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MAX2059
1700MHz to 2200MHz, High-Linearity, SPI-Controlled DVGA with Integrated Loopback Mixer

High-Performance RF DVGA with 56dB of SPI™-Controlled Dynamic Range and Complete Conformance with GSM/EDGE Spectral Mask Requirements


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Data Sheet
FULL DATA SHEET (PDF, 796kB)
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Description

The MAX2059 high-linearity digital-variable-gain amplifier (DVGA) is designed to provide 56dB of total gain range and typical output IP3 and output P1dB levels of +31.8dBm and +18.4dBm, respectively. The device is ideal for a variety of applications, including single and multicarrier 1700MHz to 2200MHz DCS 1800/PCS 1900 EDGE, cdma2000®, WCDMA/UMTS, and TD-SCDMA base stations. The MAX2059 yields a high level of component integration, which includes two 5-bit digital attenuators, a two-stage driver amplifier, a loopback mixer, and a serial interface to control the attenuators.

The MAX2059 is pin compatible with the MAX2058 700MHz to 1200MHz DVGA, facilitating an easy design-in for applications where a common PC board layout is used for both frequency bands.

The MAX2059 is available in a 40-pin thin QFN package with an exposed paddle. Electrical performance is guaranteed over a -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
  • +31.8dBm Typical Output IP3
  • +18.4dBm Typical Output 1dB Compression Point
  • 1700MHz to 2200MHz RF Frequency Range
  • 700MHz to 1200MHz RF Frequency Range (MAX2058)
  • 10.9dB Typical Small-Signal Gain
  • Includes Two Independent 5-Bit Digital Attenuator Stages, Yielding 56dB of Total Gain-Control Range with 1dB Steps
  • 3-Wire SPI™/MICROWIRE™ Compatible
  • Integrated Loopback Mixer for Tx/Rx Self-Diagnostics
  • +5V Single-Supply Operation
  • External Current-Setting Resistors for Scalable Device Power
  • Lead-Free Package Available

 
  • Automatic Test Equipment
  • Broadband Systems
  • cdmaOne™ and cdma2000® Base-Station Transmitters and Power Amplifiers
  • DCS 1800/PCS 1900 EDGE Base-Station Transmitters and Power Amplifiers
  • Digital and Spread-Spectrum Communication Systems
  • Microwave Terrestrial Links
  • Receiver Gain Control
  • Transmitter Gain Control
  • WCDMA, TD-SCDMA, and Other 3G Base-Station Transmitters and Power Amplifiers

    Key Specifications:   RF and IF Variable Gain Amplifiers
    Part Number Solutions Applications Gain (dB) Min. Frequency (MHz) Max. Frequency (MHz) Noise Figure (dB) Input IP3 (dBm) Supply Current (mA) Variable Gain Amp Footprint (mm x mm) RoHS Available Package Smallest Available Package (max w/pins) (mm2) Price**
    MAX2059  1800MHz
    1900MHz
    2200MHz
    Automated Test Equipment
    GSM/EDGE
    PHS/PAS
    UMTS
    WCDMA
    WiMAX
    cdma2000
    -45.1 to +10.9 1,700 2,200 8.1 31.8 217 Yes 6 x 6 Yes THIN QFN/40 37 $7.96 @ 1k
    See All RF and IF Variable Gain Amplifiers (6)
    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
    RF VGA

    Evaluation Kits
    none

    Design Guides
  • WIRELESS INFRASTRUCTURE (PDF)
  • WIRELESS (PDF)

    Reliability Reports
  • Show FIT data for:
  • Request Reliability Report for:

    Software/Models
    none

    Ordering Information
    Notes:

    1. Other options and links for purchasing parts are listed at: http://www.maxim-ic.com/sales.
    2. Didn't Find What You Need? Ask our applications engineers. Expert assistance in finding parts, usually within one business day.
    3. Part number suffixes: T or T&R = tape and reel; + = RoHS/lead-free; # = RoHS/lead-exempt. More: SeeFull Data Sheet or Part Naming Conventions.
    4. * Some packages have variations, listed on the drawing. "PkgCode/Variation" tells which variation the product uses. Note that "+", "#", "-" in the part number suffix describes RoHS status. Package drawings may show a different suffix character.


    Devices: 1-6 of 6

    MAX2059 Free
    Sample
    Buy
    Package: TYPE PINS FOOTPRINT
      DRAWING CODE/VAR *
    Temp RoHS/Lead-Free?
    Materials Analysis
    MAX2059EVKIT  



    See data sheet
    MAX2059EVKIT+  



    See data sheet
    MAX2059ETL  
    THIN QFN;40 pin;37 mm²
    Dwg: 21-0141I (PDF)
    Use pkgcode/variation: T4066-3*
    -40°C to +85°C RoHS/Lead-Free: No
    Materials Analysis
    MAX2059ETL+  
    THIN QFN;40 pin;37 mm²
    Dwg: 21-0141I (PDF)
    Use pkgcode/variation: T4066+3*
    -40°C to +85°C RoHS/Lead-Free: Lead Free
    Materials Analysis
    MAX2059ETL-T  



    -40°C to +85°C See data sheet
    MAX2059ETL+T  
    THIN QFN;40 pin;37 mm²
    Dwg: 21-0141I (PDF)
    Use pkgcode/variation: T4066+3*
    -40°C to +85°C RoHS/Lead-Free: Lead Free
    Materials Analysis

    More Information
  • New Product Press Release 2006-08-30 

    Related Products
    MAX2058 700MHz to 1200MHz High-Linearity, SPI-Controlled DVGA with Integrated Loopback Mixer
    MAX2022 High-Dynamic-Range, Direct Upconversion 1500MHz to 2500MHz Quadrature Modulator
    MAX2021 High-Dynamic-Range, Direct Up-/Downconversion, 750MHz to 1200MHz Quadrature Modulator/Demodulator
    MAX2027 IF Digitally Controlled Variable-Gain Amplifier
    MAX2055 Digitally Controlled, Variable-Gain, Differential ADC Driver/Amplifier
    MAX2056 800MHz to 1000MHz Variable-Gain Amplifier with Analog Gain Control
    MAX5873 12-Bit, 200Msps, High-Dynamic-Performance, Dual DAC with CMOS Inputs
    MAX2023 High-Dynamic-Range, Direct Up-/Downconversion 1500MHz to 2300MHz Quadrature Mod/Demod
    MAX9491 Factory-Programmable, Single PLL Clock Generator
    MAX2057 1700MHz to 2500MHz Variable-Gain Amplifier with Analog Gain Control
    MAX4389, MAX4390, MAX4392, MAX4393, MAX4394, MAX4395, MAX4396 Ultra-Small, Low-Cost, 85MHz Op Amps with Rail-to-Rail Outputs and Disable

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    Document Ref.: 19-0566; Rev 0; 2006-08-01
    This page last modified: 2006-10-19



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