High Sensitivity Speed Sensor IC CYGTS9632 with Dual Quadrature Outputs, Output Signal: Dual Quadrature Outputs, Power: 3.8-24V DC

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CYGTS9632 is a differential Hall Effect sensor IC with two independent channels providing... more
High Sensitivity Speed Sensor IC CYGTS9632 with Dual Quadrature Outputs, Output Signal: Dual Quadrature Outputs, Power: 3.8-24V DC

CYGTS9632 is a differential Hall Effect sensor IC with two independent channels providing quadrature outputs. The device provides a high sensitivity and a superior stability over temperature and symmetrical thresholds in order to achieve a stable duty cycle. The integrated circuit is response to changing differential magnetic fields created by rotating ring magnets and by ferrous targets when coupled with a magnet. By use of the A and B quadrature outputs, the device is particularly suitable for speed and direction of magnetic ring or ferromagnetic toothed wheels. The device is packaged in a 4-pin plastic SIP. It is lead (Pb) free, with 100% matte tin plated lead frame.

Features

  • Two independent digital quadrature A/B outputs 
  • Accurate true zero-crossing switch-point 
  • South and North pole pre-induction possible 
  • Large air gap 
  • 3.8V to 24V supply operating range 
  • Low power consumption 6.5mA (typ.) 
  • Wide operating temperature range -40°C ~150°C 
  • Protection against over-voltage in all PIN 
  • Reverse-current protection in power supply VDD PIN 
  • Output protection against electrical disturbances

Applications

Automotive and Heavy Duty Vehicles:

  • Camshaft and crankshaft speed and position 
  • Transmission speed 
  • Tachometers 
  • Anti-skid/traction control

Industrial Areas:

  • Sprocket speed 
  • Chain link conveyor speed/distance 
  • Stop motion detector 
  • High speed low cost proximity 
  • Tachometers, counters.
Operating Temperature: -40°C~ +150°C
Package/Size: SIP4/5.13x3.6x1.6mm
Power Supply: 3.8V ~ 24V DC
Bias Magnetic Field: -500~500mT
Rise/Fall time: 0.4µs / 0.35µs
Sensing gap/distance: 0.2mm ~ 2.0mm
Output Signal: Dual Quadrature Outputs
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