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E3JK-R2R3 Datasheet with Chat AI
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  • Part No.E3JK-R2R3
    ManufacturerETC
    Size329 Kbytes
    Pages8 pages
    DescriptionBuilt-in power supply photoelectric sensor
    Datasheet Summary with AI

    1. General Overview & Models

    ️· Product: E3JK Photoelectric Sensor
    ️· Types: The data covers Through-beam, Retroreflective, and Diffuse-reflective models.
    ️· Model Naming: E3JK followed by a suffix that indicates variations in output, timing, and features (e.g., E3JK-5M1, E3JK-R2S3).
    ️· Purpose: Used for object detection and sensing.
    ️· Accessories: Mounting brackets, reflector (for retroreflective models), instruction manual

    2. Technical Specifications (Shared Across Models)

    ️· Protective Structure: IEC60529 IP64 (dust and water resistant)
    ️· Connection Method: Pre-wired models (standard length: 2 m)
    ️· Weight (Packed): Approximately 420g (Through-beam & Retroreflective), Approximately 250g (Diffuse-reflective)
    ️· Materials:
    - Case: ABS
    - Lens: Acrylics
    - Mounting Bracket: Steel
    ️· Operating Voltage: Can vary, 24-240 VAC or 12-240 VDC are mentioned.
    ️· Note: The output stage leakage currents are 0.1 mA max.

    3. Model-Specific Outputs & Circuits

    This is the most complex section, detailing different output types:

    ️· Relay Output (e.g., E3JK-5M1, E3JK-R2M2, E3JK-R4M2, E3JK-DS30M2):
    - "Light indicator (red)" - likely a status LED.
    - L-ON (Ta) - Light ON mode
    - D-ON (Ta) - Dark ON mode
    - Includes a built-in relay (G6C).
    - Wiring: Power source, Main circuit (Polarity Optional), 24 to 240 VAC, 12 to 240 VDC, White, Brown, Blue, Black, Contact output.
    ️· DC Transistor Output (e.g., E3JK-5S3, E3JK-R2S3, E3JK-R4S3, E3JK-DS30S3):
    - Similar L-ON and D-ON modes.
    - Wiring: Power source, Main circuit, Load, Gray (D-ON), Black (L-ON), Drive circuit.
    ️· Specialized DC Transistor Output (E3JK-R2R3):
    - Designed for specific load requirements.
    - Notes: Connect to brown and blue on the emitter side. Output Stage limitation: I1 + I2 < 100 mA

    4. Performance Characteristics (Illustrative Diagrams)

    ️· Excess Gain Ratio vs. Setting Distance:
    - Shows how the sensor's gain changes with distance for Through-beam, Retroreflective, and Diffuse-reflective models.
    - Used to set appropriate distance for best sensor performance.
    - Includes diagrams with various distance ranges (0-5m) and corresponding gain values.

    5. Diagrams and Wiring

    ️· Output Circuit Diagrams: Detailed illustrations showing the electrical connections for the different output types (Relay and DC Transistor). These diagrams specify wire colors and connection points.

    Key Takeaways & Cautions:

    ️· Careful Model Selection: The E3JK family offers multiple models with different output types and performance characteristics. Selecting the correct model for your application is critical.
    ️· Wiring Diagrams: Refer to the output circuit diagrams *very* carefully when wiring the sensor. Incorrect wiring can damage the sensor or the connected load.
    ️· Load Limits: The DC Transistor Output (especially the E3JK-R2R3 variant) has load limits. Exceeding these limits can damage the sensor.
    ️· Setting Distance: Adjust the sensor's setting distance to optimize performance. The diagrams show the relationship between distance and gain.
    ️· Polarity: Some models indicate "Polarity Optional" for the main circuit.

    1. General Overview & Models

    ️· Product: E3JK Photoelectric Sensor
    ️· Types: The data covers Through-beam, Retroreflective, and Diffuse-reflective models.
    ️· Model Naming: E3JK followed by a suffix that indicates variations in output, timing, and features (e.g., E3JK-5M1, E3JK-R2S3).
    ️· Purpose: Used for object detection and sensing.
    ️· Accessories: Mounting brackets, reflector (for retroreflective models), instruction manual

    2. Technical Specifications (Shared Across Models)

    ️· Protective Structure: IEC60529 IP64 (dust and water resistant)
    ️· Connection Method: Pre-wired models (standard length: 2 m)
    ️· Weight (Packed): Approximately 420g (Through-beam & Retroreflective), Approximately 250g (Diffuse-reflective)
    ️· Materials:
    - Case: ABS
    - Lens: Acrylics
    - Mounting Bracket: Steel
    ️· Operating Voltage: Can vary, 24-240 VAC or 12-240 VDC are mentioned.
    ️· Note: The output stage leakage currents are 0.1 mA max.

    3. Model-Specific Outputs & Circuits

    This is the most complex section, detailing different output types:

    ️· Relay Output (e.g., E3JK-5M1, E3JK-R2M2, E3JK-R4M2, E3JK-DS30M2):
    - "Light indicator (red)" - likely a status LED.
    - L-ON (Ta) - Light ON mode
    - D-ON (Ta) - Dark ON mode
    - Includes a built-in relay (G6C).
    - Wiring: Power source, Main circuit (Polarity Optional), 24 to 240 VAC, 12 to 240 VDC, White, Brown, Blue, Black, Contact output.
    ️· DC Transistor Output (e.g., E3JK-5S3, E3JK-R2S3, E3JK-R4S3, E3JK-DS30S3):
    - Similar L-ON and D-ON modes.
    - Wiring: Power source, Main circuit, Load, Gray (D-ON), Black (L-ON), Drive circuit.
    ️· Specialized DC Transistor Output (E3JK-R2R3):
    - Designed for specific load requirements.
    - Notes: Connect to brown and blue on the emitter side. Output Stage limitation: I1 + I2 < 100 mA

    4. Performance Characteristics (Illustrative Diagrams)

    ️· Excess Gain Ratio vs. Setting Distance:
    - Shows how the sensor's gain changes with distance for Through-beam, Retroreflective, and Diffuse-reflective models.
    - Used to set appropriate distance for best sensor performance.
    - Includes diagrams with various distance ranges (0-5m) and corresponding gain values.

    5. Diagrams and Wiring

    ️· Output Circuit Diagrams: Detailed illustrations showing the electrical connections for the different output types (Relay and DC Transistor). These diagrams specify wire colors and connection points.

    Key Takeaways & Cautions:

    ️· Careful Model Selection: The E3JK family offers multiple models with different output types and performance characteristics. Selecting the correct model for your application is critical.
    ️· Wiring Diagrams: Refer to the output circuit diagrams *very* carefully when wiring the sensor. Incorrect wiring can damage the sensor or the connected load.
    ️· Load Limits: The DC Transistor Output (especially the E3JK-R2R3 variant) has load limits. Exceeding these limits can damage the sensor.
    ️· Setting Distance: Adjust the sensor's setting distance to optimize performance. The diagrams show the relationship between distance and gain.
    ️· Polarity: Some models indicate "Polarity Optional" for the main circuit.

    Part No.E3JK-R2R3
    ManufacturerETC
    Size329 Kbytes
    Pages8 pages
    DescriptionBuilt-in power supply photoelectric sensor
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