MwT-0206S-A9G1/0206Z-A9G1
2.0 – 6.0 GHz Balanced Amplifier Module
Data Sheet
June 2006
Features:
•
•
•
•
•
14.0 dBm P1dB
17.0 dB Small Signal Gain
14.0 dB Input/Output Return Loss
50 mA @ +8V
1.5 dB Noise Figure
SMALL SIGNAL GAIN vs FREQUENCY
Typical Input/Output R.L.
(dB)
INPUT/OUTPUT RETURN LOSS
-5
-7
-9
-11
-13
-15
-17
-19
-21
2
3
4
Frequency (GHz)
5
18
Typical SSG (dB)
S11
S22
17
16
15
2
3
4
Freequency (GHz)
5
6
6
Electrical Specifications:
SYMBOL
FREQ
SSG
ΔG/ΔF
ΔG/ΔT
P1 dB
ΔP/ΔT
2
nd
HAR
2
nd
HAR
NF
VSWR IN
VSWR OUT
ISO
Vdd
Idd
Rth
•
@ 25°C, Vdd = 7.0 to 8.0 V, Zo = 50 ohms
Min
2.0
16.0
PARAMETERS
Frequency Range
Small Signal Gain
SSG Flatness
SSG Variation over Temperature
Pout at 1 dB Comp Point
P1dB Variation over Temperature
2
nd
Harmonic at Pout=15.0 dBm
2
nd
Harmonic at Pout=16.0 dBm
Noise Figure
VSWR Input
VSWR Output
Reverse Isolation
Power Supply Voltage
Small Signal Module Current
Thermal Resistance Including FET*
Typical
17.0
0.4
-.012
14.0
-.008
-21.0
-16.0
1.5
1.5:1
1.5:1
-20.0
8.0
50
196.0
Max
6.0
0.6
Unit
GHz
dB
±dB
±dB
dBm
dB/°C
dBc
dBc
dB
----
----
dB
+V
mA
°C/W
13.0
1.8
1.8:1
1.8:1
8.1
60
7.9
* When calculating Tch, use FET Vds = 5.0 volts and FET Ids = 30mA
MicroWave Technology, Inc. an IXYS Company, 4268 Solar Way, Fremont, CA 94538
510-651-6700
FAX
510-651-2208
WEB
www.mwtinc.com
Data contained herein is subject to change without notice. All rights reserved © 2006
MwT-0206S-A9G1/0206Z-A9G1
2.0 – 6.0 GHz Balanced Amplifier Module
Data Sheet
June 2006
Package Outline:
Construction:
The 15 mil alumina substrates and 10 mil copper FET ridge are brazed onto the 25 mil carrier using AuGe perform.
The GaAs FETs are attached to the Cu ridge using AuSn perform. All capacitors are attached using AuSn performs.
The flanges are designed to accommodate 0-80 UNF-2A socket or Fillister head screws on .400 center-to-center hole
spacing. The modules are mechanically and electrically designed to be cascaded.
Notes:
1.
2.
3.
Custom module specifications and/or custom module mechanical configurations are available.
Operating Temperature Range is –55 degrees Celsius to +105 degrees Celsius.
All modules are serialized and shipped with data measured at 25 degrees Celsius. Data includes swept
small signal gain, swept input and output return loss. Noise figure and P1dB are measured in 1 GHz
increments. Special module testing is available.
Test Fixtures are available.
Microwave Technology reserves the right to ship modules with performance above the typical
specification.
4.
5.
MicroWave Technology, Inc. an IXYS Company, 4268 Solar Way, Fremont, CA 94538
510-651-6700
FAX
510-651-2208
WEB
www.mwtinc.com
Data contained herein is subject to change without notice. All rights reserved © 2006