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Samsung 9V-3V4G4/US 4GB DDR3-1333MHz PC3-10600 Non-ECC Unbuffered CL9 240-Pin UDIMM 1.35V Single Ran...
- Capacity: 4GB
- Memory Type: DDR3 SDRAM
- Speed: 1333MHz (PC3-10600)
- Latency: CL9
- Voltage: 1.35V (Low Voltage)
- Type: Non-ECC, Unbuffered UDIMM
- Form Factor: 240-Pin DIMM
- Single Rank
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Product Overview
The Samsung 9V-3V4G4/US is a 4GB DDR3 SDRAM module designed for desktop computers. It operates at a speed of 1333MHz (PC3-10600) with CL9 timings and a low voltage of 1.35V, making it suitable for energy-efficient systems. This non-ECC, unbuffered DIMM is ideal for general computing tasks and system upgrades.
Technical Information
| Memory Size | 4GB |
| Memory Type | DDR3 SDRAM |
| Speed Rating | PC3-10600 |
| Memory Clock Speed | 1333MHz |
| CAS Latency | CL9 |
Additional Specifications
| Voltage | 1.35V |
| ECC Support | Non-ECC |
| Buffering | Unbuffered |
| Pin Count | 240-Pin |
| Form Factor | UDIMM |
Product Description
This Samsung 4GB DDR3 memory module, identified by SKU 9V-3V4G4/US, is engineered to enhance the performance of compatible desktop systems. With a capacity of 4 Gigabytes, it provides ample memory for multitasking and running modern applications. The module adheres to the DDR3 standard, offering improved bandwidth and efficiency compared to previous generations of RAM. The module operates at a clock speed of 1333MHz, translating to a PC3-10600 data transfer rate, which ensures swift data access for the processor. It features a CAS Latency (CL) of 9, indicating the number of clock cycles required to access a particular memory column. Furthermore, this module operates at a reduced voltage of 1.35V, contributing to lower power consumption and heat generation, making it an excellent choice for systems prioritizing energy efficiency. Designed as a Non-ECC (Error-Correcting Code) and Unbuffered module, it is suitable for standard desktop computing environments where data integrity checks at the module level are not critical. The 240-pin UDIMM form factor ensures compatibility with a wide array of motherboards. This single-rank configuration is a standard implementation for memory modules, providing a balance of performance and cost-effectiveness for everyday computing needs.


