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6017c13bd205c76307ca272c NE555 (SMD) - 2.1-MHz, 250-µA, Low-Power Timer [Original] //cdn.storehippo.com/s/59c9e4669bd3e7c70c5f5e6c/608fe8406cfe263627f69d8e/webp/ic-smd8.jpg
General Description
The NE555 is a monolithic timing circuit fabricated using the LinCMOS™ process. The timer is fully compatible with CMOS, TTL, and MOS logic, and operates at frequencies up to 2 MHz. Because of its high input impedance, this device uses smaller timing capacitors as a result, more accurate time delays and oscillations are possible. Power consumption is low across the full range of power-supply voltage.
 
Features
  • Very Low Power Consumption:
  • 1 mW Typical at VDD = 5 V
  • Capable of Operation in Astable Mode
  • CMOS Output Capable of Swinging Rail to Rail
  • High Output Current Capability
  • Sink: 100 mA Typical
  • Source: 10 mA Typical
  • Pin/Package:8-SOIC
Applications
  • Precision Timing
  • Pulse Generation
  • Sequential Timing
  • Time Delay Generation
  • Pulse Width Modulation
  • Pulse Position Modulation
  • Missing Pulse Detector

*Image shown is a representation only.

TT-ECK-3766
in stock INR 12.98
ELECTRON COMPONENT
1 1

NE555 (SMD) - 2.1-MHz, 250-µA, Low-Power Timer [Original]

Sku: TT-ECK-3766
₹12.98


Sold By: tenettech
Features
  • Shipping in 10-12 Working days

Description of product

General Description
The NE555 is a monolithic timing circuit fabricated using the LinCMOS™ process. The timer is fully compatible with CMOS, TTL, and MOS logic, and operates at frequencies up to 2 MHz. Because of its high input impedance, this device uses smaller timing capacitors as a result, more accurate time delays and oscillations are possible. Power consumption is low across the full range of power-supply voltage.
 
Features
  • Very Low Power Consumption:
  • 1 mW Typical at VDD = 5 V
  • Capable of Operation in Astable Mode
  • CMOS Output Capable of Swinging Rail to Rail
  • High Output Current Capability
  • Sink: 100 mA Typical
  • Source: 10 mA Typical
  • Pin/Package:8-SOIC
Applications
  • Precision Timing
  • Pulse Generation
  • Sequential Timing
  • Time Delay Generation
  • Pulse Width Modulation
  • Pulse Position Modulation
  • Missing Pulse Detector

*Image shown is a representation only.