Abstract:
A smart phone for using to optimize the energy production of a solar panel in real time by a user features a signal processor to receive GPS signaling containing information about the global position of the smart phone, and input signaling containing control information to initiate a GUI algorithm in the signal processor to determine visual and/or audio cues for a user on a proper alignment of a solar panel for optimal solar energy collection efficiency; and provide display imaging signaling from a screen of the smart phone, or audio signaling from a speaker in the smart phone containing information about the visual and/or audio cues for the user on the proper alignment of the solar panel for optimal solar efficiency, so as to enable the user to simultaneously adjust the planar orientation of the solar panel having the smart phone placed thereon, based on the visual and audio cues.
Abstract:
An air operated diaphragm pump is provided featuring a housing, a fluid passageway and an indicator arrangement. The housing is configured with an orifice. The fluid passageway responses to a vacuum force and provides fluid, such as syrup from a bag or container to a beverage dispenser, through the air operated diaphragm pump via the fluid passageway, and is configured with a suction plenum or channel formed by an enclosed space with an inside pressure that is greater than an external pressure of the outside atmosphere when the fluid is being provided through the air operated diaphragm pump via the fluid passageway. The suction plenum or channel is configured to be in fluidic communication with the orifice of the housing. The indicator arrangement is configured in relation to the orifice of the housing to communicate with the suction plenum or channel, and also configured to respond or activate when the vacuum force exceeds a predetermined level and provide a visual indication when the fluid is no longer being provided through the air operated diaphragm pump via the fluid passageway.
Abstract:
A pump system features a power adapter and a pump having a signal processor. The power adapter includes voltage settings that respond to a voltage setting by a user and provide a selected voltage. The signal processor receives signaling containing information about the selected voltage supplied to a motor to run the pump, and also containing information about whether a current draw of the pump is lower than a predetermined low current level or is higher than a predetermined high current level; and determines whether to shut off the pump after a predetermined time, based on the signaling received.
Abstract:
La presente invención provee un cartucho de bomba, el cual está conectado directamente en línea con uno o más cartuchos de filtro en un soporte de montaje; éste puede conectarse con un tanque acumulador para una versión de bomba y sin tanque acumulador para una versión de bomba inteligente; el diseño en línea reduce el tamaño del sistema, la cantidad de conexiones y la cantidad de manguera requerida para instalar el sistema, el cual a su vez reduce el espacio requerido para instalación, el número de trayectorias de fuga potencial y la probabilidad de falla del sistema debido a cuestiones con la manguera.
Abstract:
Un sistema de bombeo que caracteriza una cámara de bomba configurada con una porción central que tiene una salida tangencial, y se configura con una parte de extremo de acoplamiento tubular que tiene porciones de reborde flexibles hacia adentro en un lado; y una base de montaje, que tiene una porción circular con un reborde circunferencial interno configurado para recibir y acoplar las partes del reborde flexibles hacia adentro de la porción de acoplamiento tubular de la cámara de la bomba con el fin de ser acoplado en rotación a la cámara de bombeo de manera que la cámara de bombeo puede ser girada 360 ° en relación con la base de montaje.
Abstract:
Aparato que comprende: una bomba (12) sumergible que tiene una carcasa (14) de impulsor que aloja un impulsor y un motor, estando la carcasa de impulsor configurada para contener una mezcla de aire/agua, en la que una rendija está cortada en el punto más alto de la carcasa (14) de impulsor para que el aire atrapado salga de la carcasa (14) de impulsor una vez que la bomba (12) ha sido sumergida; y un circuito (20) de control configurado para implementar un ciclo de arranque con antibloqueo por aire mediante activación/desactivación para realizar un ciclo de activación y desactivación de la bomba (12) durante un número de ciclos predeterminado en el arranque, de manera que el aire atrapado flote a la parte superior y sea expulsado desde la rendija cuando la bomba (12) se apaga.
Abstract:
Diaphragm pump features upper/lower diaphragm pumping assemblies (U/LDPAs) for pumping fluid and a manifold assembly arranged therebetween. The manifold assembly include a manifold body having an inlet with dual inlet ports and an inlet 5 chamber to receive the fluid from a source; an inlet check valve assembly channel having an inlet duckbill check valve assembly (DCVA) arranged therein to receive the fluid from the dual inlet ports; U/LDPAs orifices having the U/LDPA arranged therein to receive the fluid from the inlet DCVA via first upper/lower manifold conduits and provide the fluid from the U/LDPAs via second upper/lower manifold 10 conduits; an outlet check valve assembly channel having an outlet DCVA arranged therein to receive the fluid from the U/LDPAs; and an outlet having dual outlet ports and an outlet chamber to receive the fluid from the U/LDPAs and provide the fluid from the pump to a outlet source. 30(1) 12a 12 12b 20c FPin 20d Z 20e -20b' 200 FPout 20b(3) 20a 20b 32(1) 14a 14 14b 20e(1)' 20' 20d,20e' 20d(1)' 20b(1)' 20c' 20b(3)' 20o(3)' 20a'--- 20a(2)' 20a(1)'