STMicroelectronics M29W160EB70N190N6 Flash Memory
The M29W160EB70N190N6 is a high-performance 16 Mbit (1M x16) non-volatile flash memory module from STMicroelectronics, renowned for its reliability and versatility in a wide range of applications. This device operates on a single 3V to 3.6V power supply, making it suitable for low power consumption requirements while still delivering fast read and write speeds.
One of the key features of the M29W160EB70N190N6 is its ability to be programmed and erased in blocks, which provides flexibility for data management and updates. The module supports a 70ns read access time, which ensures quick data retrieval, enhancing the performance of the systems in which it is incorporated.
The memory is organized as 8 blocks of 128K x 16 bits and 63 blocks of 32K x 16 bits, which allows for efficient memory mapping and management. Its block erase and chip erase functions make it easy to remove data and prepare the memory for new information without the need for external erasure equipment.
For security and data protection, the M29W160EB70N190N6 includes a hardware protection feature that locks a block to prevent accidental program or erase operations, ensuring the integrity of the data stored within. Additionally, the device is designed to withstand a minimum of 100,000 program/erase cycles per block, along with a data retention period of 20 years, signifying its reliability and longevity.
STMicroelectronics has equipped the M29W160EB70N190N6 with a synchronous/asynchronous read mode, and the device is fully compatible with JEDEC standards. It is available in a 48-pin TSOP (Type I) package, which is widely used and easy to integrate into various electronic systems.
Overall, the M29W160EB70N190N6 from STMicroelectronics is an excellent choice for applications that require robust, high-speed, and reliable non-volatile memory solutions. Its advanced features and long-term data retention capabilities make it ideal for use in telecommunications, automotive, and industrial control systems, among others.