Asahi Kasei Microdevices EQx Linear Hall Effect ICs

Asahi Kasei Microdevices EQx Linear Hall Effect ICs are low-noise ICs that combine an InAs high-sensitivity Hall element and an amplifier circuit using proprietary assembling technology. These ICs generate an analog output proportional to the magnetic field strength (magnetic flux density) and pole. The EQx linear Hall ICs feature 3V to 5.5V supply voltage, -40°C to 100°C operating temperature range, and ratio-metric analog output. These linear Hall effect ICs are ideally used for current detection, position sensor, angle sensor, and magnetic field detection.

Features

  • Analog output which proportional to the magnetic field strength and pole
  • 3V to 5.5V supply voltage range at the single power supply
  • -40°C to 100°C operating temperature range
  • Ratio-metric analog output
  • 3pin surface mount plastic package

Applications

  • Current detection:
    • Current monitor
    • Overcurrent detection
  • Narrow-angle detection within +/-45 degree angle sensor 
  • Precise position detection within 1mm stroke position sensor
  • Gauss meter magnetic field detection

Functional Block Diagram

Block Diagram - Asahi Kasei Microdevices EQx Linear Hall Effect ICs

Application Circuit Diagram

Application Circuit Diagram - Asahi Kasei Microdevices EQx Linear Hall Effect ICs
View Results ( 8 ) Page
Dalies Numeris Duomenų Lapas Darbinė Maitinimo Srovė Didžiausia išėjimo srovė Darbinė Maitinimo Įtampa Minimali darbinė temperatūra Didžiausia darbinė temperatūra
EQ433L EQ433L Duomenų Lapas 12 mA 1.2 mA 5 V - 40 C + 100 C
EQ430L EQ430L Duomenų Lapas 12 mA 1.2 mA 5 V - 40 C + 100 C
EQ432L EQ432L Duomenų Lapas 12 mA 1.2 mA 5 V - 40 C + 100 C
EQ431L EQ431L Duomenų Lapas 12 mA 1.2 mA 5 V - 40 C + 100 C
EQ732L EQ732L Duomenų Lapas 12 mA 1.2 mA 5 V - 40 C + 100 C
EQ731L EQ731L Duomenų Lapas 12 mA 1.2 mA 5 V - 40 C + 100 C
EQ733L EQ733L Duomenų Lapas 12 mA 1.2 mA 5 V - 40 C + 100 C
EQ730L EQ730L Duomenų Lapas 12 mA 1.2 mA 5 V - 40 C + 100 C
Paskelbta: 2023-04-18 | Atnaujinta: 2023-06-01