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PDF TGA2620-SM Data sheet ( Hoja de datos )

Número de pieza TGA2620-SM
Descripción Driver Amplifier
Fabricantes TriQuint Semiconductor 
Logotipo TriQuint Semiconductor Logotipo



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No Preview Available ! TGA2620-SM Hoja de datos, Descripción, Manual

Applications
Commercial and Military Radar
Communications
TGA2620-SM
16 18GHz Driver Amplifier
Product Features
Frequency Range: 16 18GHz
PSAT: 18.5dBm
P1dB: 16.5dBm
Small Signal Gain: 20dB
Input Return Loss: 16dB
Output Return Loss: 25dB
Bias: VD = 6V, IDQ = 30mA, VG = -0.6V Typical
Package Dimensions: 3 x 3 x 0.53 mm
QFN 3x3 mm 14L
Functional Block Diagram
14 13 12 11
1 10
29
38
General Description
TriQuint’s TGA2620-SM is a package Ku-band MMIC
driver amplifier fabricated on TriQuint’s 0.15um GaAs
pHEMT production process. Operating from 16-18GHz,
the TGA2620-SM provides more than 18.5dBm
saturated output power, 16.5dBm P1dB and 20dB small
signal gain.
Fully matched to 50 ohms with integrated DC blocking
capacitors on both I/O ports allows for simple system
integration. The TGA2620-SM is an ideal choice for
general purpose amplification across both commercial
and military Ku-band platforms.
4 567
Pad Configuration
Pad No.
1, 3, 8, 10
2
4 - 7, 11, 14
9
12
13
Symbol
GND
RF In
N/C
RF Out
VD
VG
The TGA2620-SM is available in a low cost, surface
mount, 14-lead 3x3mm AIN QFN package base with air
cavity Liquid Crystal Polymer (LCP) lid.
Lead-free and RoHS compliant
Evaluation Boards are available upon request.
Ordering Information
Part
ECCN Description
TGA2620-SM EAR99 16 18GHz Driver Amplifier
Preliminary Datasheet: Rev - 07-25-14
© 2014 TriQuint
- 1 of 14 -
Disclaimer: Subject to change without notice
www.triquint.com

1 page




TGA2620-SM pdf
Typical Performance: Large Signal
POUT vs. Frequency vs. PIN
24
Temp. = +25°C
21
18
15
12
-2dBm
9 2dBm
6 5dBm
3
0
15
VD = 6V, IDQ = 30mA
16 17 18
Frequency (GHz)
19
20
TGA2620-SM
16 18GHz Driver Amplifier
24 POUT vs. Frequency
Temp. = +25°C
21
18
15
12
P3dB
9 P1dB
6
3
0
15
VD = 6V, IDQ = 30mA
16 17 18
Frequency (GHz)
19
20
Output Power vs. Frequency vs. Temp.
24
21 PIN = 2dBm
18
15
12
9 -40 C
+25 C
6 +85 C
3
0
15
VD = 6V, IDQ = 30mA
16 17 18
Frequency (GHz)
19
20
40
35
30
25
20
15
10
5
0
15
PAE vs. Frequency vs. Temp.
PIN = 2dBm
-40 C
+25 C
+85 C
16
VD = 6V, IDQ = 30mA
17 18
Frequency (GHz)
19
20
Output Power vs. PIN vs. Frequency
21
Temp. = +25°C
19
17
15
16GHz
13 17GHz
11 18GHz
9
VD = 6V, IDQ = 30mA
7
-10 -8 -6 -4 -2 0 2 4 6
Input Power (dBm)
PAE vs. Input Power vs. Frequency
35
Temp. = +25°C
30
25
20
15
10
5
0
-10
-8
VD = 6V, IDQ = 30mA
16GHz
17GHz
18GHz
-6 -4 -2 0 2
Input Power (dBm)
4
6
Preliminary Datasheet: Rev - 07-25-14
© 2014 TriQuint
- 5 of 14 -
Disclaimer: Subject to change without notice
www.triquint.com

5 Page





TGA2620-SM arduino
Pin Layout
Pin Layout
TGA2620-SM
16 18GHz Driver Amplifier
Pin Description
1, 3, 8, 10
2
4 7, 11, 14
9
12
Pin No.
13
15
Symbol
GND
RF IN
NC
RF OUT
DRAIN
GATE
GND
Description
Ground
Input; matched to 50 Ω. DC Blocked
No Connection Recommended grounding on PCB.
Output; matched to 50 Ω. DC Blocked
Drain voltage; bias network is required; see Application
Circuit on page 9 as an example.
Gate voltage; bias network is required; see Application
Circuit on page 9 as an example.
Ground Paddle. Multiple vias should be employed to
minimize inductance and thermal resistance.
Preliminary Datasheet: Rev - 07-25-14
© 2014 TriQuint
- 11 of 14 -
Disclaimer: Subject to change without notice
www.triquint.com

11 Page







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