hsp50214 Intersil Corporation, hsp50214 Datasheet - Page 20

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hsp50214

Manufacturer Part Number
hsp50214
Description
Programmable Downconverter
Manufacturer
Intersil Corporation
Datasheet

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Using AGC loop gain, the AGC range, and expected error
detector output, the gain adjustments per output sample for
the loop filter section of the Digital AGC can be given by:
AGC Slew Rate
The loop gain determines the growth rate of the sum in the
loop accumulator which, in turn, determines how quickly the
AGC gain traces the transfer function given in Figures 21
and 22. Since the log of the gain response is roughly linear,
the loop response can be approximated by multiplying the
† †
IFIR
QFIR
SERIAL
Controlled via microprocessor interface.
Indicates additional resolution of the A version.
OUT
P
16
16
26
26
=
1.5dB THRESH
M
MSB = 0
LG
MSB = 0
2
4
18
4
EXP=2
AGC MULTIPLIER/SHIFTER
18
2
15 E
NNNN
13
AGC LOOP FILTER
MAG *1.64676
LG
9
MANTISSA =
01.XXXXXXX(XXXXXXX)
LIMIT
DET
FIGURE 23. AGC BLOCK DIAGRAM
LOWER LIMIT
LIMIT
DET
UPPER LIMIT
(EQ. 18)
LIMIT
DET
HSP50214
+
IAGC
18
QAGC
(RANGE = 0 TO 2.18344)
18
20
††
maximum AGC gain error by the loop gain. The expected
range for the AGC rate is ~ 0.00004 to 1.23dB/symbol time
for a threshold of 1/2 scale. See the notes at the bottom of
Table 9 for calculation of the AGC Response times. The
maximum AGC Response is given by:
Since the AGC error is scaled to adjust the gain, the loop
settles asymptotically to its final value. The loop settles to
the mean of the signal.
AGC Response
INTERPOLATING
RE-SAMPLING
AGCGNSEL
FIR FILTERS
HALFBAND
13
FILTERS
AND
AGC ERROR SCALING
Max
MANTISSA
=
Input(Cart/Polar Gain)(Error Det Gain) AG C
Loop Gain)(AGC Output Weighting)
(RANGE = 0 TO 1)
4
(RANGE = 0 TO 2.3)
EXP
MAGNITUDE
4
COORDINATE
CONVERTER
(G = 1.64676)
CARTESIAN
POLAR
TO
DETECTOR
ERROR
AGC
13
(EQ. 19)

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