(132 products available)
Intel original CPU coolers are designed to work with the company's processors. They come in various types depending on the generation of the processor as outlined below:
Stock Cooler
The original CPU coolers are coolers offered by Intel alongside their processors. The coolers come incorporated with the processor as an aftermarket cooling solution. The coolers are designed to handle the thermal load of the processor under normal operating conditions. They offer sufficient cooling for users with standard computing needs.
Heat Sink Fan (HSF)
Similar to other CPU coolers, Intel's cooler features a heat sink fan (HSF) combination that effectively dissipates heat generated by the processor. HSF is mostly used for the lower-tier CPUs. It is comprised of metal fins that absorb the heat from the CPU and a fan that helps to lower heat levels by increasing air circulation. The Intel CPU fan coolers are suitable for users with basic computing needs. They provide adequate cooling for users who engage in tasks such as web browsing, document editing, and multimedia consumption.
Liquid Coolers (AIO Coolers)
Some higher-end Intel processors come with an All-in-One (AIO) Liquid Coolers. These integrated coolers use liquid coolant to transfer heat away from the CPU. Liquid coolers are usually designed for high-performance CPUs. They offer better cooling compared to traditional air coolers. AIO liquid coolers are ideal for users with demanding workloads. The liquid coolers are designed for users who engage in CPU-intensive tasks. These tasks may include gaming, 3D rendering, and video editing
Unified Thermal Solutions (UTS)
Unified Thermal Solutions (UTS) are coolers designed for Intel's boxed processors. They feature a combination of heatsink, fan, and thermal interface material. UTS are engineered to deliver consistent thermal performance. The coolers come with different types of thermal paste to ensure reliable heat transfer between the CPU and cooler. They are suitable for boxed Intel processors, providing adequate cooling for a range of workloads. UTS are ideal for users seeking a reliable and efficient cooling solution for their processors.
The main purpose of a CPU cooler is to keep the processor within safe operating temperatures. If these temperatures are exceeded, the CPU may be damaged physically, resulting in significant replacement costs and lost time. To accomplish this, here are some features of original Intel CPU coolers.
Simple Installation
One of the advantages of original Intel CPU coolers is their straightforward installation process. The coolers are designed with the socket type in mind. This makes it easy to mount the cooler directly onto the CPU. The cooler also comes with a pre-applied thermal paste that ensures a good thermal transfer between the CPU and cooler. This enables users to install the cooler without the need to add their own thermal paste or socket adapter. Furthermore, the CPU cooler attaches directly to the CPU socket. So, users mounting the CPU onto the motherboard will have the cooler already attached.
Compatibility
Intel CPU stock coolers are designed in line with the company's CPU design standards. So, they are guaranteed to fit all Intel CPUs. This includes the latest generations of CPUs. Also, the coolers come in various designs and sizes to match the form factors of different Intel CPU families. This ensures a suitable airflow and mounting mechanism. These guarantees are not available when custom CPU cooler manufacturers are used.
Cost-Effectiveness
Intel's stock coolers are included with the CPU at no additional cost. This means that users who opt for the original CPU coolers do not have to make any additional expenses for a CPU cooler. It also makes no sense to buy a CPU without considering the bundled cooler in the total CPU cost. The higher price of CPUs with a CPU cooler is more justifiable than if users buy the CPU and have to buy the cooler separately. The coolers also offer decent performance sufficient to handle the cooling needs of mid-range CPUs. They are reliable alternatives for users looking for cost-effective CPU cooling solutions without needing to invest in aftermarket coolers.
Low Profile
Intel original CPU coolers come in a low-profile design that conserves space within the computer case. The design is suitable for builds with small form factor cases. So, users do not have to worry a lot about the cooler's height and clearance space, especially when using an entry-level CPU. The low-profile coolers allow users to conserve more space within the PC case for additional components and enhance airflow. This eventually results in better cable management and a more organized interior. The design also offers decent performance, suitable for users without enhanced cooling needs.
Original Intel CPU coolers serve multiple purposes beyond just cooling the chip. They can be used in various applications, including;
Chip Cooling;
The primary purpose of Intel CPU Coolers is to keep the processors at safe operating temperatures even under full load, especially during demanding tasks like gaming Computing-intensive tasks such as video editing and streaming, as well as other CPU-intensive applications, can make processors heat up rapidly and potentially reach dangerous levels without proper cooling, which could cause damage or affect performance. So, to prevent this, CPU Coolers dissipate the heat generated by CPUs, thereby ensuring that they function optimally without overheating.
System Stability;
When original CPU coolers regulate the temperature of processors, they help keep temperatures within safe limits, which promotes reliable operation of the whole system without errors or crashes even when under heavy workload. If not well-cooled, CPUs may encounter thermal throttling, leading to reduced performance or instability. Therefore, by maintaining stable temperatures, Intel Coolers contribute significantly towards maximization of performance levels.
Maintaining Low Temperatures;
Effective cooling is vital not only for maximizing performance but also for prolonging the lifespan of computer components. Heat, being the number one enemy of electronics, can cause severe damage over time; hence, CPU coolers play a significant role in dissipating the heat generated by CPUs to prevent this from happening. Additionally, Integrated Cooling helps keep temperatures down; thus, users should have peace of mind knowing that their systems are safe from potential damages caused by excessive heating.
Ensuring Compatibility;
Retaining good functionality and performance between a cooler and a CPU, Intel Original CPU Coolers are designed to match specifications of different Intel processors, ensuring proper fit and optimal performance. This ensures compatibility between an OEM CPU cooler and the corresponding Intel CPUs, thereby enabling effective heat dissipation.
A few things should be considered when selecting an original Intel CPU cooler. First, check the socket compatibility between the cooler and the CPU. Many manufacturers provide a list of compatible sockets. If the CPU is a socket Intel 12th gen, the original cooler would be a great fit.
Another thing to consider is the cooler's size. The Intel stock coolers come in various sizes, ranging from compact to large heat sinks. Large coolers are suitable for CPUs with many cores because they have more surface area to dissipate heat. Ensure the CPU cooler can fit inside the PC case, especially if building a compact system.
Original Intel CPU coolers have a rated TDP. TDP stands for thermal design power. It is the maximum amount of heat a CPU can produce under full load. Therefore, for successful CPU cooling, the stock cooler's TDP should be equal to or higher than the CPU's TDP.
Another thing to consider is the needed features. Some original CPU coolers come with additional features, such as RGB lighting. These stock coolers provide aesthetic value to the PC build. Some coolers also have higher-end fan models that support PWM (Pulse Width Modulation) control.
Finally, or perhaps first, budget is an important consideration. While original coolers are more affordable than aftermarket options, there may be a need for an aftermarket upgrade if there is a willingness to spend more money on additional features and aesthetics.
Q1 What is the purpose of the stock cooler?
A1. The original Intel CPU cooler is designed to dissipate heat generated by the CPU during operation to maintain optimal operating temperatures and prevent overheating. It serves the purpose of cooling the CPU effectively and protecting it from damage.
Q2. Do I need to use the stock cooler tub?
A2. Using the thermal tub is highly recommended, even if it is not Intel's mandatory requirement. The thermal paste creates a good bond between the CPU and the cooler to eliminate air gaps. Therefore, using it can significantly improve heat dissipation and cooling performance.
Q3. Does an Intel cooler come with a fan?
A3. Yes, the Intel original CPU cooler comes with a fan for the fan variant, which is intended to cool down the CPU. The fan enables better heat dissipation from the CPU. The speed of the fan varies depending on the cooler's design and CPU temperature.
Q4. How to install an Intel original CPU cooler?
A4. To install an Intel original CPU cooler, start by placing the cooler directly on top of the CPU to align the mounting pins with the holes in the motherboard. Ensure the cooler's fan is oriented properly to facilitate airflow. Then, gently push down the mounting pins to secure the cooler to the CPU and attach any additional clips or brackets as required. Finally, double-check that the cooler is firmly attached and properly installed to the CPU. Power up the system and check if it's running.
Q5. Are stock coolers enough?
A5. The stock coolers provided with Intel processors are generally sufficient for handling the cooling requirements of the CPU under normal operating conditions. They are designed to adequately cool the CPU and maintain safe temperatures without causing overheating or throttling. However, when it comes to overclocking or high-performance CPUs, upgraded CPU coolers might be necessary for effective heat dissipation.