The HE693RTD600 is an RTD input module from Horner Electric designed for efficient temperature monitoring. This module supports six channels, each providing precise temperature readings with a resolution of 0.5°C or 0.5°F.
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Manufacturer | Horner Electric |
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Series | PLC I/O |
Part Number | HE693RTD600 |
Product Type | Resistance Temperature Device (RTD) Input Module |
Number of Channels | 6 |
Typical Power Consumption | 75 milliamperes at 5 Volts DC |
Average Resistance Temperature Device Current, PT-100 | 330 microamperes |
Fault Protection | Zener Diode Clamp |
Input Impedance | More than 1,000 megaohms |
Update Time | 50 Channels per Second |
Analog/Digital Conversion Type | 16-Bit, Integrating |
Operating Temperature | 0 to 60°C (Maximum) |
Humidity Tolerance | 5 to 95% (Non-Condensing) |
Channel to Channel Tracking | 0.1°C |
Resolution | 0.5°C or 0.5°F |
The HE693RTD600 is a Resistance Temperature Device (RTD) input module manufactured by Horner Electric within its PLC I/O series. It offers a total of six channels for flexible temperature sensor integration. Each channel is capable of a maximum update rate of 50 channels per second, ensuring timely data acquisition.
In terms of power consumption, the module draws approximately 75 milliamperes at a supply voltage of 5 Volts DC, which supports efficient operation. This module is particularly suitable for PT-100 RTDs, as it typically provides an average current of 330 microamperes, suitable for accurate temperature readings.
A notable feature of the HE693RTD600 is its robust fault protection, achieved through a Zener diode clamp, providing enhanced reliability. The device also has high input impedance, which is greater than 1,000 megaohms, making it effective for signal integrity.
Temperature measurement accuracy is commendable, with channel to channel tracking at just 0.1°C. Resolution is available at either 0.5°C or 0.5°F, catering to various application requirements. This module operates within a temperature range of 0 to 60°C and supports humidity levels between 5 to 95% (non-condensing), making it suitable for diverse operating environments.