Renice CFast Card for Factory Automation

Renice Industrial CFast Card is a compact memory card with SATAIII 6.0Gbps interface, compliant with the CFast 2.0 standard and ATA protocol. Designed with high performance, reliability and low power consumption, Renice CFast memory card are mainly used in industrial automation, embedded computing, public safety, aviation, medical and automotive fields, it can be a good storage device for next generation embedded applications.

Renice Industrial CFast Card is a compact memory card with SATAIII 6.0Gbps interface, compliant with the CFast 2.0 standard and ATA protocol. Designed with high performance, reliability and low power consumption, Renice CFast memory card are mainly used in industrial automation, embedded computing, public safety, aviation, medical and automotive fields, it can be a good storage device for next generation embedded applications.


Basic Information
Interface Standard: 7+17pin SATAIII 6.0Gb/s
Form Factor: 42.8mmX36.4mmX3.6mm (LxWxH)
Density: 16GB~512GB (MLC SSD); 8GB~256GB (SLC SSD)
Input Voltage: 3.3V (±5%)
Type: Industrial SSD

Performance
Sequential Data Read/Write: 520MB/450MB/s
Access Time: 0.1ms
MTBF: >3,000,000 hours @25C
Data Retention: JESD47 compliant

Flash Memory Management
Flash Management Algorithm: Static and dynamic wear-leveling, bad block management algorithm
Dynamic Power Management and SMART: √

Other Functions
NCQ: √
Trim: √
Power Failure Protect Function: √
Over Voltage Protect Function: √
Write Protect Function: Optional
Quick Erase: Optional

Environment
Temperature: Operation: -40°C ~+85°C; Storage: -55°C ~+95°C
Humidity: 10Hz-2000Hz, 16.4 G (X, Y, Z axis, 1 hour /axis)
Vibration: 10Hz-2000Hz, 16.4 G (X, Y, Z axis, 1 hour /axis)
Shock: Peak Acceleration: 1,500 G, 0.5ms(Half-sine wave, ±X,±Y,±Z axis, 1 time/axis); Peak Acceleration: 50 G, 11ms(Half-sine wave, ±X,±Y,±Z axis, 3 times/axis)

Featured Product

Schmalz Technology Development - The Right Gripper for Every Task

Schmalz Technology Development - The Right Gripper for Every Task

In order to interact with their environment and perform the tasks, lightweight robots, like all industrial robots, depend on tools - and in many cases these are vacuum grippers. These form the interface to the workpiece and are therefore a decisive part of the overall system. With their help, the robots can pick up, move, position, process, sort, stack and deposit a wide variety of goods and components. Vacuum gripping systems allow particularly gentle handling of workpieces, a compact and space-saving system design and gripping from above. Precisely because the object does not have to be gripped, the vacuum suction cupenables gapless positioning next to each other.