Nominal diameter: DN6
Operating voltage: DC24V
Connection method: Customizable
Model: HY-SV-BL-RE
Technical Parameters:
Nominal Diameter: DN6
Operating Voltage: DC24V
Connection Method: Customizable
Operating Pressure: Forward 6.0MPa, Reverse 1.6MPa
Explosion-proof Rating: Exd IIB+H2 T4 Gb
Operating Medium: Natural Gas
Sealing Material: PTFE/Fluororubber
Medium Temperature: ≤80℃
Electrical Interface: External Thread G1/2”
Power: 33W
Structure: Direct-acting structure
Satellite Control System Bidirectional Self-Locking Valve for Reliable Space Fluid Control
When I work on a fluid control project for a satellite or spacecraft, I know that a valve is never just a small part in the system. It can control a critical flow path, isolate a line, protect other components, or help the whole system respond correctly to a command. That is why I pay close attention to valve structure, control method, sealing performance, reliability, and the actual working conditions of the equipment.
The Satellite Control System Bidirectional Self-Locking Valve is developed for demanding fluid control applications where controlled opening and closing, stable operation, and reliable locking are important. At Xi'an Huiyuan Instrument Valve Co., Ltd., we have been working in the fluid control field for decades. Our background comes from the former Solenoid Valve Branch of Xi'an Instrument Factory, which was restructured into a joint-stock company in 1994.
Today, I see this product as part of a much wider engineering capability rather than as a standalone valve. Our work covers fluid solenoid valves, electrically controlled valves, pneumatically controlled valves, Pressure Reducing Valves, and special non-standard valves for aerospace, commercial spaceflight, nuclear power, experimental equipment, and related systems.
For satellite projects, that experience matters. Space systems often have limited room, strict operating requirements, and little tolerance for unexpected behavior. Instead of simply choosing a standard industrial valve, I start with the actual fluid, pressure, temperature, control logic, installation space, interface requirements, and system duty. From there, I work with the customer to determine the right valve structure and configuration.
In simple terms, a bidirectional self-locking valve is designed to control fluid flow in two directions while providing a defined locking function after the valve reaches its required position. The exact locking and actuation arrangement depends on the project design, so I do not treat every application as identical.
In a satellite control system, the valve may be installed as part of a fluid management or propulsion-related control path. Depending on the system, the controlled medium may be a gas or liquid. The valve can be used where the engineering team needs dependable flow-path control without relying on continuous actuation to maintain the selected valve state.
This point is important. A valve for a satellite is not selected only because it can open and close. I also look at what happens after the command is completed. Does the valve remain in the required position? Does the sealing arrangement match the medium? Can the valve integrate with the existing control system? Can the structure meet the available installation space? These questions are often more important than simply looking at the product name.
Our approach is therefore based on application requirements. For a commercial aerospace customer, I can discuss a standard configuration when it fits the project. If the application has special interfaces, unusual dimensions, specific materials, or special testing requirements, we can also develop a non-standard configuration around the customer's technical conditions.
Item
Typical Consideration
How I Handle It
Flow direction | Bidirectional fluid control | Confirmed according to the system flow path |
Locking function | Maintaining the required valve state | Defined according to control-system requirements |
Fluid medium | Gas or liquid depending on application | Selected according to actual medium properties |
Pressure and temperature | System-specific operating conditions | Confirmed during technical review |
Connection | Mechanical and fluid interfaces | Customized when required |
Source: Xi'an Huiyuan Instrument Valve Co., Ltd. company and product information supplied for this product page. Specific operating parameters must be confirmed against the final product drawing and technical specification.
I prefer to explain the working principle in plain language. The control system sends a command to the valve actuator. The actuator produces the required movement, and the internal valve mechanism changes the fluid passage between its defined states. Once the valve reaches the required position, the self-locking mechanism helps keep the valve in that state according to the designed structure.
The exact internal mechanism depends on the final engineering design. For this reason, I do not use one fixed internal structure to describe every Satellite Control System Bidirectional Self-Locking Valve. In aerospace projects, even a small change in interface, actuator arrangement, or sealing material can affect the final design.
A typical control sequence can be understood as:
The spacecraft control system sends an electrical command.
The valve receives the control signal through the specified interface.
The actuator drives the internal valve mechanism.
The flow passage changes to the required position.
The self-locking mechanism maintains the designed state.
The system continues operating without unnecessary continuous valve actuation.
In an actual project, I also consider the relationship between the valve and the rest of the system. The valve may need to work with sensors, controllers, pressure regulators, fluid lines, actuators, and test equipment. Good valve design is therefore not only about the valve body. It is about making the complete fluid control chain work together.
When customers ask me what makes this type of valve suitable for aerospace applications, I usually start with the application rather than making a long list of marketing claims. The following features are the areas I focus on during technical discussions.
The valve is designed for applications requiring control of fluid flow in two directions. This can be useful when the system architecture requires flexible fluid-path management or isolation.
The self-locking function is one of the main reasons to consider this valve structure. After reaching the required position, the valve is designed to maintain its state according to the specified mechanism. The exact holding method and operating conditions should always be confirmed in the technical specification.
Electrical control allows the valve to connect with an automated control system. This is particularly useful in spacecraft and test equipment, where remote commands and system-level control are often required.
I do not assume that a satellite valve should use the same configuration as a factory valve. Installation space, fluid compatibility, control interfaces, environmental conditions, and testing requirements can all affect the design.
Many high-end fluid control projects need something beyond a catalog product. Our long experience with special non-standard valves allows us to discuss customized structures and technical solutions for aerospace, commercial spaceflight, nuclear power, research institutes, and experimental systems.
Feature
Value in a Fluid Control System
Application Focus
Bidirectional control | Supports fluid-path management in two directions | Satellite and spacecraft systems |
Self-locking design | Helps maintain the required valve state | Controlled fluid isolation and switching |
Electrical actuation | Allows integration with control electronics | Automated control systems |
Custom engineering | Allows adaptation to special requirements | Aerospace and research projects |
Source: Xi'an Huiyuan Instrument Valve Co., Ltd. product and company information supplied by the manufacturer. Application descriptions are general engineering guidance and do not replace the final product specification.
Space hardware has a different working environment from ordinary factory equipment. Once a satellite is launched, access for repair is extremely limited or impossible. That changes the way I think about every fluid control component.
A valve may look small, but its job can be important. If a valve is used to isolate a fluid line, switch a flow path, or support a control sequence, its behavior can affect other parts of the system. That is why I pay attention to repeatable manufacturing, material selection, sealing, assembly, inspection, and testing.
I also avoid claiming that one valve automatically fits every satellite application. A valve designed for one medium or pressure range may not be appropriate for another. The correct selection depends on the actual operating environment and the system's technical requirements.
What fluid will pass through the valve?
What are the normal and maximum operating pressures?
What temperature range will the valve experience?
What are the required inlet and outlet interfaces?
What electrical control signal is available?
What valve position is required after actuation?
Is a self-locking function required for the application?
What are the leakage and testing requirements?
What installation space and weight limits apply?
What qualification or acceptance tests are required?
Once I have these details, I can make a much more useful recommendation than simply suggesting a generic aerospace valve.
The main application area for the Satellite Control System Bidirectional Self-Locking Valve is high-end fluid control. Based on our manufacturing experience, our valves and special non-standard fluid control products are used across aerospace, commercial spaceflight, nuclear power, shipbuilding, petrochemical systems, industrial automation, and research testing applications.
Industry
Potential Valve Application
Main Engineering Concern
Aerospace | Fluid control and system isolation | Reliability, sealing, environmental conditions |
Commercial spaceflight | Rocket and satellite fluid control systems | Project-specific performance and integration |
Nuclear power | Special fluid control and auxiliary systems | Safety, reliability and qualification requirements |
Shipbuilding | Fluid and pneumatic control systems | Medium compatibility and long-term operation |
Petrochemical | Automated fluid control | Medium, pressure, temperature and safety requirements |
Research institutes | Special test equipment and customized systems | Non-standard interfaces and test conditions |
Source: Xi'an Huiyuan Instrument Valve Co., Ltd. company information supplied for this page. The table describes application areas supported by the company's stated fluid-control business; actual product suitability requires project-specific technical confirmation.
For commercial aerospace projects, we can also discuss the valve as part of a wider fluid control solution. This is useful when the customer needs several related components or a customized testing system instead of a single off-the-shelf valve.
Manufacturing a high-end valve starts long before machining. In my experience, the most important part is understanding the application first. We review the customer's technical requirements, working medium, pressure and temperature conditions, connection requirements, control method, installation environment, and testing requirements.
After the technical requirements are confirmed, the manufacturing process can involve engineering design, material selection, precision machining, component inspection, cleaning, assembly, adjustment, performance testing, sealing inspection, and final quality inspection.
The exact process depends on the valve design. A standard product and a special non-standard aerospace valve should not be treated as the same thing. For a customized valve, we normally define the technical route according to the approved drawing and project requirements.
Before delivery, I expect the finished valve to go through the required inspection process. Depending on the product and contract, this may include appearance inspection, dimensional inspection, functional testing, sealing or leakage testing, and other specified tests.
Our company follows the quality policy of establishing and continuously improving a quality management system, developing high-quality products, and providing efficient technical services. We have also been recognized for quality and technical capabilities and have passed ISO9001:2015, CE, SIL3 mandatory safety, and 3C mandatory certifications for explosion-proof electrical equipment in the areas stated by the company.
I want to make one point clear: certification of a company or product family does not mean every individual valve automatically carries every certification. The applicable certification, testing, and documentation should be confirmed against the specific product and project contract.
If I were choosing a supplier for a critical fluid control project, I would look beyond the product catalog. I would want to know whether the supplier understands unusual requirements, can communicate with engineers, can support testing, and can stay involved when the project changes.
This is where Xi'an Huiyuan has built its experience.
Our company has been involved in fluid control for decades. We developed from the former Solenoid Valve Branch of Xi'an Instrument Factory and have continued to focus on valves and fluid control technology since our restructuring in 1994.
We have long worked on special non-standard products. For aerospace, commercial spaceflight, nuclear power, shipbuilding, military-related applications, and research institutes, we provide customized valve products and fluid control solutions based on actual system requirements.
I see technical communication as part of the product. If the customer has a special installation space, interface, fluid, control requirement, or testing condition, we can discuss the problem from the system level and work toward a suitable valve design.
Commercial aerospace is one of the areas we are actively developing. Our work includes core valves and fluid control systems adapted to commercial rockets and satellites, with the goal of supporting the rapid development of commercial spaceflight through reliable domestic fluid control technology.
Research projects often change during development. A test system may need a special valve size, interface, control mode, or working condition. Our experience with customized non-standard valves and testing system solutions allows us to support these projects with more flexibility.
The production cycle depends on the valve model, material, specification, quantity, customization level, and testing requirements. Standard products can normally be arranged for relatively quick delivery when stock or production capacity allows. Customized satellite valves require technical review and production according to the approved design and project schedule.
I recommend providing the valve application, fluid medium, working pressure, temperature range, flow requirement, connection type, control voltage or control method, required valve state, installation dimensions, quantity, and required testing or certification documents. If a drawing or existing valve sample is available, it is even better.
Yes. Our business includes special non-standard valves and customized fluid control solutions. For a satellite or aerospace project, the final design is confirmed according to the customer's technical requirements and approved engineering documents.
Our company has experience developing valves and fluid control systems for commercial rockets and satellites. However, suitability must be evaluated according to the specific spacecraft, fluid medium, pressure, temperature, control system, environmental conditions, and qualification requirements.
We conduct the required inspections before delivery. Depending on the contract and product specification, inspection can include appearance, dimensions, functional performance, sealing performance, and other agreed tests. The final acceptance standard is based on the approved technical documents and purchase contract.
Payment terms can be agreed according to the project and cooperation arrangement. Common arrangements may include an advance payment, payment before shipment, or other terms specified in the contract. The final payment method should be confirmed in the commercial contract.
We select packaging according to the valve size, weight, product structure, transportation method, and protection requirements. Packaging can include moisture-resistant and shock-resistant protection, with cartons, wooden cases, or pallets used where appropriate.
Depending on the delivery destination and project schedule, transportation can be arranged by express, logistics service, or dedicated freight service. For sensitive or high-value industrial products, I recommend confirming the packaging and transportation requirements before shipment.
Technical service is part of our business model. We can communicate with customers regarding product selection, technical requirements, installation-related questions, testing arrangements, and other project needs within the agreed scope.
I suggest looking at four things: relevant engineering experience, manufacturing capability, quality control, and technical service. For a high-end aerospace project, a supplier's ability to handle non-standard requirements can be just as important as its standard product range.
I do not believe there is one universal valve that is perfect for every spacecraft. A good satellite fluid control valve should be selected around the actual mission and system requirements.
The Satellite Control System Bidirectional Self-Locking Valve is intended for applications where bidirectional flow control, controlled actuation, and a self-locking function are important. It can be considered for satellite fluid control systems, commercial aerospace equipment, research test systems, and other demanding applications where ordinary industrial valve solutions may not be enough.
At Xi'an Huiyuan Instrument Valve Co., Ltd., I approach these projects from a fluid-control engineering perspective. We combine decades of valve experience with manufacturing, technical development, quality management, and customized non-standard product capability.
If you are developing a satellite, commercial rocket, aerospace test system, or another high-end fluid control project, send us your valve drawing, system requirements, or basic operating conditions. We can review the application and discuss a suitable valve configuration, technical specification, production schedule, inspection requirements, packaging, and delivery plan.
Xi'an Huiyuan Instrument Valve Co., Ltd. — reliable fluid control solutions for demanding engineering applications.
Category
Information
Product | Satellite Control System Bidirectional Self-Locking Valve |
Product type | Special fluid control valve |
Primary function | Bidirectional fluid control with self-locking function |
Application | Satellite, aerospace, commercial spaceflight and test systems |
Customization | Available according to project requirements |
Production cycle | Determined by model, specification, quantity and customization |
Inspection | Performance, sealing, appearance and other agreed inspections |
Packaging | Moisture-resistant and shock-resistant packaging; carton, wooden case or pallet as required |
Transportation | Express, logistics or dedicated freight according to project requirements |
Supplier | Xi'an Huiyuan Instrument Valve Co., Ltd. |
Source: Xi'an Huiyuan Instrument Valve Co., Ltd. company and product information supplied for this page. Technical values not publicly specified here should be confirmed through the product drawing, datasheet, technical agreement, and final inspection documents.
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