GE IS215AEPAH1A

¥999.00

Product Parameters

Parameter Category Specific Specifications
Brand & Model GE IS215AEPAH1A
Compatible System GE Mark VIe Distributed Control System
Operating Voltage 24VDC ±10%
Operating Temperature Range -40°C to 70°C
Analog Input Channels 16 Channels (Configurable for 4-20mA, 0-10V, ±5V)
Analog Output Channels 8 Channels (Configurable for 4-20mA, 0-10V)
Signal Conversion Precision 16-bit Resolution (Input/Output)
Input Impedance ≥1MΩ (Voltage Input); ≤250Ω (Current Input)
Output Load Capacity Up to 500Ω (Current Output); ≥10kΩ (Voltage Output)
Communication Protocols Profinet, Modbus TCP, Ethernet/IP
Power Consumption ≤15W (Typical Load); ≤20W (Max Load)
Physical Dimensions 141mm × 86mm × 62mm (L×W×H)
Protection Level IP20 (Panel-Mounted)
Mean Time Between Failures (MTBF) ≥120,000 Hours
Certifications CE, UL 508, CSA C22.2, IEC 61010-1
Terminal Type Spring-Clamp Terminals (0.5-2.5mm² Wire Gauge)
Category:

Description

Product Description

GE IS215AEPAH1A is a premium industrial PLC analog input/output (I/O) module, designed as a core component of GE’s advanced Mark VIe distributed control system, tailored to meet the rigorous precision and reliability demands of critical automation processes in heavy industries. Engineered with rugged industrial-grade hardware and cutting-edge signal processing technology, GE IS215AEPAH1A specializes in bidirectional analog signal handling—accurately acquiring signals from field sensors and outputting precise control signals to actuators, ensuring seamless data flow between central control units and field devices. What sets GE IS215AEPAH1A apart from standard I/O modules is its enhanced signal stability and robust anti-interference design, enabling stable operation in harsh environments with extreme temperatures, electromagnetic interference, and high mechanical vibration. Whether integrated into new automation setups or used for upgrading legacy systems, GE IS215AEPAH1A offers plug-and-play compatibility with existing GE control infrastructure, reducing deployment time and operational disruptions. The superior performance and long-term durability of GE IS215AEPAH1A make it a trusted choice for industries where analog signal precision directly impacts operational safety and production efficiency, delivering tangible value by minimizing errors and optimizing overall workflow performance.

Product Parameters

Parameter Category Specific Specifications
Brand & Model GE IS215AEPAH1A
Compatible System GE Mark VIe Distributed Control System
Operating Voltage 24VDC ±10%
Operating Temperature Range -40°C to 70°C
Analog Input Channels 16 Channels (Configurable for 4-20mA, 0-10V, ±5V)
Analog Output Channels 8 Channels (Configurable for 4-20mA, 0-10V)
Signal Conversion Precision 16-bit Resolution (Input/Output)
Input Impedance ≥1MΩ (Voltage Input); ≤250Ω (Current Input)
Output Load Capacity Up to 500Ω (Current Output); ≥10kΩ (Voltage Output)
Communication Protocols Profinet, Modbus TCP, Ethernet/IP
Power Consumption ≤15W (Typical Load); ≤20W (Max Load)
Physical Dimensions 141mm × 86mm × 62mm (L×W×H)
Protection Level IP20 (Panel-Mounted)
Mean Time Between Failures (MTBF) ≥120,000 Hours
Certifications CE, UL 508, CSA C22.2, IEC 61010-1
Terminal Type Spring-Clamp Terminals (0.5-2.5mm² Wire Gauge)

Advantages and Features

  1. Bidirectional High-Precision Signal Handling: GE IS215AEPAH1A features 16 analog input and 8 analog output channels, all with 16-bit resolution, ensuring accurate capture of subtle signal changes and precise delivery of control commands—critical for precision processes like chemical mixing and turbine control.
  2. Seamless GE Mark VIe Integration: Customized for the GE Mark VIe control system, GE IS215AEPAH1A integrates flawlessly with other GE PLC components, software, and accessories, eliminating compatibility issues and significantly shortening system commissioning time.
  3. Strong Anti-Interference Capability: Adopting differential input/output design and advanced electromagnetic shielding technology, the module effectively resists common-mode noise and external electromagnetic interference, ensuring stable signal transmission in complex industrial environments like steel mills and petrochemical plants.
  4. Flexible Channel Configuration: Both input and output channels support multiple common signal ranges, allowing direct connection with diverse field sensors and actuators without additional signal converters, simplifying system architecture and reducing hardware costs.
  5. Reliable Long-Term Operation: With an MTBF of ≥120,000 hours and industrial-grade components, GE IS215AEPAH1A requires minimal routine maintenance, reducing long-term operational costs and extending the service life of the entire automation system.

Application Cases in Application Fields

  1. Thermal Power Generation: A large thermal power plant in North America deployed GE IS215AEPAH1A in its boiler control system. The module acquired temperature, pressure, and flow signals from boiler sensors and output precise control signals to fuel valves and air dampers, stabilizing boiler operation and reducing unplanned shutdowns by 22% while improving fuel efficiency by 5%.
  2. Chemical Processing: An Asian petrochemical plant integrated GE IS215AEPAH1A into its polymerization reactor control system. The module’s high-precision analog I/O channels ensured strict control of reactant flow rates and temperature, reducing raw material waste by 10% and improving polymer product consistency by 9%.
  3. Automotive Battery Manufacturing: A leading European electric vehicle (EV) manufacturer used GE IS215AEPAH1A in its battery cell formation line. The module monitored cell voltage and temperature (analog input) and regulated charging/discharging current (analog output), extending battery cycle life by 12% and reducing defective cell rates to 0.04%.
  4. Water Treatment Plants: A municipal water treatment plant in the Middle East adopted GE IS215AEPAH1A to control its chemical dosing system. The module acquired water quality signals (pH, turbidity) and output precise commands to dosing pumps, ensuring compliance with environmental standards and reducing chemical usage by 8%.

Comparisons with Competing Products

Comparison Dimension GE IS215AEPAH1A Competitor Product AT (Similar Analog I/O Module) Competitor Product AU (Similar Analog I/O Module)
System Compatibility Fully optimized for GE Mark VIe, plug-and-play Requires third-party adapters for GE systems Partial compatibility, frequent software glitches
Analog I/O Channel Count 16 Input / 8 Output 12 Input / 4 Output 14 Input / 6 Output
Signal Conversion Precision 16-bit (Input/Output) 14-bit (Input/Output) 14-bit Input / 16-bit Output
MTBF Rating ≥120,000 Hours 80,000 Hours 85,000 Hours
Supported Communication Protocols 3 (Profinet, Modbus TCP, Ethernet/IP) 1 (Modbus TCP only) 2 (Profinet, Modbus TCP)
Power Consumption (Typical) 15W 18W 16W

Selection Suggestions and Precautions

  1. Selection Suggestions:
    • Prioritize GE IS215AEPAH1A if your automation system is based on GE Mark VIe, as it guarantees optimal performance and avoids the cost of additional compatibility accessories.
    • Choose this module for bidirectional analog control scenarios (e.g., chemical processing, battery manufacturing) due to its balanced 16-input/8-output channel configuration and 16-bit precision.
    • Opt for GE IS215AEPAH1A for harsh industrial environments, thanks to its wide operating temperature range and strong anti-interference capability.
  2. Precautions:
    • Ensure the input voltage strictly adheres to the 24VDC ±10% range to prevent damage to the module’s internal signal processing circuits.
    • During installation, correctly configure the signal type (current/voltage) and range for each input/output channel according to sensor/actuator specifications to avoid signal distortion.
    • Use only genuine GE cables and connectors when connecting GE IS215AEPAH1A to maintain signal integrity and compatibility with the Mark VIe system.
    • Regularly update the module’s firmware via GE’s official software platform to access the latest functional upgrades and security patches.
    • Maintain a minimum 5cm clearance around the module for heat dissipation, especially in high-temperature working environments, to avoid overheating and performance degradation.

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