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  • ASFGL-FD111D (4)(1776588035764).webp
  • ASFGL-FD111D (1)(1776588035797).webp
  • ASFGL-FD111D (2)(1776588035899).webp
  • ASFGL-FD111D (3)(1776588035823).webp

ASFGL-FD111D

  • Commodity name: ASFGL-FD111D
  • Input: 4–20 mA,0/1–5 V,0/2–10 V
  • Number of channels: Two in, two out
  • Output: 0/4–20 mA (supports passive operation),0–10 mA,0/1–5 V,0–10 V
  • Power supply mode (both can be centralized power supply): 24VDC
  • HART transparent transmission function: Not supported

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Product Details

  • Product Description
  • Product Introduction

    The signal intelligent isolator converts input current or voltage signals into isolated, transmitted current or voltage outputs. This product features built-in online fault self‑diagnosis and allows users to configure the signal type and output mode during a signal failure via a PC or a handheld programmer.

    Technical Specifications

    • Power supply: 18 VDC to 32 VDC; 85 VAC to 265 VAC (90 VDC to 360 VDC); 12 VDC to 30 VDC (loop-powered)
    • Operating power consumption: ≤1.3 W (24 V, single-channel full-load output); ≤1.5 W (24 V, dual-channel full-load output)
    • Input signals: 0/4–20 mA, 0/1–5 V, 0/2–10 V
    • Distribution voltage: Open-circuit voltage ≤ 26 V; at 20 mA, output voltage ≥ 22 V.
    • Output signals: Current: 0–4 to 20 mA (dual-channel, passive support), 0–10 mA; Voltage: 0–1 to 5 V, 0–10 V.
    • Permissible load: 0–4 to 20 mA: RL ≤ 550 Ω; 0–10 mA: RL ≤ 1.1 kΩ; 0–1 to 5 V: RL ≥ 1 MΩ; 0–10 V: RL ≥ 2 MΩ.
      Passive: RL < [(U−3)/0.02] Ω; where U is the loop voltage.
    • Conversion accuracy: 0.1% F.S. (25°C ± 2°C)
    • Temperature Drift: 40 ppm/°C
    • Response time: ≤500 ms
    • Electromagnetic Compatibility: IEC 61326-3-1
    • Dielectric Strength: ≥2500 VAC (between input, output, and power supply)
    • Insulation resistance: ≥100 MΩ (input/output/power supply)
    • Operating temperature: -20°C to +60°C
    • Storage temperature: -40°C to +80°C
    • Output status: Unless otherwise specified by the user, the output will track the input signal across the full‑scale range regardless of any fault condition in the input signal (except for open‑circuit or short‑circuit conditions on 4–20 mA or 1–5 V inputs, in which case independently powered devices output 0 V/mA, while loop‑powered devices output 3.5 mA). However, the output shall not exceed 110% of the upper limit of the output range (e.g., for a 0–20 mA output, an independently powered device may have a minimum output of 0 mA, while a loop‑powered device must maintain a minimum of no less than 3.5 mA and a maximum of no more than 22 mA).

Product Introduction

The signal intelligent isolator converts input current or voltage signals into isolated, transmitted current or voltage outputs. This product features built-in online fault self‑diagnosis and allows users to configure the signal type and output mode during a signal failure via a PC or a handheld programmer.

Technical Specifications

  • Power supply: 18 VDC to 32 VDC; 85 VAC to 265 VAC (90 VDC to 360 VDC); 12 VDC to 30 VDC (loop-powered)
  • Operating power consumption: ≤1.3 W (24 V, single-channel full-load output); ≤1.5 W (24 V, dual-channel full-load output)
  • Input signals: 0/4–20 mA, 0/1–5 V, 0/2–10 V
  • Distribution voltage: Open-circuit voltage ≤ 26 V; at 20 mA, output voltage ≥ 22 V.
  • Output signals: Current: 0–4 to 20 mA (dual-channel, passive support), 0–10 mA; Voltage: 0–1 to 5 V, 0–10 V.
  • Permissible load: 0–4 to 20 mA: RL ≤ 550 Ω; 0–10 mA: RL ≤ 1.1 kΩ; 0–1 to 5 V: RL ≥ 1 MΩ; 0–10 V: RL ≥ 2 MΩ.
    Passive: RL < [(U−3)/0.02] Ω; where U is the loop voltage.
  • Conversion accuracy: 0.1% F.S. (25°C ± 2°C)
  • Temperature Drift: 40 ppm/°C
  • Response time: ≤500 ms
  • Electromagnetic Compatibility: IEC 61326-3-1
  • Dielectric Strength: ≥2500 VAC (between input, output, and power supply)
  • Insulation resistance: ≥100 MΩ (input/output/power supply)
  • Operating temperature: -20°C to +60°C
  • Storage temperature: -40°C to +80°C
  • Output status: Unless otherwise specified by the user, the output will track the input signal across the full‑scale range regardless of any fault condition in the input signal (except for open‑circuit or short‑circuit conditions on 4–20 mA or 1–5 V inputs, in which case independently powered devices output 0 V/mA, while loop‑powered devices output 3.5 mA). However, the output shall not exceed 110% of the upper limit of the output range (e.g., for a 0–20 mA output, an independently powered device may have a minimum output of 0 mA, while a loop‑powered device must maintain a minimum of no less than 3.5 mA and a maximum of no more than 22 mA).

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