50MHz to 1000MHz High-Linearity, Serial/
Parallel-Controlled Analog/Digital VGA
Typical Operating Characteristics (continued)
( V CC = +3.3V, HC mode , both attenuators set for maximum gain, P IN = -20dBm, f RF = 200MHz, and T C = +25°C, internal DAC refer-
ence used, unless otherwise noted.)
2nd HARMONIC
80
vs. ANALOG ATTENUATOR STATE
P OUT = 0dBm
110
3rd HARMONIC vs. RF FREQUENCY
P OUT = 3dBm
110
3rd HARMONIC vs. RF FREQUENCY
P OUT = 3dBm
70
T C = +25 ° C
RF = 200MH z
V CC = 3.3V
100
T C = +25 ° C
V CC = 3.3V
100
V CC = 3.3V
60
90
80
T C = +85 ° C
90
80
V CC = 3.6V
50
T C = -40 ° C
T C = +85 ° C
70
70
40
30
60
50
T C = -40 ° C
60
50
V CC = 3.0V
0
32
64
96
128 160 192 224 256
50
250
450
650
850
1050
50
250
450
650
850
1050
90
DAC CODE
3rd HARMONIC
vs. DIGITAL ATTENUATOR STATE
P OUT = 0dBm
110
RF FREQUENCY (MHz)
3rd HARMONIC
vs. ANALOG ATTENUATOR STATE
P OUT = 0dBm
70
RF FREQUENCY (MHz)
OIP2 vs. RF FREQUENCY
P OUT = 0dBm/TONE
85
T C = +25 ° C, +85 ° C
RF = 200MH z
V CC = 3.3V
100
90
T C = +25 ° C
RF = 200MH z
V CC = 3.3V
60
T C = +25 ° C
V CC = 3.3V
T C = +85 ° C
80
80
70
50
75
T C = -40 ° C
60
T C = -40 ° C
T C = +85 ° C
40
T C = -40 ° C
70
50
30
0
4
8
12
16
20
24
28
32
0
32
64
96
128 160 192 224 256
50
250
450
650
850
1050
70
DIGITAL ATTENUATOR STATE (dB)
OIP2 vs. RF FREQUENCY
P OUT = 0dBm/TONE
70
DAC CODE
OIP2 vs. DIGITAL ATTENUATOR STATE
P OUT = 0dBm/TONE
70
RF FREQUENCY (MHz)
OIP2 vs. ANALOG ATTENUATOR STATE
P OUT = -3dBm/TONE
60
V CC = 3.3V
V CC = 3.6V
60
T C = +85 ° C
RF = 200MH z
V CC = 3.3V
60
T C = +85 ° C
RF = 200MH z
V CC = 3.3V
50
50
50
40
40
T C = +25 ° C
T C = -40 ° C
40
T C = -40 ° C
T C = +25 ° C
V CC = 3.0V
30
30
30
50
250
450
650
850
1050
0
4
8
12
16
20
24
28
32
0
32
64
96
128 160 192 224 256
RF FREQUENCY (MHz)
DIGITAL ATTENUATOR STATE (dB)
DAC CODE
______________________________________________________________________________________
17
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