50MHz to 1000MHz, 75dB Logarithmic
Detector/Controller
Typical Operating Characteristics (continued)
(Typical Application Circuit (Figure 1), V S = V CC = 3.3V, P IN = -10dBm, f IN = 100MHz, R1 = 0 Ω , R4 = 0 Ω , R L = 10k Ω , V PWDN = 0V,
TA = +25°C, unless otherwise noted.)
OUTPUT VOLTAGE ERROR vs. INPUT POWER
OUTPUT VOLTAGE vs. INPUT POWER
OUTPUT VOLTAGE ERROR vs. INPUT POWER
3
2
1
0
-1
f IN = 900MHz, T A = -40 ° C
NORMALIZED TO DATA AT +25 ° C
V CC = 2.7V
2.0
1.8
1.6
1.4
1.2
1.0
f IN = 1GHz
T A = +85°C
3
2
1
0
-1
f IN = 1GHz
NORMALIZED TO DATA AT +25 ° C
T A = +85°C
T A = -20°C
0.8
-2
V CC = 3.6V
V CC = 3.3V
V CC = 3.0V
0.6
T A = -40°C
-2
T A = -40°C
-3
-80
-70
-60
-50 -40 -30 -20
-10
0
0.4
-80
-70
-60
-50 -40 -30 -20
-10
0
-3
-80
-70
-60
-50 -40 -30 -20
-10
0
INPUT POWER (dBm)
OUTPUT VOLTAGE ERROR vs. INPUT POWER
INPUT POWER (dBm)
INPUT POWER (dBm)
OUTPUT VOLTAGE ERROR vs. INPUT POWER
3
2
f IN = 1GHz, T A = +85 ° C
NORMALIZED TO DATA AT +25 ° C
3
2
f IN = 1GHz, T A = -40 ° C
NORMALIZED TO DATA AT +25 ° C
V CC = 3.6V
1
0
1
0
V CC = 2.7V
-1
V CC = 2.7V
V CC = 3.0V
V CC = 3.3V
-1
-2
-3
-2
-3
V CC = 3.6V
V CC = 3.3V
V CC = 3.0V
-80
-70
-60
-50 -40 -30 -20
-10
0
-80
-70
-60
-50 -40 -30 -20
-10
0
2.0
INPUT POWER (dBm)
OUTPUT VOLTAGE vs. FREQUENCY
2.0
INPUT POWER (dBm)
OUTPUT VOLTAGE vs. FREQUENCY
1.8
P IN = +5dB      m
1.8
T A = +25°C, +85°C
1.6
1.4
1.2
P IN = -5dBm
P IN = -15dBm
P IN = -25dBm
P IN = -35dBm
1.6
1.4
1.2
P IN = -10dBm
P IN = -30dBm
T A = -40°C
1.0
0.8
P IN = -45dBm
P IN = -55dB        m
1.0
0.8
P IN = -45dBm
T A = +85 ° C
0.6
0.4
P IN = -65dB        m
0.6
0.4
P IN = -60dBm
T A = +25°C
T A = -40°C
0
200
400 600 800
1000
0
200
400 600 800
1000
FREQUENCY INPUT (MHz)
FREQUENCY INPUT (MHz)
7
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