MAX2063

Dual 50MHz to 1000MHz High-Linearity, Serial/Parallel-Controlled Digital VGA

Industry's Only Fully Programmable, Multistate Dual Digital VGA

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Status Explanations for product status codes

Active: In Production.

Description

The MAX2063 high-linearity, dual digital variable-gain amplifier (VGA) operates in the 50MHz to 1000MHz frequency range. Each digital attenuator is controlled as a slave peripheral using either the SPI™-compatible interface or a 5-bit parallel bus with 31dB total adjustment range in 1dB steps. An added feature allows "rapid-fire" gain selection between each of four steps, preprogrammed by the user through the SPI-compatible interface. A separate 2-pin control allows the user to quickly access any one of four customized attenuation states without reprogramming the SPI bus.

Since each of the stages has its own external RF input and RF output, this component can be configured to either optimize noise figure (amplifier configured first) or OIP3 (amplifier configured last). The device's performance features include 24dB of amplifier gain (amplifier only), 5.6dB noise figure (NF) at maximum gain (including attenuator insertion losses), and a high OIP3 level of +41dBm. Each of these features makes the device an ideal VGA for multipath receiver and transmitter applications.

In addition, the device operates from a single +5V supply with full performance, or a +3.3V supply for an enhanced power-savings mode with lower performance. This device is available in a compact 48-pin thin QFN package (7mm × 7mm) with an exposed pad. Electrical performance is guaranteed over the extended temperature range, from TC = -40°C to +85°C.
 

Data Sheet

Download this datasheet in PDF formatDownload Rev 0 (PDF, 2.8MB)
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Key Features

  • Independently Controlled Dual Paths
  • 50MHz to 1000MHz RF Frequency Range
  • Pin-Compatible Family Includes
    • MAX2062 (Analog/Digital VGA)
    • MAX2064 (Analog-Only VGA)
  • 21.3dB (typ) Maximum Gain
  • 0.25dB Gain Flatness Over 100MHz Bandwidth
  • 31dB Gain Range
  • 58dB Path Isolation at 200MHz
  • Supports Four "Rapid Fire" Preprogrammed Attenuator States
    • Quickly Access Any One of Four Customized Attenuation States without Reprogramming the SPI Bus
    • Ideal for Fast-Attack, High-Level Blocker Protection
    • Prevents ADC Overdrive Condition
  • Excellent Linearity at 200MHz
    • +41dBm OIP3
    • +56dBm OIP2
    • +19dBm Output 1dB Compression Point
  • 5.6dB Typical Noise Figure
  • 25ns Digital Switching Time
  • Very Low Distortion VGA Amplitude Overshoot/Undershoot of 0.05dB
  • Single +5V Supply (or +3.3V Operation)
  • Amplifier Power-Down Mode for TDD Applications
 

Applications/Uses

  • Cellular Band WCDMA and cdma2000® Base Stations
  • Fixed Broadband Wireless Access
  • GSM 850/GSM 900 EDGE Base Stations
  • IF and RF Gain Stages
  • Military Systems
  • Temperature-Compensation Circuits
  • WiMAX™ and LTE Base Stations and Customer Premise Equipment
  • Wireless Local Loop
   

Key Specifications:

RF and IF Variable Gain Amplifiers
Part Number Gain Cntl. Channels RF Freq.
(MHz)
RF Freq.
(MHz)
Digital Attenuation Range
(dB)
Digital Attenuator Step Size
(dB)
Gain
(dB)
Noise Figure
(dB)
OIP3
(dBm)
OIP2
(dBm)
HD2
(dBc)
HD3
(dBc)
VCC
(V)
ISUPPLY
(mA)
Footprint
(mm x mm)
Package/Pins Oper. Temp.
(°C)
Budgetary Price
min max max See Notes
MAX2063  Digital 2 50 1000 31 1 21.3 5.6 41 56 -54.8 -72.9 3.135 to 5.25 148 7.0 x 7.0
TQFN/48
-40 to +85 $8.85 @1k
See All RF and IF Variable Gain Amplifiers (14)
Pricing 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

MAX2063: Typical Application Circuit
Typical Application Circuit

Notes and Comments

For Maxim's complete wireless infrastructure portfolio, visit www.maxim-ic.com/bts

More Information

New Product Press Release 2010-08-26 ]

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Information Index

Document Ref.: 19-5303 Rev 0; 2010-07-15
This page last modified: 2011-01-12




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