MGA-53543-TR1G Avago Technologies US Inc., MGA-53543-TR1G Datasheet - Page 11

IC AMP RFIC 1.9GHZ SOT-343

MGA-53543-TR1G

Manufacturer Part Number
MGA-53543-TR1G
Description
IC AMP RFIC 1.9GHZ SOT-343
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of MGA-53543-TR1G

Gain
14dB ~ 17dB
Rf Type
Cellular, PCS
Current - Supply
40mA ~ 70mA
Frequency
0Hz ~ 2.4GHz
Noise Figure
1.5dB ~ 1.9dB
P1db
18.6dBm
Package / Case
SC-70-4, SC-82-4, SOT-323-4, SOT-343
Test Frequency
1.9GHz
Voltage - Supply
5V ~ 5.5V
Frequency Range
50MHz To 6GHz
Noise Figure Typ
1.5dB
Power Dissipation Pd
400mW
Supply Current
54mA
Supply Voltage Range
5V
Manufacturer's Type
Linear Amplifier
Number Of Channels
1
Frequency (max)
6GHz
Operating Supply Voltage (max)
5.5V
Package Type
SOT-343
Mounting
Surface Mount
Pin Count
3 +Tab
Noise Figure (typ)
1.9@2400MHzdB
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Other names
516-1826-2
MGA-53543-TR1G

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MGA-53543-TR1G
Manufacturer:
AVAGO
Quantity:
15 600
Part Number:
MGA-53543-TR1G
Manufacturer:
AVAGO
Quantity:
11 800
Part Number:
MGA-53543-TR1G
Manufacturer:
AVAGO/安华高
Quantity:
20 000
900 MHz LNA Design
To demonstrate the versatility of the MGA-53543, the
following example describes a cellular band Low Noise
Amplifier (LNA) design. The methodology for a 900 MHz
LNA design differs from the previous examples in that
only the input match affects noise figure. Thus, optimiz-
ing for minimum noise figure entails matching only the
input to Γ
matched to S for better gain or Γ
Figure 7 shows the complete schematic for a 900 MHz
low noise amplifier design and Table 5 describes the re-
quired components.
RF
Figure 27. Schematic for 900 MHz LNA design.
Table 5. Component Parts List for the MGA-53543 HLA at 900 MHz.
1 nH
15 nH
4.7 pF
.Ω
1000 pF Phycomp 040R10K9B00
Performance of MGA-53543 at 900 MHz
Biased with a +5 Volt supply MGA-53543 delivers a Noise
Figure of 1.33 dB at 900 MHz. This number is higher than
NF
ponents with parasitic losses. A microstip or distributed
element match may improve noise figure by . dB. Gain is
measured to be 17.4 dB as shown in Figure 8. Input and
output VSWR are both better than :1, with input return
loss of 5 dB and output return loss at 17.5 dB shown in
Figure 9.
11
in
min
only because of loss from lumped element com-
12 nH
TOKO LL1608-FS1NJ
TOKO LL1005-FS15N
Phycomp 040CG479C9B00
RHOM MCR01JR
4.7 pF
opt
instead of Γ
1
3
53
2
4
+5V
S
, and the output can either be
2.2Ω
15 nH
4.7 pF
1000 pF
RF
out
L
for better linearity.
Figure 28. Gain, Noise Figure and Output Power at 900 MHz.
Figure 29. Input and Output return loss at 900 MHz.
Input IIP3 is measured to be 18.6 dBm and P1dB is 19.0
dB at 900 MHz.
Figure 19. Gain, Noise Figure and Output
Power at 900 MHz.
Figure 20. Input and Output Return Loss at
900 MHz.
-10
-15
-20
-25
-30
20
15
10
-5
5
0
0
400
400
600
600
FREQUENCY (MHz)
FREQUENCY (MHz)
800
800
1000
1000
Gain
NF
1200
1200
S11
S22
1400
1400

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