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RF3932 Datasheet(PDF) 4 Page - RF Micro Devices

Part # RF3932
Description  60W GaN WIDEBAND POWER AMPLIFIER
PDF  14 Pages
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Manufacturer  RFMD [RF Micro Devices]
Direct Link  http://www.rfmd.com
Logo RFMD - RF Micro Devices

RF3932 Datasheet(HTML) 4 Page - RF Micro Devices

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RF3932
DS120406
7628 Thorndike Road, Greensboro, NC 27409-9421 · For sales or technical
support, contact RFMD at (+1) 336-678-5570 or customerservice@rfmd.com.
Typical Performance in Standard 2.14GHz Tuned Test Fixture
(CW, T = 25°C, unless otherwise noted)
Efficiency vs. Output Power (f = 2140MHz)
70
Efficiency vs. Output Power (f = 2140MHz)
(Pulsed 10% duty cycle, 10uS, Vd = 48V, Idq = 220mA)
50
60
70
Efficiency vs. Output Power (f = 2140MHz)
(Pulsed 10% duty cycle, 10uS, Vd = 48V, Idq = 220mA)
Eff 85C
Eff 25C
Eff -25C
40
50
60
70
Efficiency vs. Output Power (f = 2140MHz)
(Pulsed 10% duty cycle, 10uS, Vd = 48V, Idq = 220mA)
Eff 85C
Eff 25C
Eff -25C
30
40
50
60
70
Efficiency vs. Output Power (f = 2140MHz)
(Pulsed 10% duty cycle, 10uS, Vd = 48V, Idq = 220mA)
Eff 85C
Eff 25C
Eff -25C
10
20
30
40
50
60
70
Efficiency vs. Output Power (f = 2140MHz)
(Pulsed 10% duty cycle, 10uS, Vd = 48V, Idq = 220mA)
Eff 85C
Eff 25C
Eff -25C
10
20
30
40
50
60
70
32
34
36
38
40
42
44
46
48
Output Power (dBm)
Efficiency vs. Output Power (f = 2140MHz)
(Pulsed 10% duty cycle, 10uS, Vd = 48V, Idq = 220mA)
Eff 85C
Eff 25C
Eff -25C
10
20
30
40
50
60
70
32
34
36
38
40
42
44
46
48
Output Power (dBm)
Efficiency vs. Output Power (f = 2140MHz)
(Pulsed 10% duty cycle, 10uS, Vd = 48V, Idq = 220mA)
Eff 85C
Eff 25C
Eff -25C
Gain vs. Output Power (f = 2140MHz)
16
Gain vs. Output Power (f = 2140MHz)
(Pulsed 10% duty cycle, 10uS, Vd = 48V, Idq = 220mA)
14
15
16
Gain vs. Output Power (f = 2140MHz)
(Pulsed 10% duty cycle, 10uS, Vd = 48V, Idq = 220mA)
13
14
15
16
Gain vs. Output Power (f = 2140MHz)
(Pulsed 10% duty cycle, 10uS, Vd = 48V, Idq = 220mA)
12
13
14
15
16
Gain vs. Output Power (f = 2140MHz)
(Pulsed 10% duty cycle, 10uS, Vd = 48V, Idq = 220mA)
Gain 85C
10
11
12
13
14
15
16
Gain vs. Output Power (f = 2140MHz)
(Pulsed 10% duty cycle, 10uS, Vd = 48V, Idq = 220mA)
Gain 85C
Gain 25C
Gain -25C
10
11
12
13
14
15
16
32
34
36
38
40
42
44
46
48
Output Power (dBm)
Gain vs. Output Power (f = 2140MHz)
(Pulsed 10% duty cycle, 10uS, Vd = 48V, Idq = 220mA)
Gain 85C
Gain 25C
Gain -25C
10
11
12
13
14
15
16
32
34
36
38
40
42
44
46
48
Output Power (dBm)
Gain vs. Output Power (f = 2140MHz)
(Pulsed 10% duty cycle, 10uS, Vd = 48V, Idq = 220mA)
Gain 85C
Gain 25C
Gain -25C
-6
Input Return Loss vs. Output Power (f = 2140MHz)
(Pulsed 10% duty cycle, 10uS, Vd = 48V, Idq = 220mA)
-10
-8
-6
Input Return Loss vs. Output Power (f = 2140MHz)
(Pulsed 10% duty cycle, 10uS, Vd = 48V, Idq = 220mA)
-16
-14
-12
-10
-8
-6
Input Return Loss vs. Output Power (f = 2140MHz)
(Pulsed 10% duty cycle, 10uS, Vd = 48V, Idq = 220mA)
-20
-18
-16
-14
-12
-10
-8
-6
Input Return Loss vs. Output Power (f = 2140MHz)
(Pulsed 10% duty cycle, 10uS, Vd = 48V, Idq = 220mA)
IRL 85C
IRL 25C
-26
-24
-22
-20
-18
-16
-14
-12
-10
-8
-6
Input Return Loss vs. Output Power (f = 2140MHz)
(Pulsed 10% duty cycle, 10uS, Vd = 48V, Idq = 220mA)
IRL 85C
IRL 25C
IRL -25C
-30
-28
-26
-24
-22
-20
-18
-16
-14
-12
-10
-8
-6
32
34
36
38
40
42
44
46
48
Input Return Loss vs. Output Power (f = 2140MHz)
(Pulsed 10% duty cycle, 10uS, Vd = 48V, Idq = 220mA)
IRL 85C
IRL 25C
IRL -25C
-30
-28
-26
-24
-22
-20
-18
-16
-14
-12
-10
-8
-6
32
34
36
38
40
42
44
46
48
Frequency (MHz)
Input Return Loss vs. Output Power (f = 2140MHz)
(Pulsed 10% duty cycle, 10uS, Vd = 48V, Idq = 220mA)
IRL 85C
IRL 25C
IRL -25C
-15
-14
-13
15
16
17
Small Signal Performance vs. Frequency, Pout = 30dBm
(Vd = 48V, Idq = 220mA)
Fixed tuned test circuit
-21
-20
-19
-18
-17
-16
-15
-14
-13
9
10
11
12
13
14
15
16
17
Small Signal Performance vs. Frequency, Pout = 30dBm
(Vd = 48V, Idq = 220mA)
Fixed tuned test circuit
-26
-25
-24
-23
-22
-21
-20
-19
-18
-17
-16
-15
-14
-13
4
5
6
7
8
9
10
11
12
13
14
15
16
17
Small Signal Performance vs. Frequency, Pout = 30dBm
(Vd = 48V, Idq = 220mA)
Gain
IRL
Fixed tuned test circuit
-27
-26
-25
-24
-23
-22
-21
-20
-19
-18
-17
-16
-15
-14
-13
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
2110
2120
2130
2140
2150
2160
2170
Frequency (MHz)
Small Signal Performance vs. Frequency, Pout = 30dBm
(Vd = 48V, Idq = 220mA)
Gain
IRL
Fixed tuned test circuit
Drain Efficiency vs Frequency Pout = 47 8dBm
66
Drain Efficiency vs. Frequency, Pout = 47.8dBm
(CW, Vd = 48V, Idq = 220mA)
Fixed tuned test circuit
62
64
66
Drain Efficiency vs. Frequency, Pout = 47.8dBm
(CW, Vd = 48V, Idq = 220mA)
Fixed tuned test circuit
60
62
64
66
Drain Efficiency vs. Frequency, Pout = 47.8dBm
(CW, Vd = 48V, Idq = 220mA)
Eff
Fixed tuned test circuit
58
60
62
64
66
Drain Efficiency vs. Frequency, Pout = 47.8dBm
(CW, Vd = 48V, Idq = 220mA)
Eff
Fixed tuned test circuit
56
58
60
62
64
66
2110
2120
2130
2140
2150
2160
2170
Frequency (MHz)
Drain Efficiency vs. Frequency, Pout = 47.8dBm
(CW, Vd = 48V, Idq = 220mA)
Eff
Fixed tuned test circuit
Gain/IRL vs Frequency Pout = 47 8dBm
-7
-6
-5
15
16
17
Gain/IRL vs. Frequency, Pout = 47.8dBm
(CW, Vd = 48V, Idq = 220mA)
Fixed tuned test circuit
11
-10
-9
-8
-7
-6
-5
11
12
13
14
15
16
17
Gain/IRL vs. Frequency, Pout = 47.8dBm
(CW, Vd = 48V, Idq = 220mA)
Fixed tuned test circuit
-14
-13
-12
-11
-10
-9
-8
-7
-6
-5
8
9
10
11
12
13
14
15
16
17
Gain/IRL vs. Frequency, Pout = 47.8dBm
(CW, Vd = 48V, Idq = 220mA)
Fixed tuned test circuit
18
-17
-16
-15
-14
-13
-12
-11
-10
-9
-8
-7
-6
-5
4
5
6
7
8
9
10
11
12
13
14
15
16
17
Gain/IRL vs. Frequency, Pout = 47.8dBm
(CW, Vd = 48V, Idq = 220mA)
Gain
IRL
Fixed tuned test circuit
-18
-17
-16
-15
-14
-13
-12
-11
-10
-9
-8
-7
-6
-5
4
5
6
7
8
9
10
11
12
13
14
15
16
17
2110
2120
2130
2140
2150
2160
2170
Frequency (MHz)
Gain/IRL vs. Frequency, Pout = 47.8dBm
(CW, Vd = 48V, Idq = 220mA)
Gain
IRL
Fixed tuned test circuit



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