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 t
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.
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1. An equipment mounting system, comprising: a quick mount track comprising: a backing plate with a first outer slot and a second outer slot, the first outer slot and the second outer slot being spaced apart and parallel with each other, thereby defining a spacing therebetween, and each outer slot c
1. An equipment mounting system, comprising: a quick mount track comprising: a backing plate with a first outer slot and a second outer slot, the first outer slot and the second outer slot being spaced apart and parallel with each other, thereby defining a spacing therebetween, and each outer slot comprises a plurality of diamond contour target regions, andwherein the backing plate defines a plurality of locking pin apertures provided centrally along the spacing spanning between the first outer slot and the second outer slot, wherein the locking pin apertures are closed, each of the locking pin apertures are in alignment with a respective one of the plurality of diamond contoured target regions from each of the first outer slot and the second outer slot, the alignment being perpendicular to the first and second outer slots; anda mount removably coupled to the quick mount track wherein the plurality of diamond contour target regions allow for a plurality of round head of t-shaped studs of the mount to engage the first outer slot and the second outer slot at an angle to the backing plate, the mount comprising a locking pin positionable in one of the locking pin apertures, wherein the locking pin releasably engages one of the locking pin apertures. 2. The equipment mounting system of claim 1, wherein the quick mount track is coupled to a mobile object. 3. The equipment mounting system of claim 2, wherein the mobile object is an emergency transportation vehicle. 4. The equipment mounting system of claim 3, wherein the emergency transportation vehicle is an ambulance or a helicopter. 5. The equipment mounting system of claim 1, further comprising a track clip removably coupled to the quick mount track and comprising: a base having a slot engagement flange and a base width to allow the base to slidably couple with a slot of the quick mount track and to minimize movement of the track clip in relation to the quick mount track;a coupler is coupled to the base along a coupler face, the coupler face is opposite from the slot engagement flange on the base;a leverage feature is coupled to the base along a carrier axis, the carrier axis is substantially orthogonal to the coupler face; anda carrier having an open region engagement interface to slidably couple with an open region on the quick mount track and comprising a first extension and a second extension, the first extension is opposite the second extension on the carrier, the carrier slidably couples to the leverage feature along the carrier axis and is biased in an engaged position by a spring. 6. The equipment mounting system of claim 5, wherein the carrier further comprises a first lip and a second lip coupled to the carrier, and wherein a transition force is applied to the first lip and the second lip such that the carrier is transition between the engaged position to a disengaged position, the engaged position secures the track clip to the quick mount track, and the disengaged position releases the track clip from the quick mount track. 7. The equipment mounting system of claim 6, wherein the carrier further comprising a snubber pad coupled to the carrier and the snubber pad is retracted into the base when the track clip is in the disengaged position and the snubber pad is extended beyond a base surface of the base when the track clip is in the engaged position, the snubber pad prevents the track clip from moving in relation to the quick mount track while the track clip is coupled to the quick mount track in the engaged position. 8. The equipment mounting system of claim 5, wherein the coupler is a hook, a peg, a clasp, a latch, a light, or a u-shaped ring and the base is covered in an anti-rattle coating that creates an interference fit between the track clip and the quick mount track. 9. The equipment mounting system of claim 1, further comprising a wall cabinet removably coupled to the quick mount track and comprising: a partial enclosure that bounds a storage volume, the partial enclosure comprises a rear wall that defines a rear-most extent of the partial enclosure;a door that defines a front most extent of the partial enclosure, is moveably coupled to the partial enclosure, has a closed position that partitions an exterior volume from the storage volume and an open position that allows access from the exterior volume to the storage volume, and comprises a window that allows an object in the storage volume to be visible from the exterior volume when the door is in the closed position; anda cabinet mount is coupled to the partial enclosure and configured to secure the wall cabinet to the quick mount track, the cabinet mount comprising: a cabinet plate in the storage volume,a mount position in the exterior volume and comprises one or more fastening devices and a threaded collar, the rear wall is captured between the cabinet plate and the mount, anda turn knob comprising a pin spring biased against a locking pin, the turn knob is configured to couple with the threaded collar such that when the cabinet mount is coupled to the quick mount track, the turn knob is inserted into the threaded collar and rotated until the locking pin is coupled with a locking pin aperture of the quick mount track, and the pin spring dampens any movement between the quick mount track and the wall cabinet. 10. The equipment mounting system of claim 9, wherein the wall cabinet further comprises: one or more light emitting diode (LED) lights coupled to the partial enclosure and to a door switch, the one or more LED lights illuminate the storage volume in a red color during low-light operations and a white color during daytime operations and the door switch activates the one or more LED lights when the door is transitioned to the open position; andwherein the partial enclosure further comprises: a bottom wall that defines a lower extend of the partial enclosure and comprises a retaining lip configured to impede the object from sliding from the storage volume into the exterior volume when the door is in the open position,a first molding coupled to a first side wall of the partial enclosure, the first molding is configured to absorb the force of an impact with the wall cabinet and further comprises a structure to allow the wall cabinet to be grasped and positioned on the quick mount track, anda second molding coupled to a second side wall of the partial enclosure, the second molding is configured to absorb the force of an impact with the wall cabinet and further comprises a grip structure to allow the wall cabinet to be grasped and positioned on the quick mount track. 11. The equipment mounting system of claim 1, further comprising a laptop mount removably coupled to the quick mount track and comprising: a platform;an articulating ball joint to allow for a full range of motion of the platform, the articulating ball joint comprising a first ball, a second ball, and a compression clamp, the compression clamp captures the first ball at a first end of the compression clamp and the second ball at a second end and is used to freeze or restrain movement of the platform in relation to the quick mount track, and the first ball is coupled to the platform;a laptop lock to transition the laptop mount between a locked position and a release position, the locked position secures a laptop to the platform and the release position enables the laptop to be removed from the platform; andwherein the mount is coupled to the second ball and configured to removably couple the laptop mount to the quick mount track. 12. The equipment mounting system of claim 1, further comprising a tray mount removably coupled to the quick mount track and comprising: a tray rack;an articulating ball joint to allow for a full range of motion of the tray rack, the articulating ball joint comprising a first ball, a second ball, and a compression clamp, the compression clamp captures the first ball at a first end of the compression clamp and the second ball at a second end and is used to freeze or restrain movement of the tray rack in relation to the quick mount track, and the first ball is coupled to the tray rack;one or more rotating posts capture a tray in the tray rack when the one or more rotating posts are in a retained position; andwherein the mount is coupled to the articulating ball joint and configured to removably couple the tray mount to the quick mount track. 13. The equipment mounting system of claim 1, further comprising an oxygen tank mount removably coupled to the quick mount track and comprising: a frame configured to hold one or more oxygen tanks;a frame handle coupled to the frame and used to move the oxygen tank mount between locations;one or more retention clamps coupled to the frame, each retention clamp has a quick release to allow a oxygen tank to be removably coupled to the retention clamp;a manifold fluidly coupled to each oxygen tank by a tube network and configured to fluidly couple with one or more medical devices;a plurality of mounting studs coupled to a rear surface of the frame and arranged on the rear surface to removably couple the oxygen tank mount to the quick mount track; andone or more track releases coupled to the frame and having a release handle and one or more locking pins biased in a locked position, each locking pin slidably couples with a locking pin aperture of the quick mount track and the release handle configured to pull a locking pin from the locking pin aperture to release the oxygen tank mount from the quick mount track. 14. The equipment mounting system of claim 1, further comprising a defibrillator mount removably coupled to the quick mount track and comprising: a c-frame having a top end and a bottom end;a base coupled to the bottom end of the c-frame and has one or more retention block and a retention lip, each retention block is used to slidably couple with and secure a defibrillator to the base and the retention lip is used to restrain the defibrillator from lateral motion and serve as a guide when placing the defibrillator in the defibrillator mount;a jaw clamp is coupled to the top end and configured to capture and retain a handle of the defibrillator, the jaw clamp comprises an upper jaw, a lower jaw, a release button, a bar, and a j-latch wherein the bar is coupled to the lower jaw and the release button and the j-latch are coupled to the upper jaw, the j-latch is configured to capture and retain the bar in a latched position and the release button is configured to actuate the j-latch to release the bar in an unlatched position; andwherein the mount is coupled to the c-frame and configured to removably couple the defibrillator mount to the quick mount track. 15. The equipment mounting system of claim 1, further comprising a compression defibrillator mount removably coupled to the quick mount track and comprising: a c-frame having structural bracing to reinforce the compression defibrillator mount and make it crash-ready;a base coupled to a bottom end of the c-frame and has one or more retention block and a retention lip, each retention block is used to slidably couple with and secure a defibrillator to the base and the retention lip is used to restrain the defibrillator from lateral motion and serve as a guide when placing the defibrillator in a defibrillator mount;a defibrillator latch coupled to an upper end and comprising an actuator handle and a device interface, the actuator handle transitions the defibrillator latch between a locked position and an unlocked position and the device interface is contoured to a defibrillator surface such that the device interface exerts a uniform force on the defibrillator and secures the defibrillator between the defibrillator latch and the base; andwherein the mount is coupled to the c-frame and configured to removably couple the compression defibrillator mount to the quick mount track. 16. The equipment mounting system of claim 1, further comprising a folding tray mount removably coupled to the quick mount track and comprising: a tray;a set of upper arms and a set of lower arms connected to the tray by a first set of hinges, wherein the set of upper arms and the set of lower arms maintain the trays position in a storage position and a use position;an upper support and a lower support connected to the set of upper arms and the set of lower by a second set of hinges;a set of lock tabs connected to the first set of hinges, the set of; lock tabs prevent the upper arms and lower arms from moving from the storage position to the use position and from the use position to the storage position; andwherein a mounting plate of the folding tray mount is coupled to the upper support and the lower support and configured to removably couple the folding tray mount to the quick mount track. 17. The equipment mounting system of claim 1, further comprising a swivel mount removably coupled to the quick mount track and comprising: a swivel body;a swivel frame connected to the swivel body by an upper hinge and a lower hinge axially aligned along a longitudinal axis, wherein the upper hinge and the lower hinge allow the swivel body to rotate;a lock body which can prevent the swivel body from rotating;one or more mounting holes located on the swivel body to secure a piece of equipment to the swivel body by a fastening device; andwherein a mounting plate of the swivel mount is coupled to the swivel frame and configured to removably couple the folding tray mount to the quick mount track.
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