IEEE 802.11j-2004
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IEEE Standard for Information technology–Telecommunications and information exchange between systems-Local and metropolitan area networks–Specific requirements–Part 11: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) specifications–Amendment 7:4.9 GHz-5 GHz Operation in Japan
Published By | Publication Date | Number of Pages |
IEEE | 2004 |
Amendment Standard – Superseded. This amendment specifies the extensions to IEEE Std 802.11® for Wireless Local Area Networks providing mechanisms for operation in the 4.9 GHz and 5 GHz bands in Japan. This amendment is based on IEEE Std 802.11™, 1999 Edition (Reaff 2003), as amended by IEEE Stds 802.11a™-1999, 802.11b™-1999, 802.11b-1999/Cor 1-2001, 802.11d™-2001, 802.11g™-2003, 802.11h™-2003, and 802.11i™-2004.
PDF Catalog
PDF Pages | PDF Title |
---|---|
1 | Cover Page |
2 | Amendment 7: 4.9 GHz–5 GHz Operation in Japan |
5 | Introduction Notice to users Errata Interpretations Patents Participants |
11 | CONTENTS |
14 | 3. Definitions |
15 | 7. Frame formats 7.3 Management frame body components 7.3.2 Information elements 7.3.2.12 Country information element |
17 | 10. Layer management 10.3 Medium access control (MAC) sublayer management entity (MLME) service access point (SAP) interface 10.3.2 Scan 10.3.2.2 MLME-SCAN.confirm 10.3.2.2.2 Semantics of the service primitive |
18 | 10.3.10 Start 10.3.10.2 MLME-START.confirm 10.3.10.2.2 Semantics of the service primitive 11. MLME 11.1 Synchronization 11.1.3 Acquiring synchronization, scanning |
19 | 17. Orthogonal frequency division multiplexing (OFDM) physical layer (PHY) specification for the 5 GHz band 17.1 Introduction 17.2 OFDM PHY specific service parameter list 17.2.2 TXVECTOR parameters |
20 | 17.2.2.2 TXVECTOR DATARATE 17.2.3 RXVECTOR parameters 17.2.3.3 DATARATE |
21 | 17.3 OFDM physical layer convergence procedure (PLCP) sublayer 17.3.2 PLCP frame format 17.3.2.1 Overview of the PLCP protocol data unit (PPDU) encoding process 17.3.2.2 ModulationRate-dependent parameters |
22 | 17.3.2.3 Timing-related parameters 17.3.2.4 Mathematical conventions in the signal descriptions 17.3.3 PLCP preamble (SYNC) |
23 | 17.3.4 Signal field (SIGNAL) 17.3.4.1 Data rate 17.3.7 PLCP data modulation and modulation rate change |
24 | 17.3.8 Physical medium dependent (PMD) operating specifications (general) 17.3.8.1 Outline description 17.3.8.2 Regulatory requirements |
25 | 17.3.8.3 Operating channel frequencies 17.3.8.3.1 Operating frequency range 17.3.8.3.2 Channel numbering |
26 | 17.3.8.3.3 Channelization |
27 | 17.3.8.4 Transmit and receive in-band and out-of-band spurious emissions 17.3.8.6 Slot time 17.3.9 PMD transmit specifications 17.3.9.1 Transmit power levels |
28 | 17.3.9.2 Transmit spectrum mask 17.3.9.6 Modulation accuracy 17.3.9.6.3 Transmit constellation error |
29 | 17.3.10 PMD receiver specifications 17.3.10.1 Receiver minimum input level sensitivity 17.3.10.5 CCA sensitivity 17.4 OFDM PLME 17.4.2 OFDM PHY MIB |
30 | 17.4.3 OFDM TXTIME calculation 17.4.4 OFDM PHY characteristics |
31 | 17.5 OFDM PMD sublayer 17.5.4 Basic service and options 17.5.4.3 PMD_SAP service primitive parameters |
33 | Annex A (normative)–Protocol Implementation Conformance Statements (PICS) A.4 PICS proforma-IEEE Std 802.11, 1999 Edition (Reaff 2003) A.4.3 Implementation under test (IUT) configuration A.4.8 Orthogonal frequency division multiplex (OFDM) physical layer (PHY) functions |
37 | A.4.10 Regulatory domain extensions A.4.13 Regulatory classes extensions |
38 | Annex D (normative)–ASN.1 encoding of the MAC and PHY MIB |
44 | Annex I (informative)–Regulatory classes I.1 External regulatory references |
46 | I.2 Radio performance specifications I.2.1 Transmit and receive in-band and out-of-band spurious emissions |
48 | I.2.2 Transmit power levels |
49 | I.2.3 Transmit spectrum mask |
51 | Annex J (normative)–Country information element and regulatory classes |