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Transcend JM3200HLD-4G 4GB DDR4-3200MHz UDIMM 1Rx16 CL22 Memory
- 4GB capacity
- DDR4 SDRAM technology
- 3200MHz (PC4-25600) speed
- Unbuffered DIMM (UDIMM) form factor
- 1Rx16 module configuration (Single Rank, 16-bit)
- CL22 latency
- Standard voltage (1.2V)
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Product Overview
The Transcend JM3200HLD-4G is a 4GB DDR4 UDIMM memory module designed for general computing and performance upgrades. It operates at 3200MHz with a CL22 latency, offering a balance of speed and capacity for everyday tasks.
Technical Information
| Capacity | 4GB |
| Memory Type | DDR4 SDRAM |
| Speed | 3200MHz |
| Form Factor | UDIMM |
| Speed Rating | PC4-25600 |
Additional Specifications
| Rank | 1Rx16 |
| CAS Latency | CL22 |
| Voltage | 1.2V |
| ECC | Non-ECC |
Product Description
The Transcend JM3200HLD-4G is a 4GB DDR4 Unbuffered DIMM (UDIMM) memory module, designed to provide a performance boost for a wide range of computing systems. It operates at a high frequency of 3200MHz, corresponding to the PC4-25600 standard, which delivers significantly enhanced data transfer rates compared to lower-speed DDR4 modules. This makes it suitable for improving the responsiveness of everyday computing tasks, accelerating application loading, and supporting smoother multitasking. This module features a 1Rx16 configuration, indicating it is single-rank with sixteen memory chips per rank. This is a common configuration for DDR4 modules and is compatible with most modern motherboards. The CAS Latency (CL) is rated at 22, which is a standard timing for DDR4-3200 memory. While CL22 represents a moderate latency, the high clock speed of 3200MHz ensures that the module provides excellent overall performance for its class. As a non-ECC (Non-Error-Correcting Code) UDIMM, this memory is intended for standard desktop computers and laptops where ECC functionality is not required. It operates at a standard voltage of 1.2V, contributing to energy efficiency. The 4GB capacity is a good starting point for basic system upgrades or for systems that do not require extensive memory resources, offering a cost-effective way to enhance system performance and stability.


