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ADAV801ASTZ 数据表(PDF) 24 Page - Analog Devices

部件名 ADAV801ASTZ
功能描述  Audio Codec for Recordable DVD
PDF  56 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

ADAV801ASTZ 数据表(HTML) 24 Page - Analog Devices

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ADAV801
Rev. 0 | Page 24 of 56
DIR BLOCK
DIR_LF
100nF
3k
AVDD
6.8nF
Figure 42.
one
l Dig
udio
tand
ADAV801 can receive and tra
PDIF, AES/EBU
958 serial str
d,
/EBU is a profe
958 has
sumer and pro
ta sheet is
tended to f
e
rds. Con
e full specification
e digita
audio control info
e-mark
d. This encoding me
content of the
itted signal. As c
in the
al data end up with m
e biphase-
encoded data, while 0s in
ta do not. Note
e biphase-mark encod
a transition
en bit bounda
DIR Loop Filter Comp
nts
Seria
ital A
Transmission S
ards
The
nsmit S
, and
IEC-
eams. SPDIF is a consumer audio standar
and AES
ssional audio standard. IEC-
both con
fessional definitions. This da
not in
ully define or to provide a tutorial for thes
standa
tact the international standards-setting bodies
for th
s.
All thes
l audio communication schemes encode audio
data and
rmation using the biphas
metho
thod minimizes the dc
transm
an be seen from Figure 43, 1s
origin
idcell transitions in th
mark
the original da
that th
ed
s
data always ha
betwe
ries.
01
1
1
00
CLOCK
(2 TIMES BIT RATE)
BIPHASE-MARK
DATA
DATA
Figure 43. Biphase-Mark Encoding
Digital audio-communication schemes use preambles to
distinguish among channels (called subframes) and among
longer-term control information blocks (called frames).
Preambles are particular biphase-mark patterns, which contain
encoding violations that allow the receiver to uniquely
recognize them. These patterns and their relationship to frames
and subframes are shown in Table 8 and Figure 44.
Table 8. Biphase-Mark Encode Preamble
Biphase Patterns
Channel
X
11100010 or 00011101
Left
Y
11100100 or 00011011
Right
Z
11101000 or 00010111
Left and CS block start
XY
Z
Y
X
Y
PREAMBLES
LEFT CH
FRAME 191
FRAME 0
FRAME 1
RIGHT CH
LEFT CH
RIGHT CH
LEFT CH
RIGHT CH
SUB-
FRAME
SUB-
FRAME
Figure 44. Preambles, Frames, and Subframes
The biphase-mark encoding violations are shown in Figure 45.
Note that all three preambles include encoding violations.
Ordinarily, the biphase-mark en ding method results in a
polarity transition
co
between bit boundaries.
11
1
0
00
1
0
11
1
0
01
0
0
11
1
0
10
0
0
PREAMBLE X
PREAMBLE Y
PREAMBLE Z
Figure 45. Preambles
The serial digital a
rganized
e
Bits
udio communication scheme is o
using a frame and subframe construction. There are two
subframes per frame (ordinarily the left and right channel).
Each subframe includes the appropriate 4-bit preamble, up to
24 bits of audio data, a validity (V) bit, a user (U) bit, a channel
status (C) bit, and an even parity (P) bit. The channel status bits
and the user bits accumulate over many frames to convey
control information. The channel status bits accumulate over a
192 frame period (called a channel status block). The user bits
accumulate over 1,176 frames when the interconnect is imple-
menting the so-called subcode scheme (EIAJ CP-2401). Th
organization of the channel status block, frames, and subframes
is shown in Table 9 and Table 10. Note that the ADAV801
supports the professional audio standard from a software
point of view only. The digital interface supports only
consumer mode.
Table 9. Consumer Audio Standard
Data
Address
7
6
5
4
3
2
1
0
N
Channel
Status
Emphasis
Copy-
Non-
Pro
Co
right
Audio
/
n
= 0
N + 1
Category Code
N + 2
Channel Number
Source Number
N + 3
Reserved
Clock
Accuracy
Sampling Frequency
N + 4
Reserved
Word Length
N + 5 to
(N + 23)
Reserved
N = 0x20 for receiver channel status buffer.
N = 0x38 for transmitter channel status buffer.



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