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Nanya NT1GT64U8HAOBY 1GB DDR2-400MHz PC2-3200 Non-ECC Unbuffered CL3 240-Pin DIMM Memory Module
- 1GB DDR2 SDRAM capacity
- 400MHz (PC2-3200) memory speed
- Non-ECC (Error-Correcting Code) support
- Unbuffered DIMM for standard systems
- CAS Latency (CL) of 3
- 240-pin DIMM form factor
- Standard voltage (typically 1.8V)
- Single-rank configuration
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Product Overview
The Nanya NT1GT64U8HAOBY is a 1GB DDR2 memory module designed for older desktop and server systems. It operates at 400MHz with CL3 timings, providing basic memory expansion for systems that utilize DDR2 technology.
Technical Information
| Memory Type | DDR2 SDRAM |
| Capacity | 1GB |
| Speed | 400MHz |
| Module Type | Unbuffered DIMM |
Additional Specifications
| ECC | No |
| CAS Latency | CL3 |
| Form Factor | 240-Pin DIMM |
| Organization | 64M x 64 |
Product Description
This Nanya memory module, SKU NT1GT64U8HAOBY, offers 1GB of DDR2 SDRAM, suitable for upgrading or populating memory in systems that predate DDR3 technology. Operating at a frequency of 400MHz, it falls within the PC2-3200 standard, providing a modest but functional level of performance for general computing tasks. The module is unbuffered, meaning it connects directly to the memory controller without intermediate registers, making it suitable for standard desktop computers and some entry-level servers. The module features a CAS Latency (CL) of 3, which indicates the number of clock cycles required for the memory to respond to a column address command. While higher latencies can impact performance, CL3 is typical for DDR2-400 modules and offers a reasonable balance for its intended use. The 240-pin DIMM form factor is standard for DDR2 memory, ensuring physical compatibility with DDR2-compatible motherboards. Crucially, this module is Non-ECC (Non-Error-Correcting Code). This means it does not have the built-in error detection and correction capabilities found in ECC memory. Therefore, it is best suited for non-critical applications or systems where data integrity is not the absolute highest priority. For systems requiring enhanced data reliability, ECC memory would be the preferred choice.


