Manufacturer Part Number
S34ML16G202TFI200
Manufacturer
infineon-technologies
Introduction
The S34ML16G202TFI200 is a high-capacity, 16Gbit NAND Flash memory chip, designed for applications requiring large-volume data storage. It's part of the ML-2 series by infineon-technologies, specializing in non-volatile memory solutions.
Product Features and Performance
Non-Volatile FLASH memory
Large memory size of 16Gbit
Parallel memory interface for high-speed data access
Fast Write Cycle Time of 25ns per word/page
Operation over a wide voltage range (2.7V ~ 3.6V)
Designed for operation in extreme temperatures ranging from -40°C to 85°C
Product Advantages
Provides significant data storage capacity for demanding applications
Non-volatile memory ensures data retention without power
Faster write speeds enhance overall device performance
Wide operational temperature range makes it suitable for use in harsh environments
Key Technical Parameters
Memory Type: FLASH NAND
Memory Size: 16Gbit
Memory Organization: 2G x 8
Write Cycle Time Word, Page: 25ns
Voltage Supply: 2.7V ~ 3.6V
Operating Temperature: -40°C ~ 85°C
Quality and Safety Features
Manufactured in compliance with infineon-technologies high-quality and safety standards
Robust design ensures reliability and longevity in various conditions
Compatibility
Parallel interface ensures compatibility with a broad range of microcontrollers and processors
Adaptable for use in a wide variety of technology applications
Application Areas
Mobile devices
Solid-state drives (SSDs)
Digital cameras
Portable media players
Other applications requiring high-volume data storage
Product Lifecycle
The product status is listed as Active
Ongoing manufacturer support with no current indication of discontinuation
Several Key Reasons to Choose This Product
High-capacity storage solution to meet the demands of data-intensive applications
Infineon-technologies' reputation for reliability and performance
Wide operational temperature range suitable for diverse environments
Fast write cycle time improves device performance
Robust compatibility and application versatility