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  • Platná

    ČSN EN ISO 11960 Naftový a plynárenský průmysl - Ocelové roury použité jako pažnice nebo potrubí pro sondy

    Obsah

    ČSN EN ISO 11960 This document specifies the technical delivery conditions for steel pipes (casing, tubing and pup joints), coupling stock, coupling material and accessory material. By agreement between the purchaser and manufacturer, this document can also be applied to other plain-end pipe sizes and wall thicknesses. This document is applicable to the following connections: - short round thread casing (SC); - long round thread casing (LC); - buttress thread casing (BC); - non-upset tubing (NU); - external upset tubing (EU); - integral-joint tubing (IJ). NOTE 1 - For further information, see API Spec 5B. For such connections, this document specifies the technical delivery conditions for couplings and thread protection. NOTE 2 - Supplementary requirements that can optionally be agreed for enhanced leak resistance connections (LC) are given in A.9 SR22. This document can also be applied to tubulars with connections not covered by ISO or API standards. This document is applicable to products including the following grades of pipe: H40, J55, K55, N80, L80, C90, R95, T95, P110, C110 and Q125. This document is not applicable to threading requirements. NOTE 3 - Dimensional requirements on threads and thread gauges, stipulations on gauging practice, gauge specifications, as well as, instruments and methods for inspection of threads are given in API Spec 5B.

    Forma

    Tištěná
    • Katalogové číslo512745
    • Třídicí znak451391
    • Počet stran286
    • VydánaŘíjen 2021
    • Způsob převzetípřevzetí originálu v angličtině

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  • Platná

    ČSN EN IEC 61784-3-2 ed. 4 Průmyslové komunikační sítě - Profily - Část 3-2: Funkční bezpečnost sběrnic pole - Dodatečné specifikace pro CPF 2

    Obsah

    ČSN EN IEC 61784-3-2 ed. 4 The IEC 61158 (all parts) fieldbus standard together with its companion standards IEC 61784 1 and IEC 61784 2 defines a set of communication protocols that enable distributed control of automation applications. Fieldbus technology is now considered well accepted and well proven. Thus, fieldbus enhancements continue to emerge, addressing applications for areas such as real time and safety-related applications. IEC 61784-3 (all parts) explains the relevant principles for functional safety communications with reference to IEC 61508 (all parts) and specifies several safety communication layers (profiles and corresponding protocols) based on the communication profiles and protocol layers of IEC 61784 1, IEC 61784 2 and IEC 61158 (all parts). It does not cover electrical safety and intrinsic safety aspects. It also does not cover security aspects, nor does it provide any requirements for security.

    Forma

    Tištěná
    • Katalogové číslo513145
    • Třídicí znak184001
    • Počet stran292
    • VydánaProsinec 2021
    • Způsob převzetípřevzetí originálu v angličtině

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    ČSN EN IEC/IEEE 62209-1528 Postup měření pro hodnocení měrného absorbovaného výkonu při vystavení člověka vysokofrekvenčním polím z v ruce držených a na tělo připevněných bezdrátových komunikačních zařízení - Část 1528: Modely člověka, vybavení a postupy (kmitočtový rozsah 4 MHz…

    Obsah

    ČSN EN IEC/IEEE 62209-1528 This document specifies protocols and test procedures for the reproducible and repeatable measurement of the conservative exposure peak spatial average SAR (psSAR) induced inside a simplified model of the head and the body by radio-frequency (RF) transmitting devices, with a defined measurement uncertainty. These protocols and procedures apply to a significant majority of the population, including children, during the use of hand-held and body-worn wireless communication devices. These devices include single or multiple transmitters or antennas, and are operated with their radiating structure(s) at distances up to 200 mm from a human head or body. This document is employed to evaluate SAR compliance of different types of wireless communication devices used next to the ear, in front of the face, mounted on the body, operating in conjunction with other RF-transmitting, non-transmitting devices or accessories (e.g. belt-clips), or embedded in garments. The applicable frequency range is from 4 MHz to 10 GHz. Devices operating in the applicable frequency range can be tested using the phantoms and other requirements defined in this document.

    Forma

    Tištěná
    • Katalogové číslo514239
    • Třídicí znak367902
    • Počet stran292
    • VydánaKvěten 2022
    • Způsob převzetípřevzetí originálu v angličtině

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  • Platná

    ČSN EN IEC 61970-452 ed. 4 Rozhraní aplikačního programu pro systémy řízení elektrické energie (EMS-API) - Část 452: Statické CIM profily přenosové sítě

    Obsah

    ČSN EN IEC 61970-452 ed. 4 This document is one of the IEC 61970 450 to 499 series that, taken as a whole, defines at an abstract level the content and exchange mechanisms used for data transmitted between control centres and/or control centre components, such as power systems applications. The purpose of this document is to define the subset of classes, class attributes, and associations from the CIM necessary to execute state estimation and power flow applications. The North American Electric Reliability Council (NERC) Data Exchange Working Group (DEWG) Common Power System Modelling group (CPSM) produced the original data requirements, which are shown in Annex F. These requirements are based on prior industry practices for exchanging power system model data for use primarily in planning studies. However, the list of required data has been extended starting with the first edition of this standard to facilitate a model exchange that includes parameters common to breaker-oriented applications. Where necessary this document establishes conventions, shown in Clause 6, with which an XML data file must comply in order to be considered valid for exchange of models. The data exchange use cases which this standard is meant to support are described in Annex A. The idea of a modelling authority as the source responsible for the modeling of a given region is described in Annex B. The concept of a boundary between regions is explained in Annex C. Annex D explains the processing of multiple profiles such as the three profiles described in this standard. The use of different curve styles to define ReactiveCapabilityCurve-s is explained in Annex E. This document is intended for two distinct audiences, data producers and data recipients, and may be read from two perspectives. From the standpoint of model export software used by a data producer, this document describes a minimum subset of CIM classes, attributes, and associations which must be present in an XML formatted data file for model exchange. This document does not dictate how the network is modelled, however. It only dictates what classes, attributes, and associations are to be used to describe the source model as it exists.

    Forma

    Tištěná
    • Katalogové číslo514507
    • Třídicí znak334910
    • Počet stran284
    • VydánaČervenec 2022
    • Způsob převzetípřevzetí originálu v angličtině

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  • Platná

    ČSN EN ISO/IEEE 11073-20601 Zdravotnická informatika - Interoperabilita zařízení - Část 20601: Komunikační zařízení pro osobní zdravotní péči - Profil aplikace - Optimalizovaný protokol výměny

    Obsah

    ČSN EN ISO/IEEE 11073-20601 Within the context of the ISO/IEEE 11073 personal health device standard family, this standard defines an op-timized exchange protocol and modeling techniques to be used by implementers of personal health devices to create interoperability between device types and vendors. This standard establishes a common framework for an abstract model of personal health data available in transport-independent transfer syntax required to establish logical connections between systems and to provide presentation capabilities and services needed to perform communication tasks. The protocol is optimized to personal health usage requirements and leverages commonly used methods and tools wherever possible.

    Forma

    Tištěná
    • Katalogové číslo516829
    • Třídicí znak980014
    • Počet stran294
    • VydánaČerven 2023
    • Způsob převzetípřevzetí originálu v angličtině

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  • Platná

    ČSN EN IEC 61158-6-23 ed. 3 Průmyslové komunikační sítě - Specifikace sběrnice pole - Část 6-23: Specifikace protokolu aplikační vrstvy - Prvky typu 23

    Obsah

    ČSN EN IEC 61158-6-23 ed. 3 The Fieldbus Application Layer (FAL) provides user programs with a means to access the fieldbus communication environment. In this respect, the FAL can be viewed as a "window between corresponding application programs". This part of IEC 61158 provides common elements for basic time-critical and non-time-critical messaging communications between application programs in an automation environment and material specific to Type 23 fieldbus. The term "time-critical" is used to represent the presence of a time-window, within which one or more specified actions are required to be completed with some defined level of certainty. Failure to complete specified actions within the time window risks failure of the applications requesting the actions, with attendant risk to equipment, plant and possibly human life.

    Forma

    Tištěná
    • Katalogové číslo517665
    • Třídicí znak184020
    • Počet stran318
    • VydánaŘíjen 2023
    • Způsob převzetípřevzetí originálu v angličtině

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  • Platná

    ČSN EN IEC 61158-6-2 ed. 5 Průmyslové komunikační sítě - Specifikace sběrnice pole - Část 6-2: Specifikace protokolu aplikační vrstvy - Prvky typu 2

    Obsah

    ČSN EN IEC 61158-6-2 ed. 5 The Fieldbus Application Layer (FAL) provides user programs with a means to access the fieldbus communication environment. In this respect, the FAL can be viewed as a "window between corresponding application programs." This part of IEC 61158 provides common elements for basic time-critical and non-time-critical messaging communications between application programs in an automation environment and material specific to Type 2 fieldbus. The term "time-critical" is used to represent the presence of a time-window, within which one or more specified actions are required to be completed with some defined level of certainty. Failure to complete specified actions within the time window risks failure of the applications requesting the actions, with attendant risk to equipment, plant and possibly human life.

    Forma

    Tištěná
    • Katalogové číslo517700
    • Třídicí znak184020
    • Počet stran298
    • VydánaŘíjen 2023
    • Způsob převzetípřevzetí originálu v angličtině

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  • Platná

    ČSN EN 16454 Inteligentní dopravní systémy - eSafety - Zkoušení shody systému eCall

    Obsah

    ČSN EN 16454 Tato norma tvoří základní kámen pro aktivity zkoušení shody na poli problematiky systému eCall. Norma definuje klíčové aktory eCall řetězce jako: - Vozidlový systém (IVS), - Operátora mobilní sítě (MNO), - Centrum tísňového volání (PSAP), a v některých případech může zahrnovat také: - Poskytovatele služeb poskytovaných třetí stranou (TPSP). Norma pokrývá zkoušení shody (a schválení) nových technologií, produktů a systémů v oblasti eCall. Nejedná se ale o zkoušení na úrovni jednotlivých instalací zařízení.

    Forma

    Tištěná
    • Katalogové číslo518668
    • Třídicí znak018465
    • Počet stran278
    • VydánaLeden 2024
    • Způsob převzetíschválení k přímému používání

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  • Platná

    ČSN EN ISO 13703-2 Naftový a plynárenský průmysl včetně nízkouhlíkové energetiky - Potrubní systémy na těžebních plošinách na moři a v zařízeních na pevnině - Část 2: Materiály

    Obsah

    ČSN EN ISO 13703-2 This document provides a set of common supplementary requirements for the most frequently used materials in upstream oil and gas piping systems. This document is applicable to offshore and onshore production facilities, processing and gas liquefaction plants. The materials covered in this document are intended to be used in the following piping systems services: - category D, category M, normal and high pressure, according to ASME B31.3; - sour environments as defined in the ISO 15156 series. NOTE - For the purposes of this document, ANSI/NACE MR0175 is equivalent to the ISO 15156 series, and ANSI/NACE MR0103 is equivalent to ISO 17945. This document does not provide guidelines for material selection. The selection of suitable materials for a specific service including any necessary additional material requirements remains the responsibility of the end user. This document does not cover requirements related to: - sulfide stress cracking (SSC) in corrosive petroleum refining environments included in ISO 17945; - non-metallic piping systems according to ASME B31.3 or the ISO 14692 series; - marine piping systems, e.g. ballasting piping system, covered by classification rules; - subsea production systems; - downhole equipment; - transportation pipeline systems, including flowlines, designed in accordance with a recognized pipeline design code. Common requirements related to manufacture, inspection and procurement of piping and valve parts are included in Annex A and Annex B, providing material datasheets and element datasheets, respectively. These material and element datasheets can be applied for applications other than piping systems, e.g. pressure vessels and pumps based upon assessment of the end user and conformance with the selected design code for the relevant equipment. This document is not intended to limit the use of alternative materials or grades within a referenced material standard. Where the use of alternative materials/grades are considered appropriate, the end user is responsible for specifying any additional requirements necessary to meet the design code or specification.

    Forma

    Tištěná
    • Katalogové číslo518761
    • Třídicí znak450023
    • Počet stran326
    • VydánaDuben 2024
    • Způsob převzetípřevzetí originálu v angličtině

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  • Platná

    ČSN EN ISO/IEC 15408-2 Informační bezpečnost, kybernetická bezpečnost a ochrana soukromí - Kritéria pro hodnocení bezpečnosti IT - Část 2: Bezpečnostní funkční komponenty

    Obsah

    ČSN EN ISO/IEC 15408-2 This document defines the required structure and content of security functional components for the purpose of security evaluation. It includes a catalogue of functional components that will meet the common security functi-onality requirements of many IT products.

    Forma

    Tištěná
    • Katalogové číslo518896
    • Třídicí znak369789
    • Počet stran300
    • VydánaKvěten 2024
    • Způsob převzetípřevzetí originálu v angličtině

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  • Platná

    ČSN EN 17531+A1 Zasílání informací dozorovým orgánům členských států za účelem zajištění dozoru v oblasti provozování internetových hazardních her

    Obsah

    ČSN EN 17531+A1 The development of (a) European standard(s) on reporting by online gambling service operators and suppliers to the gambling regulatory authorities in the Member States for the purpose of supervision of online gambling services standard (referred to within the specification as OGR or Online Gambling Reporting). It will provide a voluntary tool to the gambling regulatory authorities in the Member States, without prejudice to the competence of Member States in the regulation of online gambling. It does not impose any obligation on them to introduce or alter reporting requirements or to authorise or deny authorisation to any operators or suppliers for example where the national gambling legislation imposes other rules. Member States remain competent to define for which games reporting should take place. The scope of reporting is in accordance with the applicable legislation in the Member State where the operator is licensed and where services are offered to consumers.

    Forma

    Tištěná
    • Katalogové číslo518525
    • Třídicí znak979600
    • Počet stran274
    • VydánaČerven 2024
    • Způsob převzetípřevzetí originálu v angličtině

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  • Platná

    ČSN EN IEC 60730-1 ed. 5 Automatická elektrická řídicí zařízení - Část 1: Obecné požadavky

    Obsah

    ČSN EN IEC 60730-1 ed. 5 This document applies to automatic electrical controls for use in, on, or in association with equipment for household appliance and similar use, for building automation within the scope of ISO 16484 series and IEC 63044 series (HBES/BACS); for equipment that is used by the public, such as equipment intended to be used in shops, offices, hospitals, farms and commercial and industrial applications; that are smart enabled controls; that are AC or DC powered controls with a rated voltage not exceeding 690 V AC or 600 V DC where the DC source is provided by primary or secondary batteries; used in, on, or in association with equipment that use electricity, gas, oil, solid fuel, solar thermal energy, etc., or a combination thereof; utilized as part of a control system or controls which are mechanically integral with multifunctional controls having non-electrical outputs; using NTC or PTC thermistors and to discrete thermistors, requirements for which are contained in Annex J; that are mechanically or electrically operated, responsive to or controlling such characteristics as temperature, pressure, passage of time, humidity, light, electrostatic effects, flow, or liquid level, current, voltage, acceleration, or combinations thereof; as well as manual controls when such are electrically and/or mechanically integral with automatic controls. This document applies to the inherent safety of automatic electrical controls and functional safety of automatic electrical controls and safety related systems, controls where the performance (for example the effect of EMC phenomena) of the product can impair the overall safety and performance of the controlled system, the operating values, operating times, and operating sequences where such are associated with equipment safety. This document specifies the requirements for construction, operation and testing of automatic electrical controls used in, on, or in association with an equipment. This document does not apply to automatic electronic controls intended exclusively for industrial process applications unless explicitly mentioned in the relevant part 2 or the equipment standard. However, this document can be applied to evaluate automatic electrical controls intended specifically for industrial applications in cases where no relevant safety standard exists, take into account the response value of an automatic action of a control, if such a response value is dependent upon the method of mounting the control in the equipment. Where a response value is of significant purpose for the protection of the user, or surroundings, the value defined in the appropriate equipment standard or as determined by the manufacturer will apply and address the integrity of the output signal to the network devices, such as interoperability with other devices unless it has been evaluated as part of the control system.

    Forma

    Tištěná
    • Katalogové číslo520771
    • Třídicí znak361960
    • Počet stran288
    • VydánaDuben 2025
    • Způsob převzetípřevzetí originálu v angličtině

    Cena produktu bez DPH 1 720.00 Kč

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