The NT5CC256M8IN-DI is a DDR3L SDRAM (Synchronous Dynamic Random-Access Memory) module produced by NANYA. It boasts a capacity of 2Gb (256M x 8) and operates at a low voltage of 1.35V. This module is engineered for applications demanding both performance and power efficiency.
Applications:
- Embedded Systems: Used in a variety of embedded devices requiring reliable memory and low power consumption.
- Networking Equipment: Integrated in routers, switches, and other networking appliances.
- Industrial PCs: Provides memory for data processing and control in industrial settings.
- Digital Signage: Used in digital signage players for smooth content delivery.
- Point-of-Sale (POS) Systems: Provides memory for efficient transaction processing.
Features:
- Capacity: 2Gb (256M x 8).
- DDR3L Technology: Delivers high-speed performance with reduced power consumption.
- Operating Voltage: 1.35V.
- Data Rate: Supports data transfer rates up to 1600 MT/s.
- Interface: Standard DDR3L interface for seamless integration.
- RoHS Compliance: Complies with Restriction of Hazardous Substances standards.
- Lead-Free: Environmentally friendly manufacturing process.
Benefits:
- Improved System Performance: High data rates enhance overall system responsiveness.
- Lower Power Consumption: Extends battery life in portable applications and reduces energy usage.
- Stable and Reliable Operation: Designed for consistent performance in various environments.
- Easy Implementation: Standard interface simplifies design and integration.
- Environmentally Responsible: RoHS compliance and lead-free design minimize environmental impact.
Additional Details:
The NT5CC256M8IN-DI incorporates advanced thermal management features to maintain stable performance across a wide temperature range. It includes built-in error correction code (ECC) to ensure data integrity. The module undergoes rigorous testing to meet industry standards for quality and reliability. Its compact design enables use in small form factor devices. This module balances performance, power efficiency, and reliability, making it a suitable choice for various embedded applications and systems.