Description
GE IC697CMN742-HT – High-Temperature Industrial PLC Communication Module
Product Description
The GE IC697CMN742-HT is a specialized high-temperature communication module exclusively engineered for GE’s Series 90-70 programmable logic controllers (PLCs), tailored to deliver reliable data transmission in extreme heat environments where standard modules fail. As a critical connectivity component in harsh industrial settings, the GE IC697CMN742-HT enables seamless communication between Series 90-70 CPUs and upper-level systems such as SCADA, MES, and IoT platforms, supporting a suite of industry-standard protocols optimized for high-temperature stability. Engineered with ruggedized components and thermal-resistant design at its core, the GE IC697CMN742-HT adheres to strict industrial standards for extreme environment operation, making it ideal for sectors like oil and gas, metallurgy, and high-temperature manufacturing. What sets the GE IC697CMN742-HT apart from standard communication modules is its extended temperature tolerance and uncompromised performance under thermal stress, paired with deep integration into the Series 90-70 ecosystem. Whether deployed in furnace control rooms, refinery heaters, or steel mill operations, the GE IC697CMN742-HT provides consistent, durable connectivity that empowers businesses to maintain control in the most challenging high-heat industrial scenarios.
Product Parameters
- Module Type: High-temperature industrial communication module, exclusive to GE Series 90-70 PLCs
- Supported Protocols: Native support for Modbus RTU, Ethernet/IP, and GE Genius Bus, optimized for thermal stability
- Communication Ports: 1 x 10/100 Mbps Fast Ethernet port (RJ45, thermal-resistant connector) + 1 x RS-485 serial port (for Modbus RTU)
- Operating Temperature Range: -40°C to 85°C (-40°F to 185°F) – specialized high-temperature tolerance (exceeding standard 70°C limits)
- Storage Temperature Range: -55°C to 100°C (-67°F to 212°F), ensuring durability during transportation and idle periods
- PLC Compatibility: Fully compatible with GE Series 90-70 CPU modules (IC697CPU731, IC697CPU780, IC697CPU790) and Series 90-70 chassis (IC697CHS790)
- Power Consumption: 2.8 W (typical) at 24 VDC input, 3.5 W (max), energy-efficient for continuous high-temperature operation
- Physical Dimensions: 110 mm × 80 mm × 130 mm (4.33 in × 3.15 in × 5.12 in), DIN rail mountable (EN 50022 standard)
- Certifications: UL 508, CE, IEC 61131-2, ATEX (Zone 2), and IEEE 802.3 compliant, with additional high-temperature material certifications
- Operating Humidity: 5% – 95% (non-condensing), adaptable to humid high-heat environments
- Thermal Protection: Built-in temperature monitoring and overload protection to prevent overheating
- Mechanical Protection: IP20 dust protection rating, with a rugged ceramic-reinforced plastic chassis (heat-resistant up to 100°C)
Advantages and Features
- Specialized High-Temperature Tolerance: The GE IC697CMN742-HT operates reliably up to 85°C, outperforming standard modules (limited to 70°C) and eliminating the need for costly cooling systems in high-heat areas like furnace zones and refinery process units.
- Multi-Protocol Seamless Connectivity: Native support for three key industrial protocols enables integration with both modern Ethernet networks and legacy serial devices, simplifying system architecture and reducing the need for additional gateways.
- Thermal-Resistant Components: Ceramic-reinforced chassis, high-temperature connectors, and heat-dissipating circuitry ensure the GE IC697CMN742-HT maintains signal integrity and structural stability even under prolonged exposure to extreme heat.
- Seamless Series 90-70 Integration: Plug-and-play compatibility with all Series 90-70 hardware and software minimizes deployment time, allowing for easy upgrades of existing high-temperature control systems without redesign.
- Reliable Industrial-Grade Protection: Built-in temperature monitoring, surge protection, and ESD resistance (±8 kV contact, ±15 kV air) safeguard the module against harsh conditions, extending its service life (MTBF exceeding 120,000 hours).
- Dual-Port Flexibility: The combination of Ethernet and RS-485 ports supports hybrid network setups, making the GE IC697CMN742-HT versatile for both new installations and retrofits of legacy high-temperature systems.
Application Cases in Application Fields
- Steel Mill Furnace Control: A global steel manufacturer deployed the GE IC697CMN742-HT in its blast furnace control systems, where ambient temperatures regularly reach 80°C. The module connected PLCs to temperature sensors, gas analyzers, and a central SCADA system via Ethernet/IP, ensuring real-time monitoring of molten iron production and reducing process downtime by 22%.
- Oil Refinery Heater Management: An oil refinery integrated the GE IC697CMN742-HT into its crude oil heater control units, leveraging Modbus RTU to link PLCs with flow meters and temperature transmitters in the heater bay (operating at 78°C). The module’s high-temperature tolerance eliminated frequent module failures, cutting maintenance costs by 30%.
- Glass Manufacturing: A specialty glass producer used the GE IC697CMN742-HT in its glass melting furnace control system, where near-furnace temperatures exceed 82°C. The module’s Ethernet port enabled data transmission to a cloud-based analytics platform, optimizing furnace temperature profiles and improving glass quality consistency by 18%.
- Metallurgical Processing: A copper smelting plant adopted the GE IC697CMN742-HT for its smelter control systems, using the RS-485 port to communicate with legacy process controllers and the Ethernet port to connect to a modern MES. The module’s durability in 85°C smelter environments ensured 24/7 operation, reducing unplanned shutdowns by 25%.
Comparisons with Competing Products
| Feature | GE IC697CMN742-HT | Competitor AH (High-Temp PLC Comm Module) | Competitor AI (Industrial Comm Module) |
|---|---|---|---|
| Max Operating Temperature | 85°C | 75°C | 70°C |
| Supported Protocols | 3 (Modbus RTU, Ethernet/IP, Genius Bus) | 2 (Modbus RTU, Ethernet/IP) | 2 (Modbus RTU, Profinet) |
| Thermal-Resistant Design | Ceramic-reinforced chassis, heat-dissipating circuitry | Basic heat-resistant plastic | Standard industrial plastic |
| Certifications | UL, CE, IEC, ATEX (Zone 2), high-temp material certs | Only CE and UL | CE and IEC |
| MTBF | >120,000 hours | ~80,000 hours | ~75,000 hours |
| Communication Ports | 1 Ethernet + 1 RS-485 | 1 Ethernet only | 1 Ethernet + 1 RS-232 |
The GE IC697CMN742-HT outperforms competitors in high-temperature tolerance, protocol support, and durability. While Competitor AH claims high-temperature capability, it falls short in maximum temperature and lacks Genius Bus support, making the GE IC697CMN742-HT the only reliable choice for extreme-heat Series 90-70 PLC applications.
Selection Suggestions and Precautions
Selection Suggestions
- Prioritize High-Heat Environments: Choose the GE IC697CMN742-HT for applications where ambient temperatures exceed 70°C (e.g., furnaces, smelters, refinery heaters), as standard modules will degrade or fail in these conditions.
- Align with Series 90-70 Ecosystem: Select this module if your system uses GE Series 90-70 PLCs, ensuring seamless integration and full access to GE’s technical support for high-temperature system optimization.
- Evaluate Protocol Needs: Opt for the GE IC697CMN742-HT if your setup requires both Ethernet/IP and Modbus RTU, avoiding the need for additional modules in space-constrained high-heat control cabinets.
- Legacy System Retrofits: Use this module to upgrade aging communication modules in legacy high-temperature systems, as its dual ports support both existing serial devices and modern digital platforms.
Precautions
- Temperature Monitoring: Regularly check ambient temperatures around the GE IC697CMN742-HT to ensure they stay within the -40°C to 85°C range; avoid direct exposure to open flames or molten materials.
- Connector Maintenance: Inspect Ethernet and RS-485 connectors periodically for heat-induced wear or corrosion; use high-temperature-rated cables to maintain signal integrity.
- Static and Surge Protection: Use anti-static wristbands when handling the module during installation (critical in dry, high-heat environments); install surge protectors on all communication lines to prevent voltage spikes.
- Power Supply Stability: Connect to a regulated 24 VDC power supply with overvoltage protection, as voltage fluctuations in high-heat environments can damage the module’s thermal-sensitive components.
- Firmware Updates: Update firmware via GE’s official software to enhance thermal performance and security—never use unapproved firmware, which may compromise high-temperature stability.


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