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SL2524NA Ver la hoja de datos (PDF) - Mitel Networks

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SL2524NA Datasheet PDF : 17 Pages
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SL2524
ELECTRICAL CHARACTERISTICS - SL2524C
Guaranteed at the following test conditions unless otherwise stated
Frequency = 200MHz, Tamb = +25°C, Input power = -30dBm, VCC = 6V ±0.1V, Source Impedance = 50.
Load impedance = 50, Test Circuit = Fig. 4, RSET = 300. Tested as a dual stage.
Characteristic
Value
Units
Min
Typ
Max
Conditions
Supply current
70
87
100
mA
Small signal gain (dual stage,
9.6
single ended)
9.6
9.4
9.0
11.4
13.0
11.6
13.6
11.3
13.2
11.0
13.0
dB Tamb = +25°C f = 25MHz See Note 3
dB Tamb = -30°C f = 200MHz See Notes 2, 3
dB Tamb = +25°C f = 200MHz See Note 3
dB Tamb = +85°C f = 200MHz See Notes 2, 3
9.2
11.2
13.2
dB Tamb = -30°C f = 500MHz See Notes 1, 3
8.8
10.7
12.6
dB Tamb = +25°C f = 500MHz See Note 1
7.7
9.7
11.7
dB Tamb = +85°C f = 500MHz See Notes 1, 3
Detected output current (max) 3.20
3.45
2.95
3.25
3.05
3.30
3.00
3.30
2.70
3.10
2.80
3.15
2.75
3.10
3.70
3.55
3.55
3.50
3.30
3.55
3.75
mA Tamb = +25°C, VIN = 0dBm, f = 25MHz
mA Tamb = -30°C, VIN = 0dBm, f = 200MHz
See Note 2
mA Tamb = +25°C, VIN = 0dBm, f = 200MHz
mA
Tamb
=
+85°C,
V
IN
=
0dBm,
f
=
200MHz
See Note 2
mA Tamb = -30°C, VIN = 0dBm, f = 500MHz
See Note 1
mA Tamb = +25°C, VIN = 0dBm, f = 500MHz
See Note 1
mA Tamb = +85°C, VIN = 0dBm, f = 500MHz
See Note 1
Detected output current
(no signal)
0.75
0.95
0.70
0.93
0.70
0.90
1.25
1.20
1.20
mA Tamb = -30°C, See Note 2
mA Tamb = +25°C, See Note 2
mA Tamb = +85°C, See Note 2
Upper cut off frequency (RF)
1000
MHz -3dB w.r.t 200MHz, Tamb = +25°C
See Note 1
Lower cut off frequency (RF)
0.35
2
MHz -3dB w.r.t 200MHz, Tamb = +25°C
Detector cut off frequency
600
MHz 50% O/P current w.r.t. 200MHz
Limited IF O/P voltage
105
135
175
mV I/P power = 0dBm, Tamb = +25°C
Phase variation with input level
(normalised to -30dBm)
0±2.0
-4.0±2.0
Degree Frequency = 70MHz, -55 to +3dBm
See Note 1
Degree Frequency = 200MHz, -55 to +3dBm
See Note 1
Limited O/P var with temp.
±12
±25
mV See Note 1
Noise figure
14
dB
Max I/P before overload
15
dBm
Input impedance
1
k1kin parallel with 2pF
Output impedance
50
NOTES
1. Parameter guaranteed but not tested
2. Tested at 25°C only, but guaranteed at temperature
3. Gain will typically increase by 6dB, when RF outputs use 1kloads in place of 50
4

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