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PDF AWL6950 Data sheet ( Hoja de datos )

Número de pieza AWL6950
Descripción 2.4/5 GHz 802.11a/b/g WLAN Power Amplifier
Fabricantes ANADIGICS 
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FEATURES
• 3.6 % EVM @ POUT = +19 dBm with IEEE 802.11a
64 QAM OFDM at 54 Mbps
• 2.7 % EVM @ POUT = +20 dBm with IEEE 802.11g
64 QAM OFDM at 54 Mbps
• -35 dBr ACPR 1st Sidelobe, +22 dBm, with
802.11b CCK/DSSS Root Cosine Filtering, 1 Mbps
• -55 dBr ACPR 2nd Sidelobe, +22 dBm, with
802.11b CCK/DSSS Root Cosine Filtering, 1 Mbps
• 32 dB of Linear Power Gain at 2.4 GHz
• 32 dB of Linear Power Gain at 5 GHz
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• Single +3.3 V Supply
• Dual Temperature-Compensated Linear Power
Detectors
• 50 - Matched RF Ports
• Lead-free and RoHS Compliant
• 1 kV ESD Rating (HBM)
• 4 mm x 4 mm x 1.3 mm Surface Mount Module
APPLICATIONS
• 802.11a/b/g/n WLAN
AWL6950
2.4/5 GHz 802.11a/b/g
WLAN PowerAmplifier
Data Sheet - Rev 2.2
AWL6950
M21 Package
16 Pin 4 mm x 4 mm x 1.3 mm
Surface Mount Module
PRODUCT DESCRIPTION
The ANADIGICS AWL6950 dual band power
amplifier is a high performance InGaP HBT power
amplifier module designed for transmit
applications in the 2.4-2.5 GHz and 4.9-5.9 GHz
bands. Matched to 50 at all RF inputs and outputs,
the part requires no additional RF matching
components off-chip, making the AWL6950 the
world’s simplest dual band PA module
implementation available. The PA exhibits
unparalleled linearity and efficiency for IEEE
802.11g, 802.11b, and 802.11a WLAN systems
under the toughest signal configurations within
these standards.
The power detectors are temperature compensated
on chip, enabling separate single-ended output
voltages for each band with excellent accuracy over
a wide range of operating temperatures. The PA is
biased by a single +3.3 V supply and consumes
ultra-low current in the OFF mode.
The AWL6950 is manufactured using advanced
InGaP HBT technology that offers state-of-the-art
reliability, temperature stability, and ruggedness.
GND VPC
2.4 GHz
VCC Power Detector
Bias Control
2.4 GHz
RFIN
Matching
Network
Matching
Network
2.4 GHz
RFOUT
5 GHz
RFIN
Matching
Network
Matching
Network
5 GHz
RFOUT
Bias Control
GND VPC
VCC 5 GHz
Power Detector
Figure 1: Block Diagram and Pinout
04/2006

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AWL6950 pdf
PARAMETER
Table 5: Electrical Specifications - 5 GHz Continuous Wave
(TC = +25 °C, VCC 5G = +3.3 V, PAON 5G = +3.3 V)
MIN TYP MAX UNIT COMMENTS
AWL6950
P1dB
Shutdown Current
Quiescent Current
23 24.5 - dBm
- 32 83 µA PAON 5G = 0 V
82 120 160 mA PAON 5G +2.0 V, VCC = +3.3 V, RF = off
Input Return Loss
-
-20 -10
dB
Output Return Loss
-
-18 -10
dB
Out of Band Rejection
1.5 GHz
3.5 GHz
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6.5 GHz
9 GHz
35
12.5
5
5
30
-
-
-
-
-
-
-
- dB
-
-
Reverse Isolation
40 -
- dB
Stability (Spurious)
- - -60 dBc 6:1 VSWR, POUT = +22 dBm; -5 OC
TON Setting Time
TOFF Setting Time
- - 1 µS Settles within ±0.5 dB
- - 1 µS
PAON 5G Pin Input
Impedance
- 6.2 -
k
Measured with +3.3 V applied to PAON 5G
pin
Data Sheet - Rev 2.2
04/2006
5

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AWL6950 arduino
802.11b PERFORMANCE DATA
AWL6950
Figure 11: Gain and ICC vs. Output Power Across
Frequency (VCC = +3.3 V, TC = +25oC)
802.11b Gaussian Filtering (BT = 0.5), 1 Mbps
36
34
32
30
28
26
24
22
20
18
16
14
12
10
8
6
4
2
0
8
Gain 2.40 GHz
Gain 2.45 GHz
Gain 2.50 GHz
Current 2.40 GHz
Current 2.45 GHz
Current 2.50 GHz
9 10 11 12
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13 14 15 16 17 18
Output Power (dBm)
Gain
Current
19 20 21 22
360
340
320
300
280
260
240
220
200
180
160
140
120
100
80
60
40
20
0
23
Figure 13: Gain and ICC vs. Output Power Across
Power Supply Voltage (Freq = 2.45 GHz,
TC = 25oC) 802.11b Gaussian Filtering
(BT = 0.5), 1 Mbps
36
34
32
30
28
26
24
22
20
18
16
14
12
10
8
6
4
2
0
8
360
340
320
Gain
300
280
Gain 3.0V
260
Gain 3.3V
Gain 3.6V
Icc 3.0V
Icc 3.3V
Icc 3.6V
Curren
240
220
200
180
160
140
120
100
80
60
40
20
0
9 10 11 12 13 14 15 16 17 18 19 20 21 22 23
Output Power (dBm)
Figure 12: Gain and ICC vs. Output Power Across
Temp (Freq = 2.45 GHz, VCC = +3.3 V)
802.11b Gaussian Filtering (BT = 0.5), 1 Mbps
36
34
32
30
28
26
24
22
20
18
16
14
12
10
8
6
4
2
0
8
360
340
320
300
Gain 0C
Gain +25C
Gain +50C
Gain +85C
Current 0C
Current +25C
Current +50C
Current +85C
Gain
Current
280
260
240
220
200
180
160
140
120
100
80
60
40
20
0
9 10 11 12 13 14 15 16 17 18 19 20 21 22 23
Output Power (dBm)
Figure 14: ACPR vs. Output Power Across
Frequency (VCC = +3.3 V, TC = 25oC)
802.11b Gaussian Filtering (BT = 0.5), 1 Mbps
-30
-32
-34
-36
-38
-40
-42 1st Sidelobe 2.40GHz
-44 1st Sidelobe 2.45GHz
-46 1st Sidelobe 2.50GHz
-48 2nd Sidelobe 2.40GHz
-50 2nd Sidelobe 2.45GHz
-52 2nd Sidelobe 2.50GHz
-54
-56
-58
-60
-62
8
9 10 11 12 13 14 15 16 17 18 19 20 21 22 23
Output Power (dBm)
Figure 15: ACPR vs. Output Power Across Temp
(Freq = 2.45 GHz, VCC = +3.3 V)
802.11b Gaussian Filtering (BT = 0.5), 1 Mbps
-30
-32
-34
-36
-38
-40
1st Sidelobe 0C
-42 1st Sidelobe 25C
-44 1st Sidelobe 50C
-46 1st Sidelobe 85C
-48 2nd Sidelobe 0C
2nd Sidelobe 25C
-50 2nd Sidelobe 50C
-52 2nd Sidelobe 85C
-54
-56
-58
-60
-62
8
9 10 11 12 13 14 15 16 17 18 19 20 21 22 23
Output Power (dBm)
Figure 16: ACPR vs. Output Power Across Power
Supply Voltage (Freq = 2.45 GHz, TC = 25oC)
802.11b Gaussian Filtering (BT = 0.5), 1 Mbps
-30
-32
-34
-36
-38
-40
-42
-44
-46
-48
-50
-52
-54
-56
-58
-60
-62
8
1st Sidelobe 3.00V
1st Sidelobe 3.30V
1st Sidelobe 3.60V
2nd Sidelobe 3.00V
2nd Sidelobe 3.30V
2nd Sidelobe 3.60V
9 10 11 12 13 14 15 16 17 18 19 20 21 22 23
Output Power (dBm)
Data Sheet - Rev 2.2
04/2006
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