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PDF AMMC-5040 Data sheet ( Hoja de datos )

Número de pieza AMMC-5040
Descripción 20 - 45 GHz GaAs Amplifier
Fabricantes AVAGO 
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AMMC-5040
20 – 45 GHz GaAs Amplifier
Data Sheet
Description
The AMMC-5040 is a high gain broadband amplifier
designed for both military applications and commercial
communication systems. This four-stage amplifier has
input and output matching circuitry for use in 50 ohm
environments. It is fabricated using PHEMT integrated
circuit structures that provide exceptional broadband
performance. The backside of this chip is both RF and DC
ground. This simplifies the assembly process and reduces
assembly related performance variations and costs. For
improved reliability and moisture protection, the die is
passivated at the active areas. This MMIC is a cost effective
alternative to hybrid (discrete-FET) amplifiers that require
complex tuning and assembly process.
Package
Features
x Frequency range: 20 – 45 GHz
x High gain: 25 dB
x Gain flatness: ±1.5 dB
x Return loss:
Input: 17 dB, Output: 11 dB
x Output power:
P = 21 dBm at 38 GHz
-1dB
P = 22.5 dBm at 38 GHz
-3dB
Applications
x Broadband gain block
x Broadband driver amplifier
x Point-to-point radio
x LMDS
x EW
x Instrumentation
x Frequency Multiplier (X2 and X3)
Chip Size:
1720 x 760 μm (67.7 x 29.9 mils)
Chip Size Tolerance: ±10 μm (±0.4 mils)
Chip Thickness: 100 ± 10 μm (4 ± 0.4 mils)
Pad Dimensions: 75 x 75 μm (3 ± 0.4 mils)

1 page




AMMC-5040 pdf
AMMC-5040 RF Performance for Frequency Multiplier Applications
Typical Performance as a X2 Frequency Multiplier, Input Power Optimized for Conversion Gain[1]
Input Frequency
(GHz)
10
11
12
13
14
15
16
17
18
19
20
21
22
23
Input Power
(dBm)
6
6
6.5
6.5
7.5
7.5
7.5
7.5
7
7
3
5
5
5
Output Frequency
(GHz)
20
22
24
26
28
30
32
34
36
38
40
42
44
46
Output Power
(dBm)
18.2
18.9
20.5
20.8
20.0
19.6
18.0
16.0
11.7
7.1
7.0
10.7
11.3
11.7
Conversion Gain
(dB)
12.2
12.9
14.0
14.3
12.4
12.1
10.5
8.5
4.7
0.1
4.0
5.7
6.3
6.7
Typical Performance as a X2 Frequency Multiplier, Input Power Optimized for Output Power [1]
Input Frequency
(GHz)
10
11
12
13
14
15
16
Input Power
(dBm)
10
10
10
9.5
9.5
9.5
9.5
Output Frequency
(GHz)
20
22
24
26
28
30
32
Output Power
(dBm)
20.2
20.9
22.0
22.2
20.8
20.6
19.0
Conversion Gain
(dB)
10.2
10.9
12.0
12.7
11.3
11.1
9.5
Typical Performance as a X3 Frequency Multiplier [1]
Input Frequency
(GHz)
7
8
9
10
11
12
13
14
Input Power
(dBm)
14.3
14.2
15.1
15.9
15.8
15.8
15.7
15.6
Output Frequency
(GHz)
21
24
27
30
33
36
39
42
Output Power
(dBm)
19.6
20.6
20.0
18.6
16.0
14.7
12.9
10.0
Conversion Gain
(dB)
5.3
6.4
4.9
2.6
0.2
-1.0
-2.7
-5.5
Note:
1. T = 25°C. Refer to “Multiplier Biasing and Operation” section for bias conditions for operation as a multiplier.
5

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