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What is AMMP-6125?

This electronic component, produced by the manufacturer "AVAGO", performs the same function as "10-24 GHz x2 Frequency Multiplier".


AMMP-6125 Datasheet PDF - AVAGO

Part Number AMMP-6125
Description 10-24 GHz x2 Frequency Multiplier
Manufacturers AVAGO 
Logo AVAGO Logo 


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AMMP-6125
10-24 GHz x2 Frequency Multiplier
Data Sheet
Description
The AMMP-6125 is an easy-to-use surface mounted
packaged integrated frequency multiplier (x2) that
operates from 10 to 24 GHz output frequency. It has in-
tegrated amplification, matching, harmonic suppression,
and bias networks. 15 dBc min. of harmonic rejection is
delivered. The input/output are matched to 50 and
fully DC blocked. This MMIC is a cost effective alternative
to hybrid (discrete-FET) amplifiers that require complex
tuning and assembly process.
Functional Block Diagram
Vd1 Vg Vd2
1 23
IN
8
X2
OUT
4
NC NC NC
7 65
Pin Function
1 Vd1
2 Vg
3 Vd2
4 RF_OUT
5 NC
6 NC
7 NC
8 RF_IN
Features
 5 x 5 mm surface mount package
 Wide frequency operation: 10-24 GHz (Output)
 50 Input and Output Match
 40° C to +85° C operation
 Output Power of +21.5 dBm Typical
 Fo, 3xFo, 4Fo Rejection: 15 dBc min
Applications
 Microwave Radio Systems
 VSAT
 Satellite Up/Down Link
 Test Equipment
Package Diagram
123
8 GND 4
RoHS-Exemption
Please refer to hazardous substances table on page 8.
765
TOP VIEW
Attention: Observe Precautions for
handling electrostatic sensitive devices.
ESD Machine Model: 40V
ESD Human Body Model: 150V
Refer to Avago Application Note A004R:
Electrostatic Discharge Damage and Control.

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AMMP-6125 equivalent
Selected performance plots
All data measured on a Rogers 4003 demo board at Vd1 = 3.5 V, Vd2 = 5 V, Vg = -1.2 V, TA = 25° C, Pin = 0 dBm and 50
at all ports, unless otherwise specified.
30 25
20
10
0
-10
1H
-20
2H
3H
4H
-30
10 12 14 16 18 20 22 24 26 28
Output Frequency (GHz)
20
15
10
5 Pin = -6 dBm
Pin = -4 dBm
0 Pin = -2 dBm
Pin = 0 dBm
-5 Pin = +2 dBm
Pin = +4 dBm
-10
10 12 14 16 18 20 22 24 26 28
Output Frequency (GHz)
Figure 1. Output Power vs. Output Frequency @ Pin = 0 dBm
Figure 2. Output Power [2H] vs Output Frequency Over Pin
25 25
20 20
15 15
10 10
5 25° C
-40° C
85° C Pin = -6 dBm
0
10 12 14 16 18 20 22 24 26 28
Output Frequency (GHz)
Figure 3. Output Power vs. Output Frequency @ Pin = -6 dBm overTemperature
5 25° C
-40° C
85° C Pin = 0 dBm
0
10 12 14 16 18 20 22 24 26 28
Output Frequency (GHz)
Figure 4. Output Power vs. Output Frequency @ Pin = 0 dBm over Temperature
25 25
20 20
15 15
10 10
5 25° C
-40° C
85° C
Pin = +2 dBm
0
10 12 14 16 18 20 22 24 26 28
Output Frequency (GHz)
Figure 5. Output Power vs. Output Frequency @ Pin = +2 dBm over Temperature
5 25° C
-40° C
85° C
Pin = +4 dBm
0
10 12 14 16 18 20 22 24 26 28
Output Frequency (GHz)
Figure 6. Output Power vs. Output Frequency @ Pin = +4 dBm over Temperature
5


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Part Details

On this page, you can learn information such as the schematic, equivalent, pinout, replacement, circuit, and manual for AMMP-6125 electronic component.


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