Microchip Technology SST39VF6401-90-5I-B3KE Flash Memory
The SST39VF6401-90-5I-B3KE is a high-performance CMOS Multi-Purpose Flash (MPF) memory chip from the reputable manufacturer, Microchip Technology. This device offers a reliable storage solution for a wide range of applications, including embedded systems, digital electronics, and general-purpose computing tasks that require non-volatile memory storage.
Designed with versatility in mind, the SST39VF6401-90-5I-B3KE boasts a parallel interface with a 64 Mbit memory density, providing ample space for firmware storage, boot code, and data logging. It operates with a power supply voltage of 2.7V to 3.6V, making it suitable for low-power applications. Its access time of 90 ns ensures swift read operations, crucial for systems where performance is key.
One of the significant advantages of this flash memory is its sector-erase and block-erase capabilities, allowing for efficient data management and updates without the need to erase the entire memory content. This feature is particularly beneficial for applications that require frequent firmware updates or data modifications.
The robust design of the SST39VF6401-90-5I-B3KE is encapsulated in a 48-LFBGA (Lead-Free Ball Grid Array) package, ensuring a compact footprint and high durability. It is also compliant with industrial temperature ranges, operating reliably between -40°C and +85°C, which makes it an excellent choice for harsh environments and demanding applications.
Moreover, Microchip Technology's commitment to quality is evident in the endurance of the SST39VF6401-90-5I-B3KE, with a minimum of 100,000 erase and program cycles per sector, coupled with a data retention of at least 100 years, ensuring the longevity and reliability of the stored data.
For developers and engineers looking for a flash memory solution that combines performance, reliability, and flexibility, the SST39VF6401-90-5I-B3KE from Microchip Technology is an excellent choice. Its advanced features and robust design make it a go-to component for a variety of demanding applications.