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PDF MGA-62563 Data sheet ( Hoja de datos )

Número de pieza MGA-62563
Descripción Current-Adjustable / Low Noise Amplifier
Fabricantes Agilent 
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Agilent MGA-62563
Current-Adjustable,
Low Noise Amplifier
Data Sheet
www.DataSheet4U.com
Description
Agilent’s MGA-62563 is an
economical, easy-to-use GaAs
MMIC amplifier that offers
excellent linearity and low noise
figure for applications from 0.1
to 3 GHz. Packaged in an minia-
ture SOT-363 package, it requires
half the board space of a SOT-143
package.
One external resistor is used to
set the bias current taken by the
device over a wide range. This
allows the designer to use the
same part in several circuit
positions and tailor the linearity
performance (and current
consumption) to suit each posi-
tion. The MGA-62563 is normally
operating with Id set in the 20-
80mA range
Pin Connections and
Package Marking
GND 1
GND 2
MGA-86563 Pkg
6
OUTPUT
and Vd
5 GND
INPUT 3
4 BIAS
Note:
Package marking provides orientation and
identification:
“62” = Device Code
“x” = Date code indicates the month of
manufacture.
Features
• Single +3V or +5V supply
• High linearity
• Low noise figure
• Miniature package
• Lead-free option available
Specifications at 500 MHz; 3V, 60 mA
(Typ.)
• 0.9 dB noise figure
• 32.9 dBm OIP3
• 22 dB gain
• 17.8 dBm P
1dB
The output of the amplifier is
matched to 50(below 2:1
VSWR) across the entire band-
width and only requires mini-
mum input matching. The ampli-
fier allows a wide dynamic range
by offering a 0.9 dB NF coupled
with a +32.9 dBm Output IP3. The
circuit uses state-of-the-art
E-pHEMT technology with proven
reliability. On-chip bias circuitry
allows operation from a single +3 V
or +5V power supply.
Attention:
Observe precautions for
handling electrostatic
sensitive devices.
ESD Machine Model (Class A)
ESD Human Body Model (Class 1A)
Refer to Agilent Application Note A004R:
Electrostatic Discharge Damage and Control.

1 page




MGA-62563 pdf
MGA-62563 Typical Performance, Vd = 3V, Ids = 60 mA at 50Input and Output
25
20
-40°C
25°C
85°C
15
10
5
0
0 500 1000 1500 2000 2500 3000
FREQUENCY (MHz)
Figure 8. Gain vs. Frequency (3V 60 mA).
2
-40°C
25°C
1.5 85°C
1
0.5
0
0 500 1000 1500 2000 2500 3000
FREQUENCY (MHz)
Figure 9. NF vs. Frequency (3V 60 mA).
37
-40°C
35 25°C
85°C
33
31
29
27
0 500 1000 1500 2000 2500 3000
FREQUENCY (MHz)
Figure 10. OIP3 vs Frequency (3V 60mA)
24
-40°C
22 25°C
85°C
20
18
16
14
0 500 1000 1500 2000 2500 3000
FREQUENCY (MHz)
Figure 11. OP1dB vs. Frequency (3V 60 mA).
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5

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MGA-62563 arduino
MGA-62563 Typical Scattering Parameters, TC = 25°C, ZO = 50, Vd = 3V, Ids = 60 mA
Freq.
GHz
S11
Mag. Ang.
S21
dB Mag. Ang.
S12
Mag. Ang.
0.1
0.185 -82.272
22.91 13.982 155.827
0.042 5.4
0.2 0.187 -90.11
22.63 13.537 153.346
0.042 5.474
0.3
0.193 -98.147
22.31 13.054 150.578
0.042 5.636
0.4
0.203 -106.14
21.97 12.545 147.524
0.042 5.912
0.5
0.217 -114.27
21.57 11.986 143.942
0.042 6.346
0.6
0.233 -121.367
21.18 11.459 140.212
0.041 6.892
0.7
0.252 -127.882
20.78 10.945 136.065
0.041 7.583
0.8
0.272 -133.795
20.39 10.457 131.465
0.041 8.43
0.9
0.295 -138.842
20.02 10.021 126.434
0.041 9.417
1
0.317 -143.232
19.66 9.611 121.342
0.042 10.645
1.1
0.34 -147.643
19.26 9.179 116.107
0.042 12.083
1.2
0.358 -151.668
18.87 8.78 111.387
0.042 13.52
1.3
0.371 -154.625
18.48 8.397 106.965
0.043 14.99
1.4
0.378 -156.903
18.1 8.035 102.832
0.044 16.437
1.5
0.385 -159.101
17.71 7.684 98.886
0.045 17.798
1.6
0.392 -161.727
17.32 7.349 95.185
0.046 19.056
1.7
0.397 -164.752
16.92 7.015 91.424
0.048 20.227
1.8
0.4 -167.685
16.55 6.72 88.093
0.049 21.207
1.9
0.4 -170.686
16.19 6.446 84.931
0.051 22.085
2
0.4 -173.615
15.84 6.195 81.892
0.052 22.821
2.5
0.401 171.986
14.29 5.184 67.423
0.063 24.202
3
0.391 153.64
12.93 4.432 53.871
0.074 22.323
3.5 0.418 141.02 11.87 3.923 39.725
0.088 16.919
4
0.461 127.008
10.81 3.472 26.244
0.099 11.289
4.5
0.548 119.58
9.83 3.1
11.923
0.108 4.074
5
0.615 105.771
8.73 2.733 -1.958
0.119 -3.141
5.5 0.674 97.228 7.69 2.425 -13.281 0.126 -10.835
6
0.701 85.967
7.26 2.308 -24.509
0.131 -17.126
6.5 0.698 77.659 6.44 2.099 -35.324 0.138 -24.617
7
0.69 66.448
6.33 2.072 -47.318
0.145 -31.049
7.5 0.677 55.492 5.55 1.895 -59.77
0.15 -39.087
8
0.673 45.318
5.18 1.816 -68.839
0.157 -45.822
9
0.718 26.713
4.61 1.701 -88.8
0.167 -62.304
10
0.778 15.285
4.14 1.61 -104.215
0.168 -76.006
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S22
Mag. Ang.
0.129
0.135
0.141
0.148
0.154
0.159
0.163
0.167
0.171
0.173
0.175
0.177
0.172
0.163
0.153
0.144
0.132
0.122
0.113
0.104
0.059
0.029
0.024
0.043
0.083
0.057
0.026
0.096
0.165
0.259
0.284
0.294
0.323
0.364
-164.437
-168.363
-172.09
-175.737
-179.503
177.105
173.986
171.256
168.886
167.409
166.393
165.719
164.894
164.215
164.02
163.07
162.822
162.927
163.177
163.203
160.575
162.52
14.44
17.922
3.197
18.181
-8.344
123.432
105.103
92.547
78.001
70.774
48.33
24.415
K-factor
1.09
1.1
1.12
1.15
1.17
1.22
1.25
1.27
1.3
1.3
1.32
1.35
1.36
1.38
1.4
1.42
1.42
1.44
1.44
1.47
1.46
1.46
1.37
1.32
1.22
1.14
1.05
1.01
1.06
1.06
1.14
1.14
1.07
0.99
Typical Noise Parameters at 25°C,
TC = 25°C, ZO = 50, Vd = 3V, Ids = 60 mA
Freq
Fmin
Γopt
Γopt
Rn/50
GHz dB Mag. Ang.
0.5 0.79 0.08 57.8 0.12
1
0.65 0.07
168.2
0.07
1.5
0.76 0.12
-176.7
0.07
2
0.87 0.13
149.3
0.08
2.5 0.93 0.16 -179 0.08
3
0.96 0.23
-164.8
0.08
3.5 1.11 0.24 -150 0.09
4
1.28 0.27
-142.7
0.11
4.5
1.36 0.33
-133.7
0.12
5 1.44 0.38 -123 0.15
5.5 1.47 0.43 -114 0.19
6
1.63 0.45
-103.6
0.25
6.5 1.69 0.5 -94.5 0.34
7
1.77 0.54
-85.3 0.43
7.5
1.94 0.58
-75.1 0.57
8
2.07 0.6
-64.9 0.77
8.5
2.25 0.64
-54.6 1
9
2.4 0.67
-45.9 1.28
9.5
2.25 0.75
-39.2 1.6
10
2.44 0.74
-34
1.91
11
NF@50
dB
0.8
0.65
0.77
0.89
0.97
1.06
1.22
1.43
1.61
1.79
1.97
2.2
2.47
2.71
3.08
3.42
3.89
4.31
4.77
5.14
30
25
20
15
10
5
0
0 2 4 6 8 10 12
FREQUENCY (GHz)
Figure 32. MAG vs. Frequency.

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