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Kingston KTM-P630/16G 16GB Kit DDR-266MHz Micro-DIMM 4Rx8 CL2.5 Memory
- Total Capacity: 16GB (Kit of 1 module)
- Memory Type: DDR
- Form Factor: Micro-DIMM
- Speed: 266MHz (PC2100 equivalent)
- CAS Latency: CL2.5
- Configuration: 4Rx8 (Quad Rank x8)
- Designed for specific compact systems and older laptops
- Provides memory upgrade for systems requiring Micro-DIMM
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Product Overview
The Kingston KTM-P630/16G is a 16GB memory kit designed for specific laptop and small form factor systems that utilize Micro-DIMM modules. It operates at DDR-266MHz with a CL2.5 latency and features a 4Rx8 configuration for enhanced performance.
Technical Information
| Capacity | 16GB |
| Memory Type | DDR |
| Form Factor | Micro-DIMM |
| Speed | 266MHz |
Additional Specifications
| CAS Latency | CL2.5 |
| Rank | 4Rx8 |
| Voltage | 2.5V |
Product Description
The Kingston KTM-P630/16G is a specialized memory module designed to upgrade or replace memory in systems that specifically require the Micro-DIMM form factor. This form factor is significantly smaller than standard DIMMs and SO-DIMMs, making it suitable for ultra-compact devices, some older generation laptops, and specific embedded systems where space is at a premium. The 16GB capacity provides a substantial boost for multitasking and running memory-intensive applications on compatible hardware. Operating at a DDR speed of 266MHz, this module is designed for systems that utilize this particular clock frequency. The CAS Latency of CL2.5 indicates the number of clock cycles it takes for the memory to respond to a command, contributing to the overall responsiveness of the system. The 4Rx8 configuration signifies a quad-rank module with eight memory chips per rank, which can sometimes offer performance benefits in certain system architectures by allowing for more parallel access to data. It is crucial to verify system compatibility before purchasing the KTM-P630/16G, as Micro-DIMMs are not interchangeable with standard DIMMs or SO-DIMMs. This module is intended for users who have identified a specific need for this niche memory type and capacity. Upgrading memory with the correct module can significantly improve system performance, reduce load times, and enhance the overall user experience in compatible devices.

