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The 1336T-LM1EN51 from Allen Bradley is a language module designed for use in 3-phase applications. This PROM-based plug-in memory module allows for easy integration into existing systems and operates with a typical logic supply level of 5V DC.
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| Manufacturer | Allen Bradley |
|---|---|
| Product Type | Language module |
| Product Line | 1336 FORCE Drives |
| Part Number | 1336T-LM1EN51 |
| Weight | 25.00 lbs (11.34 kg) |
| UPC | 662453576657 |
| Phase | 3-phase |
| Waterproof Protection | None |
| Module Type | Plug-in memory (PROM-based) |
| Typical Logic Supply Level | 5V DC |
| Memory Type | Non-volatile PROM |
| Signal Type | Digital logic-level signals |
| Communication | SCANport / PLC interface |
| Interface Type | Parallel PROM interface |
| Vibration Tolerance | 1G peak |
| Operating Temperature | 0°C to 40°C |
| Storage Temperature | -40°C to 70°C |
| Relative Humidity | 5–95% non-condensing |
| Shock Resistance | 15G peak |
The Allen Bradley 1336T-LM1EN51 is a specialized language module created for the 1336 FORCE Drives series. Operating in 3-phase configurations, this module provides a practical solution for enhancing communication and functionality within automation systems. Its plug-in memory design employs PROM technology, ensuring that critical data remains intact even when power is turned off due to its non-volatile nature.
Typically powered by a 5V DC logic supply, the 1336T-LM1EN51 communicates via a SCANport and PLC interface. It is set up for parallel PROM interfacing, which streamlines integration with existing systems. Additionally, it is capable of processing digital logic-level signals, making it a reliable component in a range of applications.
Operating conditions are important for this module; it can function within a temperature range of 0°C to 40°C. This module has been engineered for storage in harsher environments, withstanding temperatures as low as -40°C and as high as 70°C. It maintains functionality despite humidity levels between 5% and 95% without condensation, which is critical for stability in various plant conditions. Furthermore, it displays impressive shock resistance, able to endure peak shocks of up to 15G, and can tolerate vibrations of 1G peak, ensuring durability in demanding settings.