Manufacturer Part Number
S29GL128S11FHIV20
Manufacturer
Infineon Technologies
Introduction
The S29GL128S11FHIV20 is a high-performance, low-power 128Mbit parallel NOR FLASH memory chip from Infineon Technologies. It offers reliable and efficient data storage with a range of advanced features for a variety of embedded applications.
Product Features and Performance
128Mbit of non-volatile FLASH memory storage
Parallel interface with 16-bit data bus
Fast access time of 110ns and write cycle time of 60ns
Wide operating voltage range of 1.65V to 3.6V
Extended operating temperature range of -40°C to +85°C
Supports sector erase and byte/word program
Integrated write protection and security features
Product Advantages
High-density storage with compact package options
Low power consumption for energy-efficient operation
Reliable performance and data retention
Flexible interface and voltage compatibility
Key Reasons to Choose This Product
Proven reliability and performance from a leading semiconductor manufacturer
Versatile design suitable for a wide range of embedded systems and applications
Cost-effective solution for high-density non-volatile memory requirements
Seamless integration and compatibility with existing designs
Quality and Safety Features
Robust design and manufacturing processes ensure high quality and reliability
Compliance with industry standards and safety regulations
Compatibility
The S29GL128S11FHIV20 is compatible with a variety of microcontrollers, processors, and other embedded devices with parallel FLASH memory interfaces.
Application Areas
Industrial control systems
Automotive electronics
Telecommunications equipment
Consumer electronics
Medical devices
Military and aerospace applications
Product Lifecycle
The S29GL128S11FHIV20 is an active and currently available product from our website's sales team. There are no announced plans for discontinuation at this time. Customers are advised to check with our website's sales team or their authorized distributors for the latest product information and availability.