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DS1077L
3V EconOscillator/Divider

Industry's Most Accurate All-Silicon Oscillator


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Status
Active: In Production.

Description
FULL DATA SHEET (PDF, 296kB)
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The DS1077L is a dual-output, programmable, fixed-frequency oscillator requiring no external components for operation. The DS1077L can be used as a processor-controlled frequency synthesizer or as a stand-alone oscillator. The two synchronous output operating frequencies are user-adjustable in submultiples of the master frequency through the use of two on-chip programmable prescalers and dividers. The specific output frequencies chosen are stored in nonvolatile (EEPROM) memory. The DS1077L defaults to these values upon power-up.

The DS1077L features a 2-wire serial interface that allows in-circuit on-the-fly programming of the programmable prescalers (P0 & P1) and divider (N) with the desired values being stored in nonvolatile (EEPROM) memory. Design changes can be accommodated in-circuit, on-the-fly by simply programming different values into the device (or reprogramming previously programmed devices). Alternatively, for fixed-frequency applications previously programmed devices can be used and no connection to the serial interface is required. Preprogrammed devices can be ordered in customer-requested frequencies.

The DS1077L is available in SO or µSOP packages, allowing the generation of a clock signal easily, economically, and using minimal board area. Chip-scale packaging is also available on request.

An evaluation kit is available:  DS1070K  

Key Features   Applications/Uses
  • Processor-controlled or stand-alone solid-state oscillator
  • Frequency changes on the fly
  • Dual, low-jitter, synchronous fixed-frequency outputs
  • 2-wire serial interface
  • Frequency outputs 4.87kHz to 66.666MHz ±1.25% variation over temperature and voltage
  • ±0.5% initial tolerance
  • Nonvolatile frequency settings
  • Single 2.7V to 3.6V supply
  • No external components
  • Power-down mode
  • Synchronous output gating
 

Diagram
DS1077L: Block Diagram
Block Diagram

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    2006-01-10
    This page last modified: 2009-10-15


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