The MSM514265E-60J3 is a 262,144-word x 4-bit Dynamic RAM (DRAM) manufactured by OKI/Metcal. It provides fast access times and is suitable for a wide array of applications requiring temporary data storage.
Applications:
- Memory modules in computers and embedded systems
- Video memory in graphics cards and display systems
- Cache memory in processor systems
- Digital signal processing (DSP) applications
- Networking hardware
Features:
- Organization: 262,144 words × 4 bits
- Access Time: 60 ns
- Power Supply Voltage: 5V
- Package: SOJ (Small Outline J-lead)
- Refresh: Self-refresh capability
- Low Power Consumption
Benefits:
- High-Speed Performance: The 60 ns access time ensures rapid data retrieval and storage, critical for real-time processing.
- Moderate Capacity: The 262,144-word x 4-bit density offers adequate storage for various application needs.
- Low Power Consumption: Reduces energy usage, making it suitable for battery-operated devices and energy-efficient systems.
- Easy Integration: The SOJ package facilitates simple board assembly and reduces manufacturing costs.
- Reliable Operation: Designed to deliver consistent performance, ensuring data integrity and system stability.
Technical Specifications:
The MSM514265E-60J3 operates with a 5V power supply and consumes minimal power. It uses a multiplexed address input to minimize the pin count. A self-refresh mode is incorporated to retain data while minimizing power consumption during standby. The device is housed in a standard SOJ package for surface mount assembly. The typical operating temperature range is from 0°C to 70°C.
Built with advanced CMOS technology, this DRAM offers both low power consumption and high reliability. It is widely used in older computer systems, embedded controllers, and various applications that require a balance of speed and memory capacity. This component offers a cost-effective solution for applications requiring fast temporary storage.
In summary, the MSM514265E-60J3 is a dependable and efficient DRAM suitable for applications where fast data access and moderate memory density are required. Its low power consumption and ease of integration make it a versatile choice for a wide range of electronic systems.