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PDF AMMC-6120 Data sheet ( Hoja de datos )

Número de pieza AMMC-6120
Descripción 8-20 GHz Output x2 Active Frequency Multiplier
Fabricantes Agilent 
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Agilent AMMC-6120
8-20 GHz Output x2
Active Frequency Multiplier
Data Sheet
Chip Size: 1600 x 1000 µm (64 x 40 mils)
Chip Size Tolerance: ± 10 µm (± 0.4 mils)
Chip Thickness: 100 ± 10 µm (4 ± 0.4 mils)
Pad Dimensions: 120 x 80 µm (5x3 ± 0.4 mils)
Features
• Input frequency range: 4-10 GHz
• Broad input power range: -3 to
+6 dBm
• Output power: +14 dBm
(Pin = +2 dBm)
• Fundamental Suppression of 25 dBc
• 50 Input and Output Match
• Supply bias of -1.2 V, 4.5 V and
85 mA
Description
Agilent’s AMMC-6120 is an easy-
to-use x2 active frequency
multiplier MMIC designed for
commercial communication
systems. Though capable of
doubling to 24 GHz with reduced
fundamental suppression, the
MMIC is designed to take a 4 to 10
GHz input and double it to 8 to 20
GHz. It has integrated output
amplifier, matching harmonic
suppression, and bias networks.
The input/output are matched to
50 and fully DC blocked. The
MMIC is fabricated using PHEMT
technology. The backside of this
die is both RF and DC ground.
This helps simplify the assembly
process and reduces assembly
related performance variations
and costs. This MMIC is a cost
effective alternative to bulky
hybrid FET and diode doublers
that require high input drive
power, have high C.L. and poor
fundamental suppression.
Applications
• Microwave radio systems
• Satellite VSAT, DBS Up/Down Link
• LMDS & Pt-Pt mmW Long Haul
• Broadband Wireless Access
(including 802.16 and 802.20
WiMax)
• WLL and MMDS loops
• Commercial grade military
AMMC-6120 Absolute Maximum Ratings[1]
Symbol Parameters/Conditions
Units
Vd
Positive Drain Voltage
V
Vg Gate Supply Voltage
V
Id Drain Current
mA
Pin CW Input Power
dBm
Tch
Operating Channel Temp.
°C
Tstg Storage Case Temp.
°C
Tmax Maximum Assembly Temp. °C
(60 sec. max.)
Min.
-3.0
-65
Max.
7
0.5
120
15
+150
+150
+300
Note:
1. Operation in excess of any one of these conditions may result in permanent damage to this device.
Attention: Observe precautions for handling electrostatic sensitive devices.
ESD Machine Model (Class A)
ESD Human Body Model (Class 0)
Refer to Agilent Application Note A004R: Electrostatic Discharge Damage and Control.

1 page




AMMC-6120 pdf
VdAB
VgD
Vdd
RFin RFout
Figure 10. AMMC-6120 simplified schematic.
1000
0
660
RFin
715
VdAB
1310 1478
VgD Vdd
660
RFI
472
RFout
0
0
Figure 11. AMMC-6120 bonding pad locations.
1600
Vd
50 OHM LINE
RFin
Figure 12. AMMC-6120 assembly diagram.
5
Vg
/100 pF
/100 pF
VdAB
VgD Vdd
50 OHM LINE
RFout

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