DDR5 Value ECC UDIMM

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Product Brief

SMART's DDR5 Value ECC UDIMMs are designed to meet increasing needs for efficient performance in a wide range of applications including telecom, networking, and computing. ECC memory (Error Correction Code memory) is used to detect and correct data bit corruption where data corruption cannot be tolerated in industrial control applications, critical databases, and infrastructural memory caches. DDR5 memory provides developers with twice the performance (4800 to 6400 MT/s) and improved power efficiency in comparison to DDR4 by using an on-DIMM 12V voltage regulator (PMIC) and 1.1 I/O Voltage. DDR5 improves scaling performance without degrading channel efficiency at higher speeds.

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Ordering Information

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Part Number

Capacity

Note

ST4G7UD5288-HA
32GB
C-temp (0˚C to +70˚C)
SR4G7UD5288-SP
32GB
C-temp (0˚C to +70˚C)
ST2G7UD5288-HA
16GB
C-temp (0˚C to +70˚C)
SR2G7UD5288-SP
16GB
C-temp (0˚C to +70˚C)

Product Details

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Essentials

Technology
DDR5
Module Type
ECC UDIMM
Temperature
C-temp: 0˚C to 70˚C
Component Configuration
2Gx8
Depth
2G 4G
Width
x72
Voltage
1.1V
Pin Count
288-Pin

Performance

Capacity
16GB 32GB
Data Rate
5600MT/s
Speed
PC5-44800
CL
CL = 46

Environmental

RoHS
Yes

Physical

Height
31.25mm

Technologies

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Anti-Sulfur Resistor
Anti-Sulfur Resistor

Exposure to sulfur dioxide causes a corrosive reaction when silver alloys encounter sulfur gasses or liquid. This typically decreases resistor conductivity and thus increases failure risks. SMART uses ASRs (Anti-Sulfur Resistors) when needed for SMART-built products, allowing them to operate reliably in harsh sulfur-rich environments to meet the highest industrial standards.

Solutions

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From small industrial components deployed in automation systems to large equipment used for oil drilling, project operations are asked to provide precise instructions, occasionally in harsh environments. Therefore, it is critical to maintain the accuracy of data output in addition to maintaining continuous, stable operating performance.

With the rapid rise of IoT and IIoT, the demand for connectivity has transformed networking. Today’s networks are scaling at an exponential rate, processing huge amounts of data that are stored for analysis. Reliable, proven memory is vital to ensure the hyper-fast transmission of all that data, as well as storage of the data exchanged between edge devices and network hubs. Whether the scale of network is between two locations or built for thousands of connected devices in different places around the world, there will be huge amounts of data constantly being processed whenever the network is running. That is why the right memory solutions are so important – to ensure data will be processed quickly and stored securely regardless of the demand placed on the network.

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