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LMX2470  Product Folder

2.6 GHz Delta-Sigma Fractional-N PLL with 800 MHz Integer-N PLL
Generic P/N 2470
General
Description
Features Datasheet Package
& Models
Samples
& Pricing
Reliability
Metrics

WEBENCH Live Simulation!
LMX2470 Webench™
Design/Analyze/Build It
RF-Side PLL Design Options
Min Output Frequency MHz >= 500 help
Max Output Frequency MHz <= 2600 help
Channel Spacing KHz > 0 help
AUX-Side PLL Design Options
Min Output Frequency MHz >= 75 help
Max Output Frequency MHz <= 800 help
Channel Spacing KHz > 0 help
Global Design Options
Crystal Frequency KHz > 0 help
Max Power Supply V > 0 help
What is Webench?
  
Parametric Table
Temperature Min (deg C) -40 
Temperature Max (deg C) 85 
PLL Type Delta-Sigma Fractional-N RF/IF Dual 
Modulus Fractional-N 
Operating Frequency (MHz) 2600 
Aux Op Frequency (MHz) 800 
Normalized Phase Noise (dBc/Hz) -210 
Supply Current (mA) 4.10 
Supply Min (Volt) 2.25 
Supply Max (Volt) 2.75 
Fastlock Yes 
Prescalers 16/17 
Aux Prescalers 8/9 or 16/17 
-

Datasheet

TitleSize in KbytesDate
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LMX2470 2.6 GHz Delta-Sigma Fractional-N PLL with 800 MHz Integer-N PLL 453 Kbytes 9-Apr-03 View Online Download Receive via Email

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Package Availability, Models, Samples & Pricing

Part NumberPackageStatusModelsSamples &
Electronic
Orders
Budgetary PricingStd
Pack
Size
Package
Marking
TypePinsMSL/Lead-Free AvailabilityLead
Time
QtySPICEIBISQty$US each
LMX2470EVALevaluation boardFull productionN/AN/A 
Buy Now
1+$176.001-
N/A0
LMX2470SLEXLaminate UCSP24StatusFull productionN/AN/A24 Hour Samples
Buy Now
1K+$2.07reel
of
2500
NSXYTT
X2470
SLE
8-12 weeks10000

General Description

The LMX2470 is a low power, high performance delta-sigma fractional-N PLL with an auxiliary integer-N PLL. The device is fabricated using National Semiconductor's advanced BiCMOS process.

With delta-sigma architecture, fractional spur compensation is achieved with noise shaping capability of the delta-sigma modulator and the inherent low pass filtering of the PLL loop filter. Fractional spurs at lower frequencies are pushed to higher frequencies outside the loop bandwidth. Unlike analog compensation, the digital feedback techniques used in the LMX2470 are highly resistant to changes in temperature and variations in wafer processing. With delta-sigma architecture, the ability to push close in spur and phase noise energy to higher frequencies is a direct function of the modulator order. The higher the order, the more this energy can be spread to higher frequencies. The LMX2470 has a programmable modulator up to order four, which allows the designer to select the optimum modulator order to fit the phase noise, spur, and lock time requirements of the system.

Programming is fast and simple. Serial data is transferred into the LMX2470 via a three line MICROWIRE interface (Data, Clock, Load Enable). Nominal supply voltage is 2.5 V. The LMX2470 features a typical current consumption of 4.1 mA at 2.5 V. The LMX2470 is available in a 24 lead 3.5 X 4.5 X 0.6 mm package.

Features

  • Low in-band phase noise and low fractional spurs
  • 12 bit or 22 bit selectable fractional modulus
  • Up to 4th order programmable delta-sigma modulator
  • Enhanced Anti-Cycle Slip Fastlock Circuitry Fastlock Cycle slip reduction Integrated timeout counters
  • Digital lock detect output
  • Prescalers allow wide range of N values RF PLL: 16/17/20/21 IF PLL: 8/9 or 16/17
  • Crystal Reference Frequency up to 110 MHz
  • On-chip crystal reference frequency doubler.
  • Phase Comparison Frequency up to 30 MHz
  • Hardware and software power-down control
  • Ultra low consumption: ICC = 4.1 mA (typical)

Applications

  • Cellular Phones and Base Stations CDMA, WCDMA, GSM/GPRS, TDMA, EDGE, PDC
  • Applications requiring fine frequency resolution
  • Satellite and Cable TV Tuners
  • WLAN Standards

Reliability Metrics

Part Number Process Early Failure Rate - Rejects Sample Size (EFR) PPM * Rel. Rejects Device Hours Long Term Failure Rates (FITS) MTTF
LMX2470SLEXABIC41200033407500005212054006
LMX2470EVALCMOS721420014108000005226190940

For more information on Reliablitity Metrics, please click here.


[Information as of 15-Jan-2004]