L00 标准化、质量管理 标准查询与下载



共找到 355 条与 标准化、质量管理 相关的标准,共 24

This recommended practice is a companion document for IEEE Std. 1597.1 2008.1 It provides examples and problem sets to be used in the validation of computational electromagnetics (CEM) computer modeling and simulation techniques, codes, and models. It is applicable to a wide variety of electromagnetic (EM) applications including but not limited to the fields of antennas, signal integrity (SI), radar cross section (RCS), and electromagnetic compatibility (EMC).

Recommended Practice for Validation of Computational Electromagnetics Computer Modeling and Simulations

ICS
33.100.10
CCS
L00
发布
2010
实施

This document presents a standard that defines the reliability capability of organizations and identifies the criteria for assessing the reliability capability of an organization. This standard is intended to be usable by all organizations that design, manufacture or procure electrical/electronics components or products. Although the concepts described in this standard could be applied to both hardware and software products, the focus of the standard is on hardware products.

IEEE Standard for Organizational Reliability Capability

ICS
03.100.01
CCS
L00
发布
2009-02-05
实施

Information technology - Learning, education and training - Quality management, assurance and metrics - Part 3: Reference methods and metrics

ICS
03.100.30;35.240.99
CCS
L00
发布
2009-02
实施

本标准适用于水利政务外网的规划、设计和实施。

Guide of network establishment on the national information network for water resources

ICS
35.020
CCS
L00
发布
2008-11-10
实施
2009-02-10

IEC Quality Assessment System for Electronic Components (IECQ) - Rules of procedure - Part 4: Avionics assessment program requirements

ICS
31.020;49.060
CCS
L00
发布
2008-11
实施

This standard requires the developers and customer/user’s working as a team to plan and implement a reliability program that provides systems/products that satisfy the user’s requirements and expectations. The user’s requirements and needs are expressed in the form of the following four reliability objectives: • The developer shall solicit, investigate, analyze, understand and agree to the user’s requirements and product needs. The developer, working with the customer and user, shall include the activities necessary to ensure that the user’s requirements and product needs are fully understood and defined, so that a comprehensive design specification and Reliability Program Plan can be generated. • The developer shall use well-defined reliability- and systems-engineering processes to develop, design, and verify that the system/product meets the user’s documented reliability requirements and needs. The developer shall implement a set of engineering activities (included in this standard as normative activities and informative activities, refer to Section 3) so that the resulting system/product satisfies the customer’s documented requirements and needs. • The multifunctional team shall verify during production that the developer has met the user’s reliability requirements and needs prior to fielding. The developer shall include activities that assure the customer that the reliability requirements and product needs have been satisfied. • The multifunctional team shall monitor and assess the reliability of the system/product in the field. The team is responsible for identifying the data elements to assess the reliability of the system/product in the field and to ensure the data collected are accurate and complete. The team will establish a closed-loop feedback method to flow recommended improvements (corrective actions) for monitoring reliability growth.

Reliability Program Standard for Systems Design, Development, and Manufacturing

ICS
CCS
L00
发布
2008-08-01
实施

The method described in this document applies to all application specific reliability testing for solid state components with known failure mechanisms where the test duration and conditions vary based on application variables. This document does not cover reliability tests that are characterization based or essentially go / no-go type tests, for example, ESD, latch-up, or electrical over stress. Also, it does not attempt to cover every failure mechanism or test environment, but does provide a methodology that can be extended to other failure mechanisms and test environments. The purpose of this document is to provide a method for developing an application specific reliability evaluation methodology based on the use conditions the solid state device is expected to experience in the field. It assumes that the failure mechanisms and models, relevant to the product being tested, are a known entity.

Application Specific Qualification Using Knowledge Based Test Methodology

ICS
CCS
L00
发布
2008-07-01
实施

This FBDIMM DFx document covers Design for Test, Design for Manufacturing and Design for Validation (“DFx”) requirements and implementation guidelines for Fully Buffered DIMM technology.

Fully Buffered DIMM Design for Test, Design for Validation (DFx)

ICS
CCS
L00
发布
2008-07-01
实施

IEC Quality assessment system for Electronic Components (IECQ Scheme) - Rules of procedure - Part 5: Hazardous substance process management requirements (IECQ HSPM)

ICS
31.020
CCS
L00
发布
2008-06
实施

This document describes the design and assembly challenges for implementing Ball Grid Array (BGA) and Fine Pitch BGA (FBGA) technology. The effect of BGA and FBGA on current technology and component types are addressed, as is the move to lead-free assembly processes. The focus on the information contained herein is on critical inspection, repair, and reliability issues associated with BGAs. Throughout this document the word BGA can mean all types and forms of ball/column grid array packages.

Design and Assembly Process Implementation for BGAs

ICS
CCS
L00
发布
2008-03-01
实施

This Standard defines the reliability capability of organizations and identifies the criteria for assessing the reliability capability of an organization. It is intended to be usable by all organizations that design, manufacture or procure electrical/electronics components or products. Although the concepts described in this Standard could be applied to both hardware and software products, it focuses on hardware products.

Standard for Organizational Reliability Capability

ICS
03.100.01
CCS
L00
发布
2008
实施

This standard defines a method to validate computational electromagnetics (CEM) computer modeling and simulation (M&S) techniques, codes, and models. It is applicable to a wide variety of electromagnetic (EM) applications including but not limited to the fields of electromagnetic compatibility (EMC), radar cross section (RCS), signal integrity (SI), and antennas.

Standard for Validation of Computational Electromagnetics Computer Modeling and Simulations

ICS
35.240.50
CCS
L00
发布
2008
实施

The OpenEPG standard defines a field structure and access method for obtaining electronic program guide (EPG) data, also known as metadata, for describing audio-video content and its availability using IP-related protocols. The OpenEPG standard facilitates access by home entertainment devices to scheduled event data for terrestrial, cable and satellite programming; to video on demand (VOD) services; and to content stored locally on a home networked device.

OpenEPG - A Specification for Electronic Program Guide Data Interchange

ICS
35.040;35.240.99
CCS
L00
发布
2008
实施

This document summarizes the IPC position on the subject of ‘‘halogen-free’’ materials for the electronics industry. Its initial release was developed over a period of three years and this revision was also worked upon for another 3 years by a team representing every level of the electronics supply chain. This document is applicable to materials for interconnecting electronics including, but not limited to, copper-clad laminates and prepregs, resin coated copper foils, flexible materials and solder masks. This document reflects the state of the information and technology as of May 2007.

IPC White Paper and Technical Report on the Use of Halogenated Flame Retardants in Printed Circuit Boards and Assemblies

ICS
CCS
L00
发布
2007-08-01
实施

This document is the product of the IPC Electrochemical Migration (ECM) Task Group. It was drafted to provide guidance regarding how the IPC-TM-650, Method 2.6.25, Conductive Anodic Filament (CAF) Resistance test can best be used for evaluating the effects of mechanical stress, laminate material fracturing, ionic contamination, moisture content prior to press lamination, and other material processing characteristics on conductive anodic filament (CAF) resistance test method results. This CAF test method provides a proven standard for determining the risk of temperature, humidity and bias (THB) failure within rather than on the surface of printed circuit boards (PCBs), typically filament formation along the boundary between the resin and laminate reinforcement.

User Guide for the IPC-TM-650, Method 2.6.25, Conductive Anodic Filament (CAF) Resistance Test (Electrochemical Migration Testing)

ICS
CCS
L00
发布
2007-08-01
实施

This standard defines size and performance requirements for power and speaker cabling used in mobile electronics applications.

Mobile Electronics Cabling Standard

ICS
31.020
CCS
L00
发布
2007-05-01
实施

The complete requirements for procuring this item described here in shall consist of this document and the latest issue of Specification MIL-S-64045.

WEAPONS AND SUPPORT MATERIEL STANDARD QUALITY ASSURANCE PROVISIONS FOR

ICS
CCS
L00
发布
2007-02-08
实施

This standard is approved for use by all Departments and Agencies of the Department of Defense.

DEPARTMENT OF DEFENSE INTERFACE STANDARD FOR MISSION DATA EXCHANGE FORMAT

ICS
CCS
L00
发布
2007-01-26
实施

Motivation for the PMI comes from several organizational and application areas. For example: Supporting a distributed heterogeneous application architecture with a homogeneous distributed security infrastructure leveraged across the enterprise; providing user and service identities and propagation; and providing a common, consistent security authorization and access control infrastructure. Providing mechanisms to describe and enforce enterprise security policy systematically throughout the organization for consistency, maintenance, and ease of modification and to demonstrate compliance to applicable regulation and law. Providing support for distributed/service-oriented architectures in which enterprise-wide services and authoritative sources are protected by providing security services that themselves are also distributed using common interfaces and communication protocols. Providing “economies of scale” where it is desired to change the approach of individually managing the configuration of each point of enforcement to one that establishes a consolidated view of the safeguards in effect throughout the enterprise. Providing centralized control, management, and visibility to security policy across the enterprise and when connecting to other organizations. This allows for additional key features such as delegated administration, centralized policy analysis, and consolidated reporting. Providing a distributed computing security architecture allowing for synchronized security services that are efficiently maintained across the enterprise while also allowing for centralized policy control and distributed policy decision-making/enforcement. Ensuring proper security controls are enacted for each service and when used in combination. Provisioning incremental updates to policy and configuration data simultaneously across all distributed decision/enforcement points. Establishing and enforcing new policies not envisioned when individual applications were fielded and adapting to new requirements and threats. Managing identity and security implemented in a diverse mix of new and old technologies. Permitting an organization to grant, suspend, or revoke centrally any or all ability to connect to or access enterprise resources either individually or collectively and with the capability to enforce these policies at run-time. Supporting access decisions that are sensitive to a user’s credentials in addition to identity. For example, the user may have to be a licensed healthcare professional to access a medical record. Supporting Delegation8212;A user might delegate access for a resource to another user (for example, a physician might delegate access to his patient’s records to a specialist). This shows the need for a delegation capability for some applications. Supporting Sender Verification8212;When a user receives a signed document, he shall be sure the sender was, in some sense, authorized to sign and send the document. A simple example would be a prescription that shall be signed by a doctor. A simple identity certificate is insufficient, as it does not indicate the sender’s credentials (that is, that he is a doctor). Supporting Document Cosigning8212;Multiple examples exist in which more than one signature is required on a document (2). For example, a transcriptionist transcribes and signs a document, but it is not a valid part of the record until it is reviewed and signed by the primary care physician. Similar mechanisms can be used to provide cosig......

Standard Guide for Privilege Management Infrastructure

ICS
35.020
CCS
L00
发布
2007
实施

本标准收集了关于线缆、导线及线 束组件的电气和机械质量可接受性要求。该标 准由导线线束制造商协会(WHMA)工业技术指导 委员会和IPC—美国电子工业联接协会产品保证 委员会共同制定。IPC/WHMA-A-620可作为订购 产品的一个单独文件,不过它没有规定在制产品 或成品的检查频率。本标准对于制程警示的数 量或允许维修/返工的缺陷数量没有作限制。这 类数据应该在统计过程控制计划中制定(见IPC- 9191)。

Requirements and Acceptance for Cable and Wire Harness Assemblies

ICS
CCS
L00
发布
2006-07-01
实施



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