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The 1771N-0NNTTTTT input module from Allen Bradley's PLC 5 series serves as an essential component in automation systems. This module supports a total of 8 inputs, with 2 dedicated for 10V signals and 6 for 100mV signals, accommodating a variety of application needs.
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| Manufacturer | Allen Bradley |
|---|---|
| Product Type | Input Module |
| Product Line | PLC 5 |
| Part Number | 1771N-0NNTTTTTT |
| Weight | 1.75 lbs (0.79 kg) |
| Total Inputs | 8 Inputs |
| 10V Inputs | 2 Inputs |
| 100mV Inputs | 6 Inputs |
| Slots Required | 1 Slot |
| Mounting | Vertical |
| Cooling | Natural Convection |
| Input Type | Analog |
| Operating Temperature Range | 32 to 104 degrees Fahrenheit |
| Max. Relative Operating Humidity | 80%, Non-Condensing |
| Storage Temperature Range | 32 to 122 degrees Fahrenheit |
| Max. Relative Storage Humidity | 80%, Non-Condensing |
The Allen Bradley 1771N-0NNTTTTT is categorized as an input module, engineered for use within the PLC 5 framework, particularly suitable for handling analog input signals. This unit accommodates a total of 8 inputs, which include 2 inputs specifically designed for 10V signals and another 6 inputs for accepting 100mV. Such versatility grants it a wide range of applicability in different systems.
Installation requirements for this module are minimal, needing just one slot within the PLC, facilitating straightforward integration into existing configurations. It is manufactured for vertical mounting, optimizing space efficiency. The module operates using natural convection cooling, which allows for efficient thermal management without requiring additional cooling infrastructure.
The operational temperature range is defined between 32 degrees Fahrenheit and 104 degrees Fahrenheit, allowing it to function effectively in various environmental conditions. Similarly, it can be stored safely at temperatures ranging from 32°F to 122°F. Both during operation and storage, the maximum relative humidity recommended is 80%, with a non-condensing specification, thereby ensuring reliable performance in humidity-prone environments.