This standard specifies the required elements of the universal interbank batch/bundle ticket. It is expected that bankers refer to this standard when designing this special interbank form. This standard is sufficiently flexible to meet differing document and institution needs without unnecessary constraints. This standard provides the reader with specifications for a universal interbank batch/bundle ticket that contains data that may be recognized among all financial institutions wishing to utilize interbank batch/bundle tickets and not adversely affect those that do not.
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This standard defines communication modes for Near Field Communication Interface and Protocol (NFCIP 1) using inductive coupled devices operating at the centre frequency of 13,56 MHz for interconnection of computer peripherals. It also defines both the Active and the Passive communication modes of Near Field Communication Interface and Protocol (NFCIP-1) to realize a communication network using Near Field Communication devices for networked products and also for consumer equipment. This standard specifies, in particular, modulation schemes, codings, transfer speeds, and frame format of the RF interface, as well as initialization schemes and conditions required for data collision control during initialization. It also defines a transport protocol including protocol activation and data exchange methods.
This standard establishes the design and usage requirements of a check fraud deterrent icon (CFDI) for visually communicating the presence of security features on a check. The standard specifies minimal overt security features which meet the requirements for deterring both counterfeiting and alteration that printers are to use prior to printing a check fraud deterrent icon onto a check. This standard also establishes the requirements for use of a check fraud deterrent icon, the location on the check for the icon, and the location of and requirements for the associated warning box and verbiage.
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This standard establishes the file sequences, record types, and field formats to be used for the electronic exchange of check adjustment messages. The standard format supports check related adjustment notices and requests for individual checks, bundles of checks, check cash letters and attachment of images. It supports the full range of adjustment types currently in use by financial institutions and will support web-based or mainframe system transmission. The standard may be used whether or not the particular check, bundle of checks, or cash letter was presented via paper or via an electronic check exchange file.
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Describes an enhancement to American National Standard for Information Technology - Fibre Channel - Physical and Signaling Interface (FC-PH), ANSI X3.230-1994, American National Standard for Information Technology - Fibre Channel - Physical and Signaling Interface-2 (FC-PH-2), ANSI X3.297-1997, and American National Standard for Information Technology - Fibre Channel - Physical and Signaling Interface-3 (FC-PH-3), ANSI X3.303-1998, and is an addendum to the FC-PH, FC-PH-2, and FC-PH-3 documents. To obtain an electronic draft: NCITS Storefront: http://www.cssinfo.com/cgi-bin/detail?product_id= 232502.
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ISO/IEC 18092, ISO/IEC 14443 and ISO/IEC 15693 specify the radio frequency signal interface, initialization, anti-collision and protocols for wireless interconnection of closely coupled devices and access to contactless integrated circuit cards operating at 13,56 MHz. This Standard specifies the communication mode selection mechanism, designed not to disturb any ongoing communication at 13,56 MHz, for devices implementing ISO/IEC 18092, ISO/IEC 14443 or ISO/IEC 15693. This Standard requires implementations to enter the selected communication mode as specified in the respective Standard. The communication mode specifications, however, are outside the scope of this Standard.
This standard specifies the contents for MICR Document Specification Forms. It may be used to create specifications for the design and manufacture of checks and deposit tickets, as well as other financial institution MICR documents. The standard is sufficiently flexible to meet the needs of a variety of financial institutions. The standard is not the specification form itself.
定价: 546元 / 折扣价: 465 元 加购物车
A privacy impact assessment (PIA) is an important financial services and banking management tool to be used within an organization, or by "contracted" third parties, to identify and mitigate privacy issues and risks associated with processing consumer data using automated, networked information systems. This standard describes the privacy impact assessment activity in general; defines the common and required components of a privacy impact assessment, regardless of business systems affecting financial institutions; and provides informative guidance to educate the reader on privacy impact assessments. A privacy compliance audit differs from a privacy impact assessment in that the compliance audit determines an institution's current level of compliance with the law and identifies steps to avoid future non-compliance with the law. While there are similarities between privacy impact assessments and privacy compliance audits in that they use some of the same skills and that they are tools used to avoid breaches of privacy, the primary concern of a compliance audit is simply to meet the requirements of the law, whereas a privacy impact assessment is intended to investigate further in order to identify ways to safeguard privacy optimally
This standard covers the design and the functional characteristics of the strip extension ("strip") as affixed to a check. These strips provide a new MICR clear band area used to modify or correct the MICR line of items for forward collection, returns, rejects, or other banking interchange systems.
定价: 546元 / 折扣价: 465 元 加购物车
This standard specifies the minimum security requirements for the effective use of time stamps in a financial services environment. Within the scope of this Standard the following topics are addressed: - Requirements for the secure management of the time stamp token across its life cycle, comprised of the generation, transmission and storage, validation, and renewal processes. The requirements in this Standard identify the means to securely and verifiably distribute time from a national time source down to the application level; - Requirements for the secure management of a Time Stamp Authority (TSA); - Requirements of a TSA to ensure that an independent third party can audit and validate the controls over the use of a time stamp process; - Techniques for the coding, encapsulation, transmission, storage, integrity and privacy protection of time stamp data; - Usage of time stamp technology.
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This document provides requirements and recommendations for implementation of mobile payments-to-business programs. This document is structured as follows: - Clause 4 sets forth the characteristics of mobile payments-to-businesses; - Clause 5 sets forth requirements for mobile payments-to-businesses. One of the most important aspects of the MFS environment is mobile-payments-to-businesses. There are many ways an end user can make a payment to a merchant. ANSI X9.134 provides a comprehensive standard for using the mechanisms involved in mobilizing the transfer of funds regardless of who is involved in the process. Potential implementers of mobile retail payment solutions should look at this ANSI X9.134-5; potential implementers of solutions for mobile payments-to-persons should look at ANSI X9.134-4.
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ISO/IEC TR 14496-9:2009 specifies descriptions of the main video coding tools in hardware description language (HDL) form. Such alternative descriptions to the ones that are reported in ISO/IEC 14496-2, ISO/IEC 14496-5 and ISO/IEC TR 14496-7 correspond to the need of providing the public with conformant standard descriptions that are closer to the starting point of the development of codec implementations than textual descriptions or pure software descriptions. ISO/IEC TR 14496-9:2009 contains conformant descriptions of video tools that have been validated within the recommendation ISO/IEC TR 14496-7.