SC To ST OM4 Fiber Patch Cable Multimode Simplex 0.9mm 2.0mm 3.0mm Patch Cord
1. Adopting high precision ceramic insert with small concentricity error and bore diameter to provide better insertion loss and return loss to avoid degradation of transmission performance and damage to optical transceiver devices.
2. Adopt advanced grinding technology and grinding equipment to ensure that the surface of the fiber is free of scratches and defects, the fiber's circular grinding offset, the depression of the fiber and the radius of curvature of the ceramic end face The technical parameters such as the optical fiber surface is free of scratches and defects, the optical fiber circular grinding offset, the optical fiber depression and the ceramic end curvature radius are in accordance with the specified standards.
3. All components are optically tested and tested in accordance with ROHS standards.
4. Comply with ANSI / TIA / EIA and ISO / IEC requirements for durability, moisture resistance, coupling stress, fiber tensile force and adaptability to harsh environments such as humidity, temperature extremes, insertion and removal forces and cable tensile stress, impact and vibration.
5. Low insertion loss, high return loss, good interchangeability, excellent repetitive plugging performance and ease of use.
6. Operating temperature (-40℃~+75℃), storage temperature (-40℃~+85℃).
Range of Mode | Single mode or Multi mode |
Cable Type | Simplex, Duplex Ziocord. or Multi-cores |
Connector Style | SC, FC, ST, LC, MTRJ, E2000, MU, MPO /MTP.etc |
Polish or Ferrule Interface Type | PC, UPC, APC |
Cable Diameter | 0.9mm, 1.2mm, 1.6mm, 1.8mm,2.0mm, 3.0mm |
Outer Jacket | PVC /LSZH/OFNP |
Jacket Color | SM Yellow | OM1, OM2 Orange | OM3 Aqua | OM4 Aqua or Violet | OM5 Lemon Green |
Durability | 500 cycles(0.2 dB max increase). 1000mate/de mate cycles |
Operating Temp. | -25℃ to +70℃ |
Storage Temp. | -40℃ to +85℃ |
Connector Type | Performance Level | |||||
Standard | Elite | |||||
Connector | Mode | Endface | IL(dB) | RL(dB) | IL(dB) | RL(dB) |
LC/SC/FC/ST | SM | PC | ≤0.2 | ≥50 | ≤0.15 | ≥50 |
UPC | ≤0.2 | ≥55 | ≤0.15 | ≥55 | ||
APC | ≤0.2 | ≥60 | ≤0.15 | ≥60 | ||
MM | PC | ≤0.2 | ≥35 | ≤0.15 | ≥35 | |
MPO/MTP | SM | APC | ≤0.7 | ≥60 | ≤0.35 | ≥60 |
MM | PC | ≤0.5 | ≥20 | ≤0.35 | ≥20 | |
MTRJ | SM | PC | ≤0.5 | ≥50 | / | / |
MM | PC | ≤0.5 | ≥35 | / | / |
Fiber optic patch cord is one of most commonly used components in fiber optic network. Fiber optic patch cords sometimes is also called fiber optic jumper or fiber optic patch cables. Generally there are two types of fiber optic patch cords: single mode fiber optic patch cords and multimode fiber optic patch cords. Here the word mode means the transmitting mode of the fiber optic light in the fiber optic cable core. usually single mode fiber optic patch cord are with 9/125 fiber glass and is yellow jacket color, multimode fiber optic patch cord are with 50/125 or 62.5/125 fiber glass and is orange color.
Fiber optic patch cord are used for linking the equipment and components in the fiber optic network, they are with various kinds of fiber optic connector types. The fiber optic patch cord types are classified by the fiber optic connector types, for example, we name FC fiber optic patch cord because this cable is with FC fiber optic connectors. There are also E2000 fiber optic patch cord, SC fiber optic patch cord, ST fiber optic patch cord, LC fiber optic jumper, MU fiber optic jumper, MTRJ fiber optic jumper, SMA fiber optic jumper, MPO fiber patch cable, DIN fiber patch cable, FDDI fiber patch cable, etc; there are PC, UPC, type fiber patch cord, they are different because of the polish of fiber connectors.
Fiber optic patch cord are with various kinds of cables, PVC, Riser, Plenum, OFNR, OFNP, LSZH (LSOH), 10 Gig Aqua, there are simplex fiber optic patch cord and duplex fiber optic patch cord and multi fiber cable assemblies, and there are ribbon fan out fiber cable assemblies and bundle fiber optic cable assemblies. Typical fiber optic patch cord cable diameter can be 0.9mm, 2mm, or 3mm.
Each cable has strain relief boots to prolong and maintain performance levels of the assembly, transmit and receive legs of each duplex cable are identified by means of ring type cable marker fixed to each end the assembly. A short distance from these identification rings heat shrink is applied to maintain an easy t