Renice 2.5 inch PATA SSD for Factory Automation
Renice H1 Plus 2.5" PATA IDE SSD adopts the traditional 2.5 inch PATA interface, which has high read/write performance, high stability and reliability, and maximum capacity up to 1TB. Besides, Renice PATA industrial SSD supports AES encryption, Overvoltage, Overcurrent Protection and Power Failure Protection. Its industrial operating temperature (-40℃ to +85℃) meets the harsh environment, such as Industrial Automation, Aerospace, Maritime, etc. Because of its high durability, Renice PATA SSD can instead of the traditional IDE HDD.
Renice H1 Plus 2.5" PATA IDE SSD adopts the traditional 2.5 inch PATA interface, which has high read/write performance, high stability and reliability, and maximum capacity up to 1TB. Besides, Renice PATA industrial SSD supports AES encryption, Overvoltage, Overcurrent Protection and Power Failure Protection. Its industrial operating temperature (-40℃ to +85℃) meets the harsh environment, such as Industrial Automation, Aerospace, Maritime, etc. Because of its high durability, Renice PATA SSD can instead of the traditional IDE HDD.
Basic Information
Dimension: 2.5 inch (100.0mm x 70.0mm x 9.5mm) L×W×H
Interface: 44 PIN PATA IDE
Capacity: 1GB~128GB (SLC SSD); 4GB~1TB (MLC SSD)
Input Voltage: 5.0V (±5%)
Type: Industrial SSD
Performance
Max Sequential Read/Write: 90MB/80MB/s
Write Endurance: >8 Year @ 100GB per day erase ( 32GB SLC SSD)
Read Endurance: JESD47 compliant
Data Retention: JESD47 compliant
Flash Memory Management
Flash Translation Layer (FTL) For High Durability: √
Flash Memory Management: Static, Dynamic and Global Wear leveling to maximize system write endurance
Health-Monitoring and S.M.A.R.T.: √
Hardware BCH ECC error correction: 96-Bit /1KB
Special Functions
Built-in Power Protection Monitoring, Over-voltage Protection: √
AES: AES-128 and AES-256 support with CBC and XTS modes, high performance on-the-fly encryption/decryption
Environment
Operating Temperature: -40℃ to +85℃
Humidity: 5-95%
Vibration: 20G(7-2000HZ)
Shock: 2,000G(@0.3ms half sine wave)