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MC68194(2006) Ver la hoja de datos (PDF) - ON Semiconductor

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componentes Descripción
Fabricante
MC68194
(Rev.:2006)
ON-Semiconductor
ON Semiconductor ON-Semiconductor
MC68194 Datasheet PDF : 25 Pages
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MC68194
MacSymbol
Silence
PadIdle Pairs
Zero
One
NonData
ND1
ND2
Encoding
{off off}
{L L} {H H}
{H H}
{L L}
{H L}
{L H}
Figure 13. MAC Symbol Encoding
ONE
L
L
ZERO
H
L
ND1
1 BIT TIME =
1/ BIT RATE
L
H
ND2
1 BIT TIME
H
H
Figure 14. PhaseCoherent Modulation Scheme
1.3 MESSAGE (FRAME) FORMAT
Although the CBM only uses MAC symbols
oneatatime, the MAC or TBC is responsible for
combining the above defined MAC symbols into messages
(more correctly called frames). For the purposes of the
CBM, a simplified frame format can be used consisting of:
SILENCE || PADIDLE | START DELIMITER | DATA | END
DELIMITER || SILENCE
where:
PADIDLE
= alternating {LL} {HH} pairs which must
occur in octets or groups of eight sym-
bols. Padidle provides a training signal
for the receiver and occurs at the begin-
ning of every transmission (and between
frames in a multiple frame transmission).
START
= a unique pattern of eight symbols (one oc-
DELIMITER tet) that marks the beginning of a frame.
The pattern is:
ND1 ND2 0 ND1 ND2 0 0 0
where ND1 is the first symbol trans-
mitted.
DATA
= octets of ZERO/ONE patterns that are the
actual data or “information” contained
within the frame.
END
= a unique pattern of symbols that marks
DELIMITER the end of a frame. The pattern is:
ND1 ND2 1 ND1 ND2 1 {I=0/1} {0/1}
where ND1 is the first symbol trans-
mitted. Note that unlike the Start Delimit-
er, the last two bits of the End Delimiter
octet are not always the same. The
seventh bit of the octet is called the I Bit
or Intermediate bit which = 1 when there
is more to transmit and = 0 at the end of
a transmission.
A single transmission can consist of one or more frames.
In a multiframe transmission, PadIdle is sent between
consecutive frames to separate them. If an End Delimiter
occurs within a multiframe transmission its I Bit will = 1,
and the last end delimiter will have its I Bit = 0.
The CBM accepts a stream of MAC symbols from the
TBC and modulates the phasecoherent transmit signal
accordingly. Conversely, the CBM receives a
phasecoherent signal stream from the cable, decodes the
MAC symbols, and reports them. On transmission there is
a direct onetoone correlation between MAC symbols
requested and the modulated signal; however, during
reception exceptions can occur. The CBM is allowed to
report Silence or the actual Zero/One pattern during
preamble which is done to allow the receiver to “train” to the
incoming signal. Also, if noise in the system has corrupted
the data, it may show up as an incorrect MAC symbol or the
CBM can report a BAD SIGNAL symbol if an incorrect
combination of ND symbols is detected (ND2 without an
ND1, ND2 followed by ND2, etc.)
1.4 SYSTEM CONFIGURATION
Figure 15 illustrates the CBM and peripheral circuitry
required for an IEEE 802.4 carrierband 5 Mbps or 10 Mbps
data rate phasecoherent FSK physical layer. The CBM
communicates with the MAC or TBC through a TTL
compatible serial interface that is consistent with the IEEE
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