3300 XL 8 mm Probe, 3/8-24 UNF thread, without armor
Marca :
Bently NevadaNúmero da peça :
330101-00-84-20-02-CNPeso :
0.1kgDimensão :
1.6x1.4x112cmPaís de origem :
USACódigo SH :
8537101190Descrição :
Proximity Probe
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Frida |
Siming District, Xiamen, Fujian, China |
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Specification
Base Part Number: 330101 (3300 XL 8 mm Probe, 3/8-24 UNF thread, without armor)
Unthreaded Length (Option AA): 00 = 0.0 inches.
Overall Case Length (Option BB): 84 = 8.4 inches.
Total Probe Length (Option CC): 20 = 2.0 meters (6.6 feet).
Connector and Cable-Type Option (DD): 02 = Miniature coaxial ClickLoc connector, standard cable.
Agency Approval Option (EE): Superseded by Regional Suffix.
Special Suffix: -CN = Configuration for the Chinese Market.
Probe Tip Diameter: 8.0 mm (0.31 in)
Wrench Flats: 5/16 inch (for installation tool)
Lock Nut Supplied: 9/16 inch hex lock nut.
Operating Temperature Range: -52°C to +177°C (-62°F to +350°F).
Product FAQ
Q: We need to install this long (8.4-inch) probe through a thick casing and a sleeve. The total threaded engagement available is 1.0 inch, which exceeds the specified maximum of 0.563 inches. Can we still use it if we only hand-tighten it to avoid binding?
Q:This long probe will be installed in a vertical orientation, hanging down into a hot area. Should we be concerned about the weight of the long metal body causing sag or stress on the mounting threads, especially at high temperature?
A: No, you should not use it if full engagement would exceed 0.563 inches, even if hand-tight. The maximum thread engagement is a geometric limit to prevent binding due to thread tolerances and alignment, not just a torque limit. Engaging beyond this depth risks the threads jamming or galling, potentially making the probe impossible to remove without destruction.
A: While the probe is robust, the long cantilevered weight (especially with a 8.4-inch body) is a consideration.
At Room Temperature: The stainless steel case is stiff, and sag should be minimal if properly mounted. The primary stress is shear on the engaged threads.
At High Temperature (up to 177°C): Metal strength decreases. The main risk is not sag affecting measurement, but potential fatigue or stress on the threads over many thermal cycles if the probe is inadequately supported.
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