MGA-87563-TR1G Avago Technologies US Inc., MGA-87563-TR1G Datasheet - Page 7

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MGA-87563-TR1G

Manufacturer Part Number
MGA-87563-TR1G
Description
IC AMP MMIC GAAS LNA 3/5V SOT363
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of MGA-87563-TR1G

Gain
11dB ~14dB
Rf Type
Cellular, GPS, ISM, PCS
Current - Supply
4.5mA
Frequency
500MHz ~ 4GHz
Noise Figure
1.6dB
P1db
-2dBm
Package / Case
SC-70-6, SC-88, SOT-363
Test Frequency
2GHz
Voltage - Supply
3V, 5V
Frequency Range
0.5GHz To 4GHz
Noise Figure Typ
1.6dB
Supply Current
4.5mA
Supply Voltage Range
5V
Rf Ic Case Style
SOT-363
No. Of Pins
6
Number Of Channels
1
Frequency (max)
4GHz
Operating Supply Voltage (typ)
3/5V
Package Type
SOT-363
Mounting
Surface Mount
Pin Count
6
Noise Figure (typ)
2@4000MHzdB
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Other names
516-1588-2

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MGA-87563-TR1G
Manufacturer:
AVAGO
Quantity:
18 000
Part Number:
MGA-87563-TR1G
Manufacturer:
AGILENT
Quantity:
20 000
It is recommended that the PCB traces for the ground pins
NOT be connected together under neath the body of the
package. PCB pads hidden under the package cannot be
adequately inspected for SMT solder quality.
FR-4 or G-10 PCB material is a good choice for most low
cost wireless applications. Typical board thickness is 0.025
or 0.031 inches. The width of 50 Ω microstriplines in these
PCB thicknesses is also convenient for mounting chip
components such as the series inductor at the input for
impedance matching or for DC blocking capacitors. For
noise figure sensitive applica tions, the use of PTFE/glass
dielectric materials may be warranted to minimize trans-
mis sion line losses at the amplifier input.
Higher Bias Voltages
While the MGA-87563 is designed for use in +3 volt bat-
tery powered applications, the internal bias regulation
circuitry allows it to be easily operated with any power
supply voltage from +2.7 to 5 volts. Figure 15 shows an
increase of approximately 1 dB in the associated gain with
+5 volts applied. The P
higher by about 1 dBm. The effect of higher V
figure is negligible as indicated in Figure 16.
Figure 15. Associated Gain vs. Frequency at V
7
17
16
15
14
13
12
11
10
9
0.5
1.0
FREQUENCY (GHz)
1.5
2.0
2.5
1dB
3.0
output power (Figure 17) is also
3.5
4.0
dd
= 5V.
dd
on noise
Figure 16. Optimum Noise Figure vs. Frequency at V
Figure 17. Output Power at 1 dB Gain Compression
vs. Frequency at V
-0.50
-1.00
-1.50
-2.00
0.00
3.5
3.0
2.5
2.0
1.5
1.0
0.5
0.5
0.6
1.0
1.2
FREQUENCY (GHz)
1.5
FREQUENCY (GHz)
dd
1.8
= 5V.
2.0
2.4
2.5
3.0
3.0
3.5
3.6
4.0
4.2
dd
= 5V.

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