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本标准规定了衡器的术语及其定义。本标准适用于衡器的标准编写、书籍出版、文件编制、技术交流等方面。
本标准规定了由车轮支持和导向的城市轨道交通车辆(以下简称车辆)制成后的投入使用前的检查与试验规则。这些车辆由其内部控制的旋转电动机或直线电动机提供动力。 该试验方法适用于下列车辆: ——由外部直流电源供电的交流传动车辆; ——带司机室拖车或中间车辆,这种车辆没有安装动力设备或牵引电动机,但其设计与同一列车中动车相类似,并且装有一些与安装在动车上的电气和/或气动设备相连接的同类设备。 本标准的目的在于车辆组装完成后投入使用前,通过检查与试验验证达到下列要求: 车辆型式试验的结果与用户和制造商双方签订的合同相符合; 每辆通过例行试验的车辆与型式试验验证的设计标准相符合。 本标准不包括用以验证耐久性或可靠性的试验项目。
本标准规定了受政府机构计量管理的非自动衡器的计量要求和技术要求。本标准旨在对非自动衡器提出标准化的要求和测试程序,以便用统一的和可溯源的方法来评定其计量特性和技术性能。
本标准规定了自动分检衡器的术语、产品型号、要求、检验方法和规则、标志、包装、运输和贮存。本标准还为以溯源的方式评价自动分检衡器的计量特性或技术特性,为其提供标准化的要求和试验程序及表格。本标准适用于对预包装分立载荷或散状的单一载荷进行称量的自动衡器。
本标准规定评估建设机械电磁兼容性的试验方法和验收准则。本标准适用于安装在建设机械上的电气和/或电子零部件和独立的技术单元,本标准不包括对于那些不涉及直接控制和/或改变规定的机械功能的部件的抗扰度。以下电磁骚扰现象将被评估:——宽带和窄带电磁干扰;——电磁场抗扰度试验;——电气/电子组件的宽带和窄带电磁干扰;——电气/电子组件的电磁场抗扰度试验;——静电放电;——瞬态传导。建设机械可能内置DC和/或AC电源系统。设计成由“公用电网”供电的机械除外。
本规范供制定、修订衡器计量技术法规使用,在衡器计量工作的其他方面及相关领域亦可参考使用。
本规范规定了军用激光测距仪及零部件的要求、质量保证规定、交货准备等。 本规范适用于便携、车载、机载、舰载等气体、固体、半导体脉冲军用激光测距仪。
本规程规定了动态公路车辆自动衡器(以下简称“动态汽车衡”或“衡器”)的计量性能要求、通用技术要求、计量器具控制以及检定方法和试验程序。适用于动态汽车衡的型式评价(定型鉴定)首次检定、后续检定和使用中检验以及产品质量监督抽查。
本规范规定了机动式水下观察探测系统(以下简称水下观测系统)的通用要求。本规范适用于水下观测系统的设计、生产和使用。
The VMEbus specification defines an interfacing system used to interconnect microprocessors, data storage, and peripheral control devices in a closely coupled hardware configuration. The system has been conceived with the following objectives:\na) to allow communication between devices on the VMEbus without disturbing the internal activities of other devices interfaced to the VMEbus;\nb) to specify the electrical and mechanical system characteristics required to design devices that will reliably and unambiguously communicate with other devices interfaced to the VMEbus;\nc) to specify protocols that precisely define the interaction between the VMEbus and devices interfaced to it;\nd) to provide terminology and definitions that describe the system protocol;\ne) to allow a broad range of design latitude so that the designer can optimize cost and/or performance without affecting system compatibility;\nf) to provide a system where performance is primarily device limited, rather than system interface limited.
This part of ISO 13628 provides general requirements and overall recommendations for development of complete subsea production systems, from the design phase to decommissioning and abandonment.This part of ISO 13628 is intended as an umbrella document to govern other parts of ISO 13628 dealing with more detailed requirements for the subsystems which typically form part of a subsea production system. However, in some areas (e.g. system design, structures, manifolds, lifting devices, and colour and marking) more detailed requirements are included herein, as these subjects are not covered in a subsystem standard.The complete subsea production system comprises several subsystems necessary to produce hydrocarbons from one or more subsea wells and transfer them to a given processing facility located offshore (fixed, floating or subsea) or onshore, or to inject water/gas through subsea wells.This part of ISO 13628 and its related subsystem standards apply as far as the interface limits described in Clause 4.Specialized equipment, such as split trees and trees and manifolds in atmospheric chambers, are not specifically discussed because of their limited use. However, the information presented is applicable to those types of equipment.If requirements as stated inThis part of ISO 13628 are in conflict with, or are inconsistent with, requirements as stated in the relevant complementary parts of ISO 13628, then the specific requirements in the complementary parts take precedence.
This International Recommendation specifies the requirements and test methods for automatic rail-weigh-bridges, that are used to determine the mass of railway wagons when they are weighed in motion. It is intended to provide standardized requirements and test procedures to evaluate the metrological and technical characteristics of an instrument in a uniform and traceable way.#,,#
This part of ISO 13628 provides general requirements and overall recommendations for development of complete subsea production systems, from the design phase to decommissioning and abandonment. This part of ISO 13628 is intended as an umbrella document to govern other parts of ISO 13628 dealing with more detailed requirements for the subsystems which typically form part of a subsea production system. However, in some areas (e.g. system design, structures, manifolds, lifting devices, and colour and marking) more detailed requirements are included herein, as these subjects are not covered in a subsystem standard.
The document serves for concretization of the EMC requirements on mobile agricultural and forestry machinery according to the European EMC Directive 89/336/EEC.
This European Standard specifies limits and methods of measurement for disturbance emissions andimmunity characteristics of aftermarket equipment (ESAs) which are referenced by Automotive EMCDirective 2004/104/EC, Annex I, 3.2.9, and which are not related to immunity-related functions ofvehicles as defined in Automotive EMC Directive 2004/104/EC, Annex I, 2.1.12.Any equipment (or part of an ESA) which has a primary function of radio transmission and/or receptionaccording to the ITU Radio Regulations are excluded from the scope of this publication.This European Standard covers the frequency range 9 kHz to 400 GHz. To date, it specifies limits andmethods of measurement for conducted and radiated disturbances from ESAs in the frequency range30 MHz to 1 GHz and immunity requirements for conducted transients. The assessment of an ESAneeds to be performed only in the frequency ranges where limits are defined.The emission requirements have been selected so as to ensure that disturbances generated by ESAsoperating normally do not exceed a level that could prevent the vehicle or apparatus external to thevehicle from operating as intended. Fault conditions are not taken into account. Not all disturbancephenomena have been included for testing purposes in this standard but only those considered asrelevant for the equipment covered by this standard.As ESAs covered by this standard are not related to immunity-related function, only the followingelectromagnetic disturbance phenomena are evaluated:• broadband and narrowband radiated electromagnetic disturbances;• conducted transient disturbances;• conducted transient immunity.Accessories that are not connected directly to the vehicle harness, but only via a special interface arenormally excluded from vehicular EMC requirements.
This International Standard specifies the classification, general design requirements,performance characteristics and test procedures for in vivo counting systems for detectingtrace amounts of radionuclides in the bodies of persons working in nuclear power plants,laboratories and facilities handling radionuclides, and inhabitants living on territory which maybe contaminated by either naturally occurring or artificial radionuclides. The purpose is todetermine the dose equivalent to organs and the effective dose of internal radiation for thewhole body.This standard is applicable both to equipment with spectroscopic capabilities and instrumentsfor rapid screening for gross internal contamination only.This standard is applicable to instruments for the monitoring of certain critical organs (forexample, lungs, thyroid gland, etc.) as well as instruments for monitoring the whole body.The standard applies to equipment for the measurement of the activity of gamma-emittingradionuclides in humans in order to determine the committed dose equivalent due to internalcontamination in accordance with the recommendations of the ICRP 60 and ICRP 61.The requirements of the standard are applicable to the installed apparatus, to vehiclemountedequipment and to portable instruments. However, Annex B defines the additionalmechanical and environmental performance requirements and the additional testing requiredfor transportable and portable assemblies. The general and radiological requirements of alltypes of in vivo counters are included in this standard.Depending on the type of instrument and the organ to be checked, measurement geometrymay require the subject of the monitoring procedure to stand, sit, or lie.The detection assembly includes one or more radiation detector. Normally, these areshielded-scintillation or semi-conductor detectors. Where identification of the location ofcontamination is required, the detectors may be collimated.The measurement assembly includes functional units for the processing of signals from thedetection assembly as well as units for the display of the measured activity.For the measurement of body mass a built-in weighing machine may be used.The standard specifies general types, specific measuring characteristics, main testprocedures, electrical and mechanical characteristics Text deleted, as well as therequirements related to background radiation of the environment.This equipment is not intended for the determination of external contamination of the humanbody or the clothing of personnel.This standard is not applicable to equipment such as radiation detectors intended forintroduction into the human body.
This part of ISO 13628 provides general requirements and overall recommendations for development ofcomplete subsea production systems, from the design phase to decommissioning and abandonment. Thispart of ISO 13628 is intended as an umbrella document to govern other parts of ISO 13628 dealing with moredetailed requirements for the subsystems which typically form part of a subsea production system. However,in some areas (e.g. system design, structures, manifolds, lifting devices, and colour and marking) moredetailed requirements are included herein, as these subjects are not covered in a subsystem standard.The complete subsea production system comprises several subsystems necessary to produce hydrocarbonsfrom one or more subsea wells and transfer them to a given processing facility located offshore (fixed, floatingor subsea) or onshore, or to inject water/gas through subsea wells. This part of ISO 13628 and its relatedsubsystem standards apply as far as the interface limits described in Clause 4.Specialized equipment, such as split trees and trees and manifolds in atmospheric chambers, are notspecifically discussed because of their limited use. However, the information presented is applicable to thosetypes of equipment.If requirements as stated in this part of ISO 13628 are in conflict with, or are inconsistent with, requirementsas stated in the relevant complementary parts of ISO 13628, then the specific requirements in thecomplementary parts take precedence.
This standard is applicable to the transportation, storage, handling, and use of commercial explosives and blasting agents in the construction industry.
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