Product Core Summary
- Model: HIEE401807R0001 CM C910 A
- Manufacturer: ABB
- Core Function: Provides non-volatile flash memory expansion for storing user programs, parameters, and firmware in drive control systems.
- System Compatibility: Compatible with ABB ACS6000 medium voltage AC drives and AMC3x control platforms.
- Supply Status: Obsolete spare part, sourced from verified global inventory with availability for legacy support.
- Warranty Standard: 12-month functional warranty, fully tested.
Key Technical Specifications
- Product Model: HIEE401807R0001
- Manufacturer: ABB
- System Platform: ACS6000 Medium Voltage Drives
- Memory Capacity: Approximately 480-512 kB flash memory for user program storage.
- Interface Type: Subboard connector for direct integration with main control module.
- Data Retention: Non-volatile storage, retaining programs without power for extended periods.
- Power Supply: Derived from host module, typically 5 V DC logic supply.
- Operating Temperature Range: -10 °C to +70 °C, aligned with drive cabinet specifications.
- Programming Interface: Supports in-system programming via drive tools for firmware updates.
- Dimensions: Compact subboard format, typically <100 mm x 50 mm.
- Weight: Less than 0.2 kg.
- Certifications: CE marked, compliant with IEC 61800 for adjustable speed electrical power drive systems.
- Compatibility: Specific to CM C910 A AMC3x controller architecture.
- Environmental Rating: Designed for enclosed drive environments with vibration resistance per industrial standards.
- MTBF: High reliability suited for continuous operation in demanding applications.
Technical Architecture & Functional Positioning
The HIEE401807R0001 functions as a dedicated memory extension subboard within the control hierarchy of ACS6000 medium voltage drives, mounting directly onto the main controller board to augment onboard storage. This positioning is essential for systems requiring expanded program space beyond standard configurations, accommodating sophisticated control algorithms, custom sequences, or extensive parameter sets without compromising execution speed.
Technologically, it utilizes reliable flash memory chips with wear-leveling and error correction capabilities, ensuring data integrity during frequent read/write cycles typical in drive parameterization. The subboard’s plug-in design facilitates straightforward upgrades, allowing engineers to increase memory capacity on-site to support evolving application demands, such as multi-motor coordination or advanced diagnostic logging.
In practical engineering contexts, this module addresses limitations in legacy drive installations where initial memory proved insufficient for modern enhancements, like integrating new communication protocols or complex fault recording. By enabling larger user programs, it enhances drive flexibility, reduces the need for external PLCs in coordinated systems, and supports seamless migration paths during plant upgrades. Its robust retention characteristics also safeguard configurations against power interruptions, critical in high-uptime sectors where reprogramming downtime is costly.
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