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MAX9993
High-Linearity 1700MHz to 2200MHz Down-Conversion Mixer with LO Buffer/Switch

Lowest Noise, Highest Linearity, 1700MHz to 2200MHz SiGe Downconversion Mixer for Base Stations


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Status
Active: In Production.

Description
FULL DATA SHEET (PDF, 504kB)
Download this datasheet in PDF formatDownload   Send this datasheet to any email addressE-Mail
The MAX9993 high-linearity down-conversion mixer provides 8.5dB of gain, +23.5dBm IIP3, and 9.5dB noise figure for UMTS, DCS, and PCS base-station applications.

The MAX9993 integrates baluns in the RF and LO ports, a dual-input LO selectable switch, an LO buffer, a double-balanced mixer, and a differential IF output amplifier. The MAX9993 requires a typical LO drive of +3dBm, and supply current is guaranteed to below 230mA.

The MAX9993 is available in a compact 20-pin thin QFN package (5mm x 5mm) with an exposed pad. Electrical performance is guaranteed over the extended -40°C to +85°C temperature range.

The MAX9993 EV kit is available; contact the factory for more information.

An evaluation kit is available:  MAX9993EVKIT  

Key Features   Applications/Uses
  • +23.5dBm Input IIP3
  • 1700MHz to 2200MHz RF Frequency Range
  • 40MHz to 350MHz IF Frequency Range
  • 1400MHz to 2000MHz LO Frequency Range
  • 8.5dB Conversion Gain
  • 9.5dB Noise Figure
  • Integrated LO Buffer
  • Switch-Selectable (SPDT), Two LO Inputs
  • Low 0 to +6dBm LO Drive
  • 40dB LO1-to-LO2 Isolation

 
  • DCS1800 and EDGE Base Stations
  • Military Systems
  • PCS1900 Base Stations
  • Point-to-Point Microwave Systems
  • Private Mobile Radios (PMRs)
  • UMTS and 3G Base Stations
  • Wireless Local Loop (WLL)

Key Specifications:  Downconverter Mixers
Part Number RF Freq.
(MHz)
RF Freq.
(MHz)
Gain
(dB)
Input IP3
(dBm)
Noise Figure
(dB)
ISUPPLY
(mA)
Footprint
(mm x mm)
Package/Pins Price
min max See Notes
MAX9993  1700 2200 8.5 23.5 9.5 200 5.0 x 5.0
TQFN/20
$6.40 @1k
See All Downconverter Mixers (24)

Diagram
MAX9993: Typical Application Circuit
Typical Application Circuit

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    Document Ref.: 19-2596; Rev 0; 2002-12-03
    This page last modified: 2009-10-13


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