Description
The Omron CQM1HME16R is a flash memory module designed for use with Omron CQM1H series programmable controllers. It provides 16K words of non-volatile memory storage and includes an integrated clock for time-based control functions. The Omron CQM1HME16R is used to expand program capacity and retain critical data in industrial automation applications.
Technical Specifications
| Condition |
New/Never Used Surplus |
| Brand |
Omron |
| Category |
Computer |
| Part Number |
CQM1HME16R |
| Subcategory |
Memory Board |
| Product Type |
PLC Memory Module |
| Memory Type |
Flash (Non-Volatile) |
| Memory Capacity |
16K Words |
| Clock Function |
Built-In Real-Time Clock |
| Compatible Series |
CQM1H |
| Installation Type |
Plug-In Option Card |
| Data Retention |
Non-Volatile |
| Application |
PLC Program and Data Storage |
| Weight |
0.02 lbs |
Information About CQM1HME16R
The CQM1HME16R is an optional flash memory board developed for the Omron CQM1H PLC platform. It offers 16K words of non-volatile memory, allowing user programs, parameters, and data to be securely stored even during power loss. The built-in clock function supports time stamping, scheduling, and real-time control features within the PLC system. Designed as a plug-in option card, it integrates directly into compatible CQM1H CPUs for expanded functionality and data retention.
Key Features:
- 16K Word Capacity: Provides expanded non-volatile storage for PLC programs and data.
- Flash Memory Technology: Retains information without battery backup.
- Integrated Clock Function: Enables real-time operations and time-based control logic.
- Optional Plug-In Card: Installs directly into compatible CQM1H CPUs.
- Non-Volatile Data Retention: Protects programs and parameters during power interruptions.
- Compact Design: Minimal footprint for efficient integration inside control panels.
- CQM1H Compatibility: Specifically designed for Omron CQM1H series controllers.
The CQM1HME16R delivers the reliability and precision required for secure PLC program storage and time-based automation control.