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PDF AMMP-6232 Data sheet ( Hoja de datos )

Número de pieza AMMP-6232
Descripción 18 to 32 GHz GaAs High Linearity LNA
Fabricantes AVAGO TECHNOLOGIES 
Logotipo AVAGO TECHNOLOGIES Logotipo



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AMMP-6232
18 to 32 GHz GaAs High Linearity LNA in SMT Package
Data Sheet
www.DataSheet4U.com
Description
Avago’s AMMP-6232 is an easy-to-use broadband, high
gain, high linearity Low Noise Amplifier in a surface mount
package. The wide band and unconditionally stable
performance makes this MMIC ideal as a primary or sub-
sequential low noise block or a transmitter driver.The MMIC
has 4 gain stages and requires a 4V, 138mA power supply
for optimal performance. Since this MMIC covers several
bands, it can reduce part inventory and increase volume
purchase options The MMIC is fabricated using PHEMT
technology. The surface mount package eliminates the
need of “chip & wire” assembly for lower cost. This MMIC is
fully SMT compatible with backside grounding and I/Os.
Pin Connections (Top View)
123
100pF
8
100pF
76 5
Top view
Package base: GND
Pin Function
1
2 Vdd
3
4 4 RFout
5
6 Vg
7
8 RFin
Features
Surface Mount Package, 5.0 x 5.0 x 1.25 mm
Single Power Supply Pin
Unconditionally Stable
50Ohm Input and Output Match
Specifications (Vdd = 4.0V, Idd = 138mA)
RF Frequencies: 18 - 32 GHz
High Output IP3: 29dBm
High Small-Signal Gain: 23dB
Typical Noise Figure: 3dB
Applications
Microwave Radio systems
Satellite VSAT, DBS Up/Down Link
LMDS & Pt-Pt mmW Long Haul
Broadband Wireless Access
(including 802.16 and 802.20 WiMax)
WLL and MMDS loops
Commercial grade military
Note:
1. This MMIC uses depletion mode pHEMT devices.
2. Negative voltage is used for the gate bias
Attention:
Observe precautions for
handling electrostatic
sensitive devices.
ESD Machine Model (Class A)
ESD Human Body Model (Class 1A)
Refer to Avago Application Note A004R:
Electrostatic Discharge Damage and Control


1 page




AMMP-6232 pdf
AMMP-6232 Typical Performance (cont.)
(TA = 25°C, Vdd=4V, Idd=138mA, Zin = Zout = 50 W unless noted)
www.DataSheet4U.com
25
20
15
10
5
18 20 22 24 26 28
Frequency (GHz)
Figure 13. Output P-1dB over Vdd
3V
4V
5V
30 32
35
30
25
20 3V
15 4V
10 5V
5
18 20 22 24 26 28 30 32
Frequency (GHz)
Figure 14. Output IP3 Over Vdd
40
30
20
10
0
15 20 25 30
Frequency (GHz)
Figure 15. Gain over Temp
25C
85C
-40C
35
5
4
3
2
1
0
18 20 22 24 26 28
Frequency (GHz)
Figure 16. Noise Figure over Temp
-40C
25C
85C
30 32
00
-5 -5
-10
-15
-20
-25
15
25C
-40C
85C
20 25 30
Frequency (GHz)
35
-10
-15
-20
-25
-30
15
25C
85C
-40C
20 25 30
Frequency (GHz)
35
Figure 17. Input Return Loss Over Temp
Figure 18. Output Return Loss Over Temp


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