Omron E2E-X2R5D1-M1TGJ-T 0.3M Inductive Proximity Sensor
| Feature | Value |
|---|---|
| Sensor Type | Inductive Proximity Sensor |
| Series | E2E NEXT |
| Sensing Distance | 2.5 mm |
| Housing Size | M12 |
| Mounting Type | Shielded (Flush) |
| Output Configuration | 2-Wire DC, Normally Open |
| Supply Voltage | 10 to 30 VDC |
| Response Frequency | 250 Hz |
| Protection Rating | IP67 / IP67G / IP69K |
| Housing Material | Nickel-Plated Brass |
| Sensing Surface Material | PBT |
| Connection Method | M12 Pigtail Smartclick Connector, 0.3 m |
| Operating Temperature | -25°C to +70°C |
| Overall Length | 47 mm |
Technical Overview
The Omron E2E-X2R5D1-M1TGJ-T 0.3M Inductive Proximity Sensor is designed for non-contact detection of ferrous metal targets in industrial automation systems. As part of the E2E NEXT family, it combines a compact M12 cylindrical housing with robust environmental protection and stable sensing characteristics. The sensor is intended for applications where reliable position verification and machine status monitoring are required.
The nickel-plated brass housing provides mechanical durability, while the PBT sensing face offers resistance to common industrial contaminants. The sensor utilizes a 2-wire DC configuration with a normally open output and supports operation within a 10 to 30 VDC supply range.
How the Sensor Works
The Omron E2E-X2R5D1-M1TGJ-T 0.3M Inductive Proximity Sensor generates an electromagnetic field at the sensing surface. When a ferrous metal object enters the detection zone, eddy currents are induced in the target material. These currents alter the oscillation characteristics of the sensor, enabling the internal electronics to switch the output state.
Because the sensing process is contactless, there is no mechanical wear during operation. This principle is particularly useful in automated equipment where continuous motion and repetitive detection cycles occur.
Key Technical Characteristics
- 2.5 mm sensing distance for metal target detection.
- Flush mounting design suitable for compact installations.
- 2-wire DC output simplifies wiring requirements.
- Normally open switching configuration.
- IP67, IP67G, and IP69K environmental protection ratings.
- Oil-resistant PVC cable assembly.
- Nickel-plated brass body for industrial environments.
- 250 Hz response frequency for dynamic machine processes.
Industrial Applications
The Omron E2E-X2R5D1-M1TGJ-T 0.3M Inductive Proximity Sensor is commonly integrated into automated machinery where metal component detection is necessary. It can be used for position confirmation, presence detection, indexing verification, and end-of-travel monitoring.
Typical applications include conveyor systems, assembly stations, robotic handling equipment, packaging machinery, and material transfer systems. The compact M12 form factor allows installation in areas with limited mounting space.
Sector-Specific Use Cases
Automotive Manufacturing
The sensor can verify the presence of metallic fixtures, tooling components, and moving machine elements during assembly operations.
Packaging Equipment
In packaging lines, it may be used to confirm the position of metal carriers, guide rails, or actuator mechanisms.
Machine Tool Systems
The sensor can monitor machine positioning functions and detect metal workpiece locations within automated machining environments.
Material Handling
Automated transport systems use inductive sensors to detect pallet stops, transfer mechanisms, and metallic carriers.
Advantages in Automation Systems
- Non-contact sensing minimizes maintenance requirements.
- High protection ratings support operation in harsh environments.
- Compact dimensions simplify integration into existing equipment.
- Reliable detection of ferrous metal objects.
- Resistance to oil and industrial contaminants.
- Stable operation across a wide temperature range.
Omron E2E-X2R5D1-M1TGJ-T 0.3M Considerations When Selecting This Sensor
Before implementing the Omron E2E-X2R5D1-M1TGJ-T 0.3M Inductive Proximity Sensor, engineers should evaluate the required sensing distance, available installation space, electrical interface requirements, and environmental conditions.
The shielded construction enables flush mounting, which can be beneficial where installation dimensions are restricted. Designers should also verify compatibility with control systems, PLC inputs, and field wiring architecture.
For additional product families and related sensing technologies, engineers can review Omron sensor products for broader automation system integration options.
Integration with Control Systems
The sensor is frequently connected to PLC input modules, machine controllers, safety monitoring circuits, and industrial automation platforms. Its 2-wire design can simplify field installation while maintaining reliable signal transmission.
The Omron E2E-X2R5D1-M1TGJ-T 0.3M Inductive Proximity Sensor is often incorporated into preventive maintenance strategies because it enables continuous equipment monitoring without physical contact.
In applications requiring compact metal detection solutions, the Omron E2E-X2R5D1-M1TGJ-T 0.3M Inductive Proximity Sensor provides dependable detection performance within demanding industrial environments.
Omron E2E-X2R5D1-M1TGJ-T 0.3M Frequently Asked Questions
1. What type of sensor is this product?
It is a cylindrical inductive proximity sensor designed for non-contact detection of ferrous metal objects.
2. What is the sensing distance?
The rated sensing distance is 2.5 mm.
3. Is the sensor suitable for flush mounting?
Yes. It features a shielded design that supports flush mounting installations.
4. What output configuration does it use?
The sensor uses a 2-wire DC normally open output configuration.
5. What supply voltage is required?
It operates within a supply range of 10 to 30 VDC.
6. Can it be used in washdown environments?
Its IP67, IP67G, and IP69K ratings provide protection against challenging environmental conditions.
7. What materials can it detect?
The sensor is optimized for detecting ferrous metal targets.
8. Which industries commonly use this sensor?
Automotive manufacturing, packaging, machine building, material handling, and industrial automation sectors frequently utilize this type of sensor.

