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Kingston KTDDM8400B/E5108AGBG 1GB DDR2-667MHz PC2-5300 Non-ECC Unbuffered CL5 240-Pin DIMM Dual Rank...
- Capacity: 1GB
- Memory Type: DDR2 SDRAM
- Speed: 667MHz (PC2-5300)
- Latency: CL5
- Voltage: 1.8V
- Type: Non-ECC, Unbuffered DIMM
- Form Factor: 240-Pin DIMM
- Dual Rank
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Product Overview
The Kingston KTDDM8400B/E5108AGBG is a 1GB DDR2 SDRAM module designed for desktop computers. It operates at 667MHz (PC2-5300) with CL5 timings and a standard voltage of 1.8V. This non-ECC, unbuffered DIMM is suitable for general computing tasks and system upgrades.
Technical Information
| Memory Size | 1GB |
| Memory Type | DDR2 SDRAM |
| Speed Rating | PC2-5300 |
| Memory Clock Speed | 667MHz |
| CAS Latency | CL5 |
| Voltage | 1.8V |
Additional Specifications
| ECC Support | Non-ECC |
| Buffering | Unbuffered |
| Pin Count | 240-Pin |
| Form Factor | DIMM |
| Rank | Dual Rank |
Product Description
The Kingston 1GB DDR2 memory module, identified by SKU KTDDM8400B/E5108AGBG, is designed to enhance the performance of compatible desktop computer systems. With a capacity of 1 Gigabyte, it offers a significant upgrade over systems with less memory, enabling smoother multitasking and improved responsiveness for a wider range of applications. This module adheres to the DDR2 standard, providing a good balance of speed and power efficiency for its generation. The module operates at a clock speed of 667MHz, which corresponds to a PC2-5300 data transfer rate, offering faster data access compared to lower-speed DDR2 modules. It features a CAS Latency (CL) of 5, indicating the number of clock cycles required for the memory to respond to a request. The standard operating voltage for this DDR2 module is 1.8V, ensuring compatibility with motherboards designed for this memory type. This module is a Non-ECC (Non-Error-Correcting Code) and Unbuffered DIMM, making it suitable for standard desktop environments. The 240-pin DIMM form factor is the common standard for DDR2 memory. Its dual-rank configuration can potentially offer performance advantages by allowing the memory controller to access different banks of memory chips more efficiently, leading to improved overall system throughput. It serves as a reliable option for upgrading older systems or replacing existing memory modules.


