STMicroelectronics M28W800CT70N6 Flash Memory
The M28W800CT70N6 is a high-speed, low-power flash memory device from the renowned semiconductor manufacturer STMicroelectronics. Designed to cater to a wide array of electronic applications, this memory chip is a perfect solution for designers looking for a reliable and efficient non-volatile memory option.
Key Features
- Memory Capacity: The device offers a substantial storage capacity of 8 Mbit, organized as 1M x 8 bits for program memory or 512K x 16 bits for boot block memory, providing ample space for firmware storage and data logging.
- Access Time: With an access time of 70 ns, the M28W800CT70N6 ensures swift read operations, contributing to the overall system performance and responsiveness.
- Supply Voltage: It operates within a supply voltage range of 2.7V to 3.6V, making it compatible with low-power circuits and enhancing its suitability for battery-powered devices.
- Programming Voltage: The programming voltage is within the standard range, which simplifies the design requirements for power supply circuitry.
- Temperature Range: The device is operational over an extended temperature range, ensuring reliability and performance even under harsh environmental conditions.
- Package: Encased in a TSOP48 package, the M28W800CT70N6 is designed for space-efficient PCB layouts, providing a compact storage solution without compromising on functionality.
Applications
This flash memory chip is ideally suited for a variety of applications, including but not limited to:
- Embedded systems
- Automotive electronics
- Telecommunication devices
- Consumer electronics
- Industrial control systems
The M28W800CT70N6 integrates seamlessly into systems that require fast, reliable storage. Its robust design and compatibility with standard programming algorithms make it a preferred choice for developers across industries. With its advanced features and proven durability, the M28W800CT70N6 from STMicroelectronics represents a smart investment in your electronic designs, ensuring long-term performance and stability.