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MAX2686 - (MAX2686 / MAX2688) GPS/GNSS Low-Noise Amplifiers

General Description

The MAX2686/MAX2688 low-noise amplifiers (LNAs) are designed for GPS L1, Galileo, and GLONASS applications.

Designed in Maxim’s advanced SiGe process, the devices achieve high gain and ultra-low-noise figure while maximizing the input-referred 1dB compression point and the 3rd-order intercept point.

Key Features

  • S High-Power Gain: 19dB (MAX2686) S Ultra-Low-Noise Figure: 0.75dB (MAX2686) S Integrated 50Ω Output Matching Circuit S Low Supply Current: 4.1mA S Wide Supply Voltage Range: 1.6V to 3.3V S Low Bill of Materials: One Inductor, Two Capacitors S Small Footprint: 0.86mm x 0.86mm S Thin Profile: 0.65mm S 0.4mm-Pitch Wafer-Level Package (WLP) General.

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Full PDF Text Transcription for MAX2686 (Reference)

Note: Below is a high-fidelity text extraction (approx. 800 characters) for MAX2686. For precise diagrams, and layout, please refer to the original PDF.

DataSheet.in 19-5456; Rev 0; 8/10 TION KIT EVALUA BLE IL AVA A GPS/GNSS Low-Noise Amplifiers Features S High-Power Gain: 19dB (MAX2686) S Ultra-Low-Noise Figure: 0.75dB (...

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s S High-Power Gain: 19dB (MAX2686) S Ultra-Low-Noise Figure: 0.75dB (MAX2686) S Integrated 50Ω Output Matching Circuit S Low Supply Current: 4.1mA S Wide Supply Voltage Range: 1.6V to 3.3V S Low Bill of Materials: One Inductor, Two Capacitors S Small Footprint: 0.86mm x 0.86mm S Thin Profile: 0.65mm S 0.4mm-Pitch Wafer-Level Package (WLP) General Description The MAX2686/MAX2688 low-noise amplifiers (LNAs) are designed for GPS L1, Galileo, and GLONASS applications. Designed in Maxim’s advanced SiGe process, the devices achieve high gain and ultra-low-noise figure while maximizing the input-referred 1dB compression point an