UTOPIA16EVK/NOPB National Semiconductor, UTOPIA16EVK/NOPB Datasheet - Page 62

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UTOPIA16EVK/NOPB

Manufacturer Part Number
UTOPIA16EVK/NOPB
Description
Manufacturer
National Semiconductor
Datasheet

Specifications of UTOPIA16EVK/NOPB

Lead Free Status / Rohs Status
Compliant
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18.0 Register Description
18.54 RECEIVE PORT B UP2DOWN LOOPBACK CELL COUNT — 0x7E RBU2DLBC
Type:
Software Lock: No
Reset Value:
The Receive Port B Up2Down Loopback Cell Count register counts the number of incoming loopback cells detected from the Port
B LVDS interface when Up2Down loopback is enabled with the U2DLB bit of the ALBC register, see Section 18.18 ATM AND
LVDS LOOPBACK CONTROL — 0x1A ALBC. Note that this counter is incremented when an incoming loopback cell is received
and that this differs from the functionality of the Down2Up Loopback Cell Count register, see Section 18.71 ATM DOWN2UP
LOOPBACK CELL COUNT — 0xE0 D2ULBCC.
18.55 RECEIVE PORT B CELL DELINEATION THRESHOLDS — 0x80 RBCDT
Type:
Software Lock: Yes
Reset Value:
The Receive Port B Cell and Transport Container Delineation Thresholds register controls the operation of the Port B cell
delineation state machine. The cell delineation lock status is refiected in the RBLTCLL bit of the RBLA register.
18.56 RECEIVE PORT B FRAME DELINEATION THRESHOLDS — 0x81 RBFDT
Type:
Software Lock: Yes
Reset Value:
The Receive Port B Frame Delineation Thresholds register controls the operation of the Port B frame delineation state machine.
The frame delineation lock status is refiected in the RBLFLL bit of the RBLA register.
18.57 RECEIVE PORT B DESCRAMBLER LOCK THRESHOLDS — 0x82 RBDSLKT
Type:
Software Lock: Yes
Reset Value:
The Receive Port B Descrambler Lock Thresholds register controls the operation of the Port B descrambler lock state machine
confidence counter. The descrambler lock status is refiected in the RBLDSLL bit of the RBLA register.
• RBU2DLBC[7:0] Port B Up2Down Loopback Cell Count value. This register will not roll-over from 0x00 to 0xFF but will stick
• ALPHA[3:0] When in lock this is the number of consecutive incorrect cell HEC’s required to lose cell delineation lock.
• DELTA[3:0] When out of lock this is the number of consecutive correct cell HEC’s required to gain cell delineation lock.
• MU[3:0] When in lock this is the number of consecutive incorrect cell HEC’s required to lose frame delineation lock.
• SIGMA[3:0] When out of lock this is the number of consecutive correct frame HEC’s required to gain frame delineation lock.
at 0xFF.
RBU2DLBC[7] RBU2DLBC[6] RBU2DLBC[5] RBU2DLBC[4] RBU2DLBC[3] RBU2DLBC[2] RBU2DLBC[1] RBU2DLBC[0]
ALPHA[3]
PSI[3]
MU[3]
7
7
7
7
Read only/Clear on Read
0x00
Read/Write
0x78
Read/Write
0x78
Read/Write
0x88
ALPHA[2]
PSI[2]
MU[2]
6
6
6
6
ALPHA[1]
MU[1]
PSI[1]
5
5
5
5
(Continued)
TABLE 74. RBU2DLBC
TABLE 77. RBDSLKT
ALPHA[0]
TABLE 75. RBCDT
TABLE 76. RBFDT
MU[0]
PSI[0]
4
4
4
4
62
SIGMA[3]
DELTA[3]
RHO[3]
3
3
3
3
SIGMA[2]
DELTA[2]
RHO[2]
2
2
2
2
SIGMA[1]
DELTA[1]
RHO[1]
1
1
1
1
SIGMA[0]
DELTA[0]
RHO[0]
0
0
0
0