S-E4AI4T

S-E4AI4T features DC 24V power, 4 analog inputs (voltage/current), 16-bit precision, ±0.1% accuracy, 4 digital outputs, and 1 RS485 interface for versatile applications.

  • Power Supply: DC 24V±20%
  • Analog Inputs: 4
  • Input Mode: Voltage/Current Measurement
  • Measurement Range:
    • 05V, 010V, 4~20mA
  • Maximum Input Range: 12V, 30mA
  • Maximum Resolution:
    • 0~5V: 1.25mV
    • 0~10V: 2.5mV
    • 4~20mA: 5uA
  • Analog-to-Digital Conversion Accuracy: 16 bits
  • Comprehensive Measurement Accuracy: ±0.1%
  • Digital Outputs: 4
  • Output Type: Transistor/NPN
  • Output Voltage: 24V
  • RS485 Interface: 1

Structure and Environment:

  • Dimensions: 30x97x72 (mm)
  • Weight: 109g
  • Operating Temperature: -20°C~55°C (non-freezing)
  • Operating Humidity: 5~95%RH (non-condensing)
  • Shock Resistance: 10~25HZ (XYZ direction 2G/30 minutes)

Power:

  • Power Consumption
  • Power Supply: DC 24V±20%

Input Parameters:

  • Digital Input: None
  • Analog Input: 4
  • Input Mode: Voltage/Current Measurement
  • Input Wiring:
  • Input Signal Voltage:
  • High-Speed Counting: None
  • AB Phase Counting:
    • Measurement Range: 0~5V , 0~10V, 4~20mA
    • Maximum Input Range: 12V, 30mA
    • Maximum Resolution:
      • 0~5V: 1.25mV
      • 0~10V: 2.5mV
      • 4~20mA: 5uA
  • Analog-to-Digital Conversion Accuracy: 16 bits
  • Comprehensive Measurement Accuracy: ±0.1%

Output Parameters:

  • Digital Output: 4
  • Analog Output: None
  • Output Type: Transistor/NPN
  • Output Mode: Output Voltage: 24V
  • Pulse Output: None
  • Output Accuracy
  • Output Range
  • Maximum Inductive Load
  • Maximum Resistive Load
  • Output Load Impedance
  • Maximum Resolution

Certifications:

  • FCC Compatibility: Complies with FCC, Class A
  • Dielectric Strength Test: 1000V AC, 1 minute
  • CE Certification: Complies with EN55032 and EN55035 standards
  • Protection Level: IP30

Interfaces:

  • RS232: None
  • RS485: 1
  • USB Device Port: Supports upload, online monitoring

Software:

  • Upper Software: SamSoar2022