The E2A-M12KS04-M1-B3 proximity sensor operates based on the principle of electromagnetic induction. When an object enters its sensing range, it disrupts the magnetic field around the sensor, causing a change in output state.
This comprehensive overview provides detailed insights into the E2A-M12KS04-M1-B3 proximity sensor, including its basic information, specifications, functional features, advantages, disadvantages, working principles, application field plans, and alternative models.
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What is the operating voltage of E2A-M12KS04-M1-B3?
What is the sensing distance of E2A-M12KS04-M1-B3?
Is E2A-M12KS04-M1-B3 suitable for use in harsh environments?
What is the output configuration of E2A-M12KS04-M1-B3?
Can E2A-M12KS04-M1-B3 be used for metal sensing applications?
What is the maximum current consumption of E2A-M12KS04-M1-B3?
Does E2A-M12KS04-M1-B3 have any built-in protection against short-circuit and reverse polarity?
What is the temperature range for operation of E2A-M12KS04-M1-B3?
Is E2A-M12KS04-M1-B3 suitable for use in high-speed applications?
Can E2A-M12KS04-M1-B3 be used in conjunction with PLCs and control systems?