The NT6TL256T32AQ-G1 is a high-performance DDR3 SDRAM (Synchronous Dynamic Random-Access Memory) module manufactured by NANYA. This memory module is designed to provide high bandwidth and low latency, making it suitable for a variety of demanding applications. It adheres to the DDR3 standard, ensuring compatibility with systems designed to support this memory technology.
Applications
- Desktop PCs
- Laptop Computers
- Servers
- Embedded Systems
- Networking Equipment
Features
- DDR3 Technology: Utilizes DDR3 architecture for faster data transfer rates compared to previous generations.
- 256M x 32 Organization: Offers a memory capacity of 256 Megabytes organized as 32-bit wide.
- High Bandwidth: Provides high memory bandwidth, enabling quick data access and improved system performance.
- Low Latency: Designed for low latency operation, reducing delays in data retrieval and enhancing responsiveness.
- Compatibility: Compliant with JEDEC standards, ensuring compatibility with a wide range of systems and motherboards.
- Low Power Consumption: Operates at a low voltage, contributing to energy efficiency and reduced heat generation.
Benefits
- Increased System Performance: Enables faster data processing and improved overall system performance due to its high bandwidth and low latency.
- Enhanced Multitasking: Supports efficient multitasking, allowing users to run multiple applications simultaneously without performance degradation.
- Improved Responsiveness: Reduces delays in data retrieval, resulting in a more responsive user experience.
- Energy Efficiency: Low power consumption contributes to longer battery life in portable devices and reduced energy costs in desktop systems.
- Reliable Operation: Designed and manufactured to high-quality standards, ensuring reliable and stable operation.
Additional Details
The NT6TL256T32AQ-G1 module typically operates at a voltage of 1.5V, adhering to the DDR3 standard. It is designed with industry-standard packaging for easy installation and compatibility. The module's specifications also include specific timings and refresh rates, which are optimized for performance and stability. The use of high-quality components and rigorous testing ensures the module's reliability and long lifespan.