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Fibre Channel Avionics Environment (FC-AE), Technical Report INCITS TR-31-2002 [2], is a group of protocols and profiles that specify Fibre Channel options for devices connected by fabric and/or loop topologies that are pertinent to their use in commercial and military aerospace industries. The primary areas of interest include avionic command, control, instrumentation, simulation, signal processing, and sensor/video data distribution. These application areas are characterized by a variety of requirements, among them a need for high reliability, fault tolerance, and deterministic behavior to support real-time control/response.

The FC-AE-2 task group determined that it was best to allow profiles defined in the FC-AE technical report to be updated independently. This technical report is the first update to the FC-AE-ASM protocol since FC-AE was released. This technical report is recommended for new designs, but does not obsolete clause 4.1 in INCITS TR-31-2002 [2].

The primary objective of this technical report is to maximize the likelihood of interoperability between conforming implementations. This technical report Prohibits or Requires features that are optional and Prohibits the use of some non-optional features in the referenced ANSI INCITS standards. A second objective of this technical report is to simplify implementations and their associated documentation, testing, and support requirements. This technical report does not define internal characteristics of conformant implementations. This technical report incorporates features from the referenced ANSI INCITS standards.

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This standard addresses the following: A) Payment Model Description This standard describes a model of account based electronic payments. It identifies the roles played by different components of the payment process and the flow of information between those roles. The roles are the consumer, who wishes to make a payment, a merchant which provides value, and their respective Financial Institutions, the consumer financial institution and the merchant financial institution. B) Secure Object Specifications This standard specifies a collection of electronic payment objects and references digital signature techniques to secure their content. The objects are all defined in terms of how they need to be constructed, signed and verified in computing machinery that is acting on behalf of a consumer and a merchant. A concrete syntax is specified in order that the signature can be constructed or verified at any location that has access to the consumer苨 public key and associated data. A business recommendation is made that the payment routing code (or PAN) used in conjunction with secure payment objects defined by this standard is not accepted as valid in non-authenticated transactions. Several usage scenarios are given to show examples of real applications where the standard objects may be applicable. Confidentiality for the payment information may be desired and is neither required, nor precluded, by this standard. Prudent implementers may choose to conduct a risk assessment to determine the need for confidentiality. Also policy issues, including terms and conditions of the agreements between the parties, are not covered in this standard. . While some of the information described in the standard must survive interchange between cooperating financial institutions, the syntax of how it appears in any particular payment protocol is not specified.

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This standard addresses the following: A) Payment Model Description This standard describes a model of account based electronic payments. It identifies the roles played by different components of the payment process and the flow of information between those roles. The roles are the consumer, who wishes to make a payment, a merchant which provides value, and their respective Financial Institutions, the consumer financial institution and the merchant financial institution. B) Secure Object Specifications. This standard specifies a collection of electronic payment objects and references digital signature techniques to secure their content. The objects are all defined in terms of how they need to be constructed, signed and verified in computing machinery that is acting on behalf of a consumer and a merchant. A concrete syntax is specified in order that the signature can be constructed or verified at any location that has access to the consumer苨 public key and associated data. A business recommendation is made that the payment routing code (or PAN) used in conjunction with secure payment objects defined by this standard is not accepted as valid in non-authenticated transactions. Several usage scenarios are given to show examples of real applications where the standard objects may be applicable. Confidentiality for the payment information may be desired and is neither required, nor precluded, by this standard. Prudent implementers may choose to conduct a risk assessment to determine the need for confidentiality. Also policy issues, including terms and conditions of the agreements between the parties, are not covered in this standard. While some of the information described in the standard must survive interchange between cooperating financial institutions, the syntax of how it appears in any particular payment protocol is not specified.

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Fibre Channel Avionics Environment (FC-AE), Technical Report INCITS TR-31-2002 [2], is a group of protocols and profiles that specify Fibre Channel options for devices connected by fabric and/or loop topologies that are pertinent to their use in commercial and military aerospace industries. The primary areas of interest include avionic command, control, instrumentation, simulation, signal processing, and sensor/video data distribution. These application areas are characterized by a variety of requirements, among them a need for high reliability, fault tolerance, and deterministic behavior to support real-time control/response.

The FC-AE-2 task group determined that it was best to allow profiles defined in the FC-AE technical report to be updated independently. This technical report is the first update to the FC-AE-ASM protocol since FC-AE was released. This technical report is recommended for new designs, but does not obsolete clause 4.1 in INCITS TR-31-2002 [2].

The primary objective of this technical report is to maximize the likelihood of interoperability between conforming implementations. This technical report Prohibits or Requires features that are optional and Prohibits the use of some non-optional features in the referenced ANSI INCITS standards. A second objective of this technical report is to simplify implementations and their associated documentation, testing, and support requirements. This technical report does not define internal characteristics of conformant implementations. This technical report incorporates features from the referenced ANSI INCITS standards.

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Specifies the mechanical, physical, and optical characteristics of a 130 mm optical disk cartridge (ODC) that employs thermo-optical Phase Change effects to enable data interchange between such disks. It specifies two types:

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Specifies two methodologies for the measurement of specific print quality attributes of two-dimensional bar code symbols printed within the requirements of Digital Postage Marks. One of these methodologies is applicable to multi-row bar code symbologies and the other to two-dimensional matrix symbologies. Defines methods for grading print quality attributes and deriving an overall assessment of symbol quality. In addition, it gives information on possible causes of deviation from optimum grades so as to assist users and postal operators in taking appropriate corrective action.

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Specifies two methodologies for the measurement of specific print quality attributes of two-dimensional bar code symbols printed within the requirements of Digital Postage Marks. One of these methodologies is applicable to multi-row bar code symbologies and the other to two-dimensional matrix symbologies. Defines methods for grading print quality attributes and deriving an overall assessment of symbol quality. Gives information on possible causes of deviation from optimum grades so as to assist users and postal operators in taking appropriate corrective action.

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Specifies the mechanical, physical and optical characteristics of a 60 mm, read-only ODC having a maximum capacity of 1,8 Gbytes. It specifies the physical format, the quality of the recorded signals, the format of the data and its modulation method, thereby allowing for information interchange by means of such ODCs. This standard specifies two types of ODCs, Type A and Type B: Type A: Single layer disk with maximum recorded capacity of 0,9 G-bytes; Type B: Dual layer disk with maximum recorded capacity of 1,8 G-bytes.

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Provides the full reference for the Eiffel language. Eiffel is a method of software construction and a language applicable to the analysis, design, implementation and maintenance of software systems. ISO/IEC 25436:2006 covers only the language, with an emphasis on the implementation aspects.

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This International Standard establishes specifications for financial transaction cards using track 3 and is intended to permit interchange based on the use of magnetic stripe encoded information. It specifies the data content and physical location of read/write information on track 3 and is to be used in conjunction with the relevant parts of ISO/IEC 7811 and ISO/IEC 7812.

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Specifies the data structure and data content of magnetic tracks 1 and 2, which are used to initiate financial transactions. It takes into consideration both human and physical aspects and states minimum requirements of conformity. It references layout, recording techniques, numbering systems, registration procedures, but not security requirements. Specifies the test procedures used to check ID-1 cards against the parameters specified in ISO/IEC 7813:2006.

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This standard, including the normative annexes, establishes the file sequences, record types and field formats to be used for the electronic exchange of check MICR line data, associated check processing data, check images and optional user information in the form of cash letters. This standard does not address operational, implementation or settlement issues. These issues may include, but are not limited to, a choice of: data and image compression, encryption, and transmission specifications and data representation. The informative annexes attached to this standard provide useful information for implementing the standard. Data security and privacy issues related to the use of this standard are outside the scope of the standard. Users of the standard are advised to refer to ANS X9.73 Cryptographic Message Syntax (CMS), DSTU X9.99-2004, Privacy Impact Assessment Standard and the Gramm Leach Bliley Act.

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This Standard defines techniques for the generation of random numbers that shall be used whenever ASC X9 Standards require the use of a random number or bitstring for cryptographic purposes.

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Defines the syntax and semantics of ECMAScript for XML (E4X), a set of programming language extensions adding native XML support to ECMAScript.

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