Itu telecommunication Standardization Sector


ITU-T X.85/Y.1321 (03/2001) – Prepublished version



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ITU-T X.85/Y.1321 (03/2001) – Prepublished version 
14


N-5
8 7 6 5 4 3 2
1
SAPI
6
5
INFORMATION 
N-4
N-3
FCS (3RD OCTET)
FCS (4TH OCTET)
4
3
2
Octet 1
FCS (2ND OCTET)
FCS (1ST OCTET)
CONTROL
ADDRESS 
(A SINGLE OCTET)
FLAG 
0 1 1 1 1 1 1 0
FLAG 
0 1 1 1 1 1 1 0
N
N-1
N-2
FIGURE A.1/X.85/Y.1321 
Frame format
A.2.8 Format 
convention 
A.2.8.1 Numbering 
convention 
The basic convention used in this Annex is illustrated in Figure A.2. The bits are grouped into octets. The 
bits of an octet are shown horizontally and are numbered from 1 to 8. Multiple octets are shown vertically 
and are numbered from 1 to
 N

A.2.8.2 
Order of bit transmission 
The octets are transmitted in ascending numerical order; inside an octet bit 8 is the first bit to be transmitted. 
A.2.8.3 
Field mapping convention 
When a field is contained within a single octet, the lowest bit number of the field represents the lowest order 
value. 
ITU-T X.85/Y.1321 (03/2001) – Prepublished version 
15


When a field spans more than one octet, the order of bit values within each octet progressively decreases as 
the octet number increases. The lowest bit number associated with the field represents the lowest order value. 
For example, a bit number can be identified as a couple (
o
,
 b
) where
 o
is the octet number and
 b
is the 
relative bit number within the octet. Figure A.3 illustrates a field that spans from bit (1, 3) to bit (2, 7). The 
high order bit of the field is mapped on bit (1, 3) and the low order bit is mapped on bit (2, 7). 
An exception to the preceding field mapping convention is the data link layer FCS field, which spans four 
octets. In this case, bit 1 of the first octet is the low order bit and bit 8 of the 4th octet is the high order bit 
(see Figure A.4), please refer to RFC 2615. 

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