Transcend, 4 GB Cfast Card 510 Mbps MLC

Supply shortage
Due to a global supply shortage, we don't know when this will be back in stock.
RS Stock No.:
683-170
Mfr. Part No.:
TS4GCFX722I
Manufacturer:
Transcend
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Brand

Transcend

Product Type

Cfast Card

Memory Size

4GB

NAND Type

MLC

Series

CFX722I

Read Speed

510Mbps

Write Speed

520Mbps

Interface

SATA

COO (Country of Origin):
TW

Transcend CFX722I Series Cfast Card, 4GB Memory Size, 520Mbps Write Speed - TS4GCFX722I


This cfast card is a Compact solid-state storage medium intended for high-throughput data capture and transfer in professional imaging and recording equipment. It uses a SATA Interface and multi-level cell flash to handle sustained data flows typical of demanding capture workflows.

Features and Benefits:


• 4GB capacity supports short-duration high-bit-rate recording
• 520Mbps write speed enables Rapid sequential data storage
• 510Mbps read speed permits fast file retrieval and offload
• MLC flash provides balanced endurance and storage density
• SATA Interface ensures compatibility with SATA-enabled hosts

Applications


• Suitable for high-frame-rate Camera recording workflows
• Ideal for on-set media capture in studio environments
• Used with card readers for Rapid data transfer to workstations
• Can be used for temporary storage during location shoots

How does the memory type affect write endurance?


The use of MLC flash typically yields moderate programme/erase cycles compared with single-level cell variants, offering a balance between endurance and capacity for frequent write operations.

What behaviour should be expected during large sequential writes?


Sustained sequential writes perform at the rated write throughput, allowing continuous data streams without frequent buffering interruptions.

How does the Interface influence system integration?


The SATA Interface presents a standard connection protocol for host devices, facilitating interoperability with equipment designed for SATA-based removable storage.

What transfer behaviour occurs when offloading files to a workstation?


Reads proceed at the specified read throughput, enabling efficient bulk file transfers from the card to a connected system.

Are there implications for use in burst capture scenarios?


The combination of the stated write rate and MLC architecture supports repeated burst captures within the card's capacity before sustained limits are reached.

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