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PDF VMMK-3803 Data sheet ( Hoja de datos )

Número de pieza VMMK-3803
Descripción 3 - 11 GHz UWB Low Noise Amplifier
Fabricantes AVAGO 
Logotipo AVAGO Logotipo



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VMMK-3803
3 - 11 GHz UWB Low Noise Amplifier in SMT Package
Data Sheet
Description
The VMMK-3803 is a small and easy-to-use, broadband,
low noise amplifier operating in various frequency bands
from 3 to 11 GHz with typical noise figure of 1.5 dB. It is
housed in the Avago Technologies’ industry-leading and
revolutionary sub-miniature chip scale package (GaAsCap
wafer scale leadless package) which is small and ultra thin
yet can be handled and placed with standard 0402 pick
and place assembly equipment. The VMMK-3803 provides
a typical gain of 20 dB with good linearity of 0.9 dBm
typical IIP3 and input and output return losses and can be
operated from 3 to 5 V power supply. It is fabricated using
Avago Technologies unique 0.25 μm E-mode PHEMT
technology which eliminates the need for negative gate
biasing voltage.
WLP0402, 1 mm x 0.5 mm x 0.25 mm
OY
Pin Connections (Top View)
Features
1 x 0.5 mm surface mount package
Ultrathin (0.25 mm)
Wide frequency range
Self-Biasing: 3 to 5 V
In and output match: 50 ohm
Specifications
(6 GHz, Vdd = 3 V, Vpd = 3 V, Zin = Zout = 50 )
Low noise figure: 1.5 dB typ.
Small signal gain: 20 dB typ.
Output Power at 1dB compression = 7 dBm
Applications
3.1-10.6 GHz UWB LNA
3.5 and 5-6 GHz WLAN and WiMax
10.5 GHz PMP
802.16 & 802.20 BWA systems
Radar and ECM systems
Generic IF amplifier
Input OY
Output/Vdd
Input Amp
Output/Vdd
Attention: Observe precautions for
handling electrostatic sensitive devices.
ESD Machine Model = 60 V
ESD Human Body Model = 200 V
Refer to Avago Application Note A004R:
Electrostatic Discharge, Damage and Control.
Note:
“O” = Device Code
“Y” = Month Code

1 page




VMMK-3803 pdf
VMMK-3803 Typical Performance
Zin = Zout = 50 , Vpd = 3 V, TA = 25° C for varying Vdd data, Vdd=3V for varying Temp data; obtained using 300 mm G-S-G
PCB substrate & broadband bias tees, losses calibrated out to the package reference plane.
12
10
8
6
4
2
0
2468
Frequency (GHz)
Figure 7. Output P1dB over Vdd
3V
4V
5V
10 12
8
6
4
2
0
-2
-4
-6
-8
24
Figure 8. Input IP3 over Vdd
68
Frequency (GHz)
3V
4V
5V
10 12
25
25° C
20
-40° C
+85° C
15
10
5
00 2 4
Figure 9. S21 over Temp
6 8 10 12 14 16 18 20
Frequency (GHz)
3
2.5
2
1.5
1
0.5
0
2345678
Frequency (GHz)
Figure 10. Noise Figure over Temp
25° C at 3 V
-35° C at 3 V
+85° C at 3 V
9 10 11 12
12
10
8
6
4
2
0
2468
Frequency (GHz)
Figure 11. Output P1dB over Temp
25° C
-40° C
85° C
10 12
8
6
4
2
0
-2
-4
-6
-8
2468
Frequency (GHz)
Figure 12. Input IP3 over Temp
25° C
-40° C
85° C
10 12
5

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