The BS616LV8017EIG55 is a low-voltage, high-speed CMOS static random-access memory (SRAM) manufactured by Brilliance Semiconductor. This SRAM is engineered for applications demanding rapid access times coupled with minimal power consumption. Being an end-of-life product, careful consideration should be given to its limited availability and the potential need to identify replacement options for ongoing or future projects.
Applications
- Embedded Systems: Acts as a fast memory resource within a variety of embedded system designs.
- Networking Devices: Used in networking equipment to provide temporary data storage and high-speed data access.
- Industrial Automation: Integrated into industrial control systems where consistent and rapid memory operations are vital.
- Consumer Electronics: Present in various consumer electronics devices requiring efficient SRAM.
Features
- High-Speed Access: Delivers rapid data access, thereby optimizing system performance.
- Low-Voltage Operation: Operates at a reduced voltage level, resulting in lower power consumption and extended battery life for portable applications.
- CMOS Technology: Employs CMOS technology to achieve low static power dissipation and high noise immunity.
- Standby Mode: Includes a standby mode to further curtail power usage during inactive periods.
- Data Retention: Maintains stored data even during power interruptions, preserving data integrity.
- Operating Temperature: Adheres to standard operating temperature ranges for dependable performance in diverse environments.
Benefits
- Enhanced System Performance: High-speed access contributes to improved overall system efficiency.
- Minimized Power Consumption: Low-voltage operation lowers power requirements, making it suitable for battery-dependent systems.
- Increased Reliability: CMOS technology enhances noise immunity, ensuring stable operation in potentially noisy conditions.
- Data Security: Built-in data retention prevents data loss when power is temporarily removed.
Additional Details
The BS616LV8017EIG55 is typically packaged for straightforward integration into circuit board layouts. Its pin configuration and interface are designed to ensure compatibility with commonly used memory controllers. It is recommended that designers consult the product datasheet for detailed timing characteristics, voltage specifications, and other essential parameters. Given its end-of-life designation, acquiring this component may prove challenging, and design teams should investigate alternative memory solutions for new designs and long-term projects.