Omron's CP1L-L20DR-D is an L CPU module designed for various control tasks. It operates at a supply voltage of 24 VDC and includes 12 DC inputs alongside 8 relay outputs. This module accommodates a program capacity of 5 K steps and 10 K words of data memory.
We sell industrial automation parts backed by our 2-year DO Supply Warranty.
Same-day domestic and expedited international shipping with UPS, FedEx, DHL, and more.
AMEX, Visa, MasterCard, Discover, wire transfer, and more, plus flexible payment plans.
Repair and exchange services for all existing automation products.
Drop shipping, blind shipping, and account shipping with no extra fees.
Manufacturer | Omron |
---|---|
Series | CP1 |
Part Number | CP1L-L20DR-D |
Product Type | L CPU Module |
Supply Voltage | 24 VDC |
Number of Inputs | 12 x 24 VDC Inputs |
Input Type | DC Inputs |
Number of Outputs | 8 |
Output Type | Relay |
Program Capacity | 5 K Steps |
Data Memory Capacity | 10 K Words |
Quick-Response Inputs | 6 max. |
Operating Temperature Range | 0 to 55°C |
Storage Temperature | -20 to 75°C |
The CP1L-L20DR-D, an L CPU Module from Omron, is constructed for intricate automation tasks. Designed to work with a supply voltage of 24 VDC, it includes 12 inputs for 24 VDC DC signals, providing flexibility for various applications. This unit features 8 relay outputs, which enable reliable control of external devices.
With a program capacity of 5 K steps, the module ensures effective processing capabilities to run complex control sequences. Additionally, it has a data memory capacity of 10 K words, allowing it to store ample information for system operations.
For responsive input handling, the CP1L-L20DR-D accommodates up to 6 quick-response inputs, making it suitable for applications requiring immediate reaction to signals. It operates smoothly in a temperature range of 0 to 55°C, expanding its usability across different industrial conditions. This versatility is further enhanced by its ability to withstand lower storage temperatures between -20 and 75°C, ensuring reliability when not in active use.