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Kingston KTM-P630/8G 8GB Kit DDR-266MHz Micro-DIMM 2Rx8 CL2.5 Memory
- Capacity: 8GB Kit (typically 2x4GB modules)
- Memory Type: DDR
- Speed: 266MHz
- Form Factor: Micro-DIMM
- Configuration: 2Rx8 (Dual Rank x8)
- Latency: CL2.5
- Designed for ultra-compact devices
- Lower power consumption compared to larger DIMMs
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Product Overview
The Kingston KTM-P630/8G is an 8GB Kit of DDR-266MHz Micro-DIMM memory. This kit is designed for specific ultra-compact devices that utilize the Micro-DIMM form factor, which is smaller than standard SODIMMs. It operates at DDR (Double Data Rate) speed and has a CL2.5 latency.
Technical Information
| Memory Size | 8GB Kit |
| Memory Type | DDR |
| Memory Speed | 266MHz |
| Form Factor | Micro-DIMM |
| Rank | 2Rx8 |
Additional Specifications
| CAS Latency | CL2.5 |
| Voltage | 2.5V (Typical for DDR) |
| ECC | Non-ECC |
| Buffered | Unbuffered |
Product Description
The Kingston KTM-P630/8G is an 8GB memory kit specifically designed for devices that require the ultra-compact Micro-DIMM form factor. This form factor is significantly smaller than standard DIMMs or SODIMMs, making it suitable for highly miniaturized computing devices such as certain ultra-portable laptops, embedded systems, or specialized industrial equipment where space is extremely limited. This kit operates at DDR (Double Data Rate) memory speeds, with a clock frequency of 266MHz. DDR memory transfers data twice per clock cycle, effectively doubling the data rate. The 2Rx8 configuration indicates that each module uses dual ranks of memory chips, each with an 8-bit data width, which can contribute to performance. The CL2.5 CAS Latency signifies a relatively low latency, meaning quick access times to memory data. Given its specialized Micro-DIMM form factor and older DDR technology, this memory kit is intended for specific legacy or niche devices. It provides a capacity upgrade for systems that are not compatible with more modern memory types or larger form factors. The typical voltage for DDR memory is 2.5V, contributing to its power requirements.

