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22
TABLE 42. PHASE INCREMENT REGISTER 0
SUB ADDRESS = 6B
H
BIT
NUMBER
FUNCTION
DESCRIPTION
RESET
STATE
7-0
PHINC 0
(LSB)
The 8-bit registers PHINC 0–3 are cascaded together to form a 32-bit PHINC value. The
PHINC value is the phase increment value of the color subcarrier generation NCO. When the
BT.656 ancillary data is selected as the PHINC source, the PHINC registers may be read to
determine the last PHINC value loaded via the selected interface.
00
H
TABLE 43. PHASE INCREMENT REGISTER 1
SUB ADDRESS = 6C
H
BIT
NUMBER
FUNCTION
DESCRIPTION
RESET
STATE
7-0
PHINC 1
The 8-bit registers PHINC 0–3 are cascaded together to form a 32-bit PHINC value. The
PHINC value is the phase increment value of the color subcarrier generation NCO. When the
BT.656 ancillary data is selected as the PHINC source, the PHINC registers may be read to
determine the last PHINC value loaded via the selected interface.
00
H
TABLE 44. PHASE INCREMENT REGISTER 2
SUB ADDRESS = 6D
H
BIT
NUMBER
FUNCTION
DESCRIPTION
RESET
STATE
7-0
PHINC 2
The 8-bit registers PHINC 0–3 are cascaded together to form a 32-bit PHINC value. The
PHINC value is the phase increment value of the color subcarrier generation NCO. When the
BT.656 ancillary data is selected as the PHINC source, the PHINC registers may be read to
determine the last PHINC value loaded via the selected interface.
00
H
TABLE 45. PHASE INCREMENT REGISTER 1
SUB ADDRESS = 6E
H
BIT
NUMBER
FUNCTION
DESCRIPTION
RESET
STATE
7-0
PHINC 3
(MSB)
The 8-bit registers PHINC 0–3 are cascaded together to form a 32-bit PHINC value. The
PHINC value is the phase increment value of the color subcarrier generation NCO. When the
BT.656 ancillary data is selected as the PHINC source, the PHINC registers may be read to
determine the last PHINC value loaded via the selected interface.
00
H
HMP8170, HMP8171, HMP8172, HMP8173