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AG-26 Magnetic Cylinder Sensor

Датчыкі, адчувальныя элементы

$ 100 USD / Часткі

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AG-26 series magnetic sensor

AG-26 series is generally used for 4φ diameter C-shaped grooved cylinders. There are six specifications such as magnetic reed tube type and electronic type to choose from. With adapters, it can be used for 6-63φ cylinder diameter round cylinders. It is ALIF’s 4φC type. One of the most widely used series of grooved magnetic sensor cylinders greatly reduces the pressure on purchasing inventory.

AG-26 Magnetic Air Cylinder Sensor Specification

Model AG-26DF AG-26N AG-26P

Switching Logic Normally Open Solid State Output, Normally Open

Output Type 2 Wire Solid State NPN Current Sinking PNP Current Sinking

voltage Range 10~30V DC 5~30V DC

Sensor Current 1~50 mA 0~100 mA

Switch Rating 1.5 W Max. 3W Max.

Consumption / 3 mA Max.@24V

Voltage Drop 2.65V Max.@50mA DC 0.8V Max.@200mA DC

Leakage Current 90 μA Max.@28V 0.01 mA Max.

Indicator Red LED Red LED Green LED

Cable Φ2.2, 2C, Grey Oil-Resistant PUR Φ2.2, 3C, Grey Oil-Resistant PUR

Sensitivity 40~800 Gauss 40~800 Gauss

Sensor Frequency 900Hz 900Hz

Temperature -10~70℃ -10~70℃

Shock 50G 50G

Vibration 9G 9G

Ingress Protection IP68 (GB/T4208-2017) IP68 (GB/T4208-2017)

Protection Circuit Surge Suppression Power Reverse Polarity; Surge Suppression

CE Certificate NO. E8A 17 04 53334 007 E8A 17 04 53334 008

CNEx Certificate NO. CNEx21.2238X CNEx21.2239X

RoHS2.0 NO. RoHS 2011/65/EU & (EU) 2015/863

Reach NO. (EC) N 1907/2006 (REACH)

Magnetic Proximity Sensor Working Principle

Magnetic proximity sensors are widely used in industry due to their high reliability and accuracy. ALIF's cylinder magnetic sensor, model AG-26, utilizes the principle of magnetic induction to detect the presence of metallic objects within its detection range. The cylinder sensors consist of a sensing coil, a magnetic field generator, and signal conditioning circuitry. As a metallic object approaches the sensor, it interferes with the magnetic field generated by the sensor, causing a change in the current flowing through the sensing coil. This change in current is converted into an output signal, which can be used to trigger a control action.