separate function added thereto. Moreover, the present invention automatically cuts off the standby power according to power-off of the electronic product without unplugging the electronic product, thereby maximizing user's convenience.
Abstract:
The present invention provides a standby power cut-off switch which is directly installed in electric products such as TV sets, audio systems, computers, etc., so that even when a power plug is connected to an electrical outlet, supply of an external power to the electric products through the plug is completely interrupted (i.e., double pole interruption) mechanically by means of an automatically controlled OFF signal so as to prevent the consumption of standby power, and in which a first input terminal and a first output terminal are first electrically connected to each other and then a second input terminal and a second output terminal are electrically connected to each other so that a double-pole switch eventually functions as a single-pole switch so as to allow an electrical contact between terminals to be made sequentially, thereby preventing a spark and an electrical shock to the electric product that may occur when the two poles of the switch concurrently come into close contact with a main body of the electric product during the powering on of the electric products.
Abstract:
In order to simplify and reduce the production costs of a push-button switch, especially a push switch or a rocker switch, the switch has a time function, which is manually operated and can be reset by an electric pulse. The electromechanical rocker or push-button switch can be combined to form a device block switch with other rocker or push-button switches as usually used in exhauster hoods. As a result, time-controlled intensive and follow-up steps can be carried out.