STMicroelectronics M58CR032C100ZB Flash Memory
The M58CR032C100ZB is a state-of-the-art flash memory device from STMicroelectronics, designed for high-performance and reliability in a wide range of applications. As a part of the M58CR series, this memory chip offers a substantial 32 Megabits of storage capacity, making it ideal for embedded systems that require a significant amount of non-volatile memory.
This advanced memory chip operates on a 3V power supply, which is a common voltage level for modern electronic devices, ensuring compatibility and energy efficiency. The M58CR032C100ZB is organized as 2M x16 bits, which allows for fast access and efficient data management, making it a perfect choice for applications that demand quick read and write operations.
Key Features:
- Memory Size: 32 Mbit (2M x16)
- Supply Voltage: 3V operation for low power consumption
- Package: Convenient FBGA (Fine-pitch Ball Grid Array) package for robust PCB mounting
- Access Time: Fast access time suitable for high-performance applications
- Temperature Range: Industrial temperature range, ensuring reliable operation under various environmental conditions
Designed with robustness in mind, the M58CR032C100ZB is capable of withstanding the rigors of industrial environments, thanks to its wide operating temperature range. This makes it an excellent choice for industrial control systems, automotive electronics, and other applications where reliability is crucial.
The FBGA packaging not only ensures a compact footprint on the printed circuit board but also provides excellent thermal performance and reduces the risk of mechanical stress. This packaging, combined with the chip's high-density storage capability, makes the M58CR032C100ZB a compact and reliable solution for space-constrained applications.
Overall, the M58CR032C100ZB from STMicroelectronics represents a blend of performance, power efficiency, and durability, making it an optimal flash memory solution for designers and engineers looking to incorporate a reliable storage component into their electronic designs.