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HP A8Y29AV 16GB Kit (4x4GB) DDR3-1600MHz UDIMM 2Rx8 CL11 Memory
- 16GB total memory capacity
- Kit of 4 x 4GB modules
- DDR3 SDRAM technology
- Speed: 1600MHz (PC3-12800)
- Module Type: Unbuffered DIMM (UDIMM)
- Rank: 2Rx8 (Dual Rank x8)
- Latency: CL11
- Voltage: 1.5V (standard for DDR3)
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Product Overview
The HP A8Y29AV is a memory kit consisting of four 4GB DDR3 UDIMM modules, totaling 16GB. It is designed for systems that support DDR3-1600MHz memory with a 2Rx8 rank configuration and CL11 latency.
Technical Information
| Product Type | Memory Kit |
| Capacity | 16GB (4 x 4GB) |
| Memory Technology | DDR3 SDRAM |
| Speed | 1600MHz |
Additional Specifications
| Form Factor | UDIMM (Unbuffered DIMM) |
| Rank | 2Rx8 |
| CAS Latency | CL11 |
| Voltage | 1.5V |
Product Description
The HP A8Y29AV memory kit provides a total of 16GB of RAM, distributed across four individual 4GB Unbuffered DIMM (UDIMM) modules. This configuration is intended to upgrade or expand the memory capacity of compatible computer systems, enhancing overall performance and multitasking capabilities. The DDR3 technology signifies its generation of RAM, offering improvements in speed and efficiency over previous DDR standards. Each module operates at a speed of 1600MHz, also known as PC3-12800, which is a common speed for DDR3 memory. The 2Rx8 designation indicates that each module is dual-ranked with eight memory chips per rank, a configuration that can sometimes offer performance benefits in certain system architectures. The CAS Latency (CL) of 11 specifies the number of clock cycles it takes for the memory module to respond to a column address strobe command, with lower CL values generally indicating faster response times. This memory kit is suitable for workstations, servers, or other computing platforms that specifically require DDR3-1600MHz UDIMMs with a 2Rx8 configuration and CL11 latency. Compatibility should always be verified with the system's motherboard specifications to ensure proper function and optimal performance. Upgrading RAM is a fundamental way to improve system responsiveness, especially when running memory-intensive applications or handling large datasets.



