Product Overview
The 5CFCRD.4096-06 (5CFCRD409606) is a high-performance industrial-grade CompactFlash card engineered by B&R Industrial Automation to provide mission-critical data storage for Automation PC and Power Panel systems. Built with premium Single-Level Cell (SLC) flash technology, this 4 GB module is designed for the most demanding industrial environments, including oil and gas refineries, power generation facilities, and large-scale manufacturing plants. Unlike standard consumer-grade flash, the 5CFCRD.4096-06 ensures maximum data integrity and longevity, significantly reducing system downtime by offering superior resistance to heavy write cycles and thermal stress. It serves as the primary boot medium or ruggedized data logger for B&R’s APC and PPC hardware series.
Technical Configuration
This storage module utilizes a sophisticated internal architecture optimized for industrial throughput and reliability. It supports multiple operating modes, including PIO modes 0-4 and Multiword DMA modes 0-2, ensuring seamless integration with legacy and modern B&R control systems.
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SLC Architecture: Provides the highest endurance level with 2,000,000 typical erase/write cycles.
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Static Wear Leveling: Distributes write operations evenly across the flash cells to prevent premature wear-out of frequently accessed sectors.
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Error Correction (ECC): Integrated hardware ECC ensures that data corruption is minimized, maintaining a failure rate of less than one unrecoverable error per 10 to the 14th bits read.
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Lifetime Monitoring: Compatible with B&R software tools to track the "health" of the card in real-time, allowing for predictive maintenance before a hardware failure occurs.
Hardware Specifications
| Feature |
Details |
| Model |
5CFCRD.4096-06 |
| Brand |
B&R Industrial Automation |
| Storage Capacity |
4 GB |
| Flash Type |
SLC (Single-Level Cell) |
| Read Speed (Typical) |
8 MB/s |
| Write Speed (Typical) |
6 MB/s |
| MTBF |
Over 4,000,000 hours (at 25 deg C) |
| Endurance |
Over 2,000,000 Erase/Write cycles |
| Operating Temp |
Industrial Grade (-40 to 85 deg C component rated) |
| Dimensions (WxLxH) |
42.8 x 36.4 x 3.3 mm |
| Weight |
11.4 g |
| Shipping Weight |
1.0 kg (including protective packaging) |
Common Queries
Does this card support S.M.A.R.T. monitoring attributes?
No, the 5CFCRD.4096-06 does not support standard S.M.A.R.T. commands. Instead, it utilizes B&R’s proprietary Lifetime Monitoring via the PVI Transfer or Embedded OS Installer software for health tracking.
Can I use a standard off-the-shelf CompactFlash card instead of this B&R model?
While physical dimensions are identical, standard cards often use MLC or TLC flash which lacks the endurance and vibration resistance required for B&R industrial controllers. Using non-B&R cards may lead to system instability and loss of warranty.
What software version is required to initialize this card?
For PVI Transfer, version 2.57 or higher is required. For the B&R Embedded OS Installer, version 2.21 or higher is mandatory to ensure the correct partition alignment and file system format.
Engineering Installation and Maintenance Best Practices
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Electrostatic Discharge (ESD) Protection: Always wear a grounded ESD wrist strap when handling the 5CFCRD.4096-06. Flash memory components are extremely sensitive to static electricity, which can cause latent defects that lead to premature failure in the field.
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Hot-Plugging Prohibition: Ensure the Power Panel or Automation PC is completely powered down before inserting or removing the CompactFlash card. Removing the card while the "Disk" LED is active will result in file system corruption and potential hardware damage.
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Mounting Integrity: Ensure the card is fully seated in the slot and the retaining clip (if applicable to your APC/PPC model) is engaged. In high-vibration environments, even a slight displacement can cause intermittent communication errors during DMA transfers.
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Thermal Management: While the card is rated for long-term use, ensure the control cabinet has adequate airflow. Operating at a constant ambient temperature of 25 deg C optimizes the MTBF to its maximum 4,000,000-hour potential.