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Multi-Chip Memory

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XT61M1G8C2TM-B8BEA
XTX
1G NAND (8bit. ECC;x8) +1G LP DDR2 (x32)
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XT61M4G8D2TA-B8BEA
XTX
4G NAND (8bit ECC;x8) +2G LP DDR2 (x32)
Quantity: 100
In Stock
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1+ $7.4199
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30+ $6.4148
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Ext. Price: $7.41
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XT61M2G8C2TM-B8BEA
XTX
2G NAND (8bit ECC, x8) + 1G LPDDR2 (x32)
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SPQ: 2420
XT61M2G8D2TA-B8BEA
XTX
2G NAND (8bit ECC;x8) +2G LP DDR2 (x32)
Quantity: 100
In Stock
22+
1+ $5.6375
10+ $5.4207
200+ $4.987
500+ $4.7702
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x $5.6375
Ext. Price: $5.63
MOQ: 1
Mult: 1
SPQ: 2420

Multi-Chip Memory

Multi-Chip Memory (MCM) refers to a type of memory module that integrates multiple memory chips onto a single substrate, creating a high-density, high-performance memory solution. Here's a concise introduction in English:

Definition:
Multi-Chip Memory (MCM) is a technology that combines multiple memory chips into a single, compact module. This approach enhances memory capacity, speed, and reliability by leveraging the benefits of parallel processing and advanced packaging techniques.

Function:
MCMs serve to increase the data storage and retrieval capabilities of electronic systems. They are designed to handle large amounts of data at high speeds, which is crucial for applications requiring rapid access to memory. The integration of multiple chips allows for higher data throughput and improved performance compared to single-chip solutions.

Applications:
MCMs are used in various high-performance computing applications, including:
1. High-speed servers and data centers.
2. Advanced graphics processing units (GPUs) for gaming and professional visualization.
3. Embedded systems in , automotive, and industrial control.
4. High-end consumer electronics like smartphones and tablets.
5. Scientific research and supercomputing environments.

Selection Criteria:
When choosing a Multi-Chip Memory solution, consider the following factors:
1. Performance: Look for memory modules that offer high data transfer rates and low latency.
2. Capacity: Ensure the module provides sufficient storage to meet the application's needs.
3. Reliability: Choose a module with a proven track record for durability and error correction capabilities.
4. Compatibility: Ensure the memory is compatible with the system's architecture and other components.
5. Power Efficiency: Consider the power consumption of the memory module, especially for battery-powered devices or energy-sensitive applications.
6. Cost: Evaluate the cost-effectiveness of the memory solution, balancing performance with budget constraints.
7. Vendor Support: Select a vendor that offers strong technical support and a warranty for the product.

In summary, Multi-Chip Memory is a sophisticated technology that offers significant advantages in terms of performance and capacity for demanding applications. When selecting an MCM, it's important to consider its performance, capacity, reliability, compatibility, power efficiency, cost, and vendor support.
Please refer to the product rule book for details.