Patent classifications
E06B3/42
SILL WITH DETACHABLE WATER DRAINAGE TROUGH FOR HIGH DIFFERENTIAL PRESSURE PERFORMANCE
A sill assembly for a door or window frame includes an elongate sill body with a water catchment tray and one or more drainage passages extending from the catchment tray to an outlet, and a drainage trough mounted to an underside of the sill body and depending downwardly therefrom to define a reservoir that receives water that drains from the outlet of the drainage passages. The drainage trough includes weep holes which restrict outflow from the reservoir and is detachable from the sill body, which facilitates the manufacture of the sill assembly in different configurations to suit site requirements.
SILL WITH DETACHABLE WATER DRAINAGE TROUGH FOR HIGH DIFFERENTIAL PRESSURE PERFORMANCE
A sill assembly for a door or window frame includes an elongate sill body with a water catchment tray and one or more drainage passages extending from the catchment tray to an outlet, and a drainage trough mounted to an underside of the sill body and depending downwardly therefrom to define a reservoir that receives water that drains from the outlet of the drainage passages. The drainage trough includes weep holes which restrict outflow from the reservoir and is detachable from the sill body, which facilitates the manufacture of the sill assembly in different configurations to suit site requirements.
INVISIBLE SILL - THERMALLY BROKEN
There is included an intermediate element including one or more, but not necessarily limited to, an L-shaped profiled portion configured to receive a part of a panel of a door or window, a pad configured to be fit into at least one frame part and comprising a support strip groove, and an intermediate element extended from the L-shaped portion to the pad.
CONNECTORS FOR SMART WINDOWS
This disclosure provides connectors for smart windows. A smart window may incorporate an optically switchable pane. In one aspect, a window unit includes an insulated glass unit including an optically switchable pane. A wire assembly may be attached to the edge of the insulated glass unit and may include wires in electrical communication with electrodes of the optically switchable pane. A floating connector may be attached to a distal end of the wire assembly. The floating connector may include a flange and a nose, with two holes in the flange for affixing the floating connector to a first frame. The nose may include a terminal face that present two exposed contacts of opposite polarity. Pre-wired spacers improve fabrication efficiency and seal integrity of insulated glass units. Electrical connection systems include those embedded in the secondary seal of the insulated glass unit.
CONNECTORS FOR SMART WINDOWS
This disclosure provides connectors for smart windows. A smart window may incorporate an optically switchable pane. In one aspect, a window unit includes an insulated glass unit including an optically switchable pane. A wire assembly may be attached to the edge of the insulated glass unit and may include wires in electrical communication with electrodes of the optically switchable pane. A floating connector may be attached to a distal end of the wire assembly. The floating connector may include a flange and a nose, with two holes in the flange for affixing the floating connector to a first frame. The nose may include a terminal face that present two exposed contacts of opposite polarity. Pre-wired spacers improve fabrication efficiency and seal integrity of insulated glass units. Electrical connection systems include those embedded in the secondary seal of the insulated glass unit.
Direct action window lock
A window latch for a sliding window having a sliding sash including a latch plate and a housing. The housing includes an engagement element movable relative to the housing from a locked position operatively engaged with the latch plate to an unlocked position disengaged from the latch plate. A handle is operatively coupled to the engagement element and movable from a first position to a second position in a first direction corresponding to the direction the sliding sash to which the handle is attached moves to an open position. The handle operatively moves the engagement element from the locked position to the unlocked position as the handle is moved in the first direction toward the second position.
Direct action window lock
A window latch for a sliding window having a sliding sash including a latch plate and a housing. The housing includes an engagement element movable relative to the housing from a locked position operatively engaged with the latch plate to an unlocked position disengaged from the latch plate. A handle is operatively coupled to the engagement element and movable from a first position to a second position in a first direction corresponding to the direction the sliding sash to which the handle is attached moves to an open position. The handle operatively moves the engagement element from the locked position to the unlocked position as the handle is moved in the first direction toward the second position.
Sliding door assembly and ground base station using the same
A sliding door assembly includes a landing platform located in a first plane, a sliding door mating with the landing platform and located in a second plane approximately parallel to the first plane, and a driving assembly configured to drive the sliding door to move translationally in the second plane to open or close the sliding door.
Sliding door assembly and ground base station using the same
A sliding door assembly includes a landing platform located in a first plane, a sliding door mating with the landing platform and located in a second plane approximately parallel to the first plane, and a driving assembly configured to drive the sliding door to move translationally in the second plane to open or close the sliding door.
Window seal for preventing water penetration
A water penetration prevention system includes an insert for being positioned along a track for a window, the insert having a first engaging portion disposed on a first side of the insert and a second engaging portion disposed on a second side of the insert. The system also includes a seal engaging member disposed between the first engaging portion and the second engaging portion, the seal engaging member being selectively positionable between a first position that a second position. The seal engaging member, in the second position, applies a force on at least one of the first side of the insert and the second side of the insert that causes the at least one of the first side of the insert and the second side of the insert to sealingly engage a corresponding one of the window and a vertical wall of the track.