Abstract:
An air pump includes an air reservoir, a discharge passage, a valve, and a pusher. The discharge passage includes a first section and a second section wider than the first section. The valve, disposed in a first position, includes first and second seal ends respectively disposed in the first and second sections. The valve, disposed in a second position, includes the first seal end disengaging from the first section and includes the second seal end disposed in the second section. The second seal end has a greater cross-sectional area than the first seal end. The pusher is movably retained in the air reservoir and is movable between a first position spaced from the valve and a second position abutting the valve. The valve is disposed in the second position when the pusher is disposed in the second position.
Abstract:
An air pump includes an air reservoir, a discharge passage, a valve, and a pusher. The discharge passage includes a first section and a second section wider than the first section. The valve, disposed in a first position, includes first and second seal ends respectively disposed in the first and second sections. The valve, disposed in a second position, includes the first seal end disengaging from the first section and includes the second seal end disposed in the second section. The second seal end has a greater cross-sectional area than the first seal end. The pusher is movably retained in the air reservoir and is movable between a first position spacing from valve and a second position abutting the valve. The valve is disposed in the second position when the pusher is disposed in the second position.
Abstract:
A tire tool includes a body including a tire levering end and an inflating end including first connecting end delimiting a first fluid channel and a second connecting end delimiting a second fluid channel. The first and second channels fluidly connect to one another.
Abstract:
A portable pump includes a cylinder, a nozzle, a valve, a piston rod, a tube, and a pressure sensing device. The nozzle connects with the cylinder and includes a passage connectable with the inflatable. The valve is mounted between the cylinder and the nozzle. The piston rod has a rod hole and is connected with a piston and a handle. The handle includes a recess. The tube connected with the valve. The pressure sensing device is disposed in the recess. The pressure sensing device can measure the pressure value of the air flowing into the recess and is connectable with a mobile electronic device via wireless transmission for indication.
Abstract:
An air valve connector is threadly engaged to a nozzle head of an air pump, which is eccentrically and pivotally connected with a cam lever. The cam lever is adapted to press against a plug and an airtight ring disposed in the nozzle head to compel the valve connector to connect with different types of air valves such as a French type valve, a German type valve, an English type valve, and an American type valve. The air valve connector is reversed easily between first and second positions to be adapted to connect with the different type valves by the user.
Abstract:
A pump nozzle includes a housing body including a lateral edge. The lateral edge defines a valve connecting end and a lever connecting end. A lever is connected to the lever connecting end and is operably pivotal between a first position and a second position. Also, the lever includes a first extension and a second extension extending therefrom and angled thereto. When the lever is in the first position, its first extension is disposed in and adjacent to the lateral edge and is oriented towards the top edge of the housing body, and its second extension is disposed in and adjacent to the top edge and is orientated towards the valve connecting end of the housing body. When the lever is in the second position, the first and second extensions are disposed outside the lateral edge and top edge of the housing body, respectively.
Abstract:
A head for an air pump includes a housing, a nozzle, an urging mechanism, and an end cap. The housing includes a first compartment defined therein and including a first end defining an opening port and a second end enclosed by an end wall. The housing further includes a hole extending therethrough and into the first compartment. The nozzle device is disposed within the first compartment. The urging mechanism includes a cam, an axle and a pivoting member. The cam is disposed in the first compartment and abuts against the nozzle device. The axle is inserted into the housing through the holes and engages with the cam. The pivoting member is connected to the cam by engaging with a terminal end of the axle.
Abstract:
The technology provides, in some aspects, methods and systems for triggering a master machine vision processor and a slave machine vision processor in a multi-camera machine vision system. Thus, for example, in one aspect, the technology provides a method that includes the steps of establishing a communications link between a slave machine vision processor and a master machine vision processor; receiving on the slave machine vision processor a data message from the master machine vision processor; and triggering the slave machine vision processor to perform a machine vision function, the triggering occurring at a frequency based upon the data message, wherein at least one triggering of the slave machine vision processor occurs independent of the master machine vision processor.
Abstract:
Embodiments of the present disclosure provide a substrate having (i) a first laminate layer, (ii) a second laminate layer, and (iii) a core material that is disposed between the first laminate layer and the second laminate layer; and a die attached to the first laminate layer, the die having an interposer bonded to a surface of an active side of the die, the surface comprising (i) a dielectric material and (ii) a bond pad to route electrical signals of the die, the interposer having a via formed therein, the via being electrically coupled to the bond pad to further route the electrical signals of the die, wherein the die and the interposer are embedded in the core material of the substrate. Other embodiments may be described and/or claimed.
Abstract:
A floor pump includes a base; and a cylinder assembly having a first end coupled to the base and a second end, with a cross-sectional area of the first end of the cylinder assembly being larger than the second end of the cylinder assembly. A linkage assembly is partially disposed in the cylinder assembly and communicates with the base. A hose has a first end coupled to the base and communicating with the linkage assembly and a second end coupled to a thing desired to be inflated.