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PDF AG602-89G Data sheet ( Hoja de datos )

Número de pieza AG602-89G
Descripción InGaP HBT Gain Block
Fabricantes TriQuint Semiconductor 
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Applications
Mobile Infrastructure
CATV / FTTX
W-LAN / ISM
WCDMA / LTE
AG602-89G
InGaP HBT Gain Block
AG602G
SOT-89 Package
Product Features
DC – 3500 MHz
+18.5 dBm P1dB at 900 MHz
+33 dBm OIP3 at 900 MHz
14 dB Gain at 900 MHz
Single Voltage Supply
SOT-89 package
Internally matched to 50
Functional Block Diagram
Backside Paddle - GND
1
RF IN
2
GND
3
RF OUT / VCC
General Description
The AG602-89G is a general-purpose buffer amplifier
that offers high dynamic range in a low-cost surface-
mount package. At 900 MHz, the AG602-89 typically
provides 14 dB of gain, +33 dBm OIP3, and +18.5 dBm
P1dB. The device combines dependable performance
with consistent quality to maintain MTTF values
exceeding 1000 years at mounting temperatures of +85
°C and is housed in a lead-free/green/RoHS-compliant
SOT-89 industry-standard SMT package.
Pin Configuration
Pin No.
1
2
3
Backside Paddle
Label
RF IN
GND
RF OUT / VCC
GND
The AG602-89G consists of Darlington pair amplifiers
using the high reliability InGaP/GaAs HBT process
technology and only requires DC-blocking capacitors, a
bias resistor, and an inductive RF choke for operation.
The broadband MMIC amplifier can be directly applied to
various current and next generation wireless
technologies such as GSM, CDMA, W-CDMA and LTE.
In addition, the AG602-89 will work for other various
applications within the DC to 3.5 GHz frequency range
such as CATV.
Ordering Information
Part No.
Description
AG602-89G
InGaP/GaAs HBT Gain Block
AG602-89PCB
700-2400 MHz Evaluation Board
Standard T/R size = 3000 pieces on a 13” reel
Datasheet: Rev A 9/5/13
© 2013 TriQuint
- 1 of 9 -
Disclaimer: Subject to change without notice
www.triquint.com

1 page




AG602-89G pdf
AG602-89G
InGaP HBT Gain Block
Typical Performance − AG602-89PCB
Test conditions unless otherwise noted: VSUPPLY =+6 V, R1 = 11.2 Ω, ICC = 75 mA (typ.), TCASE = +25°C
Parameter
Typical Value
Units
Frequency
100 500 900 1900 2140 2400 3500 5800 MHz
Gain
14.5 14.4 14.2 13.6 13.5 13.2 12.2
9.6
dB
Input Return Loss
12 12 13 16 16 17 13 10 dB
Output Return Loss
18 16 15 14 14 13 10 7 dB
Output P1dB
Output IP3(1)
+18.6
+33.8
+18.6
+33.5
+18.7
+33.1
+18.4
+33.0
+18.3
+33.0
+18.3
+33.0
+17.5
dBm
dBm
Noise Figure
4.3 4.3 4.4 4.5 4.5 4.6
dB
Notes:
1. OIP3 measured with two tones at an output power of +2 dBm / tone separated by 10 MHz.
2. Data is shown as device performance only. Actual implementation for the desired frequency band will be determined by
external components shown in the application circuit.
Performance Plots − AG602-89PCB
Test conditions unless otherwise noted: VSUPPLY =+6 V, R1 = 11.2 Ω, ICC = 75 mA (typ.), TCASE = +25°C
16
14
12
10
8
6
0
Gain vs. Frequency
+85°C
+25°C
−40°C
123
Frequency (GHz)
4
0
-10
-20
-30
-40
0
Return Loss vs. Frequency
|S22|
|S11|
123
Frequency (GHz)
4
125 I-V Curve ICC vs. VCC
100
Optimal operating point (typ.)
75
50
25
0
3.6 3.8 4.0 4.2 4.4 4.6 4.8 5.0 5.2 5.4 5.6
Device Voltage (V)
Output IP3 vs. Frequency
40
Pout=+2 dBm/tone
Δf= 10 MHz
35
+85°C
+25°C
−40°C
30
25
20
0 0.5 1 1.5 2 2.5 3
Frequency (GHz)
60
55
50
45
40
35
0
Output IP2 vs. Frequency
+85°C
+25°C
−40°C
200 400 600 800
Frequency (MHz)
1000
Noise Figure vs. Frequency
7
+85°C
6 +25°C
−40°C
5
4
3
2
1
0 0.5 1 1.5 2 2.5 3
Frequency (GHz)
P1dB vs. Frequency
25
+85°C
+25°C
20 −40°C
15
10
5
0 0.5 1 1.5 2 2.5 3 3.5 4
Frequency (GHz)
Datasheet: Rev A 9/5/13
© 2013 TriQuint
Output Power / Gain vs. Input Power
15 20
Freq.=900 MHz
Temp.=+25°C
14 16
Gain
13
12
Output Power
12 8
11 4
10
-12
-8 -4 0 4
Input Power (dBm)
0
8
- 5 of 9 -
Output Power / Gain vs. Input Power
14 20
Freq.=2000 MHz
Temp.=+25°C
12
Gain
16
10 12
Output Power
88
64
4
-12
-8 -4 0 4
Input Power (dBm)
0
8
Disclaimer: Subject to change without notice
www.triquint.com

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