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Product Overview |
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The HP 141H8AT 32GB DDR4-3200MHz SoDIMM memory module offers a robust solution for enhancing system performance. With its substantial capacity, fast speed, and energy-efficient operation, it is well-suited for users looking to upgrade their systems for improved multitasking and data handling capabilities. Its compatibility with a wide range of devices and standard computing applications makes it a versatile choice for various users. |
General Information |
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| Brand | HP |
| Part Number | 141H8AT |
Technical Information |
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| Memory Technology | DDR4 |
| RAM Standard | PC4-25600 |
| Voltage | 1.2V |
Performance |
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| CAS | CL22 |
Physical Characteristics |
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| Package | FBGA |
| Weight | 0.50 |
| Condition | Refurbished |
Product Description |
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The HP 141H8AT is a high-performance 32GB DDR4-3200MHz SoDIMM memory module designed to enhance the capabilities of compatible systems. Operating at a voltage of 1.2V, it offers energy-efficient performance without compromising on speed. The dual-rank configuration and 260-pin interface ensure optimal data transfer rates and compatibility with a wide range of devices. As an unbuffered and non-ECC module, it is tailored for standard computing applications, providing reliable and efficient memory solutions. Key Features
This memory module is ideal for users seeking to upgrade their systems with a high-capacity, energy-efficient, and reliable memory solution, ensuring smooth and responsive performance for various applications. |
Use Cases |
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The HP 141H8AT 32GB DDR4-3200MHz SoDIMM memory module is primarily utilized in high-performance laptop environments where increased memory capacity and speed directly impact computational efficiency. This module benefits professionals and enterprises requiring intensive multitasking capabilities and memory-demanding applications within portable or compact form factors. How It's Used:
This memory module enables improved operational performance by addressing the memory bandwidth and capacity needs of demanding workloads in mobile computing environments. Its energy-efficient design further supports scalability in portable systems without compromising thermal or power constraints. |