Description: Feature:1. Product Usage: The pen type visual fault locator is specifically designed and maintained for optical cables and circuits, locate defects on wires and cables, search for fiber breakage and equipment with defects in optical cables.2. 2.5mm Connector: This fiber optic tester has a 2.5mm universal connector designed specifically for ST, SC, FC, LC interference with circular and square shapes of different fiber optic cables, with a wide range of applications.3. Non Contact: This fiber optic test pen adopts a non contact connection, which does not damage the end of the fiber and transmitter, and the output power is not affected by voltage fluctuations, improving measurement efficiency.4. Aluminum Alloy Body: The fiber optic tester is made of aluminum alloy material, impact and oxidation resistance, has good dustproof effect. The grounding design of the shell effectively prevents damage.5. Wide Application: This visual fault locator is lightweight and portable, with stable output power. Suitable for CATV telecommunications engineering maintenance, comprehensive cabling system fiber optic engineering, optical measurement drive engineering, etc. Specification: Item Type: Fiber Optic Test PenModel: AUA-80Output Optical Power: >80mWOutput Wavelength: 650nm±10nmFiber Adapter: 2.5mm Universal ConnectorOperating Temperature: 0-60℃Storage Temperature: -20-70℃Battery Type: 2 x AA Alkaline Battery (not included)
Price: 19.96 USD
Location: Shenzhen
End Time: 2024-09-21T10:30:12.000Z
Shipping Cost: 0 USD
Product Images
Item Specifics
Restocking Fee: No
Return shipping will be paid by: Seller
All returns accepted: Returns Accepted
Item must be returned within: 30 Days
Refund will be given as: Money Back
Battery Type: 2 x AA Alkaline Battery (not included)
Brand: Unbranded
Fiber Adapter: 2.5mm Universal Connector
Item Type: Fiber Optic Test Pen
Model: AUA-80
MPN: Does not apply
Operating Temperature: 0-60℃
Optical Interface(s): SC, FC, LC, ST
Output Power: >80mW
Storage Temperature: -20-70℃
Wavelength(s): 650nm±10nm