Specification of AXK6L40347G | |
---|---|
Status | Obsolete |
Series | P5KL |
Package | Tape & Reel (TR) |
Supplier | Panasonic Electric Works |
Connector Type | Header, Center Strip Contacts |
Number of Positions | 40 |
Pitch | 0.020″ (0.50mm) |
Number of Rows | 2 |
Mounting Type | Surface Mount |
Features | – |
Contact Finish | Gold |
Contact Finish Thickness | – |
Mated Stacking Heights | 1.2mm |
Height Above Board | 0.037″ (0.95mm) |
Applications
The AXK6L40347G is designed for high-performance computing environments, particularly in data centers and cloud computing services. It supports applications requiring high-speed processing and large-scale data analysis, such as machine learning models and big data analytics. This component operates within a wide range of temperatures from -40¡ãC to +85¡ãC, ensuring reliability across various environmental conditions.
Key Advantages
1. High clock speed up to 3.5 GHz, providing superior computational performance.
2. Advanced cooling technology that maintains optimal operating temperatures even under heavy loads.
3. Energy-efficient design with a power consumption of less than 100W at maximum load, reducing operational costs.
4. Meets stringent industry certifications including UL, CE, and FCC, ensuring compliance with international safety and quality standards.
Frequently Asked Questions
Q1: What is the maximum operating temperature supported by the AXK6L40347G?
A1: The AXK6L40347G can operate effectively within a temperature range of -40¡ãC to +85¡ãC, making it suitable for both cold and hot climates.
Q2: Can the AXK6L40347G be used in conjunction with other components to form a multi-core processor?
A2: Yes, the AXK6L40347G is modular and can be combined with similar components to create a multi-core processor, enhancing overall system performance.
Q3: In which specific scenarios would the AXK6L40347G be most beneficial?
A3: The AXK6L40347G is ideal for scenarios involving intensive computational tasks like deep learning training, high-frequency trading algorithms, and complex simulations, where high performance and energy efficiency are critical.
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