MAX2838

3.3GHz to 3.8GHz Wireless Broadband RF Transceiver

Industry's First Production-Ready, Single-Chip 3.3GHz to 3.8GHz WiMAX RF Transceiver

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Status Explanations for product status codes

Active: In Production.

Description

The MAX2838 direct-conversion, zero-IF, RF transceiver is designed specifically for 3.3GHz to 3.9GHz wireless broadband systems. The MAX2838 completely integrates all circuitry required to implement the RF transceiver function, providing RF-to-baseband receive path, baseband-to-RF transmit path, VCO, frequency synthesizer, and baseband/control interface. The device includes a fast-settling sigma-delta RF synthesizer with smaller than 29Hz frequency steps. The MAX2838 supports 2Tx, 2Rx MIMO applications with a master device providing coherent LO to the slave device. The transceiver IC also integrates circuits for on-chip DC-offset cancellation, I/Q error, and carrier-leakage detection circuits. Only an RF bandpass filter (BPF), TCXO, RF switch, PA, and a small number of passive components are needed to form a complete wireless broadband RF radio solution.

The MAX2838 completely eliminates the need for an external SAW filter by implementing on-chip monolithic filters for both the receiver and transmitter. The baseband filters along with the Rx and Tx signal paths are optimized to meet the stringent noise figure and linearity specifications. The device supports up to 2048-FFT OFDM and implements programmable channel filters for 1.5MHz to 28MHz RF channel bandwidths. The transceiver requires only 2µs Tx-Rx switching time. The IC is available in a small 48-pin thin QFN package measuring only 6mm x 6mm x 0.8mm.
 

Data Sheet

Download this datasheet in PDF formatDownload Rev 1 (PDF, 608kB)
Send this datasheet to any email addressE-Mail
An evaluation kit is available: MAX2838EVKIT

Key Features

  • 3.3GHz to 3.9GHz Wide-Band Operation
  • Master-Slave Modes with Coherent LO for MIMO
  • Complete RF Transceiver, and PA Driver
    • 0dBm Linear OFDM Transmit Power
    • -70dBr Tx Spectral Emission Mask
    • 2.8dB Rx Noise Figure
    • Tx/Rx I/Q Error and LO Leakage Detection and Adjustment
    • Automatic Rx DC Offset Correction
    • Monolithic Low-Noise VCO with -39dBc Integrated Phase Noise
    • Programmable Rx I/Q Lowpass Channel Filters
    • Programmable Tx I/Q Lowpass Anti-Aliasing Filter
    • Sigma-Delta Fractional-N PLL with 29Hz Step Size
    • 60dB Tx Gain Control Range with 1dB Step Size, Digitally Controlled
    • 94dB Rx Gain Control Range with 2dB Step Size, Digitally Controlled
    • 60dB Analog RSSI Instantaneous Dynamic Range
    • 4-Wire SPI™ Digital Interface
    • I/Q Analog Baseband Interface
    • Digital Tx/Rx/Shutdown Mode Control
    • Low-Power CLOCKOUT Mode
    • On-Chip Digital Temperature Sensor Readout
  • +2.7V to +3.6V Transceiver Supply
  • Low-Power Shutdown Mode
  • Small 48-Pin Thin QFN Package (6mm x 6mm x 0.8mm)
 

Applications/Uses

  • 802.16-2004/802.16d Fixed WiMAX
  • 802.16e MIMO Mobile WiMAX
  • WiMAX Pico and Femto Basestations
  • NLOS Wireless Broadband Systems
   

Key Specifications:

WiMAX RF Transceivers
Part Number Solutions Features Applications Freq.
(MHz)
ISUPPLY
(mA)
Footprint
(mm x mm)
Package/Pins Smallest Available Pckg.
(mm2)
Budgetary Price
max w/pins See Notes
MAX2838 
WiMAX
Wireless Broadband
-35dB Rx EVM for 64QAM Signal
2.8dB Receiver Noise Figure
60dB Tx Gain Control Range
94dB Rx Gain Control Range
On-Chip DC Offset Cancellation
On-Chip Rx & Tx IQ Phase Adjust
Programmable Channel Filter, 1.75 to 28MHz
802.16d Fixed WiMAX
802.16e Mobile WiMAX
3300 to 3900
Rx: 103
Tx: 150 (64QAM)
6.0 x 6.0
TQFN/48
37.2 $7.77 @1k
See All WiMAX RF Transceivers (5)
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

MAX2838: Typical Operating Circuit
Typical Operating Circuit

Notes and Comments

Contact factory for the complete WiMAX RF and baseband reference design.

More Information

New Product Press Release 2008-02-14 ]

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Information Index

Document Ref.: 19-1049 Rev 1; 2008-10-02
This page last modified: 2010-05-17




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