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PDF HMC-AUH317 Data sheet ( Hoja de datos )

Número de pieza HMC-AUH317
Descripción GaAs HEMT MMIC MEDIUM POWER AMPLIFIER
Fabricantes Analog Devices 
Logotipo Analog Devices Logotipo



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No Preview Available ! HMC-AUH317 Hoja de datos, Descripción, Manual

v04.0511
Typical Applications
This HMC-AUH317 is ideal for:
• Short Haul / High Capacity Links
3 • Wireless LAN Bridges
• Military & Space
• E-Band Communication Systems
HMC-AUH317
GaAs HEMT MMIC MEDIUM POWER
AMPLIFIER, 81 - 86 GHz
Features
Gain: 22 dB
P1dB: +17.5 dBm
Supply Voltage: +4V
50 Ohm Matched Input/Output
Die Size: 2.65 x 1.6 x 0.05 mm
Functional Diagram
General Description
The HMC-AUH317 is a high dynamic range, three
stage GaAs HEMT MMIC Medium Power Amplifier
which operates between 81 and 86 GHz. The HMC-
AUH317 provides 22 dB of gain, and an output power
of +17.5 dBm at 1 dB compression from a +4V supply
voltage. All bond pads and the die backside are Ti/Au
metallized and the amplifier device is fully passivated
for reliable operation. The HMC-AUH317 GaAs
HEMT MMIC Medium Power Amplifier is compatible
with conventional die attach methods, as well as
thermocompression and thermosonic wire bonding,
making it ideal for MCM and hybrid microcircuit
applications. All data shown herein is measured with
the chip in a 50 Ohm environment and contacted with
RF probes.
Electrical Specifications, TA = +25° C, Vdd1=Vdd2 = 4V, Idd1 = Idd2 = 80 mA [2]
Parameter
Min.
Typ.
Max.
Units
Frequency Range
81 - 86
GHz
Gain
19 22
dB
Input Return Loss
9 dB
Output Return Loss
5 dB
Output power for 1dB Compression (P1dB)
17.5 dBm
Saturated Output Power (Psat)
19.5
dBm
Supply Current (Idd1+Idd2)
160 mA
[1] Unless otherwise indicated, all measurements are from probed die.
[2] Adjust Vgg1, Vgg2 independently between -0.8V to +0.3V (typically -0.1V) to achieve drain currents of Idd1 = 80 mA and Idd2 = 80 mA.
3-1
Products and product information are subject to change without notice.
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HMC-AUH317 pdf
v04.0511
Assembly Diagram
3
HMC-AUH317
GaAs HEMT MMIC MEDIUM POWER
AMPLIFIER, 81 - 86 GHz
Note 1: Bypass caps should be 100 pF (approximately) single-layer placed no farther than 30 mils from the amplifier.
Note 2: Best performance is obtained by minimizing the length of the ribbon, 1.5 by 0.5 mil, on the input and output.
3-5
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