Specification Brand : Yumyotor BulletPoint : 250W Plate-Mtd Attenuat BulletPoint1 : 5dB LC/APC Male to Female Singlemode Fiber Attenuator BulletPoint2 : 1260nm to 1620nm Wavelength Singlemode Attenuators BulletPoint3 : Precision Polishing for Reduced Back Reflection BulletPoint4 : High Precision Fiber Optic Ceramic Ferrules BulletPoint5 : Snap in Body for Fast Mating and De-matin Color : As Shown ConnectivityTechnology : Auxiliary ConnectorGender : Male-to-Female ConnectorType : Auxiliary ExternallyAssignedProductIdentifier : 4711449273974 ExternallyAssignedProductIdentifier1 : 792136198644 ExternallyAssignedProductIdentifier2 : 0792136198644 FinishType : Silver IncludedComponents : Fiber Attenuator IndoorOutdoorUsage1 : outdoor IndoorOutdoorUsage2 : indoor ItemName : 5Pcs LC Fiber Attenuator 5dB, LC/APC Singlemode Fixed Fiber Optic Attenuator Male-Female ItemPackageDimensions_Height : 0.4 inches ItemPackageDimensions_Length : 5.1 inches ItemPackageDimensions_Width : 3.2 inches ItemPackageQuantity : 1 ItemShape : Round ItemTypeKeyword : fiber-optic-attenuators Manufacturer : Yumyotor Material : ceramic ModelName : 500375035 ModelNumber : LC-A-5dB NumberOfItems : 5 NumberOfPorts : 1 PartNumber : LC-A-5dB ProductDescription : 5dB LC/APC Male to Female Singlemode Fiber Attenuator, Fixed Type As optical passive devices, The attenuators are mainly used in fiber optic to debug optical power performance & optical instrument calibration correction & fiber signal attenuation to ensure the optical power in a stable and desired level in the link without any changes on its original transmission wave.
Signal Attenuation Provides Optical Transmission Security Fiber optic attenuators can reduce the power level of an optical signal. They are often combined with an active system component to maintain a desired signal strength in fiber network.
Guarantee Long-range Transmission with Accurate Attenuation The attenuators are built with metal-ion doped optical fiber which can provide stable 5dB attenuation levels as to prevent optical overload at the receiver.