HP
P1N54AT HP 8GB PC4-17000 non-ECC Unbuffered DDR4-2133MHz CL15 260-Pin SODIMM 1.2V Dual Rank Memory
P1N54AT HP 8GB PC4-17000 non-ECC Unbuffered DDR4-2133MHz CL15 260-Pin SODIMM 1.2V Dual Rank Memory
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The P1N54AT HP 8GB PC4-17000 non-ECC Unbuffered DDR4-2133MHz CL15 260-Pin SODIMM 1.2V Dual Rank Memory is a high-performance RAM module designed to enhance the capabilities of your system. With a capacity of 8GB, this memory module provides ample space for running multiple applications simultaneously, making it an ideal choice for users who require a reliable and efficient computing experience. The PC4-17000 specification ensures that this module operates at a speed of 2133MHz, allowing for fast data transfer and processing.
This DDR4-2133MHz memory module features a latency timing of CL15, which enables it to respond quickly to data requests, thereby reducing lag and improving overall system responsiveness. The 260-Pin SODIMM form factor makes it compatible with a wide range of systems, including laptops and small form factor desktops. As a non-ECC unbuffered module, it is designed for use in consumer-grade systems, providing a cost-effective solution for users who do not require the advanced error-correcting capabilities of ECC memory. Operating at a voltage of 1.2V, this module is energy-efficient and helps to minimize power consumption, making it an attractive option for users seeking to reduce their environmental footprint.
As a dual-rank memory module, the P1N54AT HP 8GB PC4-17000 non-ECC Unbuffered DDR4-2133MHz CL15 260-Pin SODIMM 1.2V offers increased memory bandwidth and improved performance, making it suitable for demanding applications such as video editing, gaming, and software development. With its high-quality components and rigorous testing, this memory module is designed to provide long-term reliability and stability, ensuring that your system runs smoothly and efficiently. Whether you are a professional user or an enthusiast, this RAM module is an excellent choice for upgrading your system and unlocking its full potential.
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