Magnetic Sensors - Position, Proximity, Speed (Modules)

Magnetic Sensors - Position, Proximity, Speed (Modules)

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Manufacturer
Series
Operating Temperature
Termination Style
Actuator Material
Manufacturer Part Number
Actuator Color
Type
Voltage - Supply
Output Type

Clear


Image Part Number Manufacturer Description Series Operating Temperature Termination Style Actuator Material Manufacturer Part Number Actuator Color Type Voltage - Supply Output Type
MA-1APC2 Omron Automation & Safety SENSOR REED SWITCH NC CBL LEADS MA-STI -10°C ~ 55°C (TA) Cable Leads Magnet - - Reed Switch 230VAC NC
ILM8 Carlo Gavazzi SEN LVL MAG METALLIC CASE - -25°C ~ 120°C Wire Leads - - - Switch - NO/NC
59075-2-S-02-C Hamlin / Littelfuse SENSOR REED SW SPST-NO W LEADS 59075 -20°C ~ 105°C (TA) Wire Leads with Connector Magnet - - Reed Switch - SPST-NO
59070-010 Hamlin / Littelfuse SENSOR REED SW SPST-NO W LEADS 59070 -40°C ~ 105°C (TA) Wire Leads Magnet - - Reed Switch - SPST-NO
59065-4-U-01-C Hamlin / Littelfuse SENSOR REED SW SPST-NC W LEADS 59065 -40°C ~ 105°C (TA) Wire Leads with Connector Magnet - - Reed Switch - SPST-NC
59065-3-V-03-D Hamlin / Littelfuse SENSOR REED SW SPDT WIRE LEADS 59065 - Wire Leads with Connector Magnet - - Reed Switch - SPDT
55100-2H-03-D Hamlin / Littelfuse SENSOR HALL CURRENT W LEADS CONN 55100 -40°C ~ 100°C (TA) Wire Leads with Connector Magnet, South Pole - - Hall Effect Switch 3.75 V ~ 24 V Current
59065-3-T-02-C Hamlin / Littelfuse SENSOR REED SW SPDT WIRE LEADS 59065 -40°C ~ 105°C (TA) Wire Leads with Connector Magnet - - Reed Switch - SPDT
59135-1-T-02-F Hamlin / Littelfuse SENSOR REED SW SPST-NO W LEADS 59135 -40°C ~ 105°C (TA) Wire Leads Magnet - - Reed Switch - SPST-NO
59145-2-S-02-A Hamlin / Littelfuse SENSOR REED SW SPST-NO W LEADS 59145 -20°C ~ 105°C (TA) Wire Leads Magnet - - Reed Switch - SPST-NO

About Magnetic Sensors - Position, Proximity, Speed (Modules)


Magnetic sensors for position, proximity, and speed detection are electronic devices designed to detect changes in magnetic fields and convert them into electrical signals indicative of position, proximity, or speed changes. These sensors utilize Hall effect, magnetoresistive, or magnetic induction principles to sense magnetic fields generated by magnets or ferromagnetic materials. Magnetic sensors modules integrate sensor elements, signal conditioning circuitry, and interface components into compact packages for easy integration and application-specific requirements. Magnetic sensors find applications in automotive systems, industrial automation, consumer electronics, and robotics for tasks such as rotary encoder feedback, speed detection, and proximity sensing. They offer advantages such as non-contact operation, high sensitivity, and immunity to environmental factors, making them suitable for harsh operating conditions and demanding applications requiring reliable magnetic sensing capabilities.