The E2A-S08LS02-M5-B1 belongs to the category of inductive proximity sensors. These sensors are commonly used for non-contact detection of metallic objects and are characterized by their high reliability, long service life, and resistance to harsh environments. The package includes the sensor itself along with essential documentation and mounting accessories. The essence of this product lies in its ability to provide accurate and consistent detection of metallic objects, making it suitable for various industrial applications. The packaging typically consists of individual units, and the quantity may vary based on the supplier.
The detailed pin configuration of the E2A-S08LS02-M5-B1 is as follows: - Brown wire: +V (Power supply) - Blue wire: 0V (Ground) - Black wire: Output
The E2A-S08LS02-M5-B1 offers the following functional features: - High precision detection of metallic objects - Compact and robust design for use in harsh environments - LED indicator for status monitoring - Short-circuit and reverse polarity protection
Inductive proximity sensors operate based on the principle of electromagnetic induction. When a metallic object enters the sensing range of the sensor, it induces eddy currents in the sensing coil, causing a change in the oscillation frequency. This change is then converted into a digital output signal, indicating the presence of the object.
The E2A-S08LS02-M5-B1 is well-suited for various applications, including: - Machine automation - Conveyor systems - Robotics - Material handling equipment - Packaging machinery
Some alternative models to the E2A-S08LS02-M5-B1 include: - E2A-S08LS02-WP-C1: Waterproof inductive proximity sensor with similar specifications - E2A-S08LS02-M1-B1: Inductive proximity sensor with a shorter sensing distance - E2A-S08LS02-M5-D1: Inductive proximity sensor with different output configuration
This comprehensive entry provides an in-depth understanding of the E2A-S08LS02-M5-B1 inductive proximity sensor, covering its basic information, specifications, functional features, advantages and disadvantages, working principles, application field plans, and alternative models.
What is the E2A-S08LS02-M5-B1 sensor used for?
What is the operating principle of the E2A-S08LS02-M5-B1 sensor?
What are the typical applications of the E2A-S08LS02-M5-B1 sensor?
What is the sensing distance of the E2A-S08LS02-M5-B1 sensor?
What output does the E2A-S08LS02-M5-B1 sensor provide?
What are the environmental conditions suitable for the E2A-S08LS02-M5-B1 sensor?
Can the E2A-S08LS02-M5-B1 sensor be used in high-speed applications?
What are the installation considerations for the E2A-S08LS02-M5-B1 sensor?
Is the E2A-S08LS02-M5-B1 sensor resistant to electromagnetic interference?
Are there any special maintenance requirements for the E2A-S08LS02-M5-B1 sensor?