Operating Temperature Range:-40°C to 125°C
Accuracy (°C):±0.5°C
Response Time (seconds):≤2 seconds
Environmental Resistance:IP67 certified
Connection Type:Industry-standard 4-pin connector
Wire Material:High-grade copper wire
Max Operating Voltage:24V DC
Max Operating Current:50mA
The GE HE693THM884N temperature sensors are precision instruments designed to meet the stringent requirements of industrial automation systems. These sensors boast an impressive operating temperature range from -40°C to +150°C, ensuring they can function reliably in virtually any environment encountered in manufacturing facilities, power plants, or any other industrial setting.
With an exceptional measurement accuracy of +/-0.5°C at 25°C, the GE HE693THM884N ensures that temperature readings are consistently accurate, even under fluctuating conditions. This level of precision is critical for maintaining optimal operational efficiency and product quality.
Featuring a rapid response time of just one second, these sensors provide immediate feedback, enabling quick adjustments and responses to changing conditions within the system. This feature is particularly advantageous in dynamic industrial environments where rapid decision-making is necessary.
Equipped with an industry-standard 4-20mA output, the GE HE693THM884N seamlessly integrates with existing control systems, facilitating easy installation and compatibility. This ensures a smooth transition for integration into diverse automation setups without compromising performance.
The robust construction of the GE HE693THM884N includes an IP67 certification for dust and water resistance, ensuring durability and longevity in harsh environments. The stainless steel body not only enhances the sensor’s resilience against corrosion but also provides a sleek, modern aesthetic suitable for any industrial setting.
In terms of power consumption, the GE HE693THM884N operates efficiently, drawing less than 20mA, which helps reduce energy usage and maintenance costs over time. This feature is particularly beneficial in large-scale operations where energy management is a priority.
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