Description
The Banner Engineering IT210S is a glass fiber optic sensing cable designed for opposed and reflective photoelectric applications. It features an in-line beam exit and a 3-meter fiber length for flexible routing in industrial systems. The assembly includes a threaded brass sensing tip and stainless steel monocoil sheathing for mechanical durability.
Technical Specifications
| Condition |
New/Never Used Surplus |
| Brand |
Banner Engineering |
| Category |
Sensors & Switches |
| Part Number |
IT210S |
| Subcategory |
Fiber Optic Cable |
| Series |
IT Series |
| Fiber Optic Type |
Glass |
| Sensing Mode |
Opposed / Reflective |
| Beam Exit |
In-line |
| Fiber Length |
3 m |
| Core Diameter |
3.2 mm |
| Minimum Bend Radius |
25 mm |
| Sensing End Material |
Brass |
| Fiber Sheathing Material |
Stainless Steel Monocoil |
| Sensing End Size |
#5/16-24 Thread |
| Housing Style |
Round |
| Termination |
Terminated |
| Maximum Operating Temperature |
249°C |
| Weight |
273 g |
Information About IT210S
The IT210S is part of the Banner Engineering IT Series fiber optic components, developed for use with compatible fiber optic amplifiers. It utilizes a glass fiber core with a 3.2 mm diameter to transmit light between the amplifier and sensing point. The sensing end includes a #5/16-24 threaded brass tip for secure mounting in industrial equipment. Its stainless steel monocoil jacket provides protection against mechanical stress while allowing a minimum bend radius of 25 mm.
Key Features:
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Glass fiber construction: Provides stable light transmission for photoelectric sensing.
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In-line beam exit: Supports straight-through sensing configurations.
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3-meter fiber length: Allows flexible installation and routing.
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Threaded brass sensing tip: #5/16-24 thread for secure mounting.
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Stainless steel monocoil jacket: Protects against abrasion and vibration.
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High temperature capability: Rated for operation up to 249°C.
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Compact round housing style: Suitable for confined industrial installations.
The IT210S delivers the reliability and precision required for industrial fiber optic sensing applications.