AMMC-6220-W10 Avago Technologies US Inc., AMMC-6220-W10 Datasheet

IC MMIC LO NOISE HI GAIN 6-20GHZ

AMMC-6220-W10

Manufacturer Part Number
AMMC-6220-W10
Description
IC MMIC LO NOISE HI GAIN 6-20GHZ
Manufacturer
Avago Technologies US Inc.
Type
General Purposer
Datasheet

Specifications of AMMC-6220-W10

Function
Amplifier
Frequency Range
6GHz To 20GHz
Noise Figure Typ
2dB
Supply Current
55mA
Supply Voltage Range
3V
Frequency Max
20GHz
Frequency Min
6GHz
Supply Voltage Max
7V
Gain
23dB
Number Of Channels
1
Frequency (max)
20GHz
Power Supply Requirement
Single
Single Supply Voltage (typ)
3V
Package Type
Chip
Dual Supply Voltage (min)
Not RequiredV
Dual Supply Voltage (typ)
Not RequiredV
Dual Supply Voltage (max)
Not RequiredV
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Other names
516-1850
AMMC-6220-W10

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
AMMC-6220-W10
Manufacturer:
Avago Technologies
Quantity:
135
AMMC - 6220
6 - 20 GHz Low Noise Amplifier
Data Sheet
Description
Avago Technologies’ AMMC-6220 is a high gain, low-
noise amplifier that operates from 6 GHz to 20 GHz. This
LNA provides a wide-band solution for system design
since it covers several bands, thus, reduces part inven-
tory. The device has input / output match to 50 Ohm, is
unconditionally stable and can be used as either primary
or sub-sequential low noise gain stage. By eliminating
the complex tuning and assembly processes typically
required by hybrid (discrete-FET) amplifiers, the AMMC-
6220 is a cost-effective alternative in the 6 - 20 GHz com-
munications receivers. The backside of the chip is both RF
and DC ground. This helps simplify the assembly process
and reduces assembly related performance variations
and costs. It is fabricated in a PHEMT process to provide
exceptional noise and gain performance. For improved
reliability and moisture protection, the die is passivated
at the active areas.
AMMC-6220 Absolute Maximum Ratings
Note:
1. Operation in excess of any one of these conditions may result in permanent damage to this device
Symbol
V
V
I
P
T
T
T
d
ch
stg
max
d
in
g
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
Parameters/Conditions
Positive Drain Voltage
Gate Supply Voltage
Drain Current
CW Input Power
Operating Channel Temp.
Storage Case Temp.
Maximum Assembly Temp (60 sec max)
[1]
Chip Size: 1700 x 800 µm (67 x 31.5 mils)
Chip Size Tolerance: ± 10 µm (±0.4 mils)
Chip Thickness: 100 ± 10 µm (4 ± 0.4 mils)
Pad Dimensions: 100 x 100 µm (4 ± 0.4 mils)
Features
• Wide frequency range: 6 - 20 GHz
• High gain: 23 dB
• Low 50 Ω Noise Figure: 2.0 dB
• 50 Ω Input and Output Match
• Single 3V Supply Bias
Applications
• Microwave Radio systems
• Satellite VSAT, DBS Up/Down Link
• LMDS & Pt-Pt mmW Long Haul
• Broadband Wireless Access
• WLL and MMDS loops
(including 802.16 and 802.20 WiMax)
Units
V
V
mA
dBm
°C
°C
°C
Min.
-65
Max.
7
NA
100
15
+150
+150
+300

Related parts for AMMC-6220-W10

AMMC-6220-W10 Summary of contents

Page 1

... AMMC - 6220 GHz Low Noise Amplifier Data Sheet Description Avago Technologies’ AMMC-6220 is a high gain, low- noise amplifier that operates from 6 GHz to 20 GHz. This LNA provides a wide-band solution for system design since it covers several bands, thus, reduces part inven- tory. The device has input / output match to 50 Ohm, is unconditionally stable and can be used as either primary or sub-sequential low noise gain stage ...

Page 2

... AMMC-6220 DC Specifications/Physical Properties Symbol Parameters and Test Conditions I Drain Supply Current d (under any RF power drive and temperature Gate Supply Operating Voltage 800 (mA)) d(Q) [2] q Thermal Resistance ch-b (Backside temperature, T Notes: 1. Ambient operational temperature T =25°C unless otherwise noted Channel-to-backside Thermal Resistance (q backside temperature ( 25°C calculated from measured data AMMC-6220 RF Specifications (T = 25° Symbol Parameters and Test Conditions [6] Gain Small-signal Gain Noise Figure into Output Power at 1dB Gain Compres- 1dB ...

Page 3

... AMMC-6220 Typical Performances (T = 25° NOTE: These measurements are Ω test environment. Aspects of the amplifier performance may be improved over a more narrow bandwidth by application of additional conjugate, linearity, or low noise (Γopt) matching.Figure 1. Typical Gain   Frequency (GHz) Figure 1. Typical Gain 0 -10 -0 - Frequency (GHz) Figure 4. Typical Output Return Loss  degC  -0degC +8degC Frequency (GHz) Figure 7. Typical Gain (s21) over temperature ...

Page 4

... AMMC-6220 Typical Performances (T = 25° NOTE: These measurements are Ω test environment. Aspects of the amplifier performance may be improved over a more narrow bandwidth by application of additional conjugate, linearity, or low noise (Γopt) matching. 0 degC -0degC - +8degC -10 -1 -0 - - Frequency (GHz) Figure 10. Typical Output Return Loss over Tem- perature  Frequency (GHz) Figure 13. Typical Gain over Vdd (supply volt- age ...

Page 5

... AMMC-6220 Typical Scattering Parameters (Tc=25° Ω out S11 Freq GHz dB Mag Phase 4.000 -0.146 0.983 103.687 4.500 -1.392 0.852 74.728 5.000 -0.823 0.910 37.284 5.500 -1.961 0.798 -3.456 6.000 -5.151 0.553 -33.435 6.500 -7.415 0.426 -53.353 7.000 -10.150 0.311 -65.197 7 ...

Page 6

... AMMC-6220: Typical Scattering Parameters (Tc=25° Ω out S11 Freq GHz dB mag phase 4.0 -0.673 0.925 103.544 4.5 -1.492 0.842 74.318 5.0 -0.635 0.929 37.411 5.5 -2.032 0.791 -3.432 6.0 -4.747 0.579 -34.664 6.5 -7.598 0.417 -55.144 7.0 -10.093 0.313 -66.567 7 ...

Page 7

... The amount of epoxy used for the chip and/or shim attachment should be just enough to provide a thin fillet around the bottom perimeter of the chip or shim. The ground plan should be free of any residue that may jeopardize electrical or mechanical attachment. In Figure 19. AMMC-6220 Schematic  The location of the RF bond pads is shown in Figure and V bond pads 12. Note that all the RF input and output ports are Ground-Signal-Ground configuration ...

Page 8

... Gold Plated Shim (Optional) Figure 21. AMMC-6220 Assembly diagram Ordering Information: AMMC-6220-W10 = 10 devices per tray AMMC-6220-W50 = 50 devices per tray For product information and a complete list of distributors, please go to our web site: Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies Limited in the United States and other countries. ...

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