AMMC-5618-W50 Avago Technologies US Inc., AMMC-5618-W50 Datasheet

IC MMIC AMP GAAS 3STAGE 6-20GHZ

AMMC-5618-W50

Manufacturer Part Number
AMMC-5618-W50
Description
IC MMIC AMP GAAS 3STAGE 6-20GHZ
Manufacturer
Avago Technologies US Inc.
Type
General Purposer
Datasheets

Specifications of AMMC-5618-W50

Function
Amplifier
Frequency Range
6GHz To 20GHz
Noise Figure Typ
4.4dB
Supply Current
48mA
Supply Voltage Range
3V To 7V
Frequency Max
20GHz
Frequency Min
6GHz
Supply Voltage Max
7V
Gain
14.5dB
Supply Voltage Min
3V
Rohs Compliant
Yes
Number Of Channels
1
Frequency (max)
20GHz
Output Power
19.5@20000MHzdBm
Power Supply Requirement
Single
Single Supply Voltage (min)
3V
Single Supply Voltage (typ)
5V
Single Supply Voltage (max)
7V
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

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
AMMC-5618-W50
Manufacturer:
AVAGO/安华高
Quantity:
20 000
AMMC - 5618
6 - 20 GHz Amplifier
Data Sheet
Description
Avago Technologies’ AMMC-5618 6-20 GHz MMIC is an
efficient two-stage amplifier designed to be used as a
cascadable intermediate gain block for EW applications.
In communication systems, it can be used as a LO buffer,
or as a transmit driver amplifier. It is fabricated using a
PHEMT integrated circuit structure that provides excep-
tional efficiency and flat gain performance. During typi-
cal operation with a single 5-V supply, each gain stage
is biased for Class-A operation for optimal power output
with minimal distortion. The RF input and output have
matching circuitry for use in 50-W environments. The
backside of the chip is both RF and DC ground. This helps
simplify the assembly process and reduces assembly re-
lated performance variations and costs. For improved re-
liability and moisture protection, the die is passivated at
the active areas. The MMIC is a cost effective alternative
to hybrid (discrete FET) amplifiers that require complex
tuning and assembly processes.
Note:
1. Operation in excess of any one of these conditions may result in
Symbol Parameters/ Conditions Units Min. Max.
V
V
V
I
I
P
T
T
T
T
AMMC-5618 Absolute Maximum Ratings [1]
D1
D2
ch
stg
max
b
D1
G1
G2
in
permanent damage to this device.
, V
D2
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.
Drain Supply Voltage
Optional Gate Voltage
Optional Gate Voltage
Drain Supply Current
Drain Supply Current
RF Input Power
Channel Temp.
Operating Backside
Temp.
Storage Temp.
Maximum Assembly
Temp. (60 sec max)
V
V
V
mA
mA
dBm
°C
°C
°C
°C
-5
-5
-55
-65
7
+1
+1
70
84
20
+150
+165
+300
Chip Size: 920 x 920 µm (36.2 x 36.2 mils)
Chip Size Tolerance:
Chip Thickness: 100
Pad Dimensions: 80 x 80 µm (3.1 x 3.1 mils or larger)
Features
• Frequency Range: 6 - 20 GHz
• High Gain: 14.5 dB Typical
• Output Power: 19.5 dBm Typical
• Input and Output Return Loss: < -12 dB
• Flat Gain Response:
• Single Supply Bias: 5 V @ 107 mA
Applications
• Driver/Buffer in microwave communication systems
• Cascadable gain stage for EW systems
• Phased array radar and transmit amplifiers
±
±
10µm (4
10µm (±0.4 mils)
±
±
0.3 dB Typical
0.4 mils)

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AMMC-5618-W50 Summary of contents

Page 1

... AMMC - 5618 GHz Amplifier Data Sheet Description Avago Technologies’ AMMC-5618 6-20 GHz MMIC is an efficient two-stage amplifier designed to be used as a cascadable intermediate gain block for EW applications. In communication systems, it can be used buffer transmit driver amplifier fabricated using a PHEMT integrated circuit structure that provides excep- tional efficiency and flat gain performance ...

Page 2

... AMMC-5618 DC Specifications / Physical Properties Symbol Parameters and Test Conditions V ,V Recommended Drain Supply Voltage First stage Drain Supply Current 5V Open or Ground Second stage Drain Supply Current 5V Open or Ground Total Drain Supply Current Open or Ground θ Thermal Resistance ch-b (Backside temperature (Tb) = 25°C Notes: ° ...

Page 3

... AMMC-5618 Typical Performance ( FREQUENCY (GHz) Figure 1. Gain 0 -5 -10 -15 -20 -25 - FREQUENCY (GHz) Figure 4. Output Return Loss AMMC-5618 Typical Performance vs. Supply Voltage ( Vdd=4V 6 Vdd=5V Vdd= FREQUENCY (GHz) Figure 7. Gain and Voltage =25°C, V =5V 107 mA, Z chuck -10 -20 -30 -40 -50 -60 - FREQUENCY (GHz) Figure 2. Isolation ...

Page 4

... AMMC-5618 Typical Performance vs. Supply Voltage (cont Vdd=4V -5 Vdd=5V Vdd=6V -10 -15 -20 -25 -30 - FREQUENCY (GHz) Figure 10. Output Return Loss and Voltage AMMC-5618 Typical Performance vs. Temperature ( - FREQUENCY (GHz) Figure 12. Gain and Temperature 0 - -10 -15 -20 - FREQUENCY (GHz) Figure 15. Output Return Loss and Temperature Vdd=4V Vdd=5V ...

Page 5

... AMMC-5618 Typical Scattering Parameters[1] (T S11 Freq GHz dB Mag Phase 2.00 -2.4 0.76 -125 2.50 -2.9 0.72 -147 3.00 -3.2 0.69 -166 3.50 -3.6 0.66 174 4.00 -4.0 0.63 152 4.50 -4.9 0.57 126 5.00 -7.3 0.43 94 5.50 -12.7 0.23 67 6.00 -19.8 ...

Page 6

... The gate-pad voltage is approximately zero volt during operation with no DC gate supply. Refer to the Absolute Maximum Ratings table for allowed DC and thermal conditions. Assembly Techniques The backside of the AMMC-5618 chip is RF ground. For and V bond pads as microstripline applications, the chip should be attached D1 D2 directly to the ground plane (e ...

Page 7

... Feedback Network Matching RF Input V G1 Figure 18. AMMC - 5618 Schematic To power supply gold plated shim RF Input (a) Figure 19. AMMC - 5618 Assembly Diagram V D1 Matching Matching V G2 100 pF chip capacitor gold plated shim RF Output RF Input Bonding island chip-capacitor Output To power supply 100 pF chip capacitor ...

Page 8

... Ordering Information: AMMC-5618-W10 = 10 devices per tray AMMC-5618-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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