MGA-52543-BLKG Avago Technologies US Inc., MGA-52543-BLKG Datasheet - Page 4

IC AMP MMIC LNA 1.9GHZ SOT-343

MGA-52543-BLKG

Manufacturer Part Number
MGA-52543-BLKG
Description
IC AMP MMIC LNA 1.9GHZ SOT-343
Manufacturer
Avago Technologies US Inc.
Type
Low Noiser
Datasheets

Specifications of MGA-52543-BLKG

Gain
13dB ~ 15.5dB
Rf Type
Cellular, PCS, WLAN, WLL
Current - Supply
45mA ~ 65mA
Frequency
400MHz ~ 6GHz
Noise Figure
1.9dB ~ 2.3dB
P1db
17.4dBm
Package / Case
SC-70-4, SC-82-4, SOT-323-4, SOT-343
Test Frequency
1.9GHz
Voltage - Supply
4.5V ~ 5.5V
Frequency Range
0.4GHz To 6GHz
Noise Figure Typ
1.9dB
Power Dissipation Pd
425mW
Supply Current
53mA
Supply Voltage Range
5V
Amplifier Type
MMIC
Current, Supply
53 mA
Impedance, Thermal
150 °C/W
Package Type
SOT-343 (SC70-4)
Power Dissipation
425 mW
Voltage, Input
±0.5 V
Voltage, Supply
5 V
Manufacturer's Type
Low Noise Amplifier
Number Of Channels
1
Frequency (max)
6GHz
Operating Supply Voltage (typ)
5V
Mounting
Surface Mount
Pin Count
3 +Tab
Noise Figure (typ)
1.9@1900MHzdB
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Other names
516-1945
MGA-52543-BLKG

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MGA-52543-BLKG
Manufacturer:
AVAGO/安华高
Quantity:
20 000
MGA-52543 Typical Performance, continued
All data are measured at T
Note:
All data reported from Figures 7 through 17 using test setup described in Figure 2. Tuners on input and output were set for narrow band tuning
designed to optimize NF and OIP3 while keeping VSWRs better than 2:1. See Figure 9 for corresponding return losses at each frequency band.
4
Figure 9. Return Losses at each Narrow Band
Tuning.
Figure 12. Output Power at 1 dB Compression vs.
Frequency and Voltage.
Figure 15. Output Power at 1 dB Compression vs.
Frequency and Temperature.
35
30
25
20
15
10
25
22
19
16
13
10
25
22
19
16
13
10
5
0
0
0
1
1
1
RL
RL
in
out
2
2
2
FREQUENCY (GHz)
FREQUENCY (GHz)
FREQUENCY (GHz)
3
3
3
4
4
4
c
5
5
5
= 25°C, V
6
6
6
-40 C
+25 C
+85 C
4.5 V
5.0 V
5.5 V
7
7
7
d
= 5V, and in the following test system unless stated otherwise.
Figure 10. Noise Figure vs. Frequency and Voltage.
Figure 13. Gain vs. Frequency and Temperature.
Figure 16. Input Third Order Intercept Point vs.
Frequency and Voltage.
3.2
2.8
2.4
2.0
1.6
1.2
20
17
14
11
21
19
17
15
13
8
5
0
0
0
1
1
1
2
2
2
FREQUENCY (GHz)
FREQUENCY (GHz)
FREQUENCY (GHz)
3
3
3
4
4
4
5
5
5
6
6
6
4.5 V
5.0 V
5.5 V
4.5 V
5.0 V
5.5 V
4.5 V
5.0 V
5.5 V
7
7
7
Figure 17. Input Third Order Intercept Point vs.
Frequency and Temperature.
Figure 11. Noise Figure vs. Frequency and
Temperature.
Figure 14. Gain vs. Frequency and Temperature.
3.2
2.8
2.4
2.0
1.6
1.2
21
19
17
15
13
20
17
14
11
8
5
0
0
0
1
1
1
2
2
2
FREQUENCY (GHz)
FREQUENCY (GHz)
FREQUENCY (GHz)
3
3
3
4
4
4
5
5
5
-40 C
+25 C
+85 C
6
-40 C
+25 C
+85 C
6
-40 C
+25 C
+85 C
6
7
7
7

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