Description
EMT-EP100 er probes is a state-of-the-art device designed specifically for accurate and reliable monitoring of corrosion rates in high-pressure industrial environments. This model is particularly tailored for environments where extreme conditions prevail, making it a vital tool for maintaining the integrity and efficiency of critical infrastructure.
1. Order Information
Access Fitting Body
| Model | ||||||
| EMT-CIPA | Access Fitting Body of ER Probes Assembly | |||||
| – The material of Access Fitting Body | ||||||
| 0 | CS | |||||
| 1 | 316SS | |||||
| 2 | 316LSS | |||||
| 3 | DUPLEX SS | |||||
| The Type of Access Fitting Body | ||||||
| B | 2″Welded(suffix “pressure rating” can be added to B) | |||||
| F | 2″ANSI Flange(suffix “pressure rating & sealing type” can be added to F) | |||||
| -Tee Size- pressure rating & sealing type if flanged end | ||||||
| 0 | No Tee | |||||
| 1 | 1/4″NPT(F)Tee | |||||
| 2 | 1/2″NPT(F)Tee | |||||
| 3 | 3/4″NPT(F)Tee | |||||
| 4 | 1″NPT(F)Tee | |||||
| 5 | Hole for 1/4″SWN Flange | |||||
| 6 | Hole for 1/2″SWN Flange | |||||
| 7 | Hole for 3/4″SWN Flange | |||||
| 8 | Hole for 1″SWN Flange | |||||
| -Protective Cover Type/ Material | ||||||
| 0 | No Protective Cover | Material | ||||
| 1 | Without hole | CS or 0 | ||||
| 2 | With hole | SS or 1 | ||||
| 3 | Bleed Valve | DSS or 3 | ||||
| 4 | Bleed Valve, & Pressure Gauge | |||||
| For Example:EMT-CIPA-0F600#RF-0-2/CS shows 2″ANSI 600#RF Flange Access Fitting Body in CS, no Tee, Protective Cover in CS with hole 0F600#RF: 0F_ Access Fitting Body is Flanged in CS , 600#RF _Size is 2″ANSI 600#RF , 0:No Tee 2: Protective cover with 1/2NPT(F) hole /CS: Protective cove material in CS | ||||||

Cylindrical ER Probes
| Model | |||||||||||
| EP100 | Cylindrical ER Probes | ||||||||||
| -Code | Body Material | ||||||||||
| -B | 1 | 316 SS | |||||||||
| 2 | 316L SS | ||||||||||
| 3 | DUPLEX SS | ||||||||||
| 4 | INCONEL | ||||||||||
| -Code | Connector Type | ||||||||||
| -C | 1 | Standard connector | |||||||||
| 2 | Meet user requirements connector | ||||||||||
| -Code | ER Element Useful Thickness Options | ||||||||||
| -T | 10 | 10 mil thickness (5 mil useful probe life) | |||||||||
| 20 | 20 mil thickness (10 mil useful probe life) | ||||||||||
| 50 | 50 mil thickness (25 mil useful probe life) | ||||||||||
| Code | ER Probe Shield Options | ||||||||||
| -S | 0 | No shield DUPLEX SS INCONEL | |||||||||
| 1 | Standard shield | ||||||||||
| 2 | Hi-velocity shield | ||||||||||
| Code | Element Alloy Material | ||||||||||
| -xxx | Code | Probe Characteristic Length | |||||||||
| -xxx | mm | ||||||||||
| For Example:EP100-B1-C1-T20-S0-A105-358 EP100 : Cylindrical Electrical Resistance Corrosion Probe B1: Body Material is 316SS C1: Connector Type: Standard connector T20: ER Element is 20 mil thickness (10 mil useful probe life) S0: No shield A105: Element Alloy Material is A105 358:Probe length is 358mm | |||||||||||
2. Robust Material Construction

Constructed from premium materials such as 316 SS, 316L SS, Duplex Stainless Steel (DSS), and INCONEL, the EMT-EP100 is capable of withstanding a wide range of operational temperatures from -200℃ to 450℃ and pressures up to 45 MPa. Its robust design includes a fully welded structure that enhances its resistance to harsh environmental conditions. It ensures that the probe remains reliable over time and under stress.
3. Advanced Sensing and Sealing Technology
The probe assembly features an extension rod that houses the sensitive measuring element. Which is crucial for the detection and measurement of corrosion rates through electrical resistance methodology. The element is connected to a threaded seat that facilitates secure attachment and a high degree of seal integrity. To further enhance its durability and performance, the interface end of the probe is sealed using a high-temperature glass sintering process. This process ensures that the seal is impervious to thermal and pressure-induced stresses, providing a consistent and reliable barrier against potential leaks.
4. Easy Installation and Maintenance
The design of the probe prioritizes versatility and ease of integration, making it highly suitable for a variety of industrial applications. It features a straightforward connection mechanism involving a hollow plug, a probe nut, and a sealing ring. Which together form a secure and robust assembly. This design allows for the probe to be easily installed into or retrieved from an existing system without the necessity for process shutdown. This capability is extremely valuable in industries where continuous operation is critical.
In sectors like oil and gas production, chemical manufacturing, and power generation, minimizing downtime is essential not only for maintaining productivity but also for ensuring economic efficiency and safety. The ability to quickly and efficiently install or replace the probe without interrupting the workflow is a significant advantage. It reduces the risk of costly production halts and helps maintain a steady output, which is crucial in high-demand scenarios.
5. Protective Features for Enhanced Durability
The optional protective cap is a vital part of the EMT-EP100 ER Probe, designed to boost the probe’s durability and ensure reliable measurements in tough conditions. This cap protects the probe’s sensitive components from dangers like fine dust, harsh chemicals, and physical impacts during use.
Made from durable materials that suit the probe’s environment, the cap prevents chemical and temperature damage. This protection is essential in harsh settings like chemical plants or oil refineries. By keeping harmful substances away from the probe’s sensors, the cap maintains the accuracy of the data collected, resulting in dependable corrosion rate measurements.
Furthermore, the protective cap plays a significant role in shielding the probe from mechanical damage. During the insertion or retrieval of the probe from high-pressure lines, the risk of physical impact is significant. The cap absorbs shocks and impacts that could otherwise damage the probe’s delicate components. Such as the electrical resistance wires and seals. This not only extends the lifespan of the probe but also minimizes maintenance costs and operational downtime.


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