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PDF MGA-545P8 Data sheet ( Hoja de datos )

Número de pieza MGA-545P8
Descripción 50 MHz to 7 GHz Medium Power Amplifier
Fabricantes Agilent 
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Agilent MGA-545P8
50 MHz to 7 GHz Medium Power
Amplifier
Data Sheet
Description
Agilent’s MGA-545P8 is an
economical, low current, medium
power, easy-to-use GaAs MMIC
amplifier that offers excellent power
output at 5.8 GHz. Although
optimized for 5.8 GHz applications,
the MGA-545P8 is suitable for other
applications in the 50 MHz to 7 GHz
frequency range.
With the addition of a simple input
match, the MGA-545P8 offers a
small signal gain of 11.5 dB, a
saturated power output of 22 dBm
and a saturated gain of 9.5 dB at
Pin Connections and Package Marking
5.8 GHz. The MGA-545P8 has a
nominal current consumption of
92 mA in saturated mode and
135 mA in linear mode at a device
voltage of 3.3 V with power added
efficiency of 46% in saturated
mode.
The MGA-545P8 is housed in the
2X2 mm-8L LPCC package. This
package offers good thermal
dissipation and very good high
frequency characteristics making
it appropriate for medium power
applications through 7 GHz.
Simplified Schematic
Specifications
• 3.3 V, 92 mA, 5.825 GHz at saturation
mode
• 22 dBm saturated power across
1-7 GHz
• 9.5 dB gain
• 46% PAE
• 3.3 V, 135 mA, 5.825 GHz at linear
mode
• 11.5 dB small signal gain
• Pout = 16 dBm at 5.6% EVM
• 34 dBm OIP3 at 2.7 V
Features
• Unconditionally stable
• Single +3.3 V operation
• Small package size –
2.0 x 2.0 x 0.75 mm3
• Point MTTF > 300 years [2]
• MSL-1 and Pb-free and Halogen-free
• Tape-and-reel packaging option
available
PIN 8
PIN 7 (OUT)
PIN 6
PIN 5
PIN 1
PIN 2 (IN)
PIN 3
PIN 4
BOTTOM VIEW
INPUT
BIAS
FET
PIN 1
IN
PIN 3
PIN 4
4Tx
PIN 8
OUT
PIN 6
PIN 5
TOP VIEW
Note: Package marking provides orientation and
identification.
“4T”= Device Code
“x” = Date code indicates the month of manufacture.
RF GND
OUTPUT
& Vd
Applications
The MGA-545P8 is ideal for use as
IF Amplifier, driver amplifier and
power amplifier in:
• 3-4 GHz fixed wireless access (WLL)
• 5-6 GHz fixed wireless access
(HiperLAN/UNII)
• 5-6 GHz WLAN 802.11a NIC and AP
• Other applications in the 50 MHz to
7 GHz frequency range
Notes:
1. Enhancement mode technology employs a
single positive Vgs, eliminating the need of
negative gate voltage associated with
conventional depletion mode devices.
2. Refer to reliability datasheet for detailed
MTTF data.
3. Conform to JEDEC reference outline
MO229 for DRP-N.

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MGA-545P8 pdf
155
145
135
125
115
105
95
85
75
0
2.7 V
3.0 V
3.3 V
4.0 V
2 4 6 8 10 12 14
Pin (dBm)
Figure 12. Device current vs. Pin and
voltage[4,5].
150
140
130
120
110 –40°C
25°C
85°C
100
2.4 2.7 3.0 3.3 3.6 3.9 4.2
VOLTAGE (V)
Figure 13. Id vs. voltage and temperature (no
RF drive).
110
100
90
80
–40°C
25°C
85°C
70
2.4 2.7 3.0 3.3 3.6 3.9 4.2
VOLTAGE (V)
Figure 14. Saturated Id vs. voltage and
temperature[3,4].
12
2.7 V
10
3.0 V
3.3 V
4.0 V
8
6
4
2
0
-10 -5
0 5 10 15 20
Pout (dBm)
Figure 15. EVM(64QAM) vs. Pout and voltage
at 5.725 GHz[4].
10
9
2.7 V
8 3.0 V
7 3.3 V
4.0 V
6
5
4
3
2
1
0
-20 -15 -10 -5
0
Pin (dBm)
5 10
Figure 16. EVM(64QAM) vs. Pin and voltage at
5.725 GHz[4].
Notes:
1. Measurement was done in a 50 microstrip line with input and output tuned for maximum gain using double stub-tuners.
2. Measurement was done in a 50 microstrip line with input tuned for gain and output tuned for maximum Psat using double-stub tuners.
3. Measured at 2.5 dB gain compression.
4. Measurement at 5.825 GHz were made on a fixed tuned demo board that was tuned for maximum saturated output power and maximum gain.
5. Circuit losses have been de-embedded from actual measurement.
5

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