Abstract:
Methods and systems are provided for enabling wireless control by use of portable power supply systems with embedded communication components. A power supply component, which is operable to store and discharge power, and which may be configured for use in a first device to supply power thereto in portable manner, may be configured to determine data associated with the power supply component. The data may comprise information relating to one or more conditions associated with use of power stored in the power supply component, in conjunction with operation of the first device. The power supply component may comprise a communication element, for wirelessly communicating messages to a second device that is physically separate from the first device, to control at least part of operations of the second device. Controlling operations of the second device may comprise activating or deactivating the second device based on use of power by the first device.
Abstract:
Apparatuses and methods based thereon are provided for utilizing washing attachments in portable manner. A washing attachment may comprise a movement component and a washing component. The movement component is adapted to connect the washing attachment to a driving device that is operable to provide a driving force to the washing attachment. The washing component is adapted to fit within a space in the container when the washing attachment is applied to the container, and is configured to facilitate laundry washing within the space when the driving force is applied to the washing attachment. The washing component may be an auger component having a helical-shaped structure. The helical-shaped structure may comprise helical extensions (e.g., spiral blades) configured to generate washing movement in the space. When the driving device is a power drill, the helical-shaped structure may be designed such that the spacing between spiral blades of the structure is 0.9 inches.
Abstract:
A method and device are disclosed for monitoring a sump pump system. The monitoring device may include electrical sensors to sense electrical characteristics of the sump pump system. The sensors may include one or more current clamps which may be clamped around an electrical lead or wire of the sump pump system. The monitoring device may further include control logic circuitry configured to monitor sensed electrical characteristics of the sump pump system and deduce an operating status based on the sensed electrical characteristics. The monitoring device may further include a communications interface configured to report the deduced operating status to an interested party via a communications device.
Abstract:
Methods and systems are provided for enabling wireless control by use of portable power supply systems with embedded communication components. A power supply component, which is operable to store and discharge power, and which may be configured for use in a first device to supply power thereto in portable manner, may be configured to determine data associated with the power supply component. The data may comprise information relating to one or more conditions associated with use of power stored in the power supply component, in conjunction with operation of the first device. The power supply component may comprise a communication element, for wirelessly communicating messages to a second device that is physically separate from the first device, to control at least part of operations of the second device. Controlling operations of the second device may comprise activating or deactivating the second device based on use of power by the first device.
Abstract:
Apparatuses and methods based thereon are provided for mixing utilizing mixer inserts. A mixer insert may comprise an enclosing component adapted for application to an opening in a container to which the mixer insert is applied, to enclose a space in the container. The mixer insert may further comprise one or more mixing components, adapted to fit within the enclosed space when the enclosing component is applied to the opening in the container, with the one or more mixing components being configured to mix material placed within the enclosed space when the combination of the container and the mixer insert is subject to particular force or movement.
Abstract:
Embodiments for monitoring and powering one or more sump pumps of a sump pump system are disclosed. In one embodiment, a monitoring device includes a battery, a power inverter, a power outlet, and a power cord to receive AC power from an AC power outlet. A sump pump system includes a sump and an AC pump coupled to the power outlet of the monitoring device. The monitoring device is configured to select between AC power received from the AC power outlet and AC power supplied by the battery and the power inverter, and provide the selected AC power to the AC pump via the power outlet of the monitoring device.
Abstract:
A method and device are disclosed for monitoring a sump pump system. The monitoring device may include electrical sensors to sense electrical characteristics of the sump pump system. The sensors may include one or more current clamps which may be clamped around an electrical lead or wire of the sump pump system. The monitoring device may further include control logic circuitry configured to monitor sensed electrical characteristics of the sump pump system and deduce an operating status based on the sensed electrical characteristics. The monitoring device may further include a communications interface configured to report the deduced operating status to an interested party via a communications device.
Abstract:
Methods and systems are provided for enabling wireless control of devices via portable power supply components. A power supply component may be configured to store and discharge power, which may be configured for use to supply power to a first device, may be additionally configured to pair the first device with a second device; to determine power related data associated with the power supply component, to generate one or more control messages based on the power related data; and to wirelessly communicate the one or more control messages to the second device. The power related data may include information relating to one or more conditions associated with use of power stored in the power supply component. The one or more control messages may be configured for controlling at least a portion of operations of the second device
Abstract:
Embodiments for monitoring and powering one or more sump pumps of a sump pump system are disclosed. In one embodiment, a monitoring device includes a battery, a power inverter, a power outlet, and a power cord to receive AC power from an AC power outlet. A sump pump system includes a sump and an AC pump coupled to the power outlet of the monitoring device. The monitoring device is configured to select between AC power received from the AC power outlet and AC power supplied by the battery and the power inverter, and provide the selected AC power to the AC pump via the power outlet of the monitoring device.