ammc-3040 Avago Technologies, ammc-3040 Datasheet

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ammc-3040

Manufacturer Part Number
ammc-3040
Description
18 - 36 Ghz Double-balanced Mixer With Integrated Lo Amplifer/multiplier
Manufacturer
Avago Technologies
Datasheet

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ammc-3040-W10
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AMMC-3040
18 - 36 GHz Double-Balanced Mixer
with Integrated LO Amplifier/Multiplier
Data Sheet
Description
The AMMC-3040 is a broadband Double-Balanced Mixer
(DBM) with an integrated high-gain LO amplifier. This
MMIC can be used as either an up converter or down
converter in microwave or millimeter wave applications.
If desired, the LO amplifier can be biased to function as a
frequency multiplier to enable second harmonic mixing
of the LO input. The mixer section ofthe AMMC-3040
is fabricated using a suspended metal system to create
a unique, broadside-coupled balun structure (patent
pending) to achieve exceptional bandwidth. The MMIC
provides repeatable conversion loss without tuning, mak-
ing it highly suitable for automated assembly processes.
For improved reliability and moisture protection, the die
is passivated at the active areas.
AMMC-3040 Absolute Maximum Ratings
Symbol
V
V
I
T
T
T
T
Note:
1. Operation in excess of any one of these conditions may result in
permanent damage to this device.
dd
ch
stg
max
b
D1, 2, 3, 4
G1, 2, 3, 4
Parameters/Conditions
Positive Drain Voltage
Gate Voltage
Total Drain Current
Operating Channel Temp.
Operating Backside Temp.
Storage Case Temp.
Maximum Assembly Temp.
(60 sec max)
Note: These devices are ESD sensitive. The following precautions are strongly recommended:
Ensure that an ESD approved carrier is used when dice are transported from one destination to another.
Personal grounding is to be worn at all times when handling these devices.
Units
V
V
mA
°C
°C
°C
°C
[1]
Min. Max.
-3.0
-55
-65
5
0.5
550
+160
+165
+300
Features
• High IIP3: +23 dBm
• Wide bandwidth
• RF: 18-36 GHz
• LO: 18-36 GHz
• IF: DC-3 GHz
• Fundamental or subharmonic mixing
• Up or down converter
• Conversion loss: 9.5 dB
• P1dB: +17 dBm
• Low LO drive power: +2 dBm
• Usable to 42 GHz
Applications
• Point-to-point radio
• LMDS
• SATCOM
Chip Size: 2520 x 760 µm (99.2 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)

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ammc-3040 Summary of contents

Page 1

... If desired, the LO amplifier can be biased to function as a frequency multiplier to enable second harmonic mixing of the LO input. The mixer section ofthe AMMC-3040 is fabricated using a suspended metal system to create a unique, broadside-coupled balun structure (patent pending) to achieve exceptional bandwidth. The MMIC provides repeatable conversion loss without tuning, mak- ing it highly suitable for automated assembly processes ...

Page 2

... AMMC-3040 DC Specifications/Physical Properties Symbol Parameters and Test Conditions V Drain Supply Operating Voltage D1 First Stage Drain Supply Current 3 -0 Total Drain Supply Current for Stages 2, 3 and Gate Supply Operating Voltages (I G1 ...

Page 3

dBm dBm dBm FREQUENCY (GHz) Figure 3. Conversion loss, up conversion 4.5 ...

Page 4

dBm dBm dBm FREQUENCY (GHz) Figure 9. Input power conversion loss compression, ...

Page 5

... 760 480 568 0 98 Figure 15. AMMC-3040 Bond pad locations, dimensions in microns Drain DD 100 pF Supply Feed Cb Gold Plated Shim (optional) LO 100 Gate Cb GG Supply Feed (a) Fundamental LO. Single drain and single gate supply assembly for using the LO amplifier in fundamental frequency mixer applications ...

Page 6

... Biasing for Sub-Harmonic Mixing The LO amplifier in the AMMC-3040 can also be used as a frequency doubler. Optimum conversion efficiency as a doubler is obtained with an input power level dBm. Frequency multiplication is achieved by reducing the bias on the first stage FET to efficiently generate har- monics. The remaining three stages are then used to provide amplification ...

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