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The 700-RTR11N110A1 from Allen Bradley is a versatile repeat cycle timer designed for precise control in timing applications. With a broad timing range from 0.4 seconds up to 30 seconds, it easily adapts to various operational requirements and conditions.
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| Manufacturer | Allen Bradley |
|---|---|
| Product Type | Repeat Cycle Timer |
| Product Line | Bulletin 700 |
| Part Number | 700-RTR11N110A1 |
| Weight | 2.50 lbs (1.13 kg) |
| Timing Range | 0.4 to 30 seconds |
| Function | Repeat cycle (flasher) |
| Adjustment | Dual Potentiometer |
| Input Voltage | 120 Volts AC |
| Output Contact | DPDT (2 C/O) |
| Mounting | 9 Pin Octal Socket |
| Operating Temperature | -20 to 65 degrees Celsius |
| Protection | IP 40 |
| Spare Part/Accessory | Yes |
| Maximum Relative Humidity | 80% without condensation |
| Maximum Operating Altitude | 1000m above sea level |
The Allen Bradley 700-RTR11N110A1 serves as a repeat cycle timer within the Bulletin 700 series, allowing for accurate timing control in diverse industrial settings. Capable of timing intervals from 0.4 seconds to 30 seconds, this unit is beneficial for repeat cycle applications, functioning effectively as a flasher.
The input requirement for this timer is 120 Volts AC, ensuring compatibility with standard electrical systems. Users can make adjustments through a dual potentiometer, enabling fine-tuning to meet specific timing needs. The output contact configuration of DPDT with two changeover contacts adds versatility, making it a valuable component in control setups.
For mounting, the 700-RTR11N110A1 fits into a 9 pin octal socket, allowing for straightforward installation. It operates efficiently in temperature conditions ranging from -20 °C to 65 °C, making it suitable for various environments. With an IP 40 rating, the device provides adequate protection against solid objects, although it is not designed for water exposure.
This timer is classified as a spare part or accessory, and it is capable of functioning in maximum relative humidity levels of 80% without the risk of condensation. Furthermore, it can operate effectively at altitudes of up to 1000 meters above sea level, ensuring reliable performance in a wide range of applications.