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Prisliste 2012/2013 - Foma

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NCRnet Case StudyAugust 2009demonstrated conclusively that local first responders and emergency support personnel needed asecure, reliable, regional communications infrastructure; in particular, regional video streamingand videoconferencing, applications that can best be supported over fiber optics.The assessment established a number of design principles in consultation with stakeholders andon the basis of the needs assessment results. Among these:• The ability to support a diverse community of potential users (first responders, publichealth, local, state, federal government, education) without conflict between the users;• A robust, scalable, survivable network infrastructure that connects with each participant’sown fiber network;• The need to operate independently of leased carrier infrastructure, the Internet, the publicswitched telephone network, and the I-Net electronics of individual jurisdictions;• The ability to interface with different network devices models and brands used byjurisdictions, using industry best practices and federal communications and securitystandards; and• A platform for real-time interoperable data exchange between different users regardlessof native applications and formats.These design principles ensured not only that the developing network fulfilled regional needs,but that this would be achieved in a cost-effective manner.The Network Was Built Using Local I-NetsLocal government I-Nets and various agreements for access to fiber optic cable are enormouslyvaluable resources in designing a cost-effective, inter-jurisdictional, fiber-optic network. Whilesome of the governing agreements underlying the I-Nets restrict the use of fiber, acceptable useis defined in a manner consistent with public safety usage.I-Nets are well suited to public safety communications. Their independence from commercialcarrier lines assures a survivable network when commercial options are saturated. In addition,local government control allows flexible network design, and end-to-end risk and securitymanagement.Previous work developing many of the jurisdictions’ I-Nets formed the basis for NCRnet due tospare fibers in existing I-Net plants and provisions for rack space at potential hub sites, whichallowed NCRnet to re-use existing assets. In addition, the NCR jurisdictions’ agreements withcable providers typically had provisions for building out and extending I-Net footprints atadvantageous cost (often to the mutual benefit of government and cable providers).The Network Was Designed for Flexibility and Local ControlNCRnet’s maximum flexibility reduced the need for future redesign or complicated networkgovernance. The current implementation treats NCRnet as a “semi-trusted cloud”— a privateintranet. Jurisdictions protect themselves with a firewall, and manage communications into theirown networks with an extranet router. On the NCRnet side of the demarcation sits an EdgeRouter that handles traffic within the NCRnet cloud. NCRnet monitors only the equipment on itsPage 3


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OmregningsfaktorerOmregningstabell for gamle og nye enheterStørrelse SI Tilleggs Gamle til Nye tilenhet enhet enhet nye enheter gamle enheterLengde m 1 in = 0,0254 m 1 m = 39,3701 in1 ft = 0,3048 m 1 m = 3,28084 ft1 yd = 0,9144 m 1 m = 1,09361 yd1 mile = 1609,344 m 1 m = 0,621371 10- 3 mileAreal m 3 1 in 2 = 645,16 mm 2 1 m 2 = 1550 in 21 ft 2 = 0,092903 m 2 1 m 2 = 10,7639 ft 21 yd 2 = 0,836127 m 2 1 m 2 = 1,19599 yd 21 acre = 4046,86 m 2 1 m 2 = 0,247105 10- 3 acreVolum m 3 l 1 in 3 = 16,3871 ml 1 l = 61,0237 in 31 ft 3 = 28,3168 l 1 l = 35,3147 10- 3 ft 31 yd 3 = 0,764555 m 3 1 l = 1,30795 10- 3 yd 31 UK gal = 4,54609 l 1 l = 0,219969 UK gal1 US gal = 3,78541 l 1 l = 0,264172 US galVolumstrøm m 3 /s l/s 1 m 3 /min = 16,6667 l/s 1 m 3 /s = 60 1 m 3 /min1 cfm = 0,471947 l/s 1 m 3 /s = 2118,88 1 cfm1 m 3 /h = 0,277778 l/s 1 m 3 /s = 3600 1 m 3 /hMasse kg 1 lb = 0,453592 kg 1 kg = 2,20462 lb1 oz = 28,3495 g 1 kg = 35,274 oz1 ton UK = 1016,5 kg 1 kg = 0,984207 10- 3 ton UK1 ton US = 907,185 kg 1 kg = 1,10231 10- 3 ton USDensitet kg/m 3 1 lb/ft 3 = 16,0185 kg/m 3 1 kg/m 3 = 0,0624278 lb/ft 31 lb/in 3 = 27679,9 kg/m 3 1 kg/m 3 = 36,127 10-6 lb/in 3Kraft N 1 kp = 9,80665 N 1 N = 0,101972 kp1 lbf = 4,44822 N 1 N = 0,224809 lbfKraftmoment Nm 1 kpm = 9,80665 Nm 1 Nm = 0,101972 kpm1 lbf-ft = 1,35582 Nm 1 Nm = 0,737562 lbf-ftTrykk Pa bar 1 at = 98,0665 kPa 1 kPa = 0,0101972 at1 kp/cm 2 = 98,0665 kPa 1 kPa = 0,0101972 kp/cm 21 psi = 6,89476 kPa 1 kPa = 0,145038 psi1 at = 0,980665 bar 1 bar = 1,01972 at1 kp/cm 2 = 0,980665 bar 1 bar = 1,01972 kp/cm 21 psi = 0,0689476 bar 1 bar = 14,5038 psiArbeid/Energi J 1 kWh = 3,6 MJ 1 kJ = 0,277778 10- 3 kWh1 kpm = 9,80665 J 1 kJ = 101,972 kpm1 kcal = 4,1868 kJ 1 kJ = 0,238846 kcal1 hkh = 2,6478 MJ 1 kJ = 0,377673 10- 3 hkhEffekt W 1 kpm/s = 9,80665 W 1 kW = 101,972 kpm/s1 kcal/s = 4,1868 kW 1 kW = 0,238846 kcal/s1 kcal/h = 1,163 W 1 kW = 859,845 kcal/h1 hk = 735,499 W 1 kW = 1,35962 hk1 hp = 745,7 W 1 kW = 1,34102 hpEnergiforbruk J/m 3 J/l 1 hkmin/m 3 = 44,1299 J/l 1 J/l = 22,6604 10- 3 hkmin/m 31 kWh/m 3 = 3600 J/l 1 J/l = 0,277778 10- 3 kWh/m 31 hp/cfm = 1580,05 J/l 1 J/l = 0,632891 10- 3 hp/cfm1 kWh/ft 3 = 127133 J/l 1 J/l = 7,865578 10-6 kWh/ft 3Temperatur* K °C 1 °C = 1 K 1 K = 1 °C1 °F = 0,555556 K 1 K = 1,8 °F*Absolutte nullpunkt: 0 K = –273,15 °C=– 459,67 °F Isens smeltepunkt: 273,15 K = 0 °C = 32 °F


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FOMA Norge ASRegnbuevegen 61405 Langhus - NorwayTel.: +47 64 91 70 00Fax: +47 64 86 76 22www.ipcfoma.noinfo@foma.no - ordre@foma.noGevir 30021 - Det tas forbehold om endringer av pris, trykkfeil og endringer av produkter.

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