
330708-00-10-50-02-00 11 mm Armored Proximity Sensor Installation Guide
Product Introduction
The Bently Nevada 330708-00-10-50-02-00 is part of the 330700 series. It is a 5/8-18 UNF threaded proximity probe. This probe offers a 1.0-inch case length. It includes a standard 5.0-meter cable. The 330708-00-10-50-02-00 uses a ClickLoc connector for secure attachment. This connector ensures a reliable connection in harsh environments. It is an armored design. The probe tip uses Polyphenylene sulfide (PPS) material. The case is AISI 304 stainless steel. This probe provides a signal output of 1–10 V DC. The measurement span reaches up to 30 mm. It is a non-contact vibration monitor. The target is often a shaft or rotating component. The Bently Nevada 330708-00-10-50-02-00 ensures accurate readings. It works within a wide temperature range.
Core Value
The core value of the 330708-00-10-50-02-00 is durability. It provides reliable measurement in extreme conditions. The wide operating temperature range handles -52 °C to +177 °C. The Viton O-ring seal offers differential pressure protection. Users depend on this probe for critical machinery protection. It monitors vibration and position effectively. The armored cable prevents damage during installation. The design protects against abrasion and fluids. This probe reduces unplanned downtime. It provides consistent output for predictive maintenance. The 330708-00-10-50-02-00 integrates with standard monitoring systems. It supports efficient asset management.
Technical Insights
The 330708-00-10-50-02-00 utilizes a 75 Ω triaxial cable. The cable uses FEP insulation for high-temperature resistance. It has a specific DC resistance of 5.9 Ω per meter. The cable bend radius has a minimum of 25.4 mm. This ensures signal integrity. The mechanical configuration is specific. The "00" denotes no unthreaded section. The "10" indicates a 1.0-inch case length. The "50" refers to a 5.0-meter cable length. The "02" specifies the standard ClickLoc connector. The final "00" means it has no agency approvals. The recommended installation torque is 133 in·lb. The maximum torque should not exceed 400 in·lb. The connector torque must be finger-tight. It must not exceed 5 in·lb. This avoids over-tightening. The output is a linear voltage range. It provides high resolution for shaft monitoring.
Installation & Maintenance
Start by drilling a hole. Tap it to 5/8-18 UNF thread. Ensure the hole depth is correct. The max thread depth is 0.938 inches. Screw the 330708-00-10-50-02-00 into the hole. Tighten it to the recommended torque. Use a torque tool for accuracy. Avoid applying excessive stress on the cable. Secure the ClickLoc connector. Ensure it is fully seated. Periodically check the cable condition. Look for signs of wear or physical damage. Make sure the connector remains tight. Vibration can loosen connections over time. Clean the probe face regularly. Remove debris or buildup. This maintains measurement accuracy. Inspect the O-ring seal. Verify the seal integrity during maintenance. It prevents fluid ingress.

Buyer’s Guide FAQ
What are the main components of the 330708-00-10-50-02-00 probe?
The Bently Nevada 330708-00-10-50-02-00 includes a probe tip, a stainless steel case, and a 5.0 m triaxial cable. It also has a ClickLoc connector for termination.
What temperature range does the 330708-00-10-50-02-00 handle?
This model operates across a temperature range of -52 °C to +177 °C. This allows use in many industrial environments and processes.
How do I install the 330708-00-10-50-02-00 correctly?
Installation requires drilling a 5/8-18 UNF hole. Carefully thread the probe into place and torque it to 133 in·lb. Secure the ClickLoc connector firmly.
What type of connector does the 330708-00-10-50-02-00 use?
It uses the ClickLoc connector system. This provides a positive lock mechanism compared to standard connectors, ensuring long-term connection reliability.
What is the output signal for the 330708-00-10-50-02-00?
The 330708-00-10-50-02-00 provides a voltage signal from 1 to 10 V DC. The specific scaling depends on the proximity and the connected driver system.











