GE IS200TBAIH1CED

¥999.00

Product Parameters

Parameter Category Specific Specifications
Brand & Model GE IS200TBAIH1CED
Compatible System GE Mark VIe Distributed Control System
Operating Voltage 24VDC ±10%
Operating Temperature Range -40°C to 75°C
Analog Input Channels 16 Channels (Configurable for 4-20mA, 0-10V, ±5V, ±10V)
Signal Conversion Precision 18-bit Resolution
Input Impedance ≥1MΩ (Voltage Input); ≤250Ω (Current Input)
Communication Protocols Profinet, Modbus TCP, Ethernet/IP, DNP3
Power Consumption ≤14W (Typical Load); ≤19W (Max Load)
Physical Dimensions 136mm × 83mm × 59mm (L×W×H)
Protection Level IP20 (Panel-Mounted)
Mean Time Between Failures (MTBF) ≥125,000 Hours
Certifications CE, UL 508, CSA C22.2, IEC 61010-1, ATEX
Terminal Type Spring-Clamp Terminals (0.5-2.5mm² Wire Gauge
Category:

Description

Product Description

GE IS200TBAIH1CED is a premium high-precision industrial PLC analog input module, developed as a core component of GE’s flagship Mark VIe distributed control system, tailored to meet the stringent requirements of critical and precision-driven automation processes across heavy industries. Engineered with advanced signal processing technology and rugged industrial-grade construction, GE IS200TBAIH1CED specializes in the accurate acquisition, filtering, and conversion of analog signals from field sensors (including temperature, pressure, flow, and level sensors), ensuring real-time and reliable data transmission to central control units. What distinguishes GE IS200TBAIH1CED from standard modules is its enhanced anti-interference design and extended environmental adaptability, enabling stable operation in harsh conditions such as extreme temperature fluctuations, strong electromagnetic interference, and high mechanical vibration. Whether integrated into new automation setups or used for upgrading legacy systems, GE IS200TBAIH1CED offers seamless plug-and-play compatibility with existing GE control infrastructure, reducing deployment time and operational disruptions. The superior precision and long-term reliability of GE IS200TBAIH1CED make it a trusted choice for industries where process accuracy directly impacts product quality and operational safety, delivering tangible value by minimizing errors and optimizing overall production efficiency.

Product Parameters

Parameter Category Specific Specifications
Brand & Model GE IS200TBAIH1CED
Compatible System GE Mark VIe Distributed Control System
Operating Voltage 24VDC ±10%
Operating Temperature Range -40°C to 75°C
Analog Input Channels 16 Channels (Configurable for 4-20mA, 0-10V, ±5V, ±10V)
Signal Conversion Precision 18-bit Resolution
Input Impedance ≥1MΩ (Voltage Input); ≤250Ω (Current Input)
Communication Protocols Profinet, Modbus TCP, Ethernet/IP, DNP3
Power Consumption ≤14W (Typical Load); ≤19W (Max Load)
Physical Dimensions 136mm × 83mm × 59mm (L×W×H)
Protection Level IP20 (Panel-Mounted)
Mean Time Between Failures (MTBF) ≥125,000 Hours
Certifications CE, UL 508, CSA C22.2, IEC 61010-1, ATEX
Terminal Type Spring-Clamp Terminals (0.5-2.5mm² Wire Gauge)

Advantages and Features

  1. Ultra-High Signal Precision: GE IS200TBAIH1CED is equipped with 18-bit high-resolution AD conversion chips, outperforming industry-standard 16-bit modules by capturing even the most subtle changes in analog signals—essential for precision control in industries like aerospace, pharmaceuticals, and high-end manufacturing.
  2. Multi-Range & Multi-Type Channel Configuration: The module’s 16 input channels support four common analog signal ranges, enabling flexible connection with diverse field sensors without additional signal converters, simplifying system architecture and reducing costs.
  3. Enhanced Anti-Interference Capability: Adopting differential input technology, electromagnetic shielding, and signal filtering algorithms, GE IS200TBAIH1CED effectively resists common-mode noise and electromagnetic interference, ensuring stable signal transmission in complex industrial environments such as steel mills and petrochemical plants.
  4. Extended Environmental Adaptability: With an operating temperature range of -40°C to 75°C and ATEX certification, the module can withstand extreme cold, high heat, and hazardous industrial atmospheres, expanding its applicability to harsh and explosive-risk scenarios.
  5. Seamless GE Ecosystem Integration: Customized for the Mark VIe control system, GE IS200TBAIH1CED integrates flawlessly with other GE PLC components, software, and accessories, eliminating compatibility issues and shortening system commissioning time.

Application Cases in Application Fields

  1. Pharmaceutical Production: A leading pharmaceutical company in Europe deployed GE IS200TBAIH1CED in its sterile drug formulation line. The module accurately monitored analog signals of temperature, pressure, and ingredient flow during the mixing process, ensuring strict compliance with GMP standards, reducing batch rejection rates by 15% and improving product consistency.
  2. Aerospace Component Machining: An aerospace manufacturer in North America integrated GE IS200TBAIH1CED into its precision CNC machining system. The module’s 18-bit precision captured subtle changes in cutting tool load and spindle temperature, improving the machining accuracy of turbine blades by 20% and reducing scrap costs by over $200,000 annually.
  3. Oil & Gas Refining: A large oil refinery in the Middle East used GE IS200TBAIH1CED in its distillation column control system. The module’s anti-interference capability and wide temperature range ensured stable signal transmission in high-temperature, high-pressure environments, reducing unplanned shutdowns by 28% and increasing refinery throughput.
  4. Automotive Battery Manufacturing: An Asian electric vehicle (EV) manufacturer adopted GE IS200TBAIH1CED in its battery cell production line. The module monitored the analog signals of electrolyte injection volume and cell voltage, ensuring consistent battery performance, extending battery lifespan by 10% and reducing warranty claims.

Comparisons with Competing Products

Comparison Dimension GE IS200TBAIH1CED Competitor Product Z (Similar Analog Input Module) Competitor Product AA (Similar Analog Input Module)
Signal Conversion Precision 18-bit Resolution 16-bit Resolution 16-bit Resolution
Analog Input Channels 16 (4 signal ranges configurable) 12 (2 signal ranges fixed) 16 (3 signal ranges configurable)
Supported Communication Protocols 4 (Profinet, Modbus TCP, Ethernet/IP, DNP3) 2 (Modbus TCP, Ethernet/IP) 3 (Profinet, Modbus TCP, Ethernet/IP)
Operating Temperature Range -40°C to 75°C -25°C to 60°C -30°C to 65°C
MTBF Rating ≥125,000 Hours 80,000 Hours 90,000 Hours
Certifications CE, UL 508, CSA C22.2, IEC 61010-1, ATEX CE, UL 508 CE, CSA C22.2

Selection Suggestions and Precautions

  1. Selection Suggestions:
    • Prioritize GE IS200TBAIH1CED if your automation system is based on GE Mark VIe, as it guarantees optimal performance and avoids the cost of third-party adapters or compatibility modifications.
    • Choose this module for high-precision and hazardous environment applications (e.g., pharmaceutical production, oil refining) due to its 18-bit precision and ATEX certification.
    • Opt for GE IS200TBAIH1CED for projects involving diverse analog sensors, as its multi-range configurable channels reduce the need for additional signal conversion equipment.
  2. Precautions:
    • Ensure the input voltage strictly adheres to the 24VDC ±10% range to prevent damage to the module’s internal circuits and ensure stable operation.
    • During installation, correctly configure each channel’s signal type and range according to the connected sensor specifications to avoid signal distortion and measurement errors.
    • Use only genuine GE cables and connectors when connecting GE IS200TBAIH1CED 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, security patches, and performance optimizations.
    • 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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