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ANSI X9.100-161-2010 (S2022) Creating MICR Document 现行 发布日期 :  实施日期 : 

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.

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ANSI X9.100-170-2010 (S2022) Specification Forms 现行 发布日期 :  实施日期 : 

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, 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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Defines specific TIFF fields and parameters for check image exchange and the allowable values for those parameters. This standard will only address the use of G4 bilevel image (black/white) compressions within the TIFF 6.0 structure. A least common denominator approach was used to identify the fields that everyone should read and the required or allowable values for these fields that everyone will be expected to support. To accomplish interoperability, some of the fields and values are more restrictive compared to what is being generated in todays environment. In addition, this standard clarified areas that have been interpreted in different ways.

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ANSI X9.100-183-2010 (S2022) Electronic Check Adjustments 现行 发布日期 :  实施日期 : 

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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This standard lists the Return Reason codes for both Customer and Administrative Returns for image exchange and IRD creation within the U.S. Payments System. It includes the Short Name and Overlay Abbreviation required for an IRD creation. The standard establishes the process to add, change or delete a Return Reason code. It is up to each individual financial institution to determine what Return Reason code they will use when returning a check. The standard also includes guidance for the proper use of Return Reason codes.

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This standard specifies the shape, dimensions, magnetic signal level, and tolerances for the E-13B characters which include ten numeral characters and four special symbol characters. When these E-13B font characters are printed in magnetic ink and used for the purpose of character recognition, the printed characters become magnetic ink character recognition, or what is commonly referred to as MICR. Also described are the various known types of printing defects and other printing considerations, together with the tolerances permitted.

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This part of X9.104 defines a common interface for the exchange of information between point of sale systems or terminal devices located in a retail establishment and the acquiring host transaction processing system(s). This part of X9.104 is applicable to all aspects of payment processing required by these retail facilities, including the reporting of specific products that are part of a purchase. The standard defines a sufficient number of message types and data elements to facilitate the exchange of all necessary information related to: (1) payment transactions originated by point of sale systems or terminal devices, and (2) automated control of the systems and devices.

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Defines a common interface for the exchange of information between point of sale systems or terminal devices located in a retail establishment and the acquiring host transaction processing system(s).

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This part of X9.104 provides example of messages used in the convenience store and petroleum marketing industry based on the message formats defined in X9.104 part 1. This part of X9.104 also defines data elements and code values for use in this environment.

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This part of X9.105 Part 3 Identical to ISO 8583-3 establishes the role of the maintenance agency (MA) and specifies the procedures for adding messages and data elements to X9.105 Part 1 Identical to ISO 8583-1 and to codes listed in Annex A of X9.105 Part 1 Identical to ISO 8583-1. The responsibilities of the MA relate to all message type identifiers and classes, data elements and sub-elements, dataset identifiers and codes within X9.105 Part 1 Identical to ISO 8583-1, with the exception of Institution Identification Codes

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This part specifies a common interface by which financial transaction card-originated messages can be interchanged between acquirers and card issuers. It specifies message structure, format and content, data elements and values for data elements. The method by which settlement takes place is not within the scope of this part.

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Defines code values used to enable the classification of merchants into specific categories based on the type of business, trade or services supplied. Values are specified only for those merchant categories that are generally expected to originate retail financial transactions. Also establishes the procedures for a Registration and Maintenance Management Group (RMMG), which considers requests for new code values, and a Maintenance Agency (MA), which provides the administrative procedures required to maintain an up-to-date list of codes.

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Wireless technologies have rapidly emerged as significant components of networks. The ease and speed of deployment, as well as inexpensive transmission rates, makes them ideal for deploying new systems. Whereas installations used to be delayed several months because of complicated landline connections, a wireless deployment can happen the same day an ATM or POS terminal is ordered. Greater wireless coverage, greater reliability, higher transfer speeds, and improved equipment quality has only increased the likelihood that ATMs with wireless are a preferred option. Data classification and risk assessments still need to be performed, however, to determine asset value and the risks introduced by transmission over wireless networks. The question is still how data is being secured. Numerous control methods must be used to protect sensitive data on wireless networks such as encrypting communication prior to transmission and decrypting it afterwards.

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In today苨 world, both private and public sectors depend upon information technology systems to perform essential and mission-critical functions. In the current environment of increasingly open and interconnected systems and networks, network and data security are essential for the effective use of information technology. Privacy and regulatory requirements highlight this need. For example, systems that perform electronic commerce must protect against unauthorized access to confidential records and unauthorized modification of data. Wireless technologies are rapidly emerging as significant components of these networks. As such, data classification and risk assessments should be performed to determine the sensitivity of, and risk to, data transmitted over wireless networks. Various methods and controls should be considered for data that is sensitive, has a high value, or represents a high value if it is vulnerable to unauthorized disclosure or undetected modification during transmission over wireless networks. These methods and controls support communications security, for example by encrypting the communication prior to transmission and decrypting it at receipt. Note that data classification and risk assessments, regardless of whether data transmission is over wired or wireless environments, should be part of an organization苨 general security policy and best practices. Refer to Annex A Wireless Validation Control Objectives for further details. Part 1 of this Standard provides an overview of wireless radio frequency (RF) technologies and general requirements applicable to all wireless implementations for the financial services industry. Subsequent parts of this Standard will address specific applications to wireless technology and associated risks, as well as technologies, methods and controls that mitigate those risks. Note that other wireless non-radio frequency technologies, such as infrared and lasers are considered out of scope of this Standard. For the purposes of this Standard the use of the terms 魋hall?and 鬽ust?are requirements and therefore mandatory, whereas 魋hould?is a recommendation. Refer to Annex B Wireless Technology for examples.

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