Abstract:
Among other things, one or more systems and/or techniques for improving performance of a dispensing system are provided herein. The dispensing system may comprise an emitter and a detector. The emitter may be configured to transmit light (e.g., and/or one or more other signals). The detector may be configured to measure light, for example. The detector may determine a first measurement of light while the emitter is not transmitting light. The detector may determine a second measurement of light responsive to the emitter transmitting light. The detector may determine a third measurement of light based upon a comparison of the first measurement of light with the second measurement of light. The detector may be direct current (DC) coupled while determining the third measurement of light.
Abstract:
A container has an opening lying in a plane, wherein the opening is provided on a connecting piece of the container. A closure of the container can be removed by displacement in the plane. At least one guide element is provided on the connecting piece, on or in which the closure can be displaced relative to the container. The closure has at least one recess on at least one of its outer surfaces.
Abstract:
Among other things, one or more systems and/or techniques for improving performance of a dispensing system are provided herein. The dispensing system may comprise an emitter and a detector. The emitter may be configured to transmit light (e.g., and/or one or more other signals). The detector may be configured to measure light, for example. The detector may determine a first measurement of light while the emitter is not transmitting light. The detector may determine a second measurement of light responsive to the emitter transmitting light. The detector may determine a third measurement of light based upon a comparison of the first measurement of light with the second measurement of light. The detector may be direct current (DC) coupled while determining the third measurement of light.
Abstract:
This invention relates to a wall mountable drip tray (1) of the type comprising a mounting plate (5) for mounting the drip tray to a wall, a liquid reservoir (7) extending forwardly from the mounting plate and in which the wall mountable drip tray further comprises monitoring equipment (9) including a proximity sensor (8) for detecting an individual or equipment in the vicinity of the drip tray. The monitoring equipment further comprises a transceiver for communicating with one or more of a remote control unit (23), a fixed network unit (35) and a mobile network unit (37) of a monitoring system (21). By providing such a wall mountable drip tray, existing hand hygiene infrastructure, specifically wall mounted antibacterial liquid dispensers, in an installation can be incorporated into a new monitoring system and will not become obsolete.
Abstract:
A pipeline clamp including a clamp assembly adapted to attach to an outer surface of a pipeline and a protruding member having a first end portion attached to a surface of the clamp assembly and a second end portion extended away from the clamp assembly. The second end portion is configured to accommodate a sensor and the pipeline clamp has a natural frequency equal to or greater than a maximum expected vibration frequency of the pipeline.
Abstract:
A system for mounting an electronic handheld device includes a case having a mounting structure and a locking structure attached to the case by aligning a portion of the locking structure with a portion of the mounting structure and rotating the locking structure or the case.
Abstract:
Provided is a multi-chamber dispenser for dispensing flowable substances, comprising: a body (100) having: a first storage chamber (113) for storing a first flowable substance, a second storage chamber (123) for storing a second flowable substance, a first outlet zone (141), a second outlet zone (142), a first inlet (150) that fluidly connects the first storage chamber (113) with the first outlet zone (141), a second inlet (160) that fluidly connects the second storage chamber (123) with the second outlet zone (142), a first apparatus (154) configured, on operation thereof, to dispense from the first storage chamber (113) via the first inlet (150) into the first outlet zone (141) a first predetermined volume of the first flowable substance, a second apparatus (164) configured, on operation thereof, to dispense from the second storage chamber (123) via the second inlet (160) into the second outlet zone (142) a second predetermined volume of the second flowable substance, and a lever (170) connected to the first and second apparatuses (154, 164) and rotatable relative to the first and second apparatuses (154, 164) between a first position and a second position, wherein rotation of the lever (170) from the first position to the second position causes operation of the first and second apparatuses (154, 164).
Abstract:
A mount portion has a rectangular outside shape, and has an opening in its center part that can be fitted by hanging on mounting brackets fixed on a wall surface. An installation surface has mount fixing holes in its upper part and mount fixing holes in its lower part. Default positioning holes are provided adjacent to the mount fixing holes. In screwing, the mount fixing holes have given screwing position freedom. The regions of the default positioning holes have smaller opening areas than the regions of the mount fixing holes.
Abstract:
An automatic gap adjustor is provided. The automatic gap adjustor includes an upper cammed disk, a lower cammed disk spaced apart from the upper cammed disk, and a resilient spring element therebetween. The upper cammed disk includes a first plurality of cams on an upper axial surface and a second plurality of cams on a lower axial surface. The lower cammed disk includes a third plurality of cams on an upper axial surface and a fourth plurality of cams on an undercut portion spaced apart from the upper axial surface. Opposing cams can be radially offset from each other, such that reciprocating axial movement of the upper disk relative to the lower disk can achieve a stepped rotation of the upper disk. Rotation of the upper disk can drive the automatic gap adjustor along a threaded support to eliminate a gap along a portion thereof.
Abstract:
The present invention discloses a back plate of a liquid crystal display (LCD) module and a splice structure thereof. The back plate is assembled at least by a first back plate portion and a second back plate portion, wherein at least one splice structure is defined between the first back plate portion and the second back plate portion, and the shapes of two sides of the splice structure are correspondingly engaged with each other. Besides, the convex portion is provided with a fixing hole thereon, and the concave step portion is correspondingly provided with a fixing pillar therein. The fixing pillar passes through the fixing hole to fix the first back plate portion and the second back plate portion. The present invention can use different type of material to assemble into the back plate, so as to intensify the splicing strength except for decreasing the material cost.