Vacuum Valve
| Cat | Products Name | Key Features | Price |
|---|---|---|---|
| VPC-VV-021 | Vacuum Valve ISO-F-Pneumatic-DN500-0.5 | Cost Effective; 0.5Bar Limit; DN500 Large Scale | |
| VPC-VV-022 | Vacuum Valve ISO-F-Pneumatic-DN1250-0.5 | Massive Bore; 0.5Bar Rated; DN1250 Chamber Ready | |
| VPC-VV-023 | Vacuum Valve ISO-F-Pneumatic-DN1000-0.5 | Industrial Strength; 0.5Bar Max; DN1000 Coating Line | |
| VPC-VV-024 | Vacuum Valve ISO-F-Pneumatic-DN800-0.5 | Robust Sealing; 0.5Bar Spec; DN800 Oven Fit | |
| VPC-VV-025 | Vacuum Valve ISO-F-Pneumatic-DN630-0.5 | Reliable Piston; 0.5Bar Limit; DN630 Mid-Size | |
| VPC-VV-026 | Vacuum Valve ISO-F-Pneumatic-DN500-1.0 | High Pressure; 1Bar Rated; DN500 Tough Env | |
| VPC-VV-027 | Vacuum Valve CF-ISO-F-Manual-DN400 | Direct Hand Wheel; Zero Power; DN400 Simple Op | |
| VPC-VV-028 | Vacuum Valve CF-ISO-F-Manual-DN320 | Manual Override; Maintenance Friendly; DN320 Static Seal | |
| VPC-VV-029 | Vacuum Valve CF-ISO-F-Manual-DN250 | Economical Choice; Easy Grip; DN250 Reliable Close | |
| VPC-VV-030 | Vacuum Valve CF-ISO-F-Manual-DN200 | Mechanical Precision; No Air Needed; DN200 Lab Use |
High-Performance Vacuum Isolation & Control Valves
The operational stability of a vacuum system is fundamentally dependent on the hermeticity and reliability of its flow control components. AIMRSE specializes in precision-engineered vacuum valves designed to provide absolute gas-phase isolation across pressure regimes spanning from atmosphere to Extremely High Vacuum (XHV). Our valves utilize advanced bellows-sealed architectures to eliminate dynamic O-ring dependencies, ensuring zero atmospheric back-diffusion and extended cycle life in the most demanding process environments.
Engineered for seamless integration into semiconductor tools, particle accelerators, and UHV research platforms, our valve portfolio focuses on the optimization of molecular flow conductance and the mitigation of particulate generation. By utilizing high-purity 316LN stainless steel and specialized elastomeric or metal-to-metal sealing technologies, AIMRSE valves provide the critical barriers necessary to maintain process purity, even during high-temperature bakeout cycles or exposure to corrosive precursor gases.
Consult Our Hardware Engineers
Discuss your specific conductance requirements, actuation speeds, and material compatibility with our senior vacuum specialists.
Advanced Sealing Mechanics & Conductance Engineering
Bellows-Sealed Hermetic Barriers
To achieve leak rates below $10^{-10}$ mbar·l/s, AIMRSE isolation valves utilize AM350 or 316L stainless steel nested bellows. This architecture provides a robust, flexible hermetic barrier between the actuator mechanics and the vacuum volume, eliminating the risk of lubricant migration or atmospheric permeation associated with traditional shaft seals. The bellows are designed for high-cycle fatigue resistance, ensuring consistent performance over millions of operations.
Conductance-Limited Flow Optimization
In the molecular flow regime, the effective pumping speed of a system is severely impacted by the geometry of its valves. AIMRSE gate and angle valves are engineered with maximized orifice diameters and optimized internal contours to minimize flow impedance. By using finite element analysis to streamline the gas path, we ensure that the system achieves the highest possible effective conductance, critical for rapid pump-down and stable process pressure control.
All-Metal UHV Sealing Principles
For XHV applications where elastomer outgassing is unacceptable, our all-metal leak and isolation valves utilize the elastic-plastic deformation of OFHC (Oxygen-Free High-Conductivity) copper against a hardened stainless steel knife-edge. This ensures a metal-to-metal seal that remains hermetic at pressures down to $10^{-12}$ mbar and survives repeated high-temperature bakeout cycles up to $450^{\circ}$C without compromising the vacuum integrity.
The Advantages of AIMRSE
Engineered for extreme hermeticity and superior industrial duty cycles.
UHV Integrity
Verified helium leak rates of $< 1 \times 10^{-10}$ mbar·l/s, ensuring absolute vacuum stability for UHV/XHV environments.
High Cycle Reliability
Bellows-sealed actuators designed for over 1 million trouble-free operations in automated industrial fab lines.
Low Particle Emission
Optimized internal mechanisms and Class 100 cleanroom cleaning protocols minimize particulate contamination during actuation.
Bakeout Capability
Metal-sealed models support sustained thermal processing up to $450^{\circ}$C, essential for degassing UHV chambers.
Standards & Metallurgical Compliance
The mechanical and metrological integrity of AIMRSE vacuum valves is strictly governed by authoritative global industrial standards. All flange interfaces comply with ISO 1609 (Vacuum technology — Flange dimensions) and ISO 2861. Every valve undergoes 100% helium mass spectrometer leak testing in accordance with EN 13185. Our manufacturing workflows are fully audited under ISO 9001:2015, with material traceability verified against NIST-linked benchmarks. Furthermore, our semiconductor-grade valves meet SEMI S2 guidelines, ensuring unimpeachable performance and safety for critical cleanroom and hazardous gas processing applications.
Technical FAQ
What is the difference between a gate valve and an angle valve in terms of conductance?
Why are bellows-sealed actuators preferred for UHV over dynamic O-ring seals?
Are AIMRSE valves compatible with high-temperature bakeout processes?
Related Products
Note: Our vacuum equipment is for research and industrial testing only. Industrial-grade components are fully rated for field deployment.
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