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MGA-53543 Datasheet(Fiches technique) 2 Page - Agilent(Hewlett-Packard)

Numéro de pièce MGA-53543
Description  50 MHz to 6 GHz High Linear Amplifier
Télécharger  14 Pages
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Fabricant  HP [Agilent(Hewlett-Packard)]
Site Internet  http://www.home.agilent.com
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MGA-53543 Absolute Maximum Ratings[1]
Symbol
Parameter
Units
Absolute Maximum
V
in
Maximum Input Voltage
V
0.8
V
d
Supply Voltage
V
5.5
Pd
Power Dissipation[2]
mW
400
Pin
CW RF Input Power
dBm
13
θ
jc
Thermal Resistance[3]
°C/W
130
T
j
Junction Temperature
°C
150
T
STG
Storage Temperature
°C
-65 to 150
Notes:
1. Operation of this device in excess of any of
these limits may cause permanent damage.
2. Source lead temperature is 25
°C. Derate
7.7mW/
°C for T
L > 98°C
3. Thermal resistance measured using 150
°C
Liquid Crystal Measurement Technique.
Electrical Specifications
Tc = +25°C, Zo = 50 Ω, Vd = 5V, unless noted
Symbol
Parameter and Test Condition
Frequency
Units
Min.
Typ.
Max.
σ [3]
Id
Current Drawn
N/A
mA
40
54
70
2.7
NF [1]
Noise Figure
2.4 GHz
1.9
1.9 GHz
dB
1.5
1.9
0.06
0.9 GHz
1.3
Gain [1]
Gain
2.4 GHz
15.1
1.9 GHz
dB
14
15.4
17.0
0.25
0.9 GHz
17.4
OIP3[1,2]
Output Third Order Intercept Point
2.4 GHz
38.7
1.9 GHz
dBm
36
39.1
1.89
0.9 GHz
39.7
P1dB[1]
Output Power at 1 dB Gain Compression
2.4 GHz
18.3
1.9 GHz
dBm
18.6
0.9 GHz
19.3
PAE[1]
Power Added Effciency at P1dB
1.9 GHz
%
29.7
0.9 GHz
%
28.3
RLin
[1]
Input Return Loss
2.4 GHz
-12.7
1.9 GHz
dB
-13.2
0.9 GHz
-11.1
RL
out
[1]
Output Return Loss
2.4 GHz
-25.1
1.9 GHz
dB
-14.3
0.9 GHz
-14.4
ISOL[1]
Isolation |s12|
2
1.9 GHz
dB
-23.4
0.9 GHz
-22.3
Notes:
1. Measurements obtained from a test circuit described in Figure 1. Input and output tuners tuned for maximum OIP3 while keeping VSWR better than 2:1.
Data corrected for board losses.
2. I) Output power level and frequency of two fundamental tones at 1.9 GHz: F1 = 5.49 dBm, F2 = 5.49 dBm, F1 = 1.905 GHz, and F2 = 1.915 GHz.
II) Output power level and frequency of two fundamental tones at 900 MHz: F1 = -0.38 dBm, F2 = -0.38 dBm, F1 = 905 MHz, and F2 = 915 MHz.
3. Standard deviation data are based on at least 500 pieces sample size taken from 8 wafer lots. Future wafers allocated to this product may have nominal
values anywhere between the upper and lower spec limits.
Figure 1. Block Diagram of 1.9 GHz Test Fixture.
Input Gamma &
Transmission Line
ΓSource = 0.38 ∠ 156°
(0.7 dBm Loss)
RF
Output
RF
Input
Vd
Output Gamma &
Transmission Line with
Bias Tee
ΓLoad = 0.05 ∠ 45°
(0.85 dBm Loss)




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