
( Brand: Kingston ), ( Manufacturer Part Number: KTH-4294/128-CE ), ( Capacity Per Module: 128mb ), ( Form Factor: Dimm ), ( Memory Features: Ecc Memory ), ( Type: Edo Dram ), ( Number Of Pins: 168 )
Experience a reliable and efficient performance enhancement for your server with the Kingston KTH-4294-128-CE 128MB EDO Buffered ECC (Error Correcting Code) Server Memory. This 168-pin DIMM (Dual In-line Memory Module) is designed to meet the stringent demands of mission-critical server environments.
The EDO (Extended Data Out) technology in this module ensures faster data transfer rates by allowing the memory to communicate with the CPU more efficiently compared to traditional SDRAM. This results in quicker system boot-up times and improved overall system responsiveness.
The ECC feature embedded in the Kingston KTH-4294-128-CE serves to automatically detect and correct single-bit errors that may occur during data transfer. This error correction capability is crucial for maintaining data integrity in server environments, where even minor errors can lead to system instability or data loss.
This server memory module is manufactured using high-quality materials and rigorous testing to ensure its longevity and reliability. Each module is tested for performance and compatibility with a range of server platforms to guarantee seamless integration into your system.
In summary, the Kingston KTH-4294-128-CE 128MB EDO Buffered ECC Server Memory DIMM is an excellent choice for businesses and IT professionals seeking a dependable and high-performing memory solution for their server systems. With its EDO technology, ECC error correction, and rigorous testing, this module offers a combination of speed, reliability, and data integrity that is essential for mission-critical applications.
1. **EDO (Extended Data Out) Technology**: This type of memory offers faster access times compared to common SDRAM, which can be beneficial in server environments where speed is crucial.
2. **ECC (Error-Correcting Code)**: ECC memory is designed to detect and correct single-bit errors and correct double-bit errors. This can help prevent system crashes and data corruption, which is important in mission-critical server applications.
3. **Buffered DIMM**: Buffered DIMMs have a buffer chip on the module that helps manage data flow between the memory and the system. This can help reduce system latency and improve overall performance.
4. **Compatibility**: Thismemory module is specifically designed for server use, which means it should be compatible with most server motherboards that support the 168-pin DIMM size.
Cons:1. **Limited Capacity**: With only 128MB, this memory module offers a relatively small amount of memory. This could limit the performance of modern servers that require larger memory capacities.
2. **Outdated Technology**: EDO technology has been replaced by more advanced technologies like DDR, DDR2, DDR3, and DDR4. While EDO still offers faster access times than SDRAM, it's not as fast as the newer DDR technologies.
3. **Availability**: As this technology is older, it may be harder to find and potentially more expensive compared to newer memory technologies.
Conclusion:The Kingston KTH-4294-128-CE 128MB EDO Buffered ECC Server Memory offers several benefits, including ECC protection, buffered DIMM, and compatibility with server motherboards. However, its limited capacity and outdated technology make it less suitable for modern servers that require larger memory capacities and faster memory speeds.
Recommendation:If you're building a modern server or need a significant amount of memory, it would be more beneficial to invest in a newer DDR (DDR4 being the current standard) memory module with a larger capacity. However, if you're working with an older server that supports EDO memory and doesn't require a large amount of memory, the Kingston KTH-4294-128-CE could still serve your needs effectively. Always ensure compatibility with your server's motherboard before purchasing.
Kingston 128mb edo buffered ecc 168-pin dimm kth ce server memory tested working.