SC206X Ultra-Low-Power Ominipolar Switch Hall Effect Sensor

2024-08-26
●DESCRIPTION
■The SC206X family is an ultra-low-power Omni-polar switch Hall Effect Sensor, designed for the most compact and battery-sensitive systems. The device is offered in multiple magnetic thresholds, sampling rates, output drivers, and packages to accommodate various applications.
■When the applied magnetics flux density exceeds the BOP threshold, the device outputs a low voltage. The output stays low until the flux density decreases to less than BRP, and then the output either drives a high voltage or becomes high impedance, depending on the device version. By incorporating an internal oscillator, the device samples the magnetic field and updates the output at a rate of 20 Hz for the lowest current consumption. Omnipolar magnetic responses are available.
■The device operates from a VDD range of 1.65 V to 5.5 V, and is packaged in a standard SOT-23, TO-92.
●FEATURES
■Industry ultra-low power consumption - 1.2 μA with 3.0 V
■1.65V to 5.5V operating range
■Push-Pull and Open-Drain output options
■SOT-23 and TO-92 package options
■0℃ to +85℃ operating temperature range

SEMIMENT

SC206XSC206X familySC2062UASC2062SOSC2063UASC2063SOSC2064UASC2064SOSC2063SC2064SC2062

More

Part#

Ultra-Low-Power Ominipolar Switch Hall Effect Sensorultra-low-power Omni-polar switch Hall Effect Sensormagnetic sensor

More

Battery-critical position sensing ]Electricity meter tamper detection ]Cell Phone case sensing ]laptop case sensing ]tablet case sensing ]E-locks ]smoke detectors ]appliances ]Medical devices ]IoT systems ]Valve position detection ]solenoid position detection ]Contactless diagnostics ]Contactless activation ]battery-sensitive systems ]

More

Datasheet

More

More

Please see the document for details

More

More

SOT-23;TO-92;SIP3;UA;SO

English Chinese Chinese and English Japanese

2024-05-11

Rev1.1

1012 KB

- The full preview is over. If you want to read the whole 16 page document,please Sign in/Register -
  • +1 Like
  • Add to Favorites

Recommend

All reproduced articles on this site are for the purpose of conveying more information and clearly indicate the source. If media or individuals who do not want to be reproduced can contact us, which will be deleted.

Contact Us

Email: