Abstract:
A connector device includes a pulley rotatably supported in a housing, a spring member for biasing the pulley relative to the housing and for winding a rope onto the pulley and for cushioning the user and for preventing the user from being hurt while falling, and an actuating device selectively coupled to the pulley to selectively rotate the pulley and to selectively wind the rope onto the pulley when required, for allowing the user to move or elevate upwardly along the carrying strap or rope by the user himself, the pulley includes a gear wheel having a number of teeth, and the actuating device includes a shaft having a pinion for selectively engaging with the teeth of the gear wheel and for rotating the gear wheel relative to the housing.
Abstract:
A stereo 3D video frame includes left and right components that are combined to produce a stereo image. For a given amount of distortion, the left and right components may have different impacts on perceptual visual quality of the stereo image due to asymmetry in the distortion response of the human eye. A 3D video encoder adjusts an allocation of coding bits between left and right components of the 3D video based on a frame-level bit budget and a weighting between the left and right components. The video encoder may generate the bit allocation in the rho (ρ) domain. The weighted bit allocation may be derived based on a quality metric that indicates overall quality produced by the left and right components. The weighted bit allocation compensates for the asymmetric distortion response to reduce overall perceptual distortion in the stereo image and thereby enhance or maintain visual quality.
Abstract:
A triple locking hook connector includes a hook, a locking bar, a first spring, a controlling shaft, and a second spring. The hook has an axle hole and a first groove on an end of a hook opening, and has a spacing portion on the other end of the hook opening. An edge of an end of the locking bar has a first bolt. The first spring is to drive a first bolt to keep at the first position and to drive the other end of the locking bar to remain in the spacing portion. The controlling shaft joins the axle hole via a main axle to restrict the first bolt in the first position and to be driven by a second spring to stay at the third position to ensure the locking bar shutting the hook opening.
Abstract:
The present invention relates to a projecting capacitive touch sensing device, display panel, and image display system. The projecting capacitive touch sensing comprises an array of a plurality of sensing units, each sensing unit including: a first electrode made of a sensing material, at least one second electrode made of a sensing material and being disposed around the peripheral of the first electrode, at least one first sensing axis electrically connected to the first electrode, and at least one second sensing axis electrically connected to the second electrodes. The first electrode is quadrangle, while the second electrodes are triangular-shaped. The first electrode and the plurality of second electrodes are arranged to form a rectangular, and a non-sensing area is defined between the first electrode and the second electrodes.
Abstract:
An anti-fall device includes an outer casing which has a receiving chamber, at least a window formed at a sidewall of the outer casing to communicate with the receiving chamber, and a braking member adjacent to the window, and a braking assembly which includes at least a centrifugal actuator supported within the receiving chamber to be moved to selectively engage with the braking member between a locked position and an unlocked position. The centrifugal actuator is aligned with the window, such that the centrifugal actuator of the braking assembly is visibly seen through the window to check whether the centrifugal actuator is actuated at the locked position or the unlocked position.
Abstract:
A safety catch connector includes a catch member, first and second sleeves at two ends of the catch member to define a notch, a locking shaft slidably coupled at the first and second sleeves to selectively open and close the notch, a first controlling unit provided at the first sleeve to releasably lock up the locking shaft at the first sleeve, and a second controlling unit provided at the locking shaft to releasably lock up the locking shaft at the first sleeve, such that the first and second controlling units serves as two safety mechanisms to avoid an unintentional unlocking operation of the locking shaft. The locking shaft is quickly slid to open and close the notch for easy accessing.
Abstract:
A snap hook device includes a hook member having a hook throat opening formed by a base portion and a hook portion and a shank, a hinged gate pivotally coupled to the hook member and to openably close the hook throat opening, a latch member pivotally coupled to the shank with a pivot axle, the latch member includes an anchor member for engaging with a lock member of the hinged gate and the base portion and for locking the hinged gate to the hook member, and to prevent the hinged gate from being depressed to open the hook throat opening before the anchor member of the latch member is disengaged from the base portion of the hook member and the lock member of the hinged gate.
Abstract:
A snap hook includes a channel and an orifice of different height formed in an attaching end of a hook member and a latching cavity formed in a receiving end of the hook member, a pivotal gate having one end attached to the attaching end with an axle, and a latch member attached to the other end for engaging with the latching cavity of the hook member, the axle includes one or more flat surfaces for engaging into the narrower channel of the hook member and for selectively moving the latch member to engage with the latching cavity of the hook member and to lock the pivotal gate to the hook member, and for preventing the pivotal gate from being unlocked or opened inadvertently.
Abstract:
A triple locking hook connector includes a hook, a locking bar, a first spring, a controlling shaft, and a second spring. The hook has an axle hole and a first groove on an end of a hook opening, and has a spacing portion on the other end of the hook opening. An edge of an end of the locking bar has a first bolt. The first spring is to drive a first bolt to keep at the first position and to drive the other end of the locking bar to remain in the spacing portion. The controlling shaft joins the axle hole via a main axle to restrict the first bolt in the first position and to be driven by a second spring to stay at the third position to ensure the locking bar shutting the hook opening.
Abstract:
A stereo 3D video frame includes left and right components that are combined to produce a stereo image. For a given amount of distortion, the left and right components may have different impacts on perceptual visual quality of the stereo image due to asymmetry in the distortion response of the human eye. A 3D video encoder adjusts an allocation of coding bits between left and right components of the 3D video based on a frame-level bit budget and a weighting between the left and right components. The video encoder may generate the bit allocation in the rho (ρ) domain. The weighted bit allocation may be derived based on a quality metric that indicates overall quality produced by the left and right components. The weighted bit allocation compensates for the asymmetric distortion response to reduce overall perceptual distortion in the stereo image and thereby enhance or maintain visual quality.