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Hynix HMT351S6BFR8C-G7-N0-AA 4GB DDR3-1066Mz PC3-8500 non-ECC Unbuffered CL7 204-Pin SODIMM Memory M...
- 4GB DDR3 Memory Capacity
- Speed: 1066MHz (PC3-8500)
- Non-ECC (Error-Correcting Code)
- Unbuffered
- CL7 CAS Latency
- 204-Pin SODIMM Form Factor
- Designed for laptops and compact systems
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Product Overview
This Hynix memory module provides 4GB of DDR3 RAM, operating at 1066MHz (PC3-8500). It is a non-ECC, unbuffered SODIMM module with a CL7 latency, designed for laptops and small form factor computers. The 204-pin connector ensures compatibility with modern DDR3-compatible motherboards.
Technical Information
| Capacity | 4 GB |
| Memory Type | DDR3 SDRAM |
| Speed | 1066 MHz (PC3-8500) |
| Form Factor | SODIMM |
| Pins | 204-Pin |
Additional Specifications
| ECC | Non-ECC |
| Buffered | Unbuffered |
| CAS Latency | CL7 |
| Brand | Hynix |
Product Description
The Hynix HMT351S6BFR8C-G7-N0-AA is a high-quality 4GB DDR3 Synchronous Dynamic Random-Access Memory (SDRAM) module. Designed for use in laptops, netbooks, and other small form factor computing devices, this SODIMM (Small Outline Dual In-line Memory Module) offers a significant boost in system performance by increasing the available memory for the operating system and applications. This module operates at a clock speed of 1066MHz, which corresponds to a PC3-8500 designation, indicating its bandwidth capability. It features a CAS Latency (CL) of 7, which is a measure of the delay between the memory controller requesting data and the data becoming available. Being non-ECC (Non-Error-Correcting Code) and unbuffered, this module is suitable for consumer-grade devices where the overhead of ECC and buffering is not required, leading to potentially lower power consumption and cost. The 204-pin SODIMM form factor is standard for DDR3 memory modules used in mobile computing. This ensures compatibility with a wide range of motherboards found in laptops and compact PCs that support DDR3 memory. Upgrading to this 4GB module can improve multitasking capabilities, reduce application load times, and enhance the overall responsiveness of the system, making it a cost-effective way to extend the life and performance of compatible devices.
