Water Refrigeration System
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A water refrigeration system is a device that can dissipate heat from computers or electronic equipment. It is a system composed of water cooling plates, water pipes and water pumps, usually combined with coolers and radiators to achieve cooling of the system.
The water refrigeration system is characterized by a certain ultra-quiet effect. Compared with air-cooled heat dissipation, blast heat dissipation may cause the system to be noisier, while water cooling can solve this problem. It is quieter and can effectively reduce noise. In addition, water cooling effectively reduces the temperature of the space to be cooled and greatly improves heat dissipation performance.
Nowadays, water refrigeration systems are widely used and can be widely used in computer internal components such as microprocessors, motherboards, and graphics cards, as well as in the cooling of robots, instrumentation, solar cell components, automobile engines, and robots.
1. Definition and classification of water refrigeration system
Water refrigeration system is a technology that uses water coolers to reduce heat transfer temperatures. This technology can transfer a large amount of heat from the heat source to the water cooler, allowing the equipment to operate more stably. From the perspective of its application occasions and working principles, water refrigeration systems can be divided into two categories: one is large-scale systems such as air conditioning systems, refrigeration systems, and refrigeration systems, which are mainly used in fields such as construction, industry, and agriculture; the other The category refers to small systems such as electronic cooling systems and computer heat dissipation systems, which are mainly used in fields such as electronic equipment and computers.
2. Main components of water refrigeration system
The main components of the water refrigeration system include: radiators, water pumps, water tanks, water pipes, heat sinks and controllers, etc., and these components need to be interconnected through communication pipes. The radiator is one of the most critical components in a water cooling system, responsible for separating the heat generated by microprocessors such as CPUs from the surrounding environment. The water pump is the engine in the water cooling system that circulates water. The water tank is the place where water is stored in the water refrigeration system. It can be designed into a large or small water tank according to needs. Water pipes are the water lines that connect components such as water tanks and radiators. The heat sink is the part in contact with the microprocessor, and its surface can be made of specific materials to improve the heat dissipation efficiency of the microprocessor. The controller is the brain of the entire water refrigeration system. It can customize and adjust fans, water pumps and other equipment as needed.
3. Application fields of water refrigeration system
Water refrigeration system is an efficient and stable cooling method, which is widely used in computer cooling, electronic product cooling, automobile engine cooling and other fields. In the computer field, water cooling systems can effectively solve the heat dissipation problems of important components such as CPUs and graphics cards, making the computer system run more stable and faster. In the automotive field, water refrigeration system is an important part of the automotive cooling system, which can effectively reduce the temperature of the engine during operation, thereby ensuring the long-term stable operation of the automotive system.
In short, the water refrigeration system is an efficient temperature control method that achieves temperature control through the cooperation of components such as radiators, water pumps, water tanks, water pipes, heat sinks, and controllers. This technology has broad application prospects in computers, automobiles, electronic products and other fields.
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Präzisionskältemaschinen / Kleinkältemaschinen
Die Kältemaschine kann in verschiedenen Industrien und Labors eingesetzt werden und unterstützt kundenspezifische Designs.
Temperaturbereich | -18°C ~ +30°C | +5°C ~ +35°C Reihe |
Kühlleistung | 0,35 ~ 0,9kW | 1,8 ~ 50kW |
Rückkühler
Unser Rückkühler arbeitet mit Niedertemperatur-Kältetechnik, die Temperatur beträgt bis zu -120℃, und verschiedene Zubehörteile sind anpassbar.
Temperaturbereich | Serie -25°C ~ +30°C | -45°C ~ +30°C Reihe | Serie -60°C ~ -20°C | Serie -80°C ~ -20°C | Serie -120°C ~ -70°C |
Kühlleistung | 0,8 ~ 30kW | 0,75 ~ 12kW | 0,4 ~ 6kW | 0,2 ~ 6kW | 0,3 ~ 5kW |
Niedertemperatur-Kühlgeräte
Wir haben uns auf die Herstellung von Niedertemperaturkältemaschinen mit einem Temperaturregelbereich von bis zu -150°C spezialisiert, die den Kühlbedarf verschiedener Branchen decken.
Temperaturbereich | Serie -25°C ~ -5°C | Serie -45°C ~ -10°C | Serie -60°C ~ -10°C | Serie -80°C ~ -30°C | Serie -110°C ~ -50°C | Serie -150°C ~ -110°C |
Kühlleistung | 12 ~ 360kW | 6 ~ 180kW | 6 ~ 180kW | 4 ~ 180kW | 2 ~ 120kW | 2,5 ~ 11kW |
Temperatursimulation für die Qualitätsprüfung von Fahrzeugen: Prüfung der Batterielebensdauer, Prüfstand für Einspritzdüsen/Motoren, Airbag-Prüfung, Komponentenprüfstand, usw.
Geeignet für die präzise Temperaturkontrolle von elektronischen Bauteilen. Bei der Herstellung von elektronischen Halbleiterkomponenten für raue Umgebungen umfassen die Phasen der IC-Gehäusemontage sowie der Entwicklungs- und Produktionstests auch elektronische Wärmetests und andere Simulationen von Umwelttests.
Flüssigkeitskühlung für Batterie-Energiespeichersysteme
Typen | Für Converting Station | Für Energiespeicherbatterie | Für die Ladestation |
Kühlleistung | 45kW | 5 ~ 8,5kW | 4kW |
Baureihe ZLFQ
Kühlmittelverteilereinheit
Flüssigkeitskühlgeräte eignen sich für die Prüfung von Halbleitern, die Prüfung elektronischer Geräte bei konstanter Temperatur, die Kühlung der Serverinfrastruktur und andere Orte, an denen die Temperatur von Flüssigkeiten kontrolliert wird.
Temperaturbereich | +5°C ~ +35°C | +5°C ~ +35°C |
Kühlleistung | 15 ~ 150kW | 200 ~ 500kW |
MD-Thermofutter-Serie
Es wird für die Prüfung von HF-Bauteilen und Leistungsbauteilen mit hoher Dichte (IGBTs und MOSFETs) verwendet und kann auch für die schnelle Kühlung von flachen Laborplatten (Plasma, biologische Produkte, Batterien) usw. eingesetzt werden.
Temperaturbereich | -75°C ~ +225°C |
Temperaturgenauigkeit | ±0.1℃ |
Schraubenkühler (Benutzerdefinierte Designs)
Niedertemperatur-Schraubenkühlmaschinen und Raumtemperatur-Schraubenkühlmaschinen
Temperaturbereich | +5°C ~ +30°C | +5°C ~ +30°C | +5°C ~ +30°C | +5°C ~ +30°C | -25°C ~ +5°C | -25°C ~ +5°C |
Kühlleistung | 107 ~ 1027kW (Einzelverdichter) | 299 ~ 2134kW (Doppelkompressor) | 98 ~ 934kW (Einzelverdichter) | 272 ~ 1940kW (Doppelkompressor) | 48 ~ 467kW (Einzelverdichter) | 51 ~ 497kW (Einzelverdichter) |