Supporting the distributed and shared architectures
Western Digital AT EN610 NVMe SSD offers an automotive-grade, high-performance, wide–temperature range storage solution designed for the demanding requirements of next-generation automotive architectures. With flexibility through high-capacity TLC and high-endurance SLC options, the AT EN610 offers an M.2 Type 1620 BGA form factor Product Highlights and up to 1TB of storage space.
Supporting the distributed and shared architectures
Western Digital AT EN610 NVMe SSD offers an automotive-grade, high-performance, wide–temperature range storage solution designed for the demanding requirements of next-generation automotive architectures. With flexibility through high-capacity TLC and high-endurance SLC options, the AT EN610 offers an M.2 Type 1620 BGA form factor Product Highlights and up to 1TB of storage space.
Supporting the distributed and shared architectures
Western Digital AT EN610 NVMe SSD offers an automotive-grade, high-performance, wide–temperature range storage solution designed for the demanding requirements of next-generation automotive architectures. With flexibility through high-capacity TLC and high-endurance SLC options, the AT EN610 offers an M.2 Type 1620 BGA form factor Product Highlights and up to 1TB of storage space.
Flexibility for distinct needs
Up to four PCIe® Gen4 lanes deliver exceptional speed and offer a versatile storage solution, with up to 1TB1 of TLC storage. This can be fully or partially configured to SLC storage for applications requiring lower latencies, higher endurance, and higher write sustained performance.
Automotive-grade design
AT EN610 NVMe SSD complies with AEC-Q100, ISO 26262, and ASPICE, and goes through rigorous testing to ensure the reliability and quality essential for automotive applications. This device is outfitted in a BGA 16mm x 20mm package with a pin-out adhering to PCI-SIG standard specifications, providing a standardized, durable, and solid solution.
Enhanced device security
The device incorporates the TCG Opal 2.02 protocol and utilizes the AES-256-XTS encryption algorithm to help ensure that data stored on the drive is encrypted and protected. To further enhance data security, the secure boot and firmware upgrade processes are designed so only authorized firmware is executed on the device.
Virtualization enablement
SR-IOV technology enables multiple Virtual Functions (VFs) within a single SSD, resulting in each application having its own virtual SSD.
Flexibility for distinct needs
Up to four PCIe® Gen4 lanes deliver exceptional speed and offer a versatile storage solution, with up to 1TB1 of TLC storage. This can be fully or partially configured to SLC storage for applications requiring lower latencies, higher endurance, and higher write sustained performance.
Automotive-grade design
AT EN610 NVMe SSD complies with AEC-Q100, ISO 26262, and ASPICE, and goes through rigorous testing to ensure the reliability and quality essential for automotive applications. This device is outfitted in a BGA 16mm x 20mm package with a pin-out adhering to PCI-SIG standard specifications, providing a standardized, durable, and solid solution.
Enhanced device security
The device incorporates the TCG Opal 2.02 protocol and utilizes the AES-256-XTS encryption algorithm to help ensure that data stored on the drive is encrypted and protected. To further enhance data security, the secure boot and firmware upgrade processes are designed so only authorized firmware is executed on the device.
Virtualization enablement
SR-IOV technology enables multiple Virtual Functions (VFs) within a single SSD, resulting in each application having its own virtual SSD.
Flexibility for distinct needs
Up to four PCIe® Gen4 lanes deliver exceptional speed and offer a versatile storage solution, with up to 1TB1 of TLC storage. This can be fully or partially configured to SLC storage for applications requiring lower latencies, higher endurance, and higher write sustained performance.
Automotive-grade design
AT EN610 NVMe SSD complies with AEC-Q100, ISO 26262, and ASPICE, and goes through rigorous testing to ensure the reliability and quality essential for automotive applications. This device is outfitted in a BGA 16mm x 20mm package with a pin-out adhering to PCI-SIG standard specifications, providing a standardized, durable, and solid solution.
Enhanced device security
The device incorporates the TCG Opal 2.02 protocol and utilizes the AES-256-XTS encryption algorithm to help ensure that data stored on the drive is encrypted and protected. To further enhance data security, the secure boot and firmware upgrade processes are designed so only authorized firmware is executed on the device.
Virtualization enablement
SR-IOV technology enables multiple Virtual Functions (VFs) within a single SSD, resulting in each application having its own virtual SSD.
Specifications
- High performance at Automotive - temperatures -40˚C to +105˚C2
- SR-IOV with 8 x Virtual Functions
- PCIe Gen4x4
- M.2 Type 1620 BGA
- 256GB, 512GB, 1TB1
- 32 namespaces TLC and SLC configurable
Specifications
- High performance at Automotive - temperatures -40˚C to +105˚C2
- SR-IOV with 8 x Virtual Functions
- PCIe Gen4x4
- M.2 Type 1620 BGA
- 256GB, 512GB, 1TB1
- 32 namespaces TLC and SLC configurable
Specifications
- High performance at Automotive - temperatures -40˚C to +105˚C2
- SR-IOV with 8 x Virtual Functions
- PCIe Gen4x4
- M.2 Type 1620 BGA
- 256GB, 512GB, 1TB1
- 32 namespaces TLC and SLC configurable
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Disclosures
- Per IDEMA specifications. One gigabyte (GB) is equal to one billion bytes and one terabyte (TB) is equal to one trillion bytes. Actual user capacity may be less due to operating environment.
- Operational temperature is defined as -40°C refers to ambient temperature. +105°C refers to the SMART composite temperature reported by the drive (when thermal throttling is triggered)
- Per IDEMA specifications. One gigabyte (GB) is equal to one billion bytes and one terabyte (TB) is equal to one trillion bytes. Actual user capacity may be less due to operating environment.
- Operational temperature is defined as -40°C refers to ambient temperature. +105°C refers to the SMART composite temperature reported by the drive (when thermal throttling is triggered)
- Per IDEMA specifications. One gigabyte (GB) is equal to one billion bytes and one terabyte (TB) is equal to one trillion bytes. Actual user capacity may be less due to operating environment.
- Operational temperature is defined as -40°C refers to ambient temperature. +105°C refers to the SMART composite temperature reported by the drive (when thermal throttling is triggered)