HP
P1N55AT HP 16GB PC4-17000 non-ECC Unbuffered DDR4-2133MHz CL15 260-Pin SODIMM 1.2V Dual Rank Memory
P1N55AT HP 16GB PC4-17000 non-ECC Unbuffered DDR4-2133MHz CL15 260-Pin SODIMM 1.2V Dual Rank Memory
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The P1N55AT HP 16GB 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 16GB, 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 indicates that this module operates at a speed of 2133MHz, ensuring fast data transfer rates and improved overall system performance.
This DDR4-2133MHz memory module features a latency timing of CL15, which refers to the number of clock cycles it takes for the memory to respond to a request. The lower the latency, the faster the memory can retrieve data, resulting in improved system responsiveness. The 260-Pin SODIMM form factor makes it compatible with a wide range of systems, including laptops and small form factor desktops. The 1.2V operating voltage ensures that this module consumes less power, generating less heat and reducing the risk of overheating. As a dual-rank memory module, it provides increased memory bandwidth, allowing for smoother performance and enhanced multitasking capabilities.
The non-ECC unbuffered design of this memory module makes it suitable for consumer-grade systems, where error correction is not a primary concern. The lack of buffering also reduces latency, allowing for faster data transfer rates. With its high capacity, fast speed, and low latency, the P1N55AT HP 16GB PC4-17000 non-ECC Unbuffered DDR4-2133MHz CL15 260-Pin SODIMM 1.2V Dual Rank Memory is an excellent choice for users seeking to upgrade their system's memory and improve overall performance. Whether you're a gamer, content creator, or heavy user, this memory module is designed to provide a reliable and efficient computing experience.
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