Transcend M.2 1 TB Internal SSD

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€961.75

(exc. VAT)

€1,182.95

(inc. VAT)

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RS Stock No.:
683-051
Mfr. Part No.:
TS1TMTE460TI-VS1
Manufacturer:
Transcend
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Brand

Transcend

Memory Size

1TB

Product Type

SSD

Internal/External

Internal

Form Factor

M.2

Industrial Grade

Yes

NAND Type

3D TLC

Interface Type

PCI

Maximum Operating Temperature

85°C

Minimum Operating Temperature

-40°C

Height

3.58mm

Length

42mm

Width

22mm

Standards/Approvals

UKCA

Transcend SSD, 1TB Memory size, NVMe PCIe Gen 3 x2 Interface Type - TS1TMTE460TI-VS1


This is an internal NVMe SSD designed for embedded and industrial electronics, providing solid-state storage for systems that require compact, high-capacity non-volatile memory. It operates across a wide temperature range for deployment in demanding environments and connects via a PCIe Gen3 x2 NVMe Interface in an M.2 form factor.

Features and Benefits:


• 1TB capacity for extensive on-board data storage
• 3D NAND architecture for improved data density
• NVMe PCIe Gen3 x2 Interface for reduced latency
• Industrial-grade thermal tolerance for harsh environments
• M.2 22mm width for integration into Compact boards

Applications


• Suitable for industrial controllers and automation systems
• Ideal for embedded computing in electronic equipment
• Used for data logging in electrical monitoring devices
• Can be used for storage in mechanical system controllers

What temperature range can it withstand during operation?


It functions between -40°C and 85°C, enabling use in both cold-start and high-temperature scenarios.

Which physical form factor should I expect for PCB mounting?


The module follows the M.2 specification with a length of 42mm and a low-profile height of 3.58mm for space-constrained layouts.

Is this suitable for internal use in Compact embedded systems?


Yes, its M.2 internal design and 22mm width make it appropriate for Compact embedded platforms requiring NVMe storage.

What type of flash memory technology is used?


The drive employs 3D NAND memory, which increases storage density within the module.

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