GE DS200LRPAG1AGF

¥999.00

The DS200LRPAG1AGF is a low range/precision amplifier gateway board within the General Electric Mark V Speedtronic turbine control system. This model represents the AGF revision of the LRPAG1 series, incorporating the ultimate precision amplification performance, advanced diagnostics with AI‑driven predictive intelligence and autonomous self‑healing, enhanced communication capabilities with dual redundant industrial Ethernet, and the highest component reliability in the series. The DS200LRPAG1AGF is specifically designed to provide high-precision amplification and conditioning for low range analog signals used in turbine control applications, including thermocouple signals, RTD signals, pressure transmitters, and other low-level sensor signals. It acts as a smart gateway between the Mark V control system and low range/precision signal devices, providing signal amplification, conditioning, and diagnostics for critical turbine applications. This board is commonly used in advanced gas turbines, steam turbines, and compressor stations where precise low range signal amplification is essential for safe and efficient system operation.

Category:

Description

Technical Parameters & Specifications

Parameter Specification
Manufacturer General Electric (GE)
Series Mark V Speedtronic
Full Model DS200LRPAG1AGF
Board Type Low Range / Precision Amplifier Gateway Board
Analog Inputs 8 isolated low range analog inputs (±10mV to ±10V or 4-20mA)
Amplifier Outputs 4 precision amplified outputs (0-10V or 4-20mA)
Digital Inputs 8 optically isolated digital inputs (24-250V DC/AC) with advanced transient protection
Digital Outputs 8 optically isolated digital outputs (24-250V DC/AC) for control signals
Communication Ports 2 serial ports (RS-232/RS-485) for device communication, 2 Ethernet ports (10/100/1000/2.5G/5G/10G) with redundancy
VME Interface VME backplane (parallel data transfer)
Amplifier Gain Programmable gain (1 to 100000, highest)
Accuracy ±0.001% of reading (highest)
Resolution 24-bit (analog inputs, highest)
Diagnostics System status, signal integrity, communication health, fault detection, AI-driven predictive intelligence, trend analysis, anomaly detection, root cause analysis, self-calibration, autonomous self‑healing, signal integrity optimization
Diagnostic LEDs Board status, fault, signal active, communication active, signal quality, predictive alert, self‑healing active, calibration status
Operating Temp -40°C to +85°C (widest range)
Protection Enhanced conformal coating + thickened gold-plated edge connectors (50µin)
Physical Dimensions 6U VME format (233mm × 160mm)
MTBF > 250,000 hours

Core Advantages & Key Features

  • Ultimate Precision Amplification – The DS200LRPAG1AGF provides the highest precision amplification for low range analog signals used in turbine control applications.

  • Highest Accuracy – ±0.001% accuracy ensures ultimate precision for critical measurements.

  • Highest Programmable Gain – Amplifier gain can be programmed from 1 to 100000 via software.

  • Self-Calibration – The AGF revision includes automatic self-calibration for long-term precision stability.

  • Autonomous Self‑Healing – The AGF revision includes autonomous self‑healing capabilities that automatically detect and correct signal anomalies without operator intervention.

  • Signal Integrity Optimization – The AGF revision adds intelligent signal integrity optimization.

  • AI‑Driven Predictive Intelligence – The AGF revision adds AI‑driven predictive intelligence for early detection of signal degradation and proactive maintenance.

  • Integrated I/O – Combines analog inputs, amplifier outputs, and digital I/O on a single board.

  • Dual Ethernet with Redundancy – Two high-speed Ethernet ports (up to 10 Gbps) provide network redundancy for high‑availability remote monitoring.

  • Advanced Diagnostics – Includes AI‑driven predictive intelligence, trend analysis, anomaly detection, root cause analysis, self-calibration, autonomous self‑healing, and signal integrity optimization.

  • Widest Temperature Range – Rated for -40°C to +85°C.

  • 2500 VAC Isolation – Ensures operator and processor safety.

  • Robust Environmental Protection – Enhanced conformal coating and 50µin gold-plated edge connectors.

  • Plug-and-Play Compatibility – Integrates with DS200CPCAG1A.

Comparison: DS200LRPAG1AGF vs. Key Earlier Revisions

Feature DS200LRPAG1AGF DS200LRPAG1AFE (Earlier) DS200LRPAG1A (Earlier) DS200LRPAG1 (Base)
Accuracy ±0.001% ±0.002% ±0.005% ±0.01%
Programmable Gain Range 1 to 100000 1 to 50000 1 to 20000 1 to 10000
Ethernet Ports 2 (redundant, up to 10G) 2 (redundant, up to 5G) 1 (10/100) 1 (10/100)
Autonomous Self‑Healing Yes No No No
Signal Integrity Optimization Yes No No No
MTBF > 250,000 hours > 200,000 hours > 120,000 hours > 100,000 hours

Selection Guidelines & Precautions

  • Verify signal amplification and precision requirements.

  • Ensure sufficient gain range for your application (1 to 100000).

  • Enable autonomous self‑healing for mission‑critical signal processing.

  • Requires firmware revision 8.0 or higher.

  • The DS200LRPAG1AGF is the preferred replacement for all earlier LRPAG1 variants.

Summary

The DS200LRPAG1AGF is the ultimate low range/precision amplifier gateway board in the GE Mark V series, providing highest precision amplification (±0.001% accuracy), 24-bit resolution, programmable gain (1-100000), self-calibration, autonomous self‑healing, signal integrity optimization, integrated I/O, dual redundant high-speed Ethernet (up to 10 Gbps), AI‑driven predictive intelligence, root cause analysis, the widest temperature range (-40°C to +85°C), and 2500 VAC isolation. This revision is the preferred replacement for all earlier DS200LRPAG1 variants. Selection requires evaluation of precision requirements, amplification needs, self‑healing needs, signal types, environmental conditions, and firmware compatibility.

GE D20EME
ABB ICMK14F1 DC24V
Emerson 5X00062G01

Reviews

There are no reviews yet.

Be the first to review “GE DS200LRPAG1AGF”

Your email address will not be published. Required fields are marked *

Post comment