Patentable/Patents/US-20250297481-A1
US-20250297481-A1

Stairs and Platform System for Mobile Elevated Shelter

PublishedSeptember 25, 2025
Assigneenot available in USPTO data we have
Inventorsnot available in USPTO data we have
Technical Abstract

A shelter includes a body having a wall. A stairs and platform system is connected adjacent the wall of the shelter. The stairs and platform system includes a platform and a stair assembly. The platform includes: (i) first and second spaced-apart side rails and a platform floor located between the first and second side rails; and (ii) first and second platform handrail assemblies respectively located on opposite first and second lateral sides of the platform. The stair assembly is connected to the platform to provide access to the platform and is movable relative to the platform from a first operative position in which the stair assembly projects outwardly away from the platform to a second stowed position in which the stair assembly is retracted relative to the platform and at least part of the stair assembly is supported adjacent the platform. The first and second platform handrail assemblies are each selectively configurable to be in: (i) an operative position in which the first and second platform handrail assemblies project respectively upwardly from the opposite first and second lateral sides of the platform; and (ii) a stowed position in which the first and second platform handrail assemblies engage both the platform and the stair assembly to capture and retain the stair assembly in its stowed position.

Patent Claims

Legal claims defining the scope of protection, as filed with the USPTO.

1

. A shelter comprising:

2

. The shelter as set forth in, wherein said stair assembly is slidably connected to the platform and slides relative to the platform to and between the first operative position of the stair assembly and the second stowed position of the stair assembly.

3

. The shelter as set forth in, further comprising first and second polymeric connection blocks secured to the platform and slidably engaged respectively with first and second stringers of said stair assembly.

4

. The shelter as set forth in, further comprising first and second stringer stops connected respectively to the first and second stringers that respectively engage the first and second connection blocks when the stair assembly is located in its second stowed position.

5

. The shelter as set forth in, wherein said platform is movably connected to the shelter wall and moves relative to the wall between an operative position and an inoperative position, wherein said platform and said stair assembly both lie adjacent said wall when said platform is located in said inoperative position and said stair assembly is in said second stowed position.

6

. The shelter as set forth in, wherein said platform is pivotally connected to the wall and wherein said platform pivots relative to the wall between said operative position and said inoperative position.

7

. The shelter as set forth in, wherein said platform is pivotally connected to the wall by first and second platform mounting brackets and wherein said platform is selectively removable from the first and second platform mounting brackets.

8

. The shelter as set forth in, wherein said wall comprises a door and wherein said platform and said stair assembly both lie adjacent said door of said wall when said platform is located in said inoperative position and said stair assembly is located in said second stowed position.

9

. The shelter as set forth in, further comprising a latch system for selectively retaining said platform in its inoperative position adjacent said wall.

10

. The shelter as set forth in, wherein said stair assembly is selectively captured adjacent to said platform floor when said stair assembly is in said second stowed position by engagement of said at least one platform handrail assembly with both said platform and said stair assembly when said stair assembly is located in said second stowed position adjacent said platform floor.

Detailed Description

Complete technical specification and implementation details from the patent document.

This application is a continuation of U.S. application Ser. No. 17/961,539 filed Oct. 6, 2022, now assigned U.S. Pat. No. 12,276,112, which claims priority from and benefit of the filing date of U.S. provisional application Ser. No. 63/252,863 filed Oct. 6, 2021, and the entire disclosure of each said prior application is hereby expressly incorporated by reference into the present specification.

Portable shelters for transportation to and deployment at a remote site are widely known. These shelters are used by the military and others for establishing field offices, field hospitals, barracks, combat shelters, kitchens, mess halls, command posts, communication centers, and other structures. Such portable shelters often include one or more expandable and collapsible wall sections and/or roof sections that allow the shelter to be selectively collapsed for storage and transportation of the shelter in a stowed configuration and that can be selectively expanded for use of the shelter in a deployed configuration.

These shelters are often mounted upon a vehicle such as a truck, trailer or other vehicle so as to be mobile when in the stowed configuration. As such, when deployed, the shelter is typically elevated above the ground or other support surface on which the vehicle is supported, which requires that the shelter be equipped with a ladder, stairs, ramp, a powered (pneumatic, hydraulic, electric) lift or other means for facilitating ingress and egress of personnel with respect to the interior of the shelter when it is deployed. While a wide variety of stairs, ladders, platforms, and the like are known, these known devices and structures are suboptimal for use with a portable shelter for reasons including excessive complexity for deployment and storage, complicated assembly and disassembly, use of loose parts that can be misplaced or damaged, the need to store large parts of the stairs and/or platform inside or separate from the shelter when the shelter is in its stowed configuration, and interference of the stairs or platform components with the ability to store or transport the shelter when in its stowed configuration. Accordingly, a need has been identified for a new and improved stairs and platform system for a mobile shelter that overcomes the above and other deficiencies of known system while providing better overall results.

In accordance with one aspect of the present development, a shelter includes a body having a wall. A stairs and platform system is connected adjacent the wall of the shelter. The stairs and platform system includes a platform and a stair assembly. The platform includes: (i) first and second spaced-apart side rails and a platform floor located between the first and second side rails; and (ii) first and second platform handrail assemblies respectively located on opposite first and second lateral sides of the platform. The stair assembly is connected to the platform to provide access to the platform and is movable relative to the platform from a first operative position in which the stair assembly projects outwardly away from the platform to a second stowed position in which the stair assembly is retracted relative to the platform and at least part of the stair assembly is supported adjacent the platform. The first and second platform handrail assemblies are each selectively configurable to be in: (i) an operative position in which the first and second platform handrail assemblies project respectively upwardly from the opposite first and second lateral sides of the platform; and (ii) a stowed position in which the first and second platform handrail assemblies engage both the platform and the stair assembly to capture and retain the stair assembly in its stowed position.

In accordance with another aspect of the present development, a stairs and platform system for a shelter includes a platform adapted to be connected to an associated shelter. The platform includes: (i) first and second spaced-apart side rails and a platform floor located between the first and second side rails; and (ii) first and second platform handrail assemblies. A stair assembly is connected to the platform and is selectively positionable relative to the platform in: (i) a first, operative position in which the stair assembly projects outwardly away from the platform to provide access to the platform; and (ii) a second, stowed position in which the stair assembly is retracted relative to the platform and at least part of the stair assembly is supported adjacent the platform. The first and second platform handrail assemblies are each selectively positionable in: an operative position in which the first and platform handrail assemblies project respectively upward on opposite lateral sides of the platform; and (ii) a stowed position in which the first and second platform handrail assemblies engage both the platform and the stair assembly to capture and retain the stair assembly in its stowed position.

are respective partial left and right isometric side views of one example of a shelter S that comprises a stairs and platform system SP provided in accordance with one embodiment of the present development.is a partial front elevation view of the shelter S of.are respective left and right partial side views of the shelter S of.

Referring to all of, the shelter S is typically mounted on a frame, platform, chassis, or other elevated support structure of a vehicle such as a truck or trailer (diagrammatically shown at V in), or the shelter S can be mounted on a fixed (non-mobile) elevated structure such that the base or floor FL of the shelter S is elevated above a support surface such as a floor or ground surface GR by a distance or height H. The illustrated shelter S is intended to be a non-limiting example and can alternatively be provided in any of a wide variety of other configurations without departing from the scope and intent of the present development.

In the illustrated example, the shelter S comprises a body SB including primary shelter portion Sand further comprises one or more movable secondary shelter portions S,S(each only partially shown) that move relative to the primary shelter portion Sbetween a retracted or stowed position where they are each retracted relative to and/or into the primary shelter portion Sfor storage and transport of the shelter S and an extended or deployed position where the secondary shelter portions S,Sare each extended relative to and project outwardly from the primary shelter portion S(as shown in) for operative use of the shelter S.

The shelter body B comprises a vertical wall W including a door opening DO that provides access to an interior space. A door D is pivotally or otherwise movably connected to the shelter body B adjacent the door opening DO for selectively opening and closing the door opening DO. In the illustrated example, the door opening DO is defined in an end wall W of the primary shelter portion S, and the door D is pivotably connected adjacent the door opening DO by multiple hinges HX for pivoting movement about a vertical pivot axis between the door-opened and door-closed positions, but the door opening DO can be provided in any other wall of the shelter S and it is not intended that the present development be limited to the location of the door opening DO and door D as shown herein. The stairs and platform system can be attached to the shelter body SB adjacent the wall W.

With reference also to the enlarged partial left and right isometric views of, the stairs and platform system SP can comprise first and second (left and right) platform mounting brackets K,Kthat are bolted, welded, or otherwise fixedly secured to the shelter wall W or other part of the shelter body SB such as respectively adjacent opposite first and second (left and right) lateral sides of the door opening DO and also adjacent the floor FL of the primary shelter portion Sso that the brackets K,Kare located adjacent a lower end of the door opening DO on opposite sides thereof. The brackets K,Kcan be one-piece or multi-piece structures. The brackets K,Kcan alternatively be mounted elsewhere on the shelter body SB where it is desired to connect the stairs and platform system SP.

Each bracket K,Kcomprises a platform mounting portion KF such as a tab, flange, U-shaped channel or other that extends outwardly away from the shelter wall W and to which a platform assembly or platform P provided in accordance with an embodiment of the present development is pivotally connected such that the platform P is pivotally movable and positionable relative to the shelter wall W and door opening DO about a horizontal pivot axis PX between an operative extended or deployed (down) first position as shown inand an inoperative retracted or stowed (up) second position as shown in(note that ina floor PF of the platform P has been removed to reveal other structures). As such, the platform P can be configured to be in either its operative or stowed position. In the illustrated example, a pivot mount such as a pin or bolt KB is connected to the bracket platform mounting portion KF and provides a mount structure or location for operative pivoting connection of the platform P thereto about the pivot axis PX as described in more detail below. A platform lock pin PP is installed through a first pin-receiving location Lof each bracket K,Kand through part of the platform P to lock the platform P to the brackets K,Kand prevent rotation or other movement such as removal of the platform P relative to each bracket K,Kwhen the lock pin PP is installed. As shown in, when the platform P is pivoted to or configured in its stowed position adjacent the door D, the lock pin PP can alternatively be installed in a second pin-receiving location Lof each bracket K,Kto block pivoting movement of the platform P about the pivot bolt KB from its stowed position toward its deployed position so as to retain the platform P in its stowed position.

The platform P can be provided in any of a wide variety of shapes and sizes and generally comprises a flat platform floor PF that is must be sufficiently strong and rigid to support the weight of people and equipment located therein or moving thereacross. As shown herein, the platform floor PF comprises steel or aluminum grating, but other floor structures can be used. In the illustrated embodiment, the platform floor PF is square or otherwise rectangular and the platform P comprises first (left) and second (right) parallel, spaced-apart side rails R,Rrespectively located on opposite first (left) and second (right) lateral sides of the platform floor PF for supporting the floor PF and connecting same to the shelter S by way of the pivot mounts KB of the platform mounting brackets K,K. The first and second side rails R,Rinclude respective inner ends R,R(sec alsowhere a side rail R,Ris separately shown) that are pivotally connected to the respective platform brackets K,Kby the pivot mount (bolt) KB, and the platform floor PF extends between the first and second side rails R, Rand is supported thereby. The inner ends R,Rof the platform side rails each include a stop face RT (sec) that abuts the shelter wall W, the respective bracket K,K, or other stop STR () that is part of and/or fixed in position relative to the shelter body B such that the fully deployed operative position of the platform P is defined when the first and second stop faces RT abut the respective first and second stops STR and pivoting movement of the platform P in a first direction away from its stowed position is blocked so that the platform P is in its extended or deployed operative position, which is ordinarily when the platform P is horizontally disposed and located at approximately a 90 degree angle relative to the vertical shelter wall W. As shown in the simplified view ofwhere certain structures are removed for clarity, the inner end R,Rof each platform side rail R,Rincludes a L-shaped or other contoured open slot KS that can be slidably engaged with the pivot bolt or other pivot mount structure KB to pivotally mount the platform P to the pivot mount KB. The open slots KS in the platform rails R,Rallow the platform P to be retained in pivoting engagement with the respective pivot mounts KB but also allow the platform P to be selectively separated from the pivot mounts KB by sequential two-axis sliding movement of the platform P relative to the pivot mounts KB when the lock pin PP is not installed.

Referring particularly to, at least one gas spring GS is operatively connected between the platform P and a mounting bracket K,Kor other mounting location fixed relative to the shelter body B (e.g., the primary shelter portion S). In the illustrated embodiment, first and second gas springs GS are provided and are respectively operatively connected between the first and second mounting brackets K,Kand the first and second platform rails R,R. The gas springs GS each include a first end GSconnected to a first gas spring anchor location GSa on the rails R,Rand an opposite second end GSconnected to a second gas spring anchor location GSb on the bracket K,Kor elsewhere on the shelter body B. The gas springs GS are preferably pressurized and biased toward an extended position such that they assist pivoting movement of the platform P from its deployed or “down” position () to its stowed or “up” position () and so that the gas springs GS counterbalance and damp movement of the platform P in the opposite direction from the stowed position to the deployed position. It should be noted that the platform rails R,Reach can optionally include a temporary gas spring anchor location GSt to which the second end GSof the gas spring GS is connected for temporary inoperative storage of the gas spring GS with both ends GS,GSaffixed to the rail R,Rin case the second end GSof the gas spring is disconnected from the second anchor location GSb when the platform P is temporarily removed from the brackets K,Kas required for storage, maintenance, or other purpose.

The platform P preferably comprises first (left) and second (right) platform handrail assemblies PH,PHlocated respectively adjacent the first (left) and second (right) sides of the platform P. In an alternative embodiment, only one of the platform handrail assemblies PH,PHis provided. As shown herein the first and second platform handrail assemblies PH,PHare respectively connected to the first and second platform side rails R, R. More particularly, the first platform handrail assembly PHcomprises a platform handrail PHthat extends between and is supported by at least one and preferably at least two spaced-apart platform handrail balusters PHthat are releasably connected to the first side rail Rin an operative or first position such that the first platform handrail assembly PHprojects vertically upward and outward from the first side rail Rin the operative position and the platform handrail PHextends parallel the first side rail Ror otherwise extends above the first side rail R. Similarly, the second platform handrail assembly PHcomprises a handrail PHthat extends between and is supported by at least one and preferably at least two spaced-apart platform handrail balusters PHthat are releasably connected to the second side rail Rin an operative or first position such that the second platform handrail assembly PHprojects vertically upward and outward from the second side rail Rin the operative position and the platform handrail PHextends parallel the second side rail Ror otherwise extends above the second side rail R. The first and second side rails R,Rinclude pockets RP or other receivers that are adapted to slidably receive the respective platform handrail balusters PH,PHand the balusters can be releasably retained in the pockets RP by a wide variety of suitable fasteners such as by a removable pin N(see also) that is inserted through aligned apertures in the pocket RP and the respective baluster PH, PHor by other suitable fastener or fastening device. In the operative or first position, the first and second platform handrail assemblies PH,PHproject upwardly/outwardly respectively from the opposite first and second lateral sides of the platform P to provide a safety barrier.

In, its can be seen that the first platform side rail Rincludes at least one and preferably at least two platform handrail storage apertures APP corresponding in number to the number of balusters PHof the first platform handrail assembly PH(i.e., the first side rail Rincludes first and second platform handrail storage apertures APP), and the second platform side rail Rsimilarly includes at least one and preferably at least two platform handrail storage apertures APP corresponding in number to the number of balusters PHof the second platform handrail assembly PH(i.e., the second side rail Rincludes third and fourth platform handrail storage apertures APP). The two or more storage apertures APP of the first side rail Rare conformed, dimensioned, and arranged relative to each other to slidably receive the respective balusters PHof the first platform handrail assembly PHwhen the first platform handrail assembly PHis moved from the first or operative position shown inwhere the balusters PHare received and retained in the pockets RP to the second or inoperative storage position as shown inwhere the balusters PHare removed from the pockets RP and slidably inserted into respective storage apertures APP of the first side rail R. Likewise, the two or more storage apertures APP of the second side rail Rare conformed, dimensioned, and arranged relative to each other to slidably receive the respective balusters PHof the second platform handrail assembly PHwhen the second platform handrail assembly PHis moved from the first/operative position shown inwhere the balusters PHare received and retained in the pockets RP to the second/inoperative storage position as shown inwhere the balusters PHare removed from the pockets RP and slidably inserted into respective storage apertures APP of the second side rail R. In the illustrated example, the platform handrail balusters PH,PHare shorter in length than the lateral distance between the platform side rails R,Rsuch that the balusters PH,PHdo not abut or extend through aligned apertures in the opposite side rail R,Rwhen installed in the storage apertures APP of the first and second rails R,R, but they may do so in an alternative embodiment. When the first and second platform handrail assemblies PH,PHare located in their respective stowed, inoperative (second or storage) positions as shown in, the handrails PH,PHlie respectively adjacent the first and second platform side rails R,R. The storage apertures APP need not have a closed perimeter and can be provided as an open notch.

The stairs and platform system SP further comprises stairs or a stair system or stair assembly ST operatively and movably connected to the platform P for providing personnel access to and from the elevated platform P to the ground GR or other support surface above which the platform P is located. The stair assembly ST generally comprises first and second stringers G,Gthat are arranged in a parallel, spaced-apart configuration, and further comprises a plurality of steps T that extend between and that are supported by the stringers G,G. Each step comprises at least a tread Ta and can optionally also include a riser (not shown in the illustrated embodiment). The stair assembly ST comprises a plurality of steps T such as the illustrated seven steps, but more or less steps can be provided. The stair assembly ST can comprise first and second vertically adjustable feet SF connected respectively to the first and second stringers and that can be independently vertically extended or retracted relative to the ground surface GR such that the feet SF can be placed into contact with the ground surface GR to support the first and second stringers G,Grelative to the ground surface GR. In one example, a pin N() is inserted through aligned apertures in a shaft SFT of each of the feet SF and a pocket KG the stringer G,Gin which the shaft SFT is slidably received to set the extended or retracted position of each of the adjustable feet SF.

The stair assembly ST is movably connected to and selectively positionable relative to the platform P. In particular, the stair assembly ST is movable to and between: (i) a first, extended, operative position or configuration as shown inin which the stair assembly ST is fully extended and deployed and projects outwardly and downwardly away from the platform at an angle and is arranged for use by personnel to enter/exit the platform P; and (ii) a second, retracted, or stowed position or configuration as shown inin which the stair assembly ST is retracted relative to the platform P and at least part of the stair assembly ST is supported adjacent the platform floor PF between the platform side rails R,R(typically part of the stair assembly ST projects parallelly outwardly from and is cantilevered relative to the platform floor PF when the stair assembly is in the stowed position). In the illustrated embodiment, when the stair assembly ST is in its second, stowed/retracted position, the stair assembly ST is supported on or adjacent the platform P with at least part of both the first and second stringers G,Gthereof located on or adjacent the platform surface PF between the platform side rails R,R. The stair assembly ST can comprise a pivoting filler plate FP () that fills any gap located between the platform P and the stair assembly ST when the stairs ST are deployed.

The stair assembly ST can be movably connected to the platform P using any of a wide variety of structures and arrangements. In the illustrated embodiment, part of the platform P, such as the floor PF thereof, comprises an outer edge PE that extends between the side rails R,Rand that is spaced outwardly away from an opposite inner edge PI of the platform P that is located adjacent the shelter wall W. With particular reference also towhich each show a partial isometric bottom view of the stair assembly ST in its stowed position relative to the platform P, first and second connection blocks B,Bare connected to or formed as part of the platform P and are located adjacent the platform leading edge PE. The first and second stair assembly stringers G,Gare respectively engaged in a sliding or other movable arrangement with the first and second connection blocks B,Bsuch that the stringers G,Gcan slide relative to the connection blocks B,Bbetween the first (deployed) position of the stair assembly ST and the second (stowed) position of the stair assembly ST. The connection blocks also allow the angle of the stringers G,Grelative to the platform P to be adjusted as needed. In one non-limiting example, the connection blocks B,Bcomprise a one-piece molded polymeric body BB defined from a resinous material such as ultra high molecular weight polyethylene (UHMW) or other durable material. The body BB is bolted or otherwise fixedly secured to the platform P adjacent the leading edge PE. In one example, the body BB is secured to the platform P using bolts or other fasteners BX. The stringers G,Ginclude respective transverse flanges GF,GF() that are slidably engaged with the body BB. The connection blocks B,Bcomprises respective spring-loaded retainers BR that are movably connected to the respective body BB and that move between a first (operative) position as shown and a second (inoperative) position. The retainers BR are spring-biased to the illustrated first, operative position relative to the respective connection block body BB by a coil spring BG coaxially positioned about a shaft portion of the retainer BR. In this first or operative position, a projecting finger FR of the retainer BR extends over or above and captures the respective stringer flange GF,GFadjacent the block body BB in a manner that prevents the stringers G,Gfrom being separated from the respective connection blocks B,Bbut that allows the stringer flanges GF,GFto slide relative to the block body BB for sliding movement of the stair assembly ST between its first (deployed) and second (stowed) positions. The spring-loaded retainers BR include a handle by which they are selectively manually moved against the biasing force of the spring BG to a second, inoperative position when the finger FR is moved away from the stringer flange GF,GFto allow the stringer G,Gto be separated from its respective connection block B,B. As shown in the embodiment of, the stringers G,Gcan include respective stringer stops GS,GSconnected to the stringer flanges GF,GFor elsewhere that contact and abut the respective connection blocks B,Bto prevent further movement of the stringers away from the deployed position when the stair assembly ST is fully moved to its stowed position.

Referring again to, the stair assembly ST preferably comprises first (left) and second (right) stair handrail assemblies SH,SHlocated respectively adjacent the first (left) and second (right) lateral sides of the stair assembly ST. In an alternative embodiment, only one of the stair handrail assemblies SH,SHis provided. As shown in, the stair handrail assemblies SH,SHare configured in their respective first or operative positions in which the first and second platform handrail assemblies SH,SHare respectively connected to the first and second stair stringers G,Gand project respectively upward or outward therefrom with the first stair handrail SHspaced above and arranged parallel to or otherwise extending above the first stringer Gand with the second stair handrail SHarranged parallel to or otherwise extending above the second stringer Gsuch that the first and second stair handrail assemblies SH,SHprovide safety barriers on the opposite first and second lateral sides of the stair assembly ST. More particularly, the first stair handrail assembly SHcomprises a stair handrail SHthat extends between and is supported by at least one and preferably at least two spaced-apart stair handrail balusters SHthat are releasably connected to the first stringer G. Similarly, the second stair handrail assembly SHcomprises a handrail SHthat extends between and is supported by at least one and preferably at least two spaced-apart stair handrail balusters SHthat are releasably connected to the second stringer G. The first and second stair stringers G,Ginclude pockets KS or other receivers that are adapted to slidably receive the respective stair handrail balusters SH,SHand the balusters can be releasably retained in the pockets RS by a wide variety of suitable fasteners such as by a removable pin Nthat is inserted through aligned apertures in the pocket KS and the respective baluster SHSH

With particular reference to the side views of, the first stair stringer Gincludes at least one and preferably at least two stair handrail storage apertures APS corresponding in number to the number of balusters SHof the first stair handrail assembly SH(i.e., the first stringer Gincludes first and second stair handrail storage apertures APS), and the second stair stringer Gsimilarly includes at least one and preferably at least two stair handrail storage apertures APS corresponding in number to the number of balusters SHof the second stair handrail assembly PH(i.e., the second stringer Gincludes third and fourth stair handrail storage apertures APS). The two or more storage apertures APS of the first stringer Gare conformed, dimensioned, and arranged relative to each other to slidably receive the respective balusters SHof the first stair handrail assembly SHwhen the first stair handrail assembly SHis moved from its first or operative position shown inwhere the balusters SHare received and retained in the pockets KS to an inoperative or second position as shown inwhere the balusters SHare removed from the pockets KS and slidably inserted into respective storage apertures APS of the first stringer G. Likewise, the two or more storage apertures APS of the second stringer Gare conformed, dimensioned, and arranged relative to each other to slidably receive the respective balusters SHof the second stair handrail assembly SHwhen the second stair handrail assembly SHis moved from the first/operative position shown inwhere the balusters SHare received and retained in the pockets KS to an inoperative or second position as shown inwhere the balusters SHare removed from the pockets KS and slidably inserted into respective storage apertures APS of the second stringer G. In the illustrated example, the stair handrail balusters SHSHare longer than the lateral distance between the stair stringers G,Gsuch that when the stair handrail balusters SH,SHare respectively inserted fully into the storage apertures APS of the first and second stringers G,G, the stair balusters SHSHextend through corresponding aligned apertures APS′ located in the opposite stringer G,Gand respectively aligned with the storage apertures APS. When the first and second stair handrail assemblies SH,SHare located and configured in their respective stowed, inoperative (second or storage) positions, the first and second handrails SH,SHthereof lie respectively adjacent the first and second stringers G,G. The stair handrail balusters SHSHcan be secured in their respective stowed, inoperative (second or storage) positions using a bail pin or other fastener BPS (see) that is inserted through aligned apertures located in the stair handrail baluster SH,SHto provide an enlarged structure that prevents withdrawal of the stair handrail baluster SH,SHfrom the respective storage apertures APS,APS′. The storage apertures APS need not have a closed perimeter and can be provided as an open notch.

As can be seen in, the stairs ST can be moved from the operative position ofto an inoperative retracted or stowed position where the stairs ST are located on or adjacent the platform P between the platform side rails R,R. Before being moved to this stowed position, the stair handrails SH,SHare removed from their respective operative positions and installed or positioned in their respective inoperative stowed positions with the stair handrail balusters SHSHthereof installed in the aligned storage apertures APS, APS′ such that the handrails SH,SHlie adjacent the stringers G,G, respectively, and such that the stair handrail balusters SH,SHare arranged perpendicularly or otherwise transversely relative to the stringers G,Gand extend between and through the stringers G,G(see also the top view of). This stowed position of the stair handrails SH,SHallows the stair handrails to be located between the platform side rails R,Rwhen the stair assembly ST are moved to the stowed position. After the stairs ST are located in the stowed position between the platform side rails R,R, the platform handrails PH,PHare moved from their respective operative positions to their respective stowed or inoperative positions with the balusters PH,PHthereof installed in the storage apertures APP of the first and second side rails R,R. It should be noted that the stair stringers G,Ginclude pass-through apertures PA that are aligned in pairs between the stringers G,G, and each aligned pair of pass-through apertures PA receives and accommodates the passage there through of one of the platform handrail balusters PH,PHwhen the platform handrails PH,PHare moved to their respective stowed positions when the stairs ST are located in the stowed position. In other words, a first aligned pair of pass-through apertures PA receives the first platform handrail baluster PHand a second aligned pair of pass-through apertures PA receives the second platform handrail baluster PHThe pass-through apertures PA need not have a closed perimeter and can be provided as an open notch. In the inoperative position of the platform handrails PH,PH, the platform handrail balusters PH,PHcan lie parallel to the platform floor PF and be arranged perpendicularly or otherwise transversely relative to the first and second side rails R,Rand the first and second stringers G,G.

The stair assembly connection blocks B,Bposition the stringers G,Gon the platform P so that the pass-through apertures PA are aligned with the corresponding storage apertures APP of the platform side rails R,R. Engagement of the platform balusters PH,PHwith both the storage apertures APP of the platform P and also with the pass-through apertures PA of the stair assembly ST causes the platform handrail balusters PH,PHto capture and retain the stair assembly ST in its stowed position on the platform P. The engagement of the platform handrail balusters PH,PHwith the stair stringers G,Gto capture and retain the stair assembly ST on or adjacent the platform P in its inoperative stowed position can be seen in(note that in, the platform floor PF is not shown to review the engagement of the platform handrail balusters PH,PHwith the stair assembly stringers G,G). The platform handrail balusters PH,PHcan be secured in their respective stowed, inoperative positions using a bail pin or other fastener BPP () that is inserted through aligned apertures located in the platform handrail baluster PH,PHto provide an enlarged structure that prevents withdrawal of the platform handrail baluster PH,PHfrom the respective pass-through apertures PA of the stair stringers G,G.

When the stair assembly ST is located in its stowed position on or adjacent the platform as shown in, the platform P can be selectively manually pivoted from its extended or deployed (down) position ofto its retracted or stowed (up) position ofwhere the platform P lies adjacent the wall W and door D. In its stowed position, the platform P can be arranged vertically and parallel with the door D.

The stair and platform system SP can also comprise a latch system for selectively retaining the platform P and stairs ST in the stowed position of. In one example, the system comprises at least one and, as shown herein, first and second latch systems Z () each comprising first and second mating latch components Zand Zconnected respectively to the platform P and to part of the shelter body B such as the shelter wall W. As shown herein, the first latch components Zeach comprise a selectively releasably latch assembly connected respectively to the platform P. In the illustrated example, the first and second latch components Zare respectively connected to the first and second platform side rails R,R. The second latch components Zeach comprise a mating striker pin or other structure for engaging and mating with the first latch component Zand are mounted to the wall W or other part of the shelter body B. The striker pins or other second latch components Zare positioned and configured to be respectively engaged and retained by first latch components Zwhen the platform P is pivoted to its stowed position. When the first and second latch components are engaged, the platform P is prevented from being pivoted away from its stowed position toward its deployed position. The latch assemblies Zcan be selectively manually released to disengage from the striker pin or other second latch component Zas needed to allow the platform P to pivot toward its deployed position. As shown herein, each latch assembly Zcomprises a cord or other release actuator Z() that is pulled or otherwise actuated by a user to open the latch assembly Zso that it releases the striker pin or other second latch component Z.

show a stairs and platform system for a shelter in accordance with an alternative embodiment SP′. Except as otherwise shown and/or described herein, the stairs and platform system SP′ is identical to the stairs and platform system SP and like reference numbers/letters are used for like components, in some cases with a prime (′) designation to indicate an optional variation in structure.shows the stairs ST and platform P in their respective extended or deployed positions whileshow the stairs ST and platform P in their respective retracted or stowed positions. Unlike the stairs and platform system SP, the stairs and platform system SP′ comprises first and second platform handrail retention straps RP,RPrespectively connected to the first and second platform side rails R,R. The straps can be provided by webbing, cord, and/or another strap material. As shown in, when the first and second platform handrail assemblies PH′,PH′ are located in their stowed positions, the first and second straps RP,RPare respectively engaged with the first and second platform handrail assemblies PH′,PH′ (in particular with the first and second platform handrails PH′,PH′) to secure and capture the first and second handrail assemblies PH′,PH′ to the respective platform side rail R,Rin the stowed position. The retention straps RP,RPcan include any suitable clasp or fastening element such as a mechanical clasp and/or a hook-and-loop fastening clement or the like to secure the retention strap RP,RPto itself and/or to the side rail R,Rto capture the respective platform handrail PH′,PH

also show that the stairs and platform system SP′ can comprise an optional indicia system for aiding users in properly inserting the platform handrail balusters PH′,PH′ in the proper or intended storage apertures APP,APS. In particular, it can be seen that the first platform side rail Rincludes first and second platform handrail storage aperture indicia I,Irespectively adjacent or otherwise associated with the first and second platform storage apertures APP (shown respectively as the letters “A” and “B” but other indica can be used) and that the platform handrail assemblies PH′,PH′ each comprise matching first and second platform handrail assembly indicia I,Ialigned or otherwise associated respectively with the first and second balusters PH′,PH′ to indicate that the respective platform handrail balusters PH,PHare to be inserted in the storage apertures APP including correspondingly marked indicia I,I(the indicia I,Ion the second platform side rail Rcan be identical to the indicia I,Ion the first side rail R). The indicia can be provided by paint, ink, engraving or embossing, stickers, colors, a stencil, or the like. The first and second indica I,Ican also be included in the first and second stair stringers adjacent or otherwise associated with the corresponding pass-through apertures PA.

Similarly, it can be seen that the first stair stringer Gincludes first and second stair handrail storage aperture indicia J,Jrespectively adjacent or otherwise associated with first and second storage apertures APS of the stairs ST (shown respectively as the letters “C” and “D” but other indica can be used) and that the stair handrail assemblies SH′,SH′ each comprise matching first and second stair handrail assembly indicia J,Jaligned or otherwise associated respectively with the first and second stair handrail balusters SH′,SH′ to indicate that the respective balusters SH′,SH′ are to be inserted in the storage apertures APS including correspondingly marked indicia J,J(the indicia J,Jon the second stringer Gis not visible inbut can be identical to the indicia J,Jon the first stringer G). Also, the first and second stringers G,Gcan also include the platform side rail indicia I,Iadjacent or otherwise associated with the pass-through aperture PA that is to receive the correspondingly marked platform handrail baluster PH,PHfor additional guidance of the location for the platform handrail balusters PH′,PH

With reference to, its can be seen that at least one (and preferably both) of the platform handrail balusters PH′,PH′ of each of the first and second platform handrail assemblies PH′,PH′ of the stairs and platform system SP′ can further comprise an enlarged shoulder N provided on upper portion Nthereof between the platform handrail PH′,PH′ and the distal or outer/lower portion Nthat is spaced farthest away from the platform handrail PH′,PH′. The enlarged shoulder N can be provided by an enlarged annular sleeve or collar or by any other enlarged or outwardly extending protuberance or structure connected to the upper portion Nof the platform handrail baluster PH′,PH′. As such, each platform handrail baluster PH′,PH′ includes a first or upper portion Nincluding an enlarged structure N that is radially or otherwise enlarged and that projects outwardly or protrudes relative to a second or lower portion N. The enlarged shoulder structure N is dimensioned such that it defines the upper portion Nso that it can be received into and through the relevant storage aperture APP of the platform side rail R,Rbut so that the upper portion Nis too large in diameter or otherwise enlarged and unable to be received into and/or through the aligned pass-through apertures PA of the stair stringers G,G. On the other hand, the lower portion Nis sized to be received into and through both the side rail storage apertures APP and also the pass-through apertures PA of the stringers G,G. As such, as shown in, when the platform handrail assemblies PH′,PH′ are located and secured in their stowed positions, the upper portion Nof each first platform handrail baluster PH′ is located in a fixed position with its enlarged shoulder N located adjacent the first stair stringer G, while the upper portion Nof each second platform handrail baluster PH′ is located in a fixed position with its enlarged should N located adjacent the second stair stringer G. Because the enlarged shoulder N or other enlarged upper portions Nare too large to be received into the pass-through apertures PA of the stringers G,G, the stair assembly ST is captured between the enlarged upper portion N/shoulder N of the first and second handrail balusters PH′,PH′ and prevented from moving laterally more than a minimal distance. The enlarged shoulder N of the or each platform handrail baluster PH′ blocks movement of the stair assembly ST toward the first platform rail Rwhile the enlarged shoulder N of the or each platform handrail baluster PH′ blocks movement of the stair assembly ST toward the second platform rail R.

In the preceding specification, various embodiments have been described with reference to the accompanying drawings. It will, however, be evident that various modifications and changes may be made thereto, and additional embodiments may be implemented, without departing from the broader scope of the invention as set forth in the claims that follow. The specification and drawings are accordingly to be regarded in an illustrative rather than restrictive sense.

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September 25, 2025

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Cite as: Patentable. “Stairs and Platform System for Mobile Elevated Shelter” (US-20250297481-A1). https://patentable.app/patents/US-20250297481-A1

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Stairs and Platform System for Mobile Elevated Shelter | Patentable