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PMA2-162LN - Monolithic Amplifier

Download the PMA2-162LN datasheet PDF. This datasheet also covers the PMA2-162LN-Mini variant, as both devices belong to the same monolithic amplifier family and are provided as variant models within a single manufacturer datasheet.

Description

The PMA2-162LN+ (RoHS compliant) amplifier is fabricated using E-PHEMT technology and offers extremely high dynamic range with ultra low noise figure and good input and output return loss.

Lead finish is Matte Tin plate.

Features

  • Feature Ultra Low Noise, 0.5 dB at 1.0 GHz Advantages Outstanding world class noise figure performance. High IP3, +30 dBm at 1.0 GHz Combining Low Noise and High IP3 makes this MMIC amplifier ideal for use in Low Noise Receiver Front End (RFE) as it gives the user advantages at both ends of the dynamic range: sensitivity & two-tone IM performance. Adjustable Gain 2mm x 2mm 8 lead MCLP Package Max Input Power, +25 dBm By changing feedback resistor R1, gain can be changed from19.7 to 23.5 dB.

📥 Download Datasheet

Note: The manufacturer provides a single datasheet file (PMA2-162LN-Mini-Circuits.pdf) that lists specifications for multiple related part numbers.

Datasheet Details

Part number PMA2-162LN
Manufacturer Mini-Circuits
File Size 273.14 KB
Description Monolithic Amplifier
Datasheet download datasheet PMA2-162LN Datasheet

Full PDF Text Transcription

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Ultra Low Noise, High IP3 Monolithic Amplifier 50Ω 0.7 to 1.6 GHz PMA2-162LN+ The Big Deal • Ultra Low Noise Figure, 0.5 dB • High Gain, High IP3 • Class 1B HBM ESD (500V) • May be used as a replacement for MGA-631P8 a,b 2mm x 2mm ☛ LTE Performance Product Overview Mini-Circuits PMA2-162LN+ is a E-PHEMT based Ultra-Low Noise MMIC Amplifier with a unique combinations of low noise and high IP3 making this amplifier ideal for sensitive high dynamic range receiver applications. This design operates on a single 4V supply. Key Features Feature Ultra Low Noise, 0.5 dB at 1.0 GHz Advantages Outstanding world class noise figure performance. High IP3, +30 dBm at 1.
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