Summary: Intel's rumored Bartlett Lake-S CPU may feature up to 24 cores and 32 threads, potentially supporting both Network and Edge products and consumer products, but official confirmation is still pending.
- Potential for up to 24 cores and 32 threads
- Utilizes Intel 7 node and silicon
- Could be Intel's final product to support LGA-1700 socket and DDR4 memory
Intel’s rumored Bartlett Lake-S CPU is reportedly on its way, with a focus on the Network and Edge CPU series, according to leaks from Benchlife. The Bartlett Lake-S is said to utilize the same Intel 7 node and silicon as the Raptor Lake S-Refresh, potentially offering up to 24 cores and 32 threads with 8 P-Cores and 16 E-Cores.
Benchlife suggests that the Bartlett Lake-S is primarily aimed at Intel’s Network and Edge (NEX) products, which aligns with information provided by Red Gaming Tech. However, supply chain sources indicate that Bartlett Lake-S may also have a 12 P-Core option without E-Cores, which would be a departure from Intel’s current LGA-1700 lineup.
While both reports acknowledge the possibility of Bartlett Lake-S reaching consumer products like the Core series, no official confirmation has been made. If released, Bartlett Lake-S could be Intel’s final product to support the older LGA-1700 socket and DDR4 memory, as the upcoming LGA-1851 platform for Arrow Lake-S is expected to introduce new technologies.
It’s important to note that these details are still speculative, and more information is needed to confirm the existence and full capabilities of the Bartlett Lake-S CPU.
About Intel: Intel Corporation, a global technology leader, is for its semiconductor innovations that power computing and communication devices worldwide. As a pioneer in microprocessor technology, Intel has left an indelible mark on the evolution of computing with its processors that drive everything from PCs to data centers and beyond. With a history of advancements, Intel's relentless pursuit of innovation continues to shape the digital landscape, offering solutions that empower businesses and individuals to achieve new levels of productivity and connectivity.Intel Website: https://www.intel.com/
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CPU: The Central Processing Unit (CPU) is the brain of a computer, responsible for executing instructions and performing calculations. It is the most important component of a computer system, as it is responsible for controlling all other components. CPUs are used in a wide range of applications, from desktop computers to mobile devices, gaming consoles, and even supercomputers. CPUs are used to process data, execute instructions, and control the flow of information within a computer system. They are also used to control the input and output of data, as well as to store and retrieve data from memory. CPUs are essential for the functioning of any computer system, and their applications in the computer industry are vast.
DDR4: DDR4 is a generation of Double Data Rate (DDR) dynamic random access memory (RAM) technology. It is a type of RAM that utilizes a higher clock frequency and is more power-efficient than its predecessors. As a result, it is capable of processing data more quickly than other RAM in the computer industry. Its increased speed and power efficiency are beneficial for applications such as gaming, rendering, and machine learning. It is designed for high-performance computing and enables faster access to stored information, resulting in better overall performance for the user. Furthermore, because of its low voltage requirements it requires less power consumption, making it an attractive option for many computer systems. DDR4 is set to become the primary RAM in most computer systems as the industry transitions away from its predecessors.
E-Cores: E-Cores (Efficiency Cores) are a type of technology used in the computer industry to provide a more efficient and reliable way of powering and cooling computer components. They are made up of a combination of copper and aluminum, and are designed to be more efficient than traditional copper cores. E-Cores are used in a variety of applications, such as in CPUs, GPUs, and other computer components. They are also used in servers, laptops, and other electronic devices. The technology is designed to reduce heat and power consumption, while also providing a more reliable and efficient way of powering and cooling computer components.
LGA-1700: LGA-1700 is a socket technology created by Intel that has three versions: LGA-1700, LGA-1710, and LGA-1750. It is designed for use in desktop computers and provides excellent performance and supports multiple processors and memory modules. It is used for both servers and workstations, and is a popular choice for multi-core processors. Its versatility makes it a great choice for a wide range of applications, from gaming PCs to business PCs. LGA-1700 is compatible with many Intel chipsets and CPU series, including Core, Xeon, Pentium, Atom, Celeron, and Itanium Chipset families. It also supports up to 128GB of DDR4 memory and allows for two devices to be connected to each CPU. All of these features make LGA-1700 an ideal choice for those looking for reliable and high performance computers.
LGA-1851: The LGA-1851 is a type of socket technology used in the computer industry. It is a land grid array (LGA) socket that is used to connect a processor to a motherboard. It is designed to support Intel's latest generation of processors, such as the Core i7, Core i5, and Core i3. The LGA-1851 socket is designed to provide a secure and reliable connection between the processor and the motherboard. It also provides improved thermal performance, allowing for better cooling of the processor. This socket technology is used in a variety of desktop and laptop computers, as well as servers and workstations. It is also used in gaming systems, allowing for improved performance and stability. The LGA-1851 socket is an important part of the computer industry, providing reliable and secure connections between processors and motherboards.
P-Cores: P-Cores (Performance Cores) are a type of processor technology developed by Intel that is designed to improve the performance of computer systems. This technology is based on the concept of multi-core processors, which are processors that contain multiple cores or processing units. P-Cores are designed to increase the speed and efficiency of computer systems by allowing multiple cores to work together in parallel. This technology is used in a variety of applications, including gaming, video editing, and data analysis. P-Cores are also used in servers and other high-performance computing systems. The technology is also used in mobile devices, such as smartphones and tablets, to improve battery life and performance. P-Cores are an important part of the computer industry, as they allow for faster and more efficient computing.
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