Abstract:
A shock absorbing support arm assembly for a litter support assembly that includes a support arm comprising a first end and a second end opposite the first end, a shock absorbing device disposed at the second end of the support arm, and a litter side shaft engagement mechanism disposed at the first end of the support arm. The support arm assembly may also comprise a mounting bracket connected at the second end of the support arm such that the shock absorbing device is positioned between the mounting bracket and the support arm. The support arm may move along an axis of the shock absorbing device and relative to the mounting bracket and may pivot about the axis relative to the mounting bracket.
Abstract:
A track mounting system including a mount with a mounting plate with a back surface and a front surface, the back surface is opposite the front surface and at least one mounting stud coupled to the back surface of the mounting plate, each mounting stud includes a stem portion that extends outwardly from the back surface and an enlarged head portion disposed at a distal end of stem portion. The mount also includes a release mechanism coupled to the front surface to release the mount from a track. The track mounting system also includes an adaptor coupled to the front surface of the mounting plate wherein the adaptor releasably couples with an equipment interface of a piece of equipment.
Abstract:
A modular equipment mount to enable quick relocation of the piece of equipment. The piece of equipment is secured to a mount. A track system is secured to multiple locations where the piece of equipment may be secured. Power and data connections are included with the track system to provide power and data to the piece of equipment through connectors on the mount.
Abstract:
An equipment mounting system may include a quick mount track having a backing plate with a center slot, a first outer slot, and a second outer slot, the first outer slot and the second outer slot comprise a plurality of diamond contour target regions, and a plurality of locking pin apertures along the center slot in the backing plate, the locking pin apertures are in horizontal alignment with the plurality of diamond contoured target regions. The equipment mounting system also may include a mount removably coupled to the quick mount track wherein the plurality of diamond contour target regions allow for a round head of a t-shaped stud of the mount to engage the first outer slot and the second outer slot at an angle to the backing plate.
Abstract:
An equipment mounting system includes a quick mount track (11) with tapered edges (3611, 3612) couple to a surface or structure. The quick mount track includes a backing plate (15), one or more mounting points positioned such that any forces exerted on a mount (50) coupled to the quick mount track is transferred directly through the quick mount track to the one or more mounting points. The quick mount track also includes a flush mounting surface (3610) that creates and maintains a seal between the quick mount track and the surface, and a chase (3605) is disposed in the quick mount track and defined by the flush mounting surface. A plurality of diamond contoured target regions (13) and a plurality of half diamond contour regions in the backing plate aid in coupling the mount to the quick mount track.
Abstract:
A modular equipment mount to enable quick relocation of the piece of equipment. The piece of equipment is secured to a mount. A track system is secured to multiple locations where the piece of equipment may be secured. Power and data connections are included with the track system to provide power and data to the piece of equipment through connectors on the mount.
Abstract:
A modular equipment mount to enable quick relocation of the piece of equipment. The piece of equipment is secured to a mount. A track system is secured to multiple locations where the piece of equipment may be secured. Power and data connections are included with the track system to provide power and data to the piece of equipment through connectors on the mount.
Abstract:
A modular equipment mount to enable quick relocation of the piece of equipment. The piece of equipment is secured to a mount. A track system is secured to multiple locations where the piece of equipment may be secured. Power and data connections are included with the track system to provide power and data to the piece of equipment through connectors on the mount.
Abstract:
A combination cot loading and fastening system for loading and unloading an ambulance cot having a normal loading height of about 76 centimeters (about 30 inches) into an emergency rescue vehicle having a transport deck in excess of 78 centimeters (about 31 inches), the vehicle having an opening providing access to the transport deck, is disclosed. The system comprises a pair of tracks, a shuttle assembly to securely pull the ambulance cot along the pair of tracks, and a locking mechanism mounted on the shuttle assembly. The shuttle assembly is configured to position the locking mechanism a distance away from a second end of the pair of tracks and at angle below the transport deck of the emergency rescue vehicle, the angle ranging from about 10° to 25°, and the distance ranging about 22.8 centimeters (about 9 inches) to about 50 centimeters (about 20 inches).
Abstract:
A track mounting system including a mount with a mounting plate with a back surface and a front surface, the back surface is opposite the front surface and at least one mounting stud coupled to the back surface of the mounting plate, each mounting stud includes a stem portion that extends outwardly from the back surface and an enlarged head portion disposed at a distal end of stem portion. The mount also includes a release mechanism coupled to the front surface to release the mount from a track. The track mounting system also includes an adaptor coupled to the front surface of the mounting plate wherein the adaptor releasably couples with an equipment interface of a piece of equipment.