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MAX2021
High-Dynamic-Range, Direct Up-/Downconversion, 750MHz to 1200MHz Quadrature Modulator/Demodulator

Highest Linearity, Lowest Noise, 1GHz ZIF Modulator/Demodulator Enables Four-Carrier WCDMA Tx


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Description
FULL DATA SHEET (PDF, 216kB)
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The MAX2021 low-noise, high-linearity, direct upconversion/downconversion quadrature modulator/demodulator is designed for RFID handheld and portal readers, as well as single and multicarrier 750MHz to 1200MHz GSM/EDGE, cdma2000®, WCDMA, and iDEN® base-station applications. Direct conversion architectures are advantageous since they significantly reduce transmitter or receiver cost, part count, and power consumption as compared to traditional IF-based double conversion systems.

In addition to offering excellent linearity and noise performance, the MAX2021 also yields a high level of component integration. This device includes two matched passive mixers for modulating or demodulating in-phase and quadrature signals, two LO mixer amplifier drivers, and an LO quadrature splitter. On-chip baluns are also integrated to allow for single-ended RF and LO connections. As an added feature, the baseband inputs have been matched to allow for direct interfacing to the transmit DAC, thereby eliminating the need for costly I/Q buffer amplifiers.

The MAX2021 operates from a single +5V supply. It is available in a compact 36-pin thin QFN package (6mm x 6mm) with an exposed paddle. Electrical performance is guaranteed over the extended -40°C to +85°C temperature range.


EDN China Innovation Award, Winner 2006
Direct-Conversion Transmitter Solution:
MAX2021/MAX2023/MAX2058/MAX2059

Key Features   Applications/Uses
  • 750MHz to 1200MHz RF Frequency Range
  • Scalable Power: External Current-Setting Resistors Provide Option for Operating Device in Reduced-Power/Reduced-Performance Mode
  • 36-Pin, 6mm x 6mm TQFN Provides High Isolation in a Small Package

    Modulator Operation:
  • Meets 4-Carrier WCDMA 65dBc ACLR
  • +21dBm Typical OIP3
  • +58dBm Typical OIP2
  • +16.7dBm Typical OP1dB
  • -32dBm Typical LO Leakage
  • 43.5dBc Typical Sideband Suppression
  • -174dBm/Hz Output Noise Density
  • DC to 300MHz Baseband Input Allows a Direct Launch DAC Interface, Eliminating the Need for Costly I/Q Buffer Amplifiers
  • DC-Coupled Input Allows Ability for Customer Offset Voltage Control

    Demodulator Operation:
  • +35.2dBm Typical IIP3
  • +76dBm Typical IIP2
  • > 30dBm IP1dB
  • 9.2dB Typical Conversion Loss
  • 9.3dB Typical NF
  • 0.06dB Typical I/Q Gain Imbalance
  • 0.15° I/Q Typical Phase Imbalance

     
  • Cable Modem Termination Systems (CMTS)
  • Digital and Spread-Spectrum Communication Systems
  • Fixed Broadband Wireless Access
  • GSM 850/GSM 900 EDGE Base Stations
  • Microwave Links
  • Military Systems
  • Predistortion Transmitters and Receivers
  • RFID Handheld and Portal Readers
  • Single and Multicarrier cdmaOne™ and cdma2000® Base Stations
  • Single and Multicarrier WCDMA 850 Base Stations
  • Video-on-Demand (VOD) and DOCSIS® Compliant Edge QAM Modulation
  • WiMAX Transmitters and Receivers

    Key Specifications:   I/Q Demodulators
    Part Number Solutions Applications Band/Freq (MHz) Features Footprint (mm x mm) RoHS Available Package Smallest Available Package (max w/pins) (mm2) Price**
    MAX2021  1200MHz CMTS
    700MHz
    850/900MHz Cellular
    750-1200MHz Direct Conversion (Zero IF) Base Station and RFID Receivers
    CMTS (Cable Modem Termination Systems)
    Fixed Broadband Wireless Access
    Microwave Links
    Military Systems
    Predistortion Transmitters
    Private Mobile Radio
    RFID Readers
    Single and Multicarrier GSM/EDGE, WCDMA, cdma2000, and WiMAX Base Stations
    Wireless Local Loop
    750 to 1200
    +21dBm Typical OIP3
    +35.2dBm Typical IIP3
    +58dBm Typical OIP2
    +76dBm Typical IIP2
    -174dBm/Hz Typical Output Noise, Eliminating the Need for an RF Output Filter
    -32dBm Typical LO Leakage
    0.06dB Typical I/Q Gain Imbalance
    0.15° I/Q Typical Phase Imbalance
    40dBc Typical Sideband Suppression
    9.2dB Typical Conversion Loss
    9.3dB Typical NF
    > 30dBm IP1dB
    Broadband Baseband Input
    DC-Coupled Input Provides for Direct Launch
    Meets 4-Carrier WCDMA 65dBc ACLR
    Performance Scalable with Power
    6.0 x 6.0 Yes THIN QFN/36 37 $4.98 @ 1k
    See All I/Q Demodulators (3)

    Key Specifications:   I/Q Modulators
    Part Number Solutions Applications Min. Frequency (MHz) Max. Frequency (MHz) Features Footprint (mm x mm) RoHS Available Package Smallest Available Package (max w/pins) (mm2) Price**
    MAX2021  1200MHz CMTS
    700MHz
    850/900MHz Cellular
    750-1200MHz Direct Conversion (Zero IF) Base Station and RFID Receivers
    CMTS (Cable Modem Termination Systems)
    Fixed Broadband Wireless Access
    Microwave Links
    Military Systems
    Predistortion Transmitters
    Private Mobile Radio
    RFID Readers
    Single and Multicarrier GSM/EDGE, WCDMA, cdma2000, and WiMAX Base Stations
    Wireless Local Loop
    750 1,200
    +21dBm Typical OIP3
    +35.2dBm Typical IIP3
    +58dBm Typical OIP2
    +76dBm Typical IIP2
    -174dBm/Hz Typical Output Noise, Eliminating the Need for an RF Output Filter
    -32dBm Typical LO Leakage
    0.06dB Typical I/Q Gain Imbalance
    0.15° I/Q Typical Phase Imbalance
    40dBc Typical Sideband Suppression
    9.2dB Typical Conversion Loss
    9.3dB Typical NF
    > 30dBm IP1dB
    Broadband Baseband Input
    DC-Coupled Input Provides for Direct Launch
    Meets 4-Carrier WCDMA 65dBc ACLR
    Performance Scalable with Power
    6.0 x 6.0 Yes THIN QFN/36 37 $4.98 @ 1k
    See All I/Q Modulators (3)
    Notes:
    **This pricing is BUDGETARY, for comparing similar parts. Prices are in U.S. dollars and subject to change. Quantity pricing may vary substantially and international prices may differ due to local duties, taxes, fees, and exchange rates. For volume-specific prices and delivery, please see the price and availability page or contact an authorized distributor.

    Diagram
    MAX2021: Typical Operating Circuit
    Typical Operating Circuit

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    Document Ref.: 19-3918; Rev 0; 2006-04-05
    This page last modified: 2007-07-12



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