Manufacturing Origin:USA
Model Code:DS3800NTCF1C1C
Type:Thermocouple Card
Series:Mark IV
Temperature Range:-65°C to +931°C (-85°F to +1706°F)
Input Resistance:200 Ohms max
Operating Voltage:DC 24V
Current Consumption:Max 50mA
Relay Outputs:2 sets of SPST relays
Power Supply:DC 24V
Board Dimensions:136mm x 105mm
Weight:Approx. 0.45kg
Redundancy:Triple-redundant backup on critical parameters
The GE Fanuc DS3800NTCF1C1C Thermocouple Card is designed to enhance operational safety and efficiency in steam and gas turbine applications. This precision thermocouple card ensures reliable temperature measurement within an extensive range of -273°C to 1210°C, with an accuracy of +/- 0.5% of full scale. It features a triple-redundant design, providing robust protection against failures and ensuring continuous operation even under challenging conditions.
Equipped with a 24-pin connector, the card integrates seamlessly with existing control systems, facilitating easy installation and maintenance. The RS-485 communication interface supports efficient data transfer, enabling seamless integration into complex industrial networks. With a maximum power consumption of 2.5W, it conserves energy while delivering high performance.
Operated within a temperature range of -20°C to +60°C and a humidity level of up to 95% non-condensing, the DS3800NTCF1C1C Thermocouple Card is designed for durability and reliability in harsh environments. Its compact size and lightweight design make it suitable for various applications without compromising on functionality.
This thermocouple card plays a critical role in maintaining high-temperature safety shutdown protocols and process control systems. It provides critical temperature feedback, enabling precise adjustments and control actions necessary for optimal operation and safety. The card’s compatibility with multiple thermocouple types ensures versatility in measuring different materials and processes.
With its advanced features and proven reliability, the GE Fanuc DS3800NTCF1C1C Thermocouple Card is an indispensable component for enhancing the performance and safety of steam and gas turbine systems. It is specifically engineered to meet the stringent requirements of industrial automation, offering a cost-effective solution for maintaining high levels of operational efficiency.
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