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IEEE 802.15.4-2006

$181.46

IEEE Standard for Information technology– Local and metropolitan area networks– Specific requirements– Part 15.4: Wireless Medium Access Control (MAC) and Physical Layer (PHY) Specifications for Low Rate Wireless Personal Area Networks (WPANs)

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IEEE 2006 323
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Revision Standard – Superseded. IEEE Std 802.15.4-2003 defined the protocol and compatible interconnection for data communication devices using low-data-rate, low-power, and low-complexity short-range radio frequency (RF) transmissions in a wireless personal area network (WPAN). This revision extends the market applicability of IEEE Std 802.15.4, removes ambiguities in the standard, and makes improvements revealed by implementations of IEEE Std 802.15.4-2003.

PDF Catalog

PDF Pages PDF Title
1 IEEE Std 802.15.4-2006 Front Cover
3 Title page
5 Introduction
6 Notice to users
Errata
Interpretations
Patents
Participants
10 Contents
19 Part 15.4: Wireless Medium Access Control (MAC) and Physical Layer (PHY) Specifications for Low-Rate Wireless Personal Area Networks (WPANs)
1. Overview
1.1 General
1.2 Scope
20 1.3 Purpose
21 2. Normative references
23 3. Definitions
27 4. Acronyms and abbreviations
31 5. General description
5.1 Introduction
5.2 Components of the IEEE 802.15.4 WPAN
32 5.3 Network topologies
5.3.1 Star network formation
33 5.3.2 Peer-to-peer network formation
5.4 Architecture
35 5.4.1 Physical layer (PHY)
5.4.2 MAC sublayer
5.5 Functional overview
5.5.1 Superframe structure
36 5.5.2 Data transfer model
39 5.5.3 Frame structure
41 5.5.4 Improving probability of successful delivery
42 5.5.5 Power consumption considerations
5.5.6 Security
43 5.6 Concept of primitives
45 6. PHY specification
6.1 General requirements and definitions
6.1.1 Operating frequency range
46 6.1.2 Channel assignments
48 6.1.3 Minimum long interframe spacing (LIFS) and short interframe spacing (SIFS) periods
49 6.1.4 RF power measurement
6.1.5 Transmit power
6.1.6 Out-of-band spurious emission
6.1.7 Receiver sensitivity definitions
6.2 PHY service specifications
50 6.2.1 PHY data service
52 6.2.2 PHY management service
60 6.2.3 PHY enumerations description
61 6.3 PPDU format
6.3.1 Preamble field
62 6.3.2 SFD field
63 6.3.3 Frame Length field
6.3.4 PSDU field
6.4 PHY constants and PIB attributes
6.4.1 PHY constants
6.4.2 PHY PIB attributes
65 6.5 2450 MHz PHY specifications
6.5.1 Data rate
6.5.2 Modulation and spreading
67 6.5.3 2450 MHz band radio specification
68 6.6 868/915 MHz band binary phase-shift keying (BPSK) PHY specifications
6.6.1 868/915 MHz band data rates
6.6.2 Modulation and spreading
70 6.6.3 868/915 MHz band radio specification
71 6.7 868/915 MHz band (optional) amplitude shift keying (ASK) PHY specifications
6.7.1 868/915 MHz band data rates
6.7.2 Modulation and spreading
75 6.7.3 868/915 MHz band radio specification for the ASK PHY
76 6.7.4 SHR for ASK PHY
78 6.8 868/915 MHz band (optional) O-QPSK PHY specifications
6.8.1 868/915 MHz band data rates
6.8.2 Modulation and spreading
80 6.8.3 868/915 MHz band radio specification
81 6.9 General radio specifications
6.9.1 TX-to-RX turnaround time
82 6.9.2 RX-to-TX turnaround time
6.9.3 Error-vector magnitude (EVM) definition
83 6.9.4 Transmit center frequency tolerance
6.9.5 Transmit power
6.9.6 Receiver maximum input level of desired signal
6.9.7 Receiver ED
6.9.8 Link quality indicator (LQI)
84 6.9.9 Clear channel assessment (CCA)
85 7. MAC sublayer specification
7.1 MAC sublayer service specification
86 7.1.1 MAC data service
94 7.1.2 MAC management service
95 7.1.3 Association primitives
104 7.1.4 Disassociation primitives
110 7.1.5 Beacon notification primitive
112 7.1.6 Primitives for reading PIB attributes
115 7.1.7 GTS management primitives
121 7.1.8 Primitives for orphan notification
124 7.1.9 Primitives for resetting the MAC sublayer
126 7.1.10 Primitives for specifying the receiver enable time
129 7.1.11 Primitives for channel scanning
134 7.1.12 Communication status primitive
137 7.1.13 Primitives for writing PIB attributes
140 7.1.14 Primitives for updating the superframe configuration
145 7.1.15 Primitives for synchronizing with a coordinator
149 7.1.16 Primitives for requesting data from a coordinator
153 7.1.17 MAC enumeration description
155 7.2 MAC frame formats
156 7.2.1 General MAC frame format
160 7.2.2 Format of individual frame types
166 7.2.3 Frame compatibility
167 7.3 MAC command frames
168 7.3.1 Association request command
169 7.3.2 Association response command
170 7.3.3 Disassociation notification command
171 7.3.4 Data request command
172 7.3.5 PAN ID conflict notification command
173 7.3.6 Orphan notification command
174 7.3.7 Beacon request command
7.3.8 Coordinator realignment command
176 7.3.9 GTS request command
177 7.4 MAC constants and PIB attributes
7.4.1 MAC constants
178 7.4.2 MAC PIB attributes
184 7.5 MAC functional description
185 7.5.1 Channel access
190 7.5.2 Starting and maintaining PANs
197 7.5.3 Association and disassociation
200 7.5.4 Synchronization
201 7.5.5 Transaction handling
203 7.5.6 Transmission, reception, and acknowledgment
210 7.5.7 GTS allocation and management
215 7.5.8 Frame security
224 7.6 Security suite specifications
7.6.1 PIB security material
228 7.6.2 Auxiliary security header
231 7.6.3 Security operations
234 7.7 Message sequence charts illustrating MAC-PHY interaction
245 Annex A (normative) Service-specific convergence sublayer (SSCS)
A.1 IEEE 802.2 convergence sublayer
A.1.1 MA-UNITDATA.request
246 A.1.2 MA-UNITDATA.indication
247 A.1.3 MA-UNITDATA-STATUS.indication
249 Annex B (normative) CCM* mode of operation
B.1 Introduction
B.2 Notation and representation
B.2.1 Strings and string operations
B.2.2 Integers, octets, and their representation
B.3 Symmetric-key cryptographic building blocks
B.3.1 Block cipher
250 B.3.2 Mode of operation
B.4 Specification of generic CCM* mode of operation
B.4.1 CCM* mode encryption and authentication transformation
252 B.4.2 CCM* mode decryption and authentication checking transformation
253 B.4.3 Restrictions
255 Annex C (informative) Test vectors for cryptographic building blocks
C.1 AES block cipher
C.2 Mode of operation
C.2.1 MAC beacon frame
259 C.2.2 MAC data frame
263 C.2.3 MAC command frame
269 Annex D (normative) Protocol implementation conformance statement (PICS) proforma
D.1 Introduction
D.1.1 Scope
D.1.2 Purpose
D.2 Abbreviations and special symbols
270 D.3 Instructions for completing the PICS proforma
D.4 Identification of the implementation
271 D.5 Identification of the protocol
D.6 Global statement of conformance
272 D.7 PICS proforma tables
D.7.1 Major roles for devices compliant with IEEE Std 802.15.4-2006
273 D.7.2 Major capabilities for the PHY
274 D.7.3 Major capabilities for the MAC sublayer
279 Annex E (informative) Coexistence with other IEEE standards and proposed standards
E.1 Introduction
E.2 Standards and proposed standards characterized for coexistence
E.3 General coexistence issues
280 E.3.1 Clear channel assessment (CCA)
E.3.2 Modulation
281 E.3.3 ED and LQI
E.3.4 Low duty cycle
E.3.5 Low transmit power
282 E.3.6 Channel alignment
E.3.7 Dynamic channel selection
E.3.8 Neighbor piconet capability
283 E.4 2400 MHz band coexistence performance
E.4.1 Assumptions for coexistence quantification
286 E.4.2 BER model
E.4.3 Coexistence simulation results
291 E.5 800/900 MHz bands coexistence performance
E.5.1 Victims and assailants
E.5.2 Bandwidth
E.5.3 Path loss model
292 E.5.4 Temporal model
293 E.5.5 Coexistence assurance results
300 E.6 Notes on the calculations
301 Annex F (informative) IEEE 802.15.4 regulatory requirements
F.1 Introduction
303 F.2 Applicable U.S. (FCC) rules
F.2.1 Section 15.35 of FCC CFR47
305 F.2.2 Section 15.209 of FCC CFR47
F.2.3 Section 15.205 of FCC CFR47
306 F.2.4 Section 15.247 of FCC CFR47
307 F.2.5 Section 15.249 of FCC CFR47
308 F.3 Applicable European rules
309 F.3.1 European 2400 MHz band rules
310 F.3.2 European 868-870 MHz band rules
312 F.4 Applicable Japanese rules
313 F.5 Emissions specification analysis with respect to known worldwide regulations
F.5.1 General analysis and impact of detector bandwidth and averaging rules
315 F.5.2 Frequency spreading and averaging effects specific to IEEE Std 802.15.4
317 F.6 Summary of out-of-band spurious emissions limits
318 F.7 Phase noise requirements inferred from regulatory limits
319 F.8 Summary of transmission power levels
321 Annex G (informative) Bibliography
G.1 General
322 G.2 Regulatory documents
IEEE 802.15.4-2006
$181.46