Why Choose OMSS Instrument Ferrule
- 15+ Years of Instrument Ferrule Manufacturing
- 100% dimensional inspection for critical parts
- Advanced CNC machining centers ensure consistent ferrule deformation performance.
- Provide ferrule selection support and tube fitting assembly guidance
- Custom ferrules based on drawings or samples
OMSS—Your Reliable Instrument Ferrule Manufacturer
OMSS specializes in producing precision instrument ferrules for tube gripping and leak-tight connections.
As a one-stop supplier of instrumentation components, we support customers with high-quality ferrules that can be applied to various tube fitting assemblies.
Today, our instrument ferrules are trusted by 300+ customers worldwide in various areas, including oil and gas, semiconductor manufacturing, etc. If you have any requirements, just contact us.
Types of Instrument Ferrule

Composed of a large seal sleeve. Serves as both a sealing element and a clamping element, typically used in lower-pressure, lightweight industrial applications.

The front seal sleeve is used to form a seal, and the rear seal sleeve is used to clamp the pipe and resist vibration. Ideal for high-pressure environments.

Can “bite into” the pipe to form a mechanical lock, suitable for stainless steel or copper pipes.
Features of OMSS Instrument Ferrule

With a chemically hardened leading edge to “bite” into harder tubing materials for a superior mechanical hold.

Precision-machined to ensure a perfectly smooth fluid path, preventing sample entrapment or “peak broadening” in sensitive analyses.

Offers excellent general-purpose resistance to erosion and corrosion. Ideal for corrosive environments.

Can resist severe forces, with some specialized high-pressure variants rated up to 20,000 psi.

Axial compression design, which guarantees that no torque is transmitted to the tubing during installation, preventing harm to the tube wall.

Can be electropolished to a very smooth finish (Ra ≤ 0.4 µm), allowing for effective Clean-in-Place (CIP) sterilization.
Well Leak-Tight Sealing Performance
In OMSS instrument double-ferrule assemblies, the front ferrule is pressed into the conical seat of the pipe body, forming a high-pressure metal-to-metal main seal that provides a dual seal with the pipe body and the pipe surface.
The rear ferrule that is pushed by the nut deforms to “bite” or grip the pipe, providing vibration resistance, preventing the main seal from shifting. This provides a gas-tight interface, which can resist thermal cycling.


High-Precision CNC Machining
OMSS instrument ferrules use multi-axis automated lathes, which operate according to pre-set tool paths, with the accuracy error controlled within ±0.005 millimeters.
By employing high-speed carbide and a constant-pressure cooling method, we make sure that the critical sealing cone surfaces have a mirror-like surface finish. So each connector can perfectly match the geometric shape of the connector body and provide a uniform compression effect during installation.
Excellent Vibration Resistance
OMSS instrument ferrules apply a mechanical “hinging and fixation” mechanism, separating the system stress from the main sealing component.
The front sealing sleeve maintains an airtight interface, while the rear sealing sleeve is designed to slightly deform and grip the pipe material behind the sealing point, functioning as a functional shock absorber. This design prevents high-frequency vibrations from being transmitted to the sealing surface, eliminating the small movements that typically cause fatigue failure or leakage.

Applications of Instrument Ferrule

In fluid and gas system applications, our instrument ferrules can be used in compression tube fitting assemblies to connect pipes in high-pressure environments.
Instrument ferrules can be applied to the inlet end of heat exchanger tubes or are frequently used in heavy machinery in the agricultural and construction fields to drive motion through pressurized fluids.

OMSS instrument ferrules are also perfect for chemical processing applications. They help ensure the safe transportation of hazardous or corrosive chemicals and guarantee that seals are tightly sealed to prevent leakage and environmental pollution.

Some instrument ferrules are specifically designed for high-precision scientific instruments to maintain the integrity of the samples. They can be used to provide a seal between the analytical column and the injector or detector to prevent air leakage and thus avoid affecting the experimental results or to fix the tubes in the high-pressure liquid path.
Semiconductor manufacturing requires ultra-high purity gases and chemical delivery systems. So the high-precision ferrules are commonly used for chemical supply systems or ultra-clean instrumentation tubing. They can ensure no leakage and pollution control.

Precise instrument ferrules are ideal for surgical instruments and diagnostic equipment applications. They help you ensure reliable connections in environments with extremely high precision requirements.

In power plants, instrument ferrules are widely used for boiler instrumentation, steam pressure monitoring, and turbine control systems. They help achieve reliable pipeline connections under high-temperature and high-pressure conditions.
- Certificate of Compliance
Customer Reviews
Typically, metal instrument ferrules cannot be reused because once a metal ferrule is compressed (swaged) onto a tube, it permanently deforms the tubing. While you can sometimes retighten a fitting, moving the ferrule to a new tube is not possible.
Soft instrument ferrules are reusable in laboratory settings because they are malleable and do not “bite” into the material.
We don’t recommend. Instrument ferrules from different manufacturers have different dimensions, material hardness, and thread pitches. Mixing brands can lead to unpredictable sealing performance and may void safety warranties
This depends on the application. 304 stainless steel instrument ferrules are suitable for common industrial environments. 304L stainless steel instrument ferrules are always applied in conventional industrial corrosion and outdoor atmospheric environments without strong acid or alkali erosion. 316L stainless steel instrument ferrules have low carbon content, and they are better for welding or corrosion environments.
Typically, polymer instrument ferrules don’t “spoil,” but they can suffer from Cold Flow (permanent deformation under constant pressure) or become brittle if exposed to UV light or ozone over many years. So, it is recommended for you to store them in sealed, dark bags.
Yes, you can use instrument ferrules on plastic tubing, but this needs an internal insert (a small metal or plastic sleeve) to support the inside of the tube. Otherwise, the ferrule will simply collapse the soft plastic tubing instead of compressing against it to create a seal.
The stainless steel Instrument ferrules cannot be mixed with brass fittings because their hardness is different. A steel ferrule will likely crush a brass fitting or fail to “bite” correctly, leading to leaks. Besides, when two dissimilar metals touch in the presence of moisture, they can create a small electrical circuit that accelerates corrosion, eventually failing the joint.
What Is an Instrument Ferrule?
An instrument ferrule is a high-precision conical sleeve. It forms a leak-free mechanical connection between the pipe material and the main body of the accessory through a compression seal.
Whether it is a single-component or a dual-component structure, our ferrules can be stably fixed to the pipe through a nut, causing the metal or polymer to deform. This forms a pressure-resistant, vacuum-tight, and highly vibrating airtight metal-to-metal interface.
As the main sealing and clamping element, OMSS instrument ferrules have achieved safe and non-welding transitional connections in key fluid, gas, and analytical systems in industries such as oil and gas, aerospace, and laboratory science.
Why Do You Need an Instrument Ferrule?
Fluid Leakage
Without a properly instrument ferrule, tube fittings cannot create a reliable compression seal, which may result in fluid or gas leakage, especially in high-pressure instrumentation systems. This will lead to pressure loss and unstable system operation.
Tubing Slippage or Pull-Out
Instrument ferrules are used to grip the tubing securely inside the fitting. Without them, the tubing may slip or pull out under pressure, leading to connection failure.
Tubing Damage
Instrument ferrules help distribute compression forces evenly around the tubing. Without ferrules, excessive tightening may deform or damage the tubing, affecting system integrity, and you have to spend time and money changing new tubing.
Maintenance and Downtime
Unstable pipeline connections may lead to frequent leaks and maintenance work, increasing the maintenance workload and causing unexpected downtime, which largely affects production efficiency.
Safety Risks
In high-pressure industrial environments such as oil & gas or chemical plants, leaking connections can create serious safety hazards, such as dangerous medium leakage, operational risk, and environmental pollution.
How to Install an Instrument Ferrule?
To properly install an instrument ferrule, you can follow these 5 steps:
1. Preparation
First, you need to cut the tube, remove all internal and external burrs, and wipe the tube end to remove any metal shavings, grease, or dirt.
2. Component Orientation
Then, you can slide the components onto the tube in the order of nut, back ferrule, and front ferrule.
3. Seating and Finger-Tightening
Insert the tube into the fitting body until it bottoms out firmly against the internal shoulder, and slide the ferrules and nut forward and thread the nut onto the body until it is finger-tight.
4. Clamping
You can then use a pen to mark the nut position. For tubes 1/4″ (6 mm) and larger, you need to tighten 1-1/4 turns from finger-tight. For tubes of 1/16″, 1/8″, and 3/16″, you need to tighten 3/4 of a turn from finger-tight.
5. Inspection
If you use the instrument ferrules for critical applications, it’s recommended that you use a Gap Inspection Gauge to inspect if the fitting has been sufficiently swaged.
How to Choose the Right Instrument Ferrule?
Choosing the right instrument ferrule requires comprehensive consideration of factors such as system pressure, temperature, and chemical compatibility to ensure a safe and long-lasting seal.
For analytical laboratory environments such as gas chromatography (GC) or high-performance liquid chromatography (HPLC), you can choose polymers or graphite sleeves (such as polyetheretherketone or Verpol) that are typically used to maintain chemical inertness and to be able to withstand frequent thermal cycles without contaminating the samples.
For industrial applications with high pressure or high vibration, the stainless steel double-ferrule system is the preferred choice for you because it has mechanical “bite” and leak-tight integrity. OMSS always provides high-precision instrument ferrules made from stainless steels, including 304, 304L, and 316L.
The material for the instrument ferrule must be softer than or compatible with the pipe material to be able to be securely crimped. The size must also strictly conform to the specifications of the accessory manufacturer to avoid catastrophic failures.
If you are still not sure which kind of instrument ferrule to choose, you can contact us, and our professional group will give you the best advice.
Single Ferrule vs Double Ferrule: What’s the Difference?
| Feature | Single Ferrule | Double Ferrule |
| Structure | One ferrule to compress the tubing and create the seal | Two ferrules: a front ferrule for sealing and a back ferrule for tube grip |
| Sealing Mechanism | A single ferrule performs sealing and gripping functions | The front ferrule creates the seal, and the back ferrule provides mechanical grip |
| Tube Protection | Higher risk of tubing deformation or damage during tightening | Better protection for tubing due to controlled deformation |
| Sealing Reliability | Suitable for moderate-pressure applications | Provides more reliable leak-tight sealing in demanding systems |
| Resistance to Vibration | Moderate resistance to vibration | Excellent vibration resistance |
| Installation | Simple design with fewer components | More complex, but provides more stable performance |
| Typical Applications | General fluid systems, low- to medium-pressure applications | Instrumentation systems, high-pressure and critical applications |
| Industry Usage | Common in basic compression fittings | Widely used in instrumentation and precision fluid systems |
In most instrumentation systems, double ferrule designs are preferred because they provide more reliable sealing, better tube protection, and improved resistance to vibration.















