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AP561-F Datasheet(PDF) 4 Page - TriQuint Semiconductor

Part # AP561-F
Description  0.7-2.9 GHz WiMAX 8W Power Amplifier
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Manufacturer  TRIQUINT [TriQuint Semiconductor]
Direct Link  http://www.triquint.com
Logo TRIQUINT - TriQuint Semiconductor

AP561-F Datasheet(HTML) 4 Page - TriQuint Semiconductor

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Specifications and information are subject to change without notice
TriQuint Semiconductor, Inc
• Phone 1-800-951-4401 • FAX: 408-577-6633 • e-mail: info-sales@tqs.com • Web site: www.TriQuint.com
Page 4 of 15 May 2009
AP561
0.7-2.9 GHz WiMAX 8W Power Amplifier
776-787 MHz Reference Design
Typical O-FDMA Performance at 25
°C
Frequency (MHz)
776
780
787 Units
Channel Power
+28
+28
+28
dBm
Power Gain
16.5 16.6
16.6
dB
Input Return Loss
10
12
13
dB
Output Return Loss
11
11
11
dB
EVM
0.68 0.64
0.57
%
ACLR
-51
-51
-52
dBc
Operating Current, Icc 405
404
402
mA
Collector Efficiency
13
13
12.9
%
Output P1dB
37.8 37.9
38
dBm
Quiescent Current, Icq
300
mA
Vpd
+5
V
Vcc
+12
V
Notes:
1.
The primary RF microstrip line is 50
Ω.
2.
Do not exceed 5.5V on Vpd or damage to D1 will occur.
3.
Do not exceed 13V on Vcc or damage to D2 will occur.
4.
Components shown on the silkscreen but not on the schematic are not used.
5.
The edge of C26 is placed at 35mil from edge of AP561. (1.2 o @ 780 MHz)
6.
The edge of L1 is placed 60mil from the edge of C26. (2 o @ 780 MHz)
7.
The edge of C27 is placed next to the edge of L1.
8.
The edge of C20 is placed 380mil from the edge of C27. (12.9 o @ 780 MHz)
9.
The edge of R5 is placed at 115mil from edge of AP561. (3.9 o @ 780 MHz)
10. The edge of C28 is placed 230mil from the edge of R5. (7.8 o @ 780 MHz)
11. The edge of C1 is placed 180mil from the edge of C28. (6.1 o @ 780 MHz)
12. 0
Ω jumpers can be replaced with copper trace in target application.
776-787 MHz Application Circuit Performance Plots
802.16-2004 O-FDMA, 64QAM-1/2, 1024-FFT, 20 symbols and 30 subchannels. 9.5 dB PAR @ 0.01%, 5 MHz Carrier BW
Gain vs. Frequency
T=25°C
14
15
16
17
18
0.75
0.77
0.79
0.81
0.83
0.85
Frequency (GHz)
Return Loss
T=25°C
-20
-15
-10
-5
0
0.75
0.77
0.79
0.81
0.83
0.85
Frequency (GHz)
S11
S22
Efficiency vs Output Average Power vs. Frequency
T=25°C
5
10
15
20
25
24
25
26
27
28
29
30
31
32
Output Power (dBm)
776 MHz
780 MHz
787 MHz
Current vs Output Average Power vs. Frequency
T=25°C
300
350
400
450
500
550
600
24
25
26
27
28
29
30
31
32
Output Power (dBm)
776 MHz
780 MHz
787 MHz
EVM vs. Output Average Power vs. Frequency
T=25°C
0
1
2
3
4
5
24
25
26
27
28
29
30
31
32
Output Power (dBm)
776 MHz
780 MHz
787 MHz
ACLR vs. Output Average Power vs. Frequency
T=25°C
-60
-55
-50
-45
-40
-35
-30
24
25
26
27
28
29
30
31
32
Output Power (dBm)
776 MHz
780 MHz
787 MHz
W-CDMA 3GPP Test
Model 1+64 DPCH,
100% clipping,
PAR = 10.2 dB @ 0.01%,
3.84 MHz BW


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