Inner accessible commutering enterprise structure interfaced with one or more workplace, vehicle or home commutering stations
Abstract
An inner accessible commutering enterprise structure is interfaced with one or more workplace, vehicle or home commutering centers, providing extended battery life for wireless devices with enhanced commutering capabilities for using the enhanced power of commutering devices within the inner accessible commutering enterprise structure. An enterprise interlaced integrated fiber, broadband fiber, electronic, and electrical power network comprising an enterprise communications and computing network of conductors, electronic, electrical and mechanical devices, components, appliances, and equipment is accommodated in the interstitial spaces of the ceilings, walls, partitions, columns, and floors of the wired and wireless inner accessible commutering enterprise structure.
Claims
exact text as granted — not AI-modified1 . An inner accessible commutering enterprise structure, characterized in that inner accessible enterprise communications, computing, power, and related enterprise commutering network devices are disposed within accessible interstitial spaces of ceilings, walls, floors, partitions, and columns behind accessible membrane barriers; in that said network devices comprise interlaced integrated fiber, broadband fiber, electronic, and electrical power conductors for voice, data, video, power, and parallel computing networking disposed within said accessible interstitial spaces on opposing sides of an unpenetrated, discretely shaped, fire structural primary core barrier; and in that said network within said accessible interstitial spaces is accessed by wired and wireless means by devices within occupied spaces of said inner accessible commutering enterprise structure on opposing sides of said accessible membrane barriers.
2 . An inner accessible commutering enterprise structure according to claim 1 , characterized in that said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices comprise said conductors and one or more elements selected from the group consisting of electronic devices, electrical devices, power devices, computational devices, communications devices, mechanical devices, components, appliances, and equipment disposed in said accessible interstitial spaces on opposing sides of said fire structural primary core barrier.
3 . An inner accessible commutering enterprise structure according to claim 1 , characterized in that interstitial accommodation matrices are disposed in said accessible interstitial spaces between said fire structural primary core barrier and said accessible membrane barriers; and in that said interstitial accommodation matrices permit free access and passage of conductors from one interstitial accommodation matrix in adjacent ceiling, walls, partitions, columns and floor to another interstitial accommodation matrix on one side of said fire structural primary core barrier without penetrating said fire structural primary core barrier.
4 . An inner accessible commutering enterprise structure according to claim 3 , characterized in that said accessible membrane barriers comprise a plurality of removable and replaceable modular-accessible-matrix-units disposed on opposing sides of said unpenetrated fire structural primary core barrier for accessing said accessible interstitial spaces.
5 . An inner accessible commutering enterprise structure according to claim 4 , characterized in that a plurality of modular-accessible-matrix sites comprises said accessible interstitial spaces behind said modular-accessible-matrix-units; in that said interstitial accommodation matrices accommodate said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices; and in that wireless and wired connectivity of said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices is provided through said modular-accessible-matrix sites.
6 . An inner accessible commutering enterprise structure according to claim 3 , characterized in that a plurality of said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices is accommodated in said interstitial accommodation matrices; and in that said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices are connected by said wired and wireless means to computational, communication, and power devices located in said occupied spaces outside said accessible membrane barriers.
7 . An inner accessible commutering enterprise structure according to claim 6 , characterized in that said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices comprise a plurality of voice and digital personal mobile digital commutering devices with displays having integrally interfaced transceivers for communicating by infrared, radio frequency, wireless, wired, and a combination of wired and wireless means over microdistances with integrally interfaced transceivers in two or more of said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices within said occupied spaces.
8 . An inner accessible commutering enterprise structure according to claim 7 , characterized in that said integrally interfaced transceivers are disposed in said accessible interstitial spaces and said occupied spaces on opposing sides of said accessible membrane barriers of enterprise workplace commuter stations, supplementary vehicle commuter stations, and supplementary home commuter stations.
9 . An inner accessible commutering enterprise structure according to claim 8 , characterized in that a plurality of said integrally interfaced transceivers is disposed within a plurality of wireless voice, handheld, wrist, pocket, headset, notebook, and laptop mobile digital commutering devices; in that said mobile digital commutering devices communicate wirelessly over microdistances with said integrally interfaced transceivers in said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices located within said occupied spaces and said accessible interstitial spaces of said enterprise workplace commuter stations, supplementary vehicle commuter stations, and supplementary home commuter stations; and in that communication over said microdistances minimizes battery use of said mobile digital commutering devicess and maximizes computational and communication quality of said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices.
10 . An inner accessible commutering enterprise structure according system according to claim 1 , characterized in that said fire structural primary core barrier forms a plurality of interstitial conductor passage channels on said opposing sides of said fire structural primary core barrier; in that said fire structural primary core barrier comprises a structural barrier slab forming an array of non-combustible top upwardly disposed structural channel joist units and bottom downwardly disposed structural channel joist units; in that said structural barrier slab is disposed within a structural floor/ceiling system; in that said interstitial conductor passage channels are formed between upwardly disposed top flanges and are formed between downwardly disposed bottom flanges of said structural barrier slab; in that said top flanges are coplanar; in that said bottom flanges are coplanar; in that said top flanges and said bottom flanges are arranged back to back, aligned and offset; in that top channels and bottom channels are arranged back to back; in that said structural barrier slab encapsulates three or more sides of each of said top channels and said bottom channels; in that said fire structural primary core barrier forms a common unpenetrated barrier; in that a plurality of structural composite girders is disposed longitudinally, supporting transversely disposed composite beams; in that each said girder has a top flange, a web, and an extended bottom flange; in that said top flange and said web are encapsulated in a time/temperature, fire-ratable covering selected from the group consisting of intumescent coatings and cementitious coatings; in that said extended bottom flange is encapsulated in concrete; in that structural accessible interstitial girder conductor passages are disposed on opposing sides of said web; in that a plurality of conductors and fiber, broadband fiber, electronic, and electrical power backbones are disposed within said girder conductor passages on said opposing sides of said web; in that said web has a plurality of apertures; and in that said conductors in each said girder conductor passage communicate with transversely disposed conductors in said transverse interstitial passages and with conductors longitudinally and transversely disposed in said interstitial conductor passage channels; in that said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices, conductors, components, appliances, and equipment are accommodated within said upward-facing top interstitial conductor passage channels and said downward-facing bottom interstitial conductor passage channels; and in that a floor accessible membrane barrier is supported over said top structural channel joist units by a plurality of support means disposed over said top flanges. (THIRD Embodiment—FIGS. 68 - 79 , 38 - 67 , 80 - 86 —Preferred Embodiment FIGS. 68 and 72)
11 . An inner accessible commutering enterprise structure according to claim 10 , characterized in that a ceiling accessible membrane barrier is suspended below said fire structural primary core barrier and below said supporting girders and beams by a plurality of support means disposed below said fire structural primary core barrier; in that one or more longitudinal and transverse interstitial passages is formed between said ceiling accessible membrane barrier and said fire structural primary core barrier; and in that said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices are disposed within said longitudinal and transverse interstitial passages between said ceiling accessible membrane barrier and said fire structural primary core barrier.
12 . An inner accessible commutering enterprise structure according to claim 10 , characterized in that said floor accessible membrane barrier is supported over said fire structural primary core barrier by said support means selected from the group consisting of arrays of plinths, touch fasteners, elastomeric, foam, and fluid tubular load-bearing supports.
13 . An inner accessible commutering enterprise structure according to claim 10 , characterized in that said floor accessible membrane barrier comprises an array of removable, reconfigurable, and recyclable modular-accessible-matrix-units; and in that said floor accessible membrane barrier forms a fully accessible, secondary fire barrier to protect said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices disposed behind said floor accessible membrane barrier.
14 . An inner accessible commutering enterprise structure according to claim 10 , characterized in that said floor accessible membrane barrier comprises a plurality of modular-accessible-matrix units comprising one or more materials selected from the group consisting of ceramic, vitreous, wood, rubber, plastic, elastomeric, stone, concrete, polymer concrete, cementitious concrete, metal, fiber cement, mineral cement, and composites thereof.
15 . An inner accessible commutering enterprise structure according to claim 1 , characterized in that said fire structural primary core barrier comprises a structural barrier slab forming an array of non-combustible, accessible structural channel slab units having linear channel passages; in that said fire structural primary core barrier forms a common unpenetrated barrier; in that said structural barrier slab and said linear channel passages are disposed on one or more of said opposing sides of said fire structural primary core barrier within a structural floor/ceiling system; in that a floor accessible membrane barrier is supported over said structural slab units and over a plurality of composite steel and concrete beams; in that said composite steel and concrete beams frame into and are supported by a plurality of transversely disposed composite steel and concrete girders having bottom flanges encapsulated in concrete; in that one or more interstitial passages is formed between said floor accessible membrane barrier and said structural channel slab units having said linear channel passages; in that said fire structural primary core barrier is disposed over and between said composite steel and concrete beams and girders; in that said interstitial passages are formed within longitudinal channels disposed on one or more of said opposing sides of said fire structural primary core barrier supported between said plurality of composite steel and concrete beams and said plurality of composite steel and concrete girders; and in that said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices are disposed within interstitial accommodation matrices within said longitudinal channels above said structural channel slab units. (FIRST Embodiment—FIGS. 17 - 22 , 1 - 16 —Preferred Embodiment FIG. 17)
16 . An inner accessible commutering enterprise structure according to claim 15 , characterized in that a ceiling accessible membrane barrier is suspended below said fire structural primary core barrier and below said supporting girders and beams by a plurality of support means disposed below said fire structural primary core barrier; in that one or more longitudinal and transverse interstitial passages is formed between said ceiling accessible membrane barrier and said fire structural primary core barrier; and in that said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices are disposed within said longitudinal and transverse interstitial passages between said ceiling accessible membrane barrier and said fire structural primary core barrier.
17 . An inner accessible commutering enterprise structure according to claim 15 , characterized in that said floor accessible membrane barrier is supported over said fire structural primary core barrier by support means selected from the group consisting of arrays of plinths, touch fasteners, elastomeric, foam, and fluid tubular load-bearing supports.
18 . An inner accessible commutering enterprise structure according to claim 15 , characterized in that said floor accessible membrane barrier comprises an array of removable, reconfigurable, and recyclable modular-accessible-matrix-units; and in that said floor accessible membrane barrier forms a fully accessible, secondary fire barrier to protect said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices and conductors, components, appliances, and equipment disposed behind said floor accessible membrane barrier.
19 . An inner accessible commutering enterprise structure according to claim 15 , characterized in that said floor accessible membrane barrier comprises a plurality of modular-accessible-matrix units comprising one or more materials selected from the group consisting of ceramic, vitreous, wood, rubber, plastic, elastomeric, stone, concrete, polymer concrete, cementitious concrete, metal, fiber cement, mineral cement, and composites thereof.
20 . An inner accessible commutering enterprise structure according to claim 1 , characterized in that said fire structural primary core barrier comprises a structural folded barrier slab forming an array of non-combustible structural folded slab units; in that said fire structural primary core barrier forms a common unpenetrated barrier; in that said structural folded barrier slab is disposed within a structural floor/ceiling system; in that said structural folded slab units have top flanges and bottom flanges; in that said structural folded slab units form an array of longitudinal top channels and an array of longitudinal bottom channels located between top and bottom webs and top and bottom flanges of said fire structural primary core barrier; in that a floor accessible membrane barrier is supported over said structural folded slab units by a plurality of support means disposed over said top flanges and over a plurality of composite steel and concrete beams; in that said composite steel and concrete beams frame into and are supported by a plurality of transversely disposed composite steel and concrete girders having bottom flanges encapsulated in concrete; in that one or more interstitial passages is formed between said floor accessible membrane barrier and said top flanges; in that said interstitial passages are formed within said longitudinal top and bottom channels in said structural folded slab units; and in that said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices are disposed within interstitial accommodation matrices within said longitudinal top and bottom channels of said structural folded slab units. (SECOND Embodiment—FIGS. 32 - 37 , 23 - 31 —Preferred Embodiment FIG. 31)
21 . An inner accessible commutering enterprise structure according to claim 20 , characterized in that a ceiling accessible membrane barrier is suspended below said fire structural primary core barrier and below said supporting girders and beams by a plurality of support means disposed below said fire structural primary core barrier; in that one or more longitudinal and transverse interstitial passages is formed between said ceiling accessible membrane barrier and said fire structural primary core barrier; and in that said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices are disposed within said longitudinal and transverse interstitial passages between said ceiling accessible membrane barrier and said fire structural primary core barrier.
22 . An inner accessible commutering enterprise structure according to claim 20 , characterized in that said floor accessible membrane barrier is supported over said fire structural primary core barrier by said support means selected from the group consisting of arrays of plinths, touch fasteners, elastomeric, foam, and fluid tubular load-bearing supports.
23 . An inner accessible commutering enterprise structure according to claim 20 , characterized in that said floor accessible membrane barrier comprises an array of removable, reconfigurable, and recyclable modular-accessible-matrix-units; and in that said floor accessible membrane barrier forms a fully accessible, secondary fire barrier to protect said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices and conductors, components, appliances, and equipment disposed behind said floor accessible membrane barrier.
24 . An inner accessible commutering enterprise structure according to claim 20 , characterized in that said floor accessible membrane barrier comprises a plurality of modular-accessible-matrix units comprising one or more materials selected from the group consisting of ceramic, vitreous, wood, rubber, plastic, elastomeric, stone, concrete, polymer concrete, cementitious concrete, metal, fiber cement, mineral cement, and composites thereof.
25 . An inner accessible commutering enterprise structure according to claim 1 , characterized in that said fire structural primary core barrier comprises a structural barrier slab forming an array of accessible, non-combustible structural trussed joist units; in that said fire structural primary core barrier forms a common unpenetrated barrier; in that a top structural barrier slab and said structural trussed joist units are disposed within a structural floor/ceiling system; in that said structural trussed joist units have top structural slab flanges and bottom structural trussed flanges; in that said top structural slab flanges of said structural trussed joist units form an array of longitudinal top channels joined by open trussed webs to an array of longitudinal and transverse open bottom channels; in that a floor accessible membrane barrier is supported over said structural trussed joist units by a plurality of support means disposed over said top structural slab flanges and over a plurality of composite steel and concrete beams; in that said composite steel and concrete beams frame into and are supported by a plurality of transversely disposed composite steel and concrete girders having extended bottom flanges encapsulated in concrete; in that one or more interstitial passages is formed between said floor accessible membrane barrier and said top structural slab flanges; in that said conductors are disposed within said interstitial passages; in that longitudinal interstitial passages are formed within said longitudinal top channels; and in that said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices are disposed within interstitial accommodation matrices within said longitudinal interstitial passages. (FOURTH Embodiment—FIGS. 90 - 93 —Preferred Embodiment FIG. 93)
26 . An inner accessible commutering enterprise structure according to claim 25 , characterized in that said structural trussed joist units have longitudinal bottom chords with cross-tie bridging forming waffle panels by means of coplanar transverse bottom chords disposed at intervals to form a waffle pattern; and in that said waffle pattern is selected from the group consisting of square and rectangular in plan view. (FOURTH Embodiment—FIGS. 94 - 99 —Preferred Embodiment FIGS. 96 and 99)
27 . An inner accessible commutering enterprise structure according to claim 1 , characterized in that said fire structural primary core barrier comprises a structural barrier slab forming an array of accessible, non-combustible structural concrete trussed units; in that said fire structural primary core barrier forms a common unpenetrated barrier; in that a top structural barrier slab and said structural concrete trussed units are disposed within a structural floor/ceiling system; in that said structural concrete trussed units have top structural slab flanges and bottom structural slab flanges; in that said top structural slab flanges of said structural concrete trussed units form alternating arrays of open webs and solid concrete webs joining said bottom structural slab flanges; in that a floor accessible membrane barrier is supported over said structural concrete trussed units by a plurality of support means disposed over said top structural slab flanges and over a plurality of composite steel and concrete beams; in that said composite steel and concrete beams frame into and are supported by a plurality of transversely disposed composite steel and concrete girders having extended bottom flanges encapsulated in concrete; in that one or more interstitial passages is formed between said floor accessible membrane barrier and said top structural slab flanges; in that said conductors are disposed within said interstitial passages; in that longitudinal interstitial passages are formed within said longitudinal top channels; and in that said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices are disposed within interstitial accommodation matrices within said longitudinal interstitial passages. (FIFTH Embodiment—FIGS. 10 - 120 —Preferred Embodiment FIGS. 113 - 118 )
28 . An inner accessible commutering enterprise structure according to claim 27 , characterized in that an array of longitudinal top channels and bottom channels are formed in said top structural flanges and in said bottom structural flanges. (FIGS. 102, 106, and 110 )
29 . An inner accessible commutering enterprise structure according to claim 25 , characterized in that a ceiling accessible membrane barrier is suspended below said fire structural primary core barrier and below said supporting girders and beams by a plurality of support means disposed below said fire structural primary core barrier; in that one or more longitudinal and transverse interstitial passages is formed between said ceiling accessible membrane barrier and said fire structural primary core barrier; and in that said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices are disposed within said longitudinal and transverse interstitial passages between said ceiling accessible membrane barrier and said fire structural primary core barrier.
30 . An inner accessible commutering enterprise structure according to claim 25 , characterized in that said floor accessible membrane barrier is supported over said fire structural primary core barrier by said support means selected from the group consisting of arrays of plinths, touch fasteners, elastomeric, foam, and fluid tubular load-bearing supports.
31 . An inner accessible commutering enterprise structure according to claim 25 , characterized in that said floor accessible membrane barrier comprises an array of removable, reconfigurable, and recyclable modular-accessible-matrix-units; and in that said floor accessible membrane barrier forms a fully accessible, secondary fire barrier to protect said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices and conductors, components, appliances, and equipment disposed behind said floor accessible membrane barrier.
32 . An inner accessible commutering enterprise structure according to claim 25 , characterized in that said floor accessible membrane barrier comprises a plurality of modular-accessible-matrix units comprising one or more materials selected from the group consisting of ceramic, vitreous, wood, rubber, plastic, elastomeric, stone, concrete, polymer concrete, cementitious concrete, metal, fiber cement, mineral cement, and composites thereof.
33 . An inner accessible commutering enterprise structure according to claim 1 , characterized in that said fire structural primary core barrier comprises an array of two or more non-combustible accessible structural slabs; in that said fire structural primary core barrier forms a common unpenetrated barrier; in that one or more secondary core barriers comprises an array of non-combustible, penetrated, accessible structural slabs forming hollow core units; in that a plurality of coplanar, adjacent structural linear hollow passages are disposed between said fire structural primary core barrier and said one or more secondary core barriers; in that said structural linear hollow passages have access apertures in said one or more secondary core barriers infilled with fire-rated, linear access plugs; in that said conductors and computational, communication, and power devices are disposed within interstitial passages in said structural linear hollow passages; in that said fire structural primary core barrier and said one or more secondary core barriers are disposed within a structural floor/ceiling system; in that said structural slabs forming said hollow core units have top structural slabs forming top flanges and bottom structural slabs forming bottom flanges; in that said top and bottom structural slabs are structurally joined by concrete webs to form an array of coplanar top and bottom longitudinal interstitial accommodation matrices within said fire structural primary core barrier; in that a floor accessible membrane barrier is supported over said top structural slabs by a plurality of support means disposed over said top structural slabs and over a plurality of composite steel and concrete beams; in that said composite steel and concrete beams frame into and are supported by a plurality of transversely disposed composite steel and concrete girders having extended bottom flanges encapsulated in concrete; in that one or more interstitial passages is formed between said floor accessible membrane barrier and said top structural slabs; in that said conductors and said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices are located within interstitial passages above, below, and behind said secondary core barrier having said fire-rated linear access plugs; in that longitudinal interstitial passages are formed within said top longitudinal interstitial accommodation matrices; and in that longitudinal interstitial passages are formed within said bottom longitudinal interstitial accommodation matrices. (SIXTH Embodiment FIGS. 126 - 139 , 121 - 125 —Preferred Embodiment FIGS. 130 - 139 )
34 . An inner accessible commutering enterprise structure according to claim 33 , characterized in that a ceiling accessible membrane barrier is suspended below said fire structural primary core barrier and below said supporting girders and beams by a plurality of support means disposed below said fire structural primary core barrier; in that one or more longitudinal and transverse interstitial passages is formed between said ceiling accessible membrane barrier and said fire structural primary core barrier; and in that said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices are disposed within said longitudinal and transverse interstitial passages between said ceiling accessible membrane barrier and said fire structural primary core barrier.
35 . An inner accessible commutering enterprise structure according to claim 33 , characterized in that said floor accessible membrane barrier is supported over said fire structural primary core barrier by said support means selected from the group consisting of arrays of plinths, touch fasteners, elastomeric, foam, and fluid tubular load-bearing supports.
36 . An inner accessible commutering enterprise structure according to claim 33 , characterized in that said floor accessible membrane barrier comprises an array of removable, reconfigurable, and recyclable modular-accessible-matrix-units; and in that said floor accessible membrane barrier forms a fully accessible, secondary fire barrier to protect said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices and conductors, components, appliances, and equipment disposed behind said floor accessible membrane barrier.
37 . An inner accessible commutering enterprise structure according to claim 33 , characterized in that said floor accessible membrane barrier comprises a plurality of modular-accessible-matrix units comprising one or more materials selected from the group consisting of ceramic, vitreous, wood, rubber, plastic, elastomeric, stone, concrete, polymer concrete, cementitious concrete, metal, fiber cement, mineral cement, and composites thereof.
38 . An inner accessible commutering enterprise structure according to claim 1 , characterized in that said fire structural primary core barrier comprises an array of non-combustible precast structural concrete hollow core units with integral longitudinal access apertures and transverse passage apertures; in that said precast structural concrete hollow core units have a plurality of spaced-apart linear tubular voids unpenetrated from one flange to form said fire structural primary core barrier; in that an opposing flange forms an accessible penetrated secondary core barrier with said integral longitudinal access apertures; in that said space-apart linear tubular voids are disposed between said fire structural primary core barrier and said secondary core barrier; in that said fire structural primary core barrier and said secondary core barrier are disposed within a structural floor/ceiling system; in that said precast structural concrete hollow core units have top flanges and bottom flanges; in that said precast structural concrete hollow core units are structurally joined on opposing sides by grout-filled linear vee-shaped joints for joining precast units to form an array of coplanar spaced-apart linear tubular voids having longitudinal interstitial accommodation matrices within said precast structural concrete hollow core units having said integral longitudinal access apertures and said transverse passage apertures; in that a floor accessible membrane barrier is supported over said precast structural concrete hollow core units by a plurality of support means disposed over said precast structural concrete hollow core units and over a plurality of composite steel and concrete beams; in that said precast structural concrete hollow core units with said integral longitudinal access apertures and transverse passage apertures frame into and are supported by flanges and extended flanges of a plurality of transversely disposed composite steel and concrete girders having extended bottom flanges encapsulated in concrete; in that one or more interstitial passages is formed between said floor accessible membrane barrier and top of said precast structural concrete hollow core units having said integral longitudinal access apertures and transverse passage apertures; in that said conductors and said computational, communication, and power devices are located within interstitial passages in said spaced-apart linear tubular voids having said transverse passage apertures; and in that said accessible enterprise communications, computing, and power network is disposed within a floor interstitial accommodation matrix and said spaced-apart linear tubular voids. (SEVENTH Embodiment—FIGS. 140 - 160 —Preferred Embodiment FIG. 155)
39 . An inner accessible commutering enterprise structure according to claim 38 , characterized in that a ceiling accessible membrane barrier is suspended below said fire structural primary core barrier and below said supporting girders and beams by a plurality of support means disposed below said fire structural primary core barrier; in that one or more longitudinal and transverse interstitial passages is formed between said ceiling accessible membrane barrier and said fire structural primary core barrier; and in that said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices are disposed within said longitudinal and transverse interstitial passages between said ceiling accessible membrane barrier and said fire structural primary core barrier.
40 . An inner accessible commutering enterprise structure according to claim 38 , characterized in that said floor accessible membrane barrier is supported over said fire structural primary core barrier by said support means selected from the group consisting of arrays of plinths, touch fasteners, elastomeric, foam, and fluid tubular load-bearing supports.
41 . An inner accessible commutering enterprise structure according to claim 38 , characterized in that said floor accessible membrane barrier comprises an array of removable, reconfigurable, and recyclable modular-accessible-matrix-units; and in that said floor accessible membrane barrier forms a fully accessible, secondary fire barrier to protect said inner accessible enterprise communications, computing, power, and related enterprise commutering network devices and conductors, components, appliances, and equipment disposed behind said floor accessible membrane barrier.
42 . An inner accessible commutering enterprise structure according to claim 38 , characterized in that said floor accessible membrane barrier comprises a plurality of modular-accessible-matrix units comprising one or more materials selected from the group consisting of ceramic, vitreous, wood, rubber, plastic, elastomeric, stone, concrete, polymer concrete, cementitious concrete, metal, fiber cement, mineral cement, and composites thereof.Join the waitlist — get patent alerts
Track US2003097806A1 — get alerts on status changes and closely related new filings.
We store only your email — no account needed. See our privacy policy.