
Preliminary Information
MT9071
181
14
13
12
11
10
9
8
C1P6
C1P5
C1P4
C1P3
C1P2
C1P1
C1P0
(0000 000)
RSV
(0)
C2P6
C2P5
C2P4
C2P3
C2P2
C2P1
C2P0
(0000 000)
Table 174 - T1 & E1 LIU Transmit Pulse Phase 1 & Phase 2 Data - R/W Address YE4
Custom Transmit Pulse Phase 1.
These bits provide the capability for programming the
magnitude setting for the LIU line driver A/D converter during the first phase of a four phase
mark. The greater the binary number loaded into the register, the greater the amplitude driven
out. This feature is enabled with control bit CPL described in Table 172 - T1 & E1 LIU
Transmitter Control - R/W Address YE2.
7
Reserved.
Must be kept at zero for normal operation.
6
5
4
3
2
1
0
Custom Transmit Pulse Phase 2.
These bits provide the capability for programming the
magnitude setting for the LIU line driver A/D converter during the second phase of a four phase
mark. The greater the binary number loaded into the register, the greater the amplitude driven
out. This feature is enabled with control bit CPL described in Table 172 - T1 & E1 LIU
Transmitter Control - R/W Address YE2.
Bit
Name
Functional Description
15
RSV
(0)
C3P6
C3P5
C3P4
C3P3
C3P2
C3P1
C3P0
(0000 000)
RSV
(0)
C4P6
C4P5
C4P4
C4P3
C4P2
C4P1
C4P0
(0000 000)
Table 175 - T1 & E1 LIU Transmit Pulse Phase 3 & Phase 4 Data - R/W Address YE5
Reserved.
Must be kept at zero for normal operation.
14
13
12
11
10
9
8
Custom Transmit Pulse Phase 3.
These bits provide the capability for programming the
magnitude setting for the LIU line driver A/D converter during the third phase of a four phase
mark. The greater the binary number loaded into the register, the greater the amplitude driven
out. This feature is enabled with control bit CPL described in Table 172 - T1 & E1 LIU
Transmitter Control - R/W Address YE2.
7
Reserved.
Must be kept at zero for normal operation.
6
5
4
3
2
1
0
Custom Transmit Pulse Phase 4.
These bits provide the capability for programming the
magnitude setting for the LIU line driver A/D converter during the fourth phase of a four phase
mark. The greater the binary number loaded into the register, the greater the amplitude driven
out. This feature is enabled with control bit CPL described in Table 172 - T1 & E1 LIU
Transmitter Control - R/W Address YE2.
Bit
Name
Functional Description