Nominal Diameter: DN6~25
Applicable Media: Liquid nitrogen, liquid oxygen, liquid hydrogen, liquefied natural gas, and other cryogenic media
Applicable Pressure: 0~1.6MPa, 0~2.5MPa, 0~4.0MPa, 0~4.0MPa
Model: HY-SV-CR
Technical Parameters:
Nominal Diameter: DN6~25
Applicable Media: Liquid nitrogen, liquid oxygen, liquid hydrogen, liquefied natural gas, and other cryogenic media
Applicable Pressure: 0~1.6MPa, 0~2.5MPa, 0~4.0MPa, 0~4.0MPa
Product Structure: Step-by-step direct-acting structure
Operating Mode: Normally closed type
Operating Voltage: DC24V (AC220V optional)
Valve Body Material: 316L stainless steel
Sealing Material: PCTFE
Media Temperature: -196℃ (customizable to -253℃)
Electrical Interface: Hirschmann connector
Explosion-proof Rating: ExdbⅡCT4
Connection: Imperial pipe thread (other connection sizes can be customized)
When I talk about a cryogenic Solenoid Valve, I am not talking about an ordinary solenoid valve that simply happens to work at a lower temperature. Cryogenic service is different. The working medium may be extremely cold, the material can behave differently, sealing becomes more important, and even a small design detail can affect the reliability of the whole fluid control system.
At Xi'an Huiyuan Instrument Valve Co., Ltd., we have spent decades working in fluid control. Our company was formerly the Solenoid Valve Branch of Xi'an Instrument Factory and was restructured into a joint-stock company in 1994. Since then, we have continued to develop and manufacture fluid solenoid valves, electrically controlled valves, pneumatically controlled valves, Pressure Reducing Valves, and special non-standard valves.
Our products are used in demanding fields such as aerospace, commercial spaceflight, nuclear power, shipbuilding, industrial equipment, and scientific research. This experience has taught me one important lesson: the best valve is not always the valve with the most features. It is the valve that matches the real working conditions of the system.
That is how I approach our cryogenic solenoid valve. I focus on dependable fluid shut-off and control, suitable materials and sealing, accurate electrical operation, practical installation, and inspection before delivery. For special applications, I also work with customers on customized and non-standard valve solutions.
A cryogenic solenoid valve is an electrically operated valve designed for fluid control in low-temperature or cryogenic service. In simple terms, it uses an electrical signal to control whether a fluid passage is open or closed.
The basic idea is easy to understand. When the solenoid coil receives the correct electrical signal, it creates magnetic force. This force moves an internal valve component. The movement changes the fluid path and allows the valve to perform its designed control function. When the electrical condition changes, the internal mechanism returns to its specified position.
The difficult part is not understanding this basic principle. The difficult part is making the valve perform properly when the working environment becomes cold, demanding, or highly specialized.
At low temperatures, materials can contract. Some sealing materials can lose flexibility. Lubrication conditions can change, and the temperature difference between the cold fluid and the surrounding environment can create additional design challenges. Because of this, I do not recommend selecting a cryogenic valve simply because a supplier says it is a "low temperature valve."
I first look at the actual application. What fluid is being controlled? What is the operating temperature? What pressure will the valve see? What electrical power is available? How often will the valve operate? What type of connection is required? Is the valve installed inside a protected system or exposed to a demanding environment?
These questions help determine whether a particular cryogenic solenoid valve is suitable and what configuration should be used.
Working environment | Designed for low temperature or cryogenic applications | Usually intended for normal industrial conditions |
Material selection | Must be evaluated for low temperature service | Selected mainly for normal operating conditions |
Sealing requirements | Low temperature sealing performance is an important consideration | Normally based on conventional operating conditions |
Application | Specialized fluid control systems and low temperature equipment | Industrial automation and general fluid systems |
Customization | Often important for specialized systems | Standard catalog options are more common |
Source: Xi'an Huiyuan Instrument Valve Co., Ltd. product positioning and engineering experience supplied for this product page. This table is a practical application comparison and is not a universal specification for all valve manufacturers.
For that reason, I treat the cryogenic solenoid valve as a complete engineering product rather than simply a small electrical component.
The working principle is based on electromagnetic control. The valve contains a solenoid coil and an internal moving mechanism. When the coil is energized, the magnetic field creates a force that moves the internal component. This changes the flow passage.
Depending on the valve configuration, the normal position can be designed according to the control requirements. The valve may be required to remain closed until an electrical signal is received, or it may use another operating arrangement defined by the system.
I always recommend confirming this point during technical discussions because the normal state of a valve can be important for system safety and control logic.
The control system sends an electrical signal to the solenoid coil.
The coil produces magnetic force.
The internal moving part changes position.
The fluid passage opens or closes according to the valve design.
The control system changes the electrical signal when the operating condition changes.
The valve returns to its specified position through the designed mechanism.
In a real cryogenic system, however, there is more to consider. The valve has to manage the transition between the cold working medium and the surrounding environment. The body, internal parts, seals, electrical components, and connection structure all need to work together.
This is why our technical discussions normally begin with application information rather than a product name alone. A customer may tell me, "I need a cryogenic solenoid valve," but that is only the starting point. I need to understand what the valve will actually do.
Medium | Fluid type and operating condition | Different fluids can require different material and sealing solutions |
Temperature | Actual operating temperature and temperature range | Low temperature affects materials, seals, and valve performance |
Pressure | Working pressure and applicable pressure conditions | Helps determine the suitable valve structure |
Electrical control | Voltage, signal, and control method | Ensures the valve can work with the customer's control system |
Connection | Port, thread, flange, or special connection requirement | Ensures correct mechanical installation |
Installation | Available space and mounting conditions | Helps prevent installation problems after delivery |
Source: Xi'an Huiyuan Instrument Valve Co., Ltd. technical and product information supplied for this page. Exact parameters must be confirmed according to the final product specification.
When customers ask me what makes a good Low temperature solenoid valve, I do not point to one single feature. Reliable operation comes from many small decisions made during design, material selection, manufacturing, assembly, and inspection.
The first consideration is the working temperature. A material that performs well at room temperature may not behave in exactly the same way when exposed to very low temperatures. Therefore, the valve configuration must be considered according to the actual cryogenic working condition.
For many systems, the valve's main job is simple: stop the fluid when the control system tells it to stop. Proper shut-off and sealing are therefore important parts of the product evaluation.
Electrical control allows the valve to become part of an automatic system. It can receive commands from a controller or other electrical equipment, which makes it useful in automated test systems, industrial equipment, aerospace equipment, and specialized fluid control systems.
Material selection becomes especially important in cryogenic service. I consider the working medium, temperature, pressure, compatibility requirements, and customer specifications before confirming the final material and sealing solution.
Many customers in aerospace and research do not have a simple off-the-shelf requirement. They may need a special size, connection, material, control voltage, installation arrangement, or other modification.
We have long been involved in special non-standard valve products. This means I can discuss the technical problem first and then work toward a suitable valve configuration.
Before shipment, we inspect applicable performance, sealing, appearance, and other requirements. I consider this an essential step because the customer should not have to discover basic manufacturing problems after the product arrives.
Cryogenic service is not simply "normal service but colder." The temperature can affect almost every part of a valve. This is one reason why customers should be careful when comparing products from different suppliers.
One common issue is material behavior. Materials can change dimension as temperature changes. Sealing parts can also become less flexible. If the design does not properly account for these changes, sealing and movement may become difficult.
Another issue is thermal movement. A valve may connect a very cold fluid system with equipment at a much warmer surrounding temperature. Different parts of the valve can experience different temperatures. This needs to be considered when the valve structure is designed.
Electrical components also need attention. The coil and electrical interface must match the control system, while the overall valve arrangement needs to suit the intended environment.
I also pay attention to maintenance and installation. A technically good valve can still cause trouble if it cannot be installed correctly in the customer's equipment. Connection dimensions, mounting direction, available space, and access for inspection should therefore be considered early.
My approach is to divide the problem into several basic questions:
What fluid is being controlled?
How cold will the working condition be?
What pressure will the valve experience?
What does the valve need to do when energized?
What should happen when power is removed?
How will the valve connect to the equipment?
What sealing performance is required?
Does the customer need a standard or customized design?
What inspection and acceptance requirements apply?
This process may sound basic, but it prevents a common purchasing mistake: choosing a valve from a product picture without checking whether its real operating conditions match the application.
Common industrial equipment | Often suitable | May not be necessary |
Special low temperature system | Depends on actual specifications | Useful when standard options do not match |
Aerospace equipment | Requires detailed technical verification | Often useful for system-specific requirements |
Research and test equipment | May not cover unusual requirements | Useful for non-standard technical conditions |
Source: Xi'an Huiyuan Instrument Valve Co., Ltd. application experience and product information supplied for this page. The suitability of a standard or customized valve must be determined from the actual system requirements.
Our cryogenic solenoid valve technology is aimed at specialized fluid control applications. Because every project has different conditions, I always recommend technical confirmation before final selection.
Aerospace systems can require highly specialized fluid control components. We have experience supplying special valves for aerospace and commercial spaceflight applications, including products and fluid control systems adapted to commercial rockets and satellites.
In these projects, the valve may become one small part of a much larger system. This makes communication between the valve manufacturer and system designer especially important.
Research and development facilities often need valves for experimental equipment. Test systems can have unusual pressure, temperature, connection, or control requirements, so customized non-standard valves can be useful.
Low temperature fluid control can also be found in industrial equipment and specialized gas or fluid systems. Whether our valve is suitable depends on the actual medium, pressure, temperature, and system design.
We have experience providing specialized valves for nuclear power applications. These systems often require careful product selection and quality control. Any valve used in such an application must be evaluated against the project's specific technical and regulatory requirements.
We have also provided specialized control valves for shipbuilding applications. Where low temperature fluid control is required, a suitable cryogenic valve can be considered as part of the overall equipment design.
Solenoid valves are widely used in automation because an electrical signal can control fluid flow quickly and conveniently. For specialized low temperature automation, the valve configuration needs to match the working environment.
In short, I see the biggest opportunity for this product in applications where ordinary fluid valves are not enough and the customer needs controlled fluid isolation under low temperature conditions.
A reliable valve does not come from one manufacturing step. At Huiyuan, technology development, production, and technical service are closely connected. This allows us to handle both standard valve orders and more complex non-standard projects.
I begin by reviewing the customer's requirements. For a cryogenic application, I pay particular attention to the working medium, temperature, pressure, control signal, installation conditions, connection requirements, and sealing expectations.
Once the requirements are clear, the valve configuration can be determined. If the customer needs a special connection, unusual dimensions, or other non-standard features, these requirements are included in the technical solution.
Material selection is not something I treat as a simple purchasing decision. The selected materials need to be considered in relation to the working fluid and temperature conditions. Sealing materials also need to be evaluated for the intended service.
The valve components are processed and assembled according to the approved technical requirements. Good assembly matters because the final performance depends on the interaction of the body, internal components, seals, and electrical parts.
Before delivery, we perform applicable performance and sealing inspections. Appearance and other agreed requirements are also checked. For customized projects, inspection requirements can be discussed during the technical and contract stages.
Once the product passes the required inspections, we prepare it for shipment. Depending on size and weight, we may use cartons, wooden cases, or pallets. Moisture-resistant and shock-resistant packaging is used to help protect the product during transportation.
Production time depends on the model, material, specification, quantity, and customization level. Standard products can normally be arranged for relatively fast delivery, while customized products require a production schedule after the technical solution has been confirmed.
Huiyuan has established a quality management system and has obtained ISO 9001:2015 certification. The company has also obtained CE certification and applicable SIL3 mandatory safety certification and 3C mandatory certification for explosion-proof electrical equipment.
These certifications are part of our quality management background. However, I do not treat a certificate as a substitute for product testing. The actual inspection and certification requirements for a particular cryogenic valve should always be confirmed according to its final application and specification.
If you are only looking for the lowest price on a standard valve, we may not always be the right supplier. If you need a manufacturer that understands fluid control and can discuss a specialized valve around your actual application, that is where I believe Huiyuan has a clear advantage.
Our company has decades of experience in the fluid control field. We started from the Solenoid Valve Branch of Xi'an Instrument Factory and have developed into a high-tech enterprise integrating technology development, production, and technical services.
Our product range covers fluid solenoid valves, electric control valves, pneumatic control valves, pressure reducing valves, and special non-standard valves. We have provided specialized products for aerospace, commercial spaceflight, nuclear power, shipbuilding, military-related applications, and research institutes.
This background is important for cryogenic projects because the customer may not simply need a catalog product. The customer may need technical discussion, design adjustment, special materials, customized connections, or a testing arrangement that fits a larger system.
Selection of a suitable cryogenic solenoid valve configuration
Customized low temperature solenoid valve solutions
Special non-standard valve development
Electrical control and connection requirements
Fluid medium and sealing requirement review
Aerospace and commercial spaceflight valve applications
Research and cryogenic test equipment
Performance and sealing inspection before delivery
Packaging and international shipment coordination
Technical communication before and after the order
We also follow the company principles of innovation, quality, and service. Our quality policy is based on establishing and continuously improving the quality management system, developing high-quality products, and providing efficient technical services.
Our electric control valves have received recognition including Advanced Quality Product and Xi'an Famous Brand Product awards. We continue to invest in technology and high-end applications because we want to build long-term capability, not simply increase the number of products in a catalog.
The main difference is the intended working environment. A cryogenic solenoid valve is designed with low temperature service in mind. Material behavior, sealing, thermal movement, and system installation all need to be considered. A normal Industrial Solenoid Valve may not be suitable for cryogenic service simply because it has the same basic electromagnetic operating principle.
I normally need the working medium, operating temperature, pressure, valve size, connection type, electrical voltage, control method, installation conditions, flow requirement, sealing requirements, quantity, and applicable standards. If the valve is being used in aerospace or research equipment, I also recommend providing the system requirements and any special acceptance criteria.
Yes. Special non-standard valves are one of our long-term product areas. We can discuss customized dimensions, materials, connections, electrical requirements, and other project-specific conditions. The final configuration depends on technical review.
We have experience supplying special fluid control valves for aerospace and commercial spaceflight applications. However, aerospace systems are highly application-specific. We therefore recommend a technical review before confirming whether a particular valve configuration is suitable for your system.
The answer depends on the specific gas, temperature, pressure, sealing requirements, and valve configuration. Please provide the actual working medium and conditions so we can evaluate the appropriate design.
Potentially, depending on the working conditions and final design. Cryogenic liquid applications require careful consideration of temperature, pressure, material compatibility, sealing, and installation. We recommend confirming these conditions before selecting the valve.
Yes. We conduct applicable performance, sealing, appearance, and other inspections before delivery. Specific inspection and acceptance criteria can be agreed according to the product specification and customer project.
It depends on the model, material, specification, quantity, and customization requirements. Standard products can normally be arranged for relatively fast delivery. Customized valves require additional time for technical confirmation and production.
We normally use moisture-resistant and shock-resistant packaging. Depending on the valve size and weight, cartons, wooden cases, or pallets can be used. The final packaging method is selected according to the product and shipping requirements.
Payment terms can be agreed according to the cooperation arrangement. Options may include advance payment, payment before shipment, or payment terms specified in the contract.
Yes. Technical service is an important part of our business model. If questions arise during installation or application, customers can contact us with the relevant product information and operating conditions so that we can help review the issue.
I have worked around fluid control products long enough to know that a valve should never be selected from a name alone. This is especially true for cryogenic service.
A cryogenic solenoid valve has to match the working medium, temperature, pressure, electrical control, sealing requirements, installation environment, and overall system design. When the application is specialized, a customized solution can often make more sense than forcing a standard valve into a system where it does not really fit.
At Xi'an Huiyuan Instrument Valve Co., Ltd., we combine fluid control experience, manufacturing capability, technical development, quality management, and engineering service. Our long-term work in aerospace, commercial spaceflight, nuclear power, shipbuilding, and research equipment has given us practical experience with demanding fluid control projects.
If you are sourcing a cryogenic solenoid valve, low temperature solenoid valve, cryogenic fluid control valve, or custom cryogenic solenoid valve, I recommend starting with your actual operating conditions rather than only sending a product name.
Tell us the medium, temperature, pressure, electrical requirements, connection, installation conditions, and quantity. We can then review the application and discuss a suitable valve configuration with you.
For us, the goal is not simply to manufacture another valve. The goal is to provide a fluid control component that makes sense for the customer's equipment, is manufactured according to the agreed requirements, is inspected before delivery, and can be supported throughout the project.
เว็บไซต์นี้ใช้คุกกี้เพื่อให้แน่ใจว่าคุณได้รับประสบการณ์ที่ดีที่สุดบนเว็บไซต์ของเรา