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Ridiculously powerful PC with six Nvidia RTX 4090 GPUs and liquid cooling finally gets tested — there’s no game benchmarks, but plenty of tests for scientists and pros

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Comino, known for its liquid-cooled servers, has finally released its new flagship for testing. 

The Comino Grando Server has been designed to meet a broad spectrum of high-performance computing needs, ranging from data analytics to gaming.

In a comprehensive test by StorageReview, the Grando Server, alongside a Grando Workstation variation, was put through a series of rigorous benchmarks including Blender 4.0, Luxmark, OctaneBench, Blackmagic RAW Speed Test, 7-zip Compression, and Y-Cruncher.

Comino Grando Server

(Image credit: Comino)

The server, equipped with six Nvidia RTX 4090s, AMD‘s Threadripper PRO 5995WX CPU, 512GB DDR5 DRAM, a 2TB NVMe SSD, and four 1600W PSUs, delivered impressive results, as you’d expect from those specifications.

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Raspberry Pi 5 cooling fan vs passive heatsinks compared

Raspberry Pi 5 cooling heatsink case

When it comes to keeping your Raspberry Pi 5 cool, the decision between different cases and cooling systems can be crucial. The Geek Pi/52 Pi heat sink case and the official Raspberry Pi 5 case are two popular options that cater to different preferences and needs. This comparison aims to help you choose the right solution for your setup.

The Geek Pi/52 Pi heat sink case is known for its cost-effectiveness and its passive cooling feature. It has a large heat sink that covers the entire board, designed to dissipate heat without the need for fans or other cooling devices. On the other hand, the official Raspberry Pi 5 case offers a combination of a fan and a heat sink, providing a dual approach to manage the device’s temperature. This case is made to fit the Raspberry Pi 5 perfectly.

To evaluate these cooling solutions, the Computers Explained conducted stress tests on the Raspberry Pi 5. Monitoring the temperature for 20 minutes while the device was under heavy use. Providing us with a clear idea of how each cooling system performs when the Raspberry Pi is working hard. Check out the video below to learn more about the testing process and the results.

GeeekPi Raspberry Pi 5 aluminium passive cooling case

  • Pi 5 Aluminum Case
    • Compatible with Raspberry Pi 5 8GB/4GB.
  • Passive Cooling Design
    • No need for an extra fan.
    • The case itself acts as a heatsink.
    • Built-in Heatsink Pillars for better heat dissipation.
    • Includes a thermal pad for passive cooling.
    • Capable of cooling the Raspberry Pi without a fan and without noise.
  • Sturdy and Portable
    • Made of high-quality aluminum alloy material.
    • Durable construction.
    • Provides strong and durable protection for the Raspberry Pi.
  • Wireless Internet Access
    • Open body design for reliable WiFi and Bluetooth reception.
    • No concerns about WiFi signal interference.
  • Packing List
    • 1 x Raspberry Pi 5 Case.
    • 8 x Thermal Pads (including 4pcs for backup).
    • 1 x Screws Pack.

The results showed that the official active cooler could reduce temperatures significantly, especially when the top of the case was removed. This suggests that the case might limit airflow. Another point to consider is the noise from the fan in the official case, which was quite noticeable. This could be an issue for those who need a quiet environment.

Christopher Barnett also looked at the Geek Pi/52 Pi heat sink case. It was easy to install, but it’s important to check that it fits well with the Raspberry Pi 5’s connectors. Since it’s a passive cooling system, it relies entirely on the heat sink to control the temperature, which means there’s no fan noise to worry about.

Tests indicated that while passive cooling can be effective, active cooling systems tend to keep the device cooler during intense operations. However, the silence of the passive heat sink case might be preferable for settings where noise is a concern. The official active cooler stands out for its efficient temperature management and is also quieter than expected. It allows for easy access to the Raspberry Pi’s connectors, which can be a significant advantage. Meanwhile, the Geek Pi/52 Pi heat sink case is a great choice for those who prioritize a silent, fanless design. When deciding between these cooling options, consider what’s most important for your use of the Raspberry Pi 5.

Filed Under: Hardware, Top News





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Building Automation: The Future of Smart Cooling and Heating

In the face of advancing technology, the push for energy efficiency, and the pursuit of comfort and convenience, the future of heating and cooling is undoubtedly shifting towards intelligent automation.

Building Automation Systems (BAS), or the networked, automatic control of a building’s HVAC (heating, ventilation, and air conditioning) system, is no longer a concept of the future but a present reality. This movement towards automation spans across varying scales, from large commercial buildings to individual apartments using systems like PTAC units.

This article explores the world of building automation, its potential impact on cooling and heating, and why it is considered the future of smart environmental control.

Understanding Building Automation Systems

Building Automation Systems are integrated networks of software and hardware, designed to automate the control of various building operations, including but not limited to heating, ventilation, and air conditioning.

Through a BAS, different subsystems of a building can interact seamlessly, working together to improve comfort, increase operational efficiency, and reduce energy consumption.

Whether it’s the vast network controlling a large commercial building’s climate or the smart controls of AC units in an apartment, automation adds a layer of intelligence that revolutionizes how we interact with our indoor environment.

In essence, a BAS can control and monitor a wide array of systems, including HVAC, lighting, security systems, and more. This not only optimizes energy usage and operational efficiency but also enhances the comfort and safety of building occupants.

The Impact of Building Automation on Heating and Cooling

The implications of building automation on heating and cooling are vast and transformative. By automating these systems, we gain unprecedented control over our environment, resulting in increased efficiency, improved comfort, and significant cost savings.

Energy Efficiency

One of the key benefits of building automation is the potential for significant energy savings. BAS allows for the precise control of heating and cooling systems, ensuring they operate at optimum efficiency. This means less energy waste, lower carbon emissions, and, crucially, reduced utility bills.

For example, consider smart PTAC units equipped with automation capabilities. They can optimize their operation based on ambient conditions and occupancy patterns, ensuring they only consume energy when necessary.

Over time, these savings can be considerable, reflecting the potent impact of automation on energy efficiency.

Improved Comfort

Building automation also enhances the comfort of building occupants. Automated HVAC systems can maintain precise temperature and humidity levels, creating a more pleasant indoor environment.

Further, with advanced features like adaptive learning, systems can even anticipate the needs of occupants, adjusting conditions for optimal comfort proactively.

Preventive Maintenance

A significant advantage of building automation lies in its predictive capabilities. BAS can track the performance of heating and cooling systems in real-time, identify anomalies, and predict potential faults before they become critical.

This helps facilitate preventive maintenance, prolongs the lifespan of the system, and prevents costly and inconvenient breakdowns.

The Integration of Building Automation and IoT

The Internet of Things (IoT) has played a pivotal role in propelling building automation to new heights. IoT connects multiple devices and systems, allowing them to communicate and share data. When applied to building automation, this connectivity brings about remarkable improvements in efficiency, flexibility, and user experience.

For instance, IoT can facilitate the integration of various systems within a building, from HVAC equipment to lighting and security systems. This interconnected network can function as a unified system, optimizing performance across the board.

Moreover, IoT enables remote access and control, meaning you can adjust your AC settings from anywhere, using a smartphone or similar device.

The Role of Artificial Intelligence in Building Automation

Artificial Intelligence (AI) is another game-changing technology that’s set to redefine building automation.

AI can analyze vast amounts of data, learn from it, and make intelligent decisions. When integrated into a BAS, it can optimize the operation of heating and cooling systems, learn from usage patterns, and make predictive adjustments to enhance comfort and energy efficiency.

Conclusion

Building automation is a powerful tool that’s changing the way we heat and cool our buildings. From improved energy efficiency and enhanced comfort to predictive maintenance and seamless integration with IoT and AI, the benefits are substantial and wide-ranging.

As technology continues to evolve, systems from large-scale HVAC networks to individual PTAC units are becoming increasingly smarter, more efficient, and more user-friendly.

Building automation, in essence, represents the future of smart cooling and heating, paving the way for a more sustainable, comfortable, and technologically advanced built environment.

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New EK-Nucleus AIO liquid cooling systems

New EK-Nucleus AIO liquid cooling systems

EK well-known for its high-end liquid cooling gear, has recently announced that its EK-Nucleus All-in-One (AIO) cooling solutions are fully compatible with Intel’s 14th Gen Raptor Lake Refresh CPUs and the upcoming Z790 motherboards. This compatibility signifies a significant leap in the cooling industry, as it ensures that the latest Intel processors can operate at their maximum potential without the risk of overheating.

The Raptor Lake CPUs are designed to reach frequencies as high as 6 GHz, which necessitates a robust cooling solution to maintain these high frequencies. The EK-Nucleus AIOs, with their large radiator surface, potent fans for heat dissipation, and powerful pumps to circulate the warmed coolant, are well-equipped for this task.

EK-Nucleus AIO CPU  liquid cooling

  • EK-Nucleus AIO CR240 Lux D-RGB – with a 240 mm black radiator featuring D-RGB on both black-framed fans and black pump-block unit.
  • EK-Nucleus AIO CR360 Lux D-RGB – with a 240 mm black radiator featuring D-RGB on both black-framed fans and black pump-block unit.
  • EK-Nucleus AIO CR240 Lux D-RGB – White – with a 240 mm white radiator featuring D-RGB on both white-framed fans and white pump-block unit.
  • EK-Nucleus AIO CR360 Lux D-RGB – White – with a 360 mm white radiator featuring D-RGB on both white-framed fans and white pump-block unit.
  • EK-Nucleus AIO CR240 Dark – with a 240 mm radiator, stealthy black aesthetic, and no LEDs.
  • EK-Nucleus AIO CR360 Dark – with a 240 mm radiator, stealthy black aesthetic, and no LEDs.

A standout feature of the EK-Nucleus AIOs is the coldplate made of copper, which comes into contact with the CPU. Copper is known for its excellent thermal conductivity, making it an ideal material for this purpose. The coldplate also boasts a dense stack of microfins to increase the thermal transfer area, further enhancing the cooling efficiency of the system.

In addition to their high-performance features, the EK-Nucleus AIOs are also noted for their aesthetic appeal and versatility. They come in various models, offering options with and without D-RGB lighting, in both white and black colors, and in 360 mm and 240 mm size variations. This range of choices allows users to select a model that best suits their system’s look and cooling requirements.

Intel 14th Gen CPU compatible

The EK-Nucleus AIOs’ compatibility extends beyond the Intel 14th Gen CPUs and Z790 motherboards. They are also compatible with Intel LGA 1700 socket CPUs, specifically the 12th, 13th, and 14th generation of Intel Core processors. Furthermore, these AIOs can be mounted on almost all sockets in use on consumer-grade motherboards, making them a versatile solution for a wide range of users.

Manufactured in Slovenia, Europe, the EK-Nucleus AIOs are available for order through the EK Webshop and Partner Reseller Network. While the pricing may vary depending on the model and features, the manufacturer’s suggested retail price (MSRP) with VAT included is provided in the press release. This availability and pricing information ensures that prospective customers can make an informed decision when considering an EK-Nucleus AIO for their cooling needs.

The EK-Nucleus AIO liquid cooling systems offer a blend of compatibility, performance, versatility, and aesthetics. Whether you’re looking to cool a high-frequency Intel 14th Gen CPU, a consumer-grade motherboard, or simply seeking an aesthetically pleasing cooling solution, the EK-Nucleus AIOs are a compelling option to consider.

Source : EKWB

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