Abstract:
A roof assembly for a vehicle, having a roof opening in its fixed roof, comprises at least one movable panel closing said roof opening in its closed position and being movable from said closed position rearwardly and upwardly above the fixed roof. A driven operating mechanism supports the panel and comprises a telescope including a first telescopic part attached to the panel and a second telescopic part attached to a remainder of the operating mechanism. A height adjusting mechanism is provided between the panel and the operating mechanism. This height adjusting mechanism is arranged and adjusts the height between the first and second telescopic parts.
Abstract:
An open roof construction for a vehicle includes a closure element supported by an operating mechanism. The operating mechanism comprises a driving slide, slidably guided in a guide rail, a front support attached to the closure element and guided by the guide rail, a support member which is slidably connected to the closure element, and a curve part on the stationary part including a guide track having a vertical component and extending rearwardly beyond a rear edge of the roof opening. The guide rail, driving slide, connecting element, support member and curve part on the stationary part are positioned outside the seal between the closure element and the stationary part. The connecting element is connected to the driving slide and support member in a manner such that it is movable at least partly in substantially vertical direction with respect to the guide rail.
Abstract:
A roof system for a vehicle having a roof opening with a movable closure. A stationary guide rails guide operating mechanisms that operates the closure. The operating mechanism comprises a first device configured to move a rear edge upwardly and rearwardly and a second device including a lever to move a front edge of the closure. A guiding slide in the guide rail is coupled to the first device and the second device so as to move the closure. The lever has a pivotal connection to the closure and, remote from the pivotal connection, a sliding connection to the guiding slide by a first guide member and a sliding connection to a first stationary guide curve by a second guide member during movement of the closure. A third guide member on the lever of the second device engages a second stationary guide curve during movement of the closure.
Abstract:
An open roof construction for a vehicle comprises an opening in a stationary roof part and a rollo assembly positioned below said roof opening intended for covering the roof opening. The rollo assembly comprises a rollo screen and a winding shaft for the rollo screen which is rotatable around a stationary axis of rotation, and the rollo screen, starting from the winding shaft, firstly extends in a first direction, next around a reversal member and finally back in an opposite second direction and ends at a rollo screen edge. The reversal member is movable in parallel to said first and second directions in correspondence with the amount of rollo screen being wound on or off said winding shaft. The rollo screen is provided with light emitting members which are activated through connections provided at the interface between said rollo screen edge and a stationary part of the open roof construction.
Abstract:
A roof system includes a closure that opens a roof opening in a vehicle. An operating mechanism for the closure includes a first device including a lever configured to move the rear edge of the closure towards a raised position above the roof. A second device includes a lever configured to move the front edge of the closure in a vertical direction. At least one of the levers has a first pivotal connection at a first end of the closure, and spaced second and third connections connecting the respective lever at least to a guiding slide. At least one of the levers is pivotally connected to a sliding member at one of said second and third connections. The sliding member is separate from the guiding slide, slides in the longitudinal direction of the guide rail and is supported by the guide rail in directions perpendicularly to the longitudinal sliding direction.
Abstract:
A folding type sunroof deflector structure may include a deflector gate formed penetrating the front frame in the widthwise direction of the vehicle a first deflector which is stored inside the front frame to be moved up and down through the deflector gate and projectable outside of the opening section; a second deflector, an upper part of which is rotatably connected to a hinge joint located at a bottom of the first deflector and which is projectable outside of the opening section according to a movement of the first deflector; and a pair of deflector arms having a rear end portion of which is rotatably coupled to a pair of side frames to be connected to sides of the opening section; and a front end portion of which is coupled to both sides of the first deflector to move the first deflector up and down.
Abstract:
An open roof construction for a vehicle comprises a roof opening in a stationary roof part and a seal extending along the roof opening and a panel movable between a closing and opening position for closing and opening, respectively, said roof opening. The panel comprises a first panel part which both in the closing and opening positions is positioned inside the seal, as seen in a top plan view, as well as a second panel part which both in the closing and opening positions is positioned outside the seal. Front and rear mechanisms cause movement of the panel. At least one mechanism is provided at the first panel part. A movable element is positioned outside the seal and has a drive mechanism. The second panel part is provided with at least one drive member which is operatively coupled to the drive mechanism of the movable element.
Abstract:
An open roof construction for a vehicle comprises a roof opening provided in a stationary roof part, a movable panel for opening and closing said roof opening and a wind deflector assembly proximate a forward edge of the roof opening. The wind deflector assembly comprises a frame part extending substantially in a transverse direction and movable between a retracted position and extended position below and above, respectively, the level of the stationary roof part and a flexible member attached to said frame part at a first end and attached to a stationary part of the vehicle at a second end. The wind deflector assembly further comprises a guide rod for the flexible member extending in a transverse direction and movable in a longitudinal direction of the vehicle. The guide rod is moves so that the flexible member is maintained in a taut state in all positions of the frame part.
Abstract:
A rollo assembly is provided, comprising a winding shaft defining an axis of rotation and a flexible rollo screen of which a first end is attached to the winding shaft, such that the rollo screen by an appropriate rotation of the winding shaft around its axis of rotation may be wound on or off the winding shaft. Part of the rollo screen wound off from the winding shaft extends along a certain path. The winding shaft is movable in a direction perpendicularly to its axis of rotation in such a manner that the part of the rollo screen wound off from the winding shaft always extends substantially along the same path independently from the amount of rollo screen wound off from the winding shaft.
Abstract:
A roof assembly for a vehicle roof opening comprises a pair of guide rails extending in a non-parallel way and at a distance from each other. At least one closure element is adjustable in order to at least cover and at least partly open the opening. At least one pair of sliding elements opposite of each other on each of opposite sides of the closure element is provided for slidably engaging in the respective guide rail. The sliding elements are slidably connected to the closure element in a substantially lateral direction. A biasing device is used for biasing the sliding elements relative to the closure element in a substantially lateral direction by being attached to the closure element on one end and being operatively connected to each pair of opposite sliding elements on the other end with interposition of a synchronizing device equalizing the movements of the sliding elements.