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onsemi NCV1124DR2GRoHS

Manufacturer
MPN
NCV1124DR2G
LCSC Part #
C152274
Packaging
SOIC-8
Customer #
Key Attributes
Dual Variable-Reluctance Sensor Interface Ic
Datasheetpdf icononsemi NCV1124DR2G
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QtyUnit Price(Reference Only)Total Amount
1+$ 3.2432$ 3.24
10+$ 2.771$ 27.71
30+$ 2.4886$ 74.66
100+$ 2.0643$ 206.43
500+$ 1.9319$ 965.95
1,000+$ 1.8729$ 1872.90
Standard Packaging2500/Full Reel
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Products Specifications

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TypeDescription
CategoryIntegrated Circuits (ICs)/Interface/Sensor and Detector Interfaces
Manufactureronsemi
PackagingSOIC-8
Voltage Reference Drift-
Data Rate-
Voltage Reference Value-
FeaturesProgrammable gain;Built-in reference source
Integral non - linearity-
Supply Current (Iq)-
Operating Temperature-40℃~+125℃
Interface-
Voltage - Supply5V
The Chip Type-
Number of Channels2
Resolution (Bits)-;-

Additional Information

TypeDetails
Minimum1
Multiple1
Standard Packaging2500
Sales UnitPiece

Introduction

AI Translation

The NCV1124 is a monolithic integrated circuit designed primarily to condition signals from sensors used to monitor rotating parts. The NCV1124 is a dual channel device. Each of the two identical channels interfaces with a variable−reluctance sensor, and continuously compares the sensor output signal to a user−programmable internal reference. An alternating input signal of appropriate amplitude at IN1 or IN2 will result in a rectangular waveform at the corresponding OUT terminal, suitable for interface to either standard microprocessors or standard logic families. A diagnostic input, common to both channels, provides a means to test for degradation or loss of the physical connector to both sensors.

Features

AI Translation
  • Two Independent Channels
  • Internal Hysteresis
  • Built−In Diagnostic Mode
  • Designed to Work from a 5.0 V ±10% Supply
  • Site and Control for Automotive Applications
  • Pb −Free Packages are Available

Applications

AI Translation
  • Anti−Skid Braking and Traction Control
  • Vehicle Stability Control
  • Drive Belt Slippage Detection
  • Crankshaft/Camshaft Position Sensing