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PDF TGA2624-CP Data sheet ( Hoja de datos )

Número de pieza TGA2624-CP
Descripción GaN Power Amplifier
Fabricantes TriQuint Semiconductor 
Logotipo TriQuint Semiconductor Logotipo



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No Preview Available ! TGA2624-CP Hoja de datos, Descripción, Manual

Applications
Weather and Marine Radar
TGA2624-CP
9 to 10 GHz, 16 W GaN Power Amplifier
Product Features
Frequency Range: 9 10 GHz
Pout: 42 dBm (PIN = 15 dBm)
PAE: > 37 % (PIN = 15 dBm)
Power Gain: 27 dB (PIN = 15 dBm)
Bias: VD = 28 V, IDQ = 365 mA, VG = -2.6 V typical
(Pulsed: PW = 100 µs, DC = 10%)
Package Dimensions: 15.2 x 15.2 x 3.5 mm
Package base is pure Cu offering superior thermal
management
Functional Block Diagram
1
2
3
4
5
10
9
8
7
6
General Description
TriQuint’s TGA2624-CP is a packaged high-power
X-Band amplifier fabricated on TriQuint’s TQGaN25 0.25
um GaN on SiC process. Operating from 9 to 10 GHz,
the TGA2624-CP achieves 42 dBm saturated output
power, a power-added efficiency of > 37 %, and power
gain of 27 dB.
The TGA2624-CP is packaged in a 10-lead 15x15 mm
bolt-down package with a Cu base for superior thermal
management. It can support a range of bias voltages
and performs well under both pulsed and CW conditions.
Both RF ports are internally DC blocked and matched to
50 ohms allowing for simple system integration.
The TGA2624-CP is ideally suited for both commercial
and defense applications.
Lead free and RoHS compliant.
Evaluation Boards are available upon request.
Pin Configuration
Pad No.
1, 5
2, 4, 7, 9
3
6, 10
8
Symbol
VG
GND
RFIN
VD
RFOUT
Ordering Information
Part
TGA2624-CP
ECCN Description
3A001.b.2.b
9 10 GHz, 16 W
GaN Power Amplifier
Preliminary Datasheet: 11-03-14
© 2014 TriQuint
- 1 of 15 -
Disclaimer: Subject to change without notice
www.triquint.com

1 page




TGA2624-CP pdf
TGA2624-CP
9 to 10 GHz, 16 W GaN Power Amplifier
Typical Performance: Large Signal
Conditions unless otherwise specified: VD = 28 V, IDQ = 365 mA, VG = -2.6 V typical.
46
44
42
40
38
36
34
32
30
8.5
PAE vs. Frequency vs. VD
PW = 100 µs, DC = 10 %,
PIN = 15 dBm, Temp = 25 °C
25 V
28 V
30 V
32 V
9.0 9.5 10.0
Frequency (GHz)
10.5
30 Power Gain vs. Frequency vs. VD
PW = 100 µs, DC = 10 %,
PIN = 15 dBm, Temp = 25 °C
29
28
27
26
25
24
8.5
25 V
28 V
30 V
32 V
9.0 9.5 10.0
Frequency (GHz)
10.5
PAE vs. Frequency vs. Temperature
46
PW = 100 µs, DC = 10 %,
44 PIN = 15 dBm
42
40
38
-40 °C
36
25 °C
34 85 °C
32
30
8.5
9.0 9.5 10.0
Frequency (GHz)
10.5
Power Gain vs. Frequency vs. Temperature
30
PW = 100 µs, DC = 10 %,
PIN = 15 dBm
29
28
27
-40 °C
25 °C
26 85 °C
25
24
8.5
9.0 9.5 10.0
Frequency (GHz)
10.5
PAE vs. Input Power vs. Temperature
46
PW = 100 µs, DC = 10 %,
44 Freq = 9.5 GHz
42
40
38
36 -40 °C
25 °C
34 85 °C
32
30
0 2 4 6 8 10 12 14 16
PIN (dBm)
18
Power Gain vs. Input Power vs. Temp.
42
39
36
33
30
27 -40 °C
25 °C
24 PW = 100 µs, DC = 10 %,
Freq = 9.5 GHz
85 °C
21
0 2 4 6 8 10 12 14 16 18
PIN (dBm)
Preliminary Datasheet: 11-03-14
© 2014 TriQuint
- 5 of 15 -
Disclaimer: Subject to change without notice
www.triquint.com

5 Page





TGA2624-CP arduino
TGA2624-CP
9 to 10 GHz, 16 W GaN Power Amplifier
Typical Performance: Small Signal
Conditions unless otherwise specified: VD = 28 V, IDQ = 365 mA, VG = -2.6 V typical.
Gain vs. Frequency vs. Temperature
42
39
36
33
30 -40 °C
25 °C
27 85 °C
24
21
18
15
8.5
VD = 28 V, CW
9.0 9.5 10.0
Frequency (GHz)
10.5
Gain vs. Frequency vs. Drain Current
42
39
36
33
30
27 365 mA
145 mA
24
21
18
15
8.5
VD = 28 V, CW
9.0 9.5 10.0
Frequency (GHz)
10.5
Input Return Loss vs. Frequency vs. Temp.
0
-3
-6
-9
-12
-15
-18
-21 -40 °C
-24 25 °C
85 °C
-27
VD = 28 V, CW
-30
8.5 9.0 9.5 10.0 10.5
Frequency (GHz)
IRL vs. Frequency vs. Drain Current
0
-3
-6
-9
-12
-15
-18
365 mA
-21 145 mA
-24
-27
-30
8.5
VD = 28 V, CW
9.0 9.5 10.0
Frequency (GHz)
10.5
Output Return Loss vs. Freq. vs. Temp.
0
-3 VD = 28 V, CW
-6
-9
-12
-15
-18
-21
-40 °C
-24 25 °C
-27 85 °C
-30
8.5
9.0 9.5 10.0
Frequency (GHz)
10.5
ORL vs. Frequency vs. Drain Current
0
-3
-6
-9
-12
-15
365 mA
-18 145 mA
-21
-24
-27
-30
8.5
VD = 28 V, CW
9.0 9.5 10.0
Frequency (GHz)
10.5
Preliminary Datasheet: 11-03-14
© 2014 TriQuint
- 11 of 15 -
Disclaimer: Subject to change without notice
www.triquint.com

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