ISO/IEC 9314-7:1998 PDF
Information technology — Fibre Distributed Data Interface (FDDI) — Part 7: Physical layer Protocol (PHY-2)
Information technology — Fibre Distributed Data Interface (FDDI) — Part 7: Physical layer Protocol (PHY-2)
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 46
- Дата публикации:
- 8 октября 1998 г.
- Издание:
- ISO/IEC IS 9314 edition 1 version 1
- ICS:
- 35.200
This part of ISO/IEC 9314 specifies the Physical Layer Protocol (PHY), the upper sublayer of the Physical Layer, for Fibre Distributed Data Interface (FDDI). FDDI provides a high-bandwidth (100 Mbit/s), general-purpose interconnection among information processing systems, subsystems and peripheral equipment, using fibre optics or other transmission media. FDDI can be configured to support a sustained data transfer rate of at least 80 Mbit/s (10 Mbyte/s). FDDI provides connectivity for many nodes distributed over distances of many kilometers in extent. Certain default parameter values for FDDI (e.g. timer settings) are calculated on the basis of up to 1 000 transmission links or up to 200 km total fibre-path length (typically corresponding to 500 nodes and 100 km of dual fibre cable, respectively); however, the FDDI protocols can support much larger networks by increasing these parameter values. As shown in figure 1, FDDI consists of a) Physical Layer (PL), which is divided into two sublayers: 1) A Physical Medium Dependent (PMD), which provides the digital baseband point-to-point communication between nodes in the FDDI network. The PMD provides all services necessary to transport a suitably coded digital bit stream from node to node. The PMD defines and characterizes the fibre-optic drivers and receivers, medium-dependent code requirements, cables, connectors, power budgets, optical bypass provisions, and physicalhardware-related characteristics. It specifies the point of interconnectability for conforming FDDI attachments. The initial PMD standard defines attachment to multi-mode fibre. Alternative PMD sublayer standards are being developed for attachment to other transmission media and for mapping to Synchronous Optical Network (SONET), 2) A Physical Layer Protocol (PHY), which provides connection between the PMD and the Data Link Layer. PHY establishes clock synchronization with the upstream code-bit data stream and decodes this incoming code-bit stream into an equivalent symbol stream for use by the higher layers. PHY provides encoding and decoding between data and control indicator symbols and code bits, medium conditioning and initializing, the synchronization of incoming and outgoing code-bit clocks, and the delineation of octet boundaries as required for the transmission of information to or from higher layers. Information to be transmitted on the medium is encoded by the PHY using a group transmission code. The definition of PHY is contained in this part of ISO/IEC 9314. b) A Data Link Layer (DLL), which is divided into two or more sublayers: 1) An optional Hybrid Ring Control (HRC), which provides multiplexing of packet and circuit switched data on the shared FDDI medium. HRC comprises two internal components, a Hybrid Multiplexer (H-MUX) and an Isochronous MAC (I-MAC). H-MUX maintains a synchronous 125 µs cycle structure and multiplexes the packet and circuit switched data streams, and I-MAC provides access to circuit switched channels, 2) A Media Access Control (MAC), which provides fair and deterministic access to the medium, address recognition, and generation and verification of frame check sequences. Its primary function is the delivery of packet data, including frame generation, repetition, and removal, 3) An optional Logical Link Control (LLC), which provides a common protocol for any required packet data adaptation services between MAC and the Network Layer. LLC is not specified by FDDI, 4) An optional Circuit Switching Multiplexer (CS-MUX), which provides a common protocol for any required circuit data adaptation services between I-MAC and the Network Layer. CS-MUX is not specified by FDDI. c) A Station Management (SMT), which provides the coordination necessary at the node level to manage the processes under way in the various FDDI layers such that a node may work cooperatively on a ring. SMT provides services such as control of configuration management, fault isolation and recovery, and schedul
Abstract
Overview
ISO/IEC 9314-7:1998 - Information technology - Fibre Distributed Data Interface (FDDI) - Part 7: Physical Layer Protocol (PHY-2) specifies the upper sublayer of the FDDI Physical Layer (PHY). PHY-2 (an enhancement to the original PHY) defines the interface between the Physical Medium Dependent (PMD) sublayer and the Data Link Layer (DLL) to support high-bandwidth optical networks (FDDI: 100 Mbit/s nominal, with sustained transfer rates of at least 80 Mbit/s). The standard is media‑independent where possible, supports long ring extents (kilometres), and includes provisions for Hybrid Ring Control (HRC / FDDI-II) operation.
Key Topics
- PHY services and primitives: Defines PHY-to-DLL, PHY-to-PMD and PHY-to-SMT service primitives (e.g., PH_UNITDATA.request / indication, PM_UNITDATA.request / indication, PM_SIGNAL.indication, SM_PH_LINE_STATE.request, SM_PH_STATUS.indication).
- Encoding and clocking: Specifies group transmission coding, clock synchronization with upstream code-bit streams, and octet delineation required for higher-layer transmission.
- Symbol and code definitions: Describes code bits, code groups (symbols), control symbols, data quartets, and a violation symbol used for signalling and error conditions.
- Line states: Defines multiple line states used for link management and fault handling (Idle, Active, Master, Halt, Cycle, Noise, etc.) along with state detection rules.
- Buffering and signal conditioning: Details the elasticity buffer for clock domain crossing, smoothing (limit and target smoothers) to manage symbol transitions and jitter, and the repeat filter for suppression of repeated frames or symbols.
- Operational functions: Encode, transmit, receive, decode, elasticity buffer, line state detection, smoothing and repeat filter functions are specified functionally to ensure interoperability.
Applications
- Network equipment manufacturers designing FDDI attachments, optical transceivers, concentrators or NICs that must interoperate on 100 Mbit/s fibre rings.
- System integrators and network architects deploying legacy high-performance campus or industrial rings that require standards-compliant PHY behavior and clocking.
- Test labs and conformance engineers implementing PHY-ATS or PMD-ATS test suites (see related parts) for product certification.
- Developers extending FDDI for isochronous services (HRC / FDDI-II) who require PHY-2 mandatory support.
Related Standards
- ISO/IEC 9314-1 (original PHY), ISO/IEC 9314-2 (MAC), ISO/IEC 9314-3 (PMD), ISO/IEC 9314-4 (SMF-PMD), ISO/IEC 9314-5 (HRC / FDDI-II), ISO/IEC 9314-6 (SMT), ISO/IEC 9314-8 (MAC-2). PHY-2 is interoperable with ISO/IEC 9314-1 when Hybrid mode is not used.
Keywords: ISO/IEC 9314-7:1998, FDDI, PHY-2, Physical Layer Protocol, 100 Mbit/s, fibre optics, PMD, MAC, elasticity buffer, smoothing, repeat filter, symbol coding.
Технические детали
- Технический комитет
- ISO/IEC JTC 1/SC 25 - Interconnection of information technology equipment
- SKU
- ISO/IEC 9314-7:1998
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