Dual, SiGe, High-Linearity, 1200MHz to 1700MHz
Downconversion Mixer with LO Buffer/Switch
Typical Operating Characteristics (continued)
( Typical Application Circuit (see Table 1). V CC = 3.3V , f RF > f LO for a 140MHz IF, P RF = -5dBm, P LO = 0dBm, T C +25°C, unless
otherwise noted.)
2RF - 2LO RESPONSE vs. RF FREQUENCY
2RF - 2LO RESPONSE vs. RF FREQUENCY
2RF - 2LO RESPONSE vs. RF FREQUENCY
80
T C = +85°C
V CC = 3.3V
P RF = -5dBm
80
V CC = 3.3V
P RF = -5dBm
P LO = +3dBm
80
V CC = 3.6V
P RF = -5dBm
70
70
70
60
T C = +25°C
T C = -40°C
60
P LO = 0dBm
P LO = -3dBm
60
V CC = 3.3V
V CC = 3.0V
P LO = -6dBm
50
50
50
1200
1300
1400
1500
1600
1700
1200
1300
1400
1500
1600
1700
1200
1300
1400
1500
1600
1700
RF FREQUENCY (MHz)
3RF - 3LO RESPONSE vs. RF FREQUENCY
RF FREQUENCY (MHz)
3RF - 3LO RESPONSE vs. RF FREQUENCY
RF FREQUENCY (MHz)
3RF - 3LO RESPONSE vs. RF FREQUENCY
85
V CC = 3.3V
P RF = -5dBm
85
V CC = 3.3V
P RF = -5dBm
85
V CC = 3.6V
P RF = -5dBm
75
T C = +85°C
75
75
65
T C = -40°C
65
65
V CC = 3.3V
P LO = -6dBm, -3dBm, 0dBm, +3dBm
T C = +25°C
55
55
55
V CC = 3.0V
1200
1300
1400
1500
1600
1700
1200
1300
1400
1500
1600
1700
1200
1300
1400
1500
1600
1700
RF FREQUENCY (MHz)
INPUT P 1dB vs. RF FREQUENCY
RF FREQUENCY (MHz)
INPUT P 1dB vs. RF FREQUENCY
RF FREQUENCY (MHz)
INPUT P 1dB vs. RF FREQUENCY
15
V CC = 3.3V
15
V CC = 3.3V
15
V CC = 3.6V
14
13
T C = +85°C
14
13
14
13
V CC = 3.3V
12
11
T C = -40°C
T C = +25°C
12
11
P LO = -6dBm, -3dBm, 0dBm, +3dBm
12
11
V CC = 3.0V
10
10
10
1200
1300
1400
1500
1600
1700
1200
1300
1400
1500
1600
1700
1200
1300
1400
1500
1600
1700
RF FREQUENCY (MHz)
RF FREQUENCY (MHz)
RF FREQUENCY (MHz)
13
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