12F OM5 MPO Jumper cable
The OM5 12-core MPO Jumper cable is a high-density pre-terminated fiber assembly with precision polished MPO male/female connectors and tight-buffered fiber inner structure, available in SM, OM3, OM4, OM5 fiber grades. Manufactured under Telcordia GR-1221 industrial standards, it features low insertion loss, stable repeatability and LSZH/OFNR/OFNP outer jackets for diversified deployment environments. Single-mode supports 40G–1.6T transmission; multimode fibers only sustain 40G/100G short-reach links. OM5 covers 850–950nm SWDM waveband and backward compatible with legacy multimode cabling. Rated for indoor cabinet, IDC equipment room and enterprise computer room use, it resists bending and abrasion. This compact jumper optimizes rack wiring density, shortens construction cycles, and fits QSFP switch interconnection, medium-density trunk cabling and multi-wavelength network upgrading projects.
All of FDC’s MPO Connectors are from Senko/Nissin/Sumitomo/high cost-performance China Local Brand. At the same time,FDC‘s MPO cable are available with fiber brands of Corning,YOFC,Fiberhome, Jfiber,Fiberhome,ZTT,etc. LSZH,OFNP,OFNR Jacket material…
Description
MPO Connector Types
| Connector | Fiber Channel |
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| MPO Female Connectors | 12 Fibers |
| Note: Female connector need to connect with male connector type. | |
MPO products’ Details& Standard:
| Connector | Reference | Housing Details |
| MPO Single Mode | IEC 61754-7 | SM APC: Green connectors+black boot (Standard Loss MPO)
SM APC: Yellow connectors+black boot (Super low loss MPO) |
| MPO Multimode | IEC 61754-7 | OM1&OM2 PC: Beige connectors+black boot (Standard Loss MPO)
OM3&OM4 PC: Aqua connectors+black boot (Standard&Super low loss MPO) OM3&OM4 PC: Heather Violet connectors+black boot (Standard loss MPO) |
- Meets IEC Standard IEC-61754-7;IEC61755, Telcordia GR-1435-CORE, JIS C5982; TIA-604-5(FOCIS5) compliant
- Structured cabling per TIA-568-C
- 10G Fiber Channel Compliant
- 40G and 100G IEEE 802.3
Cable Parameters-12/24F Microfiber cable

| Fiber Count | OD(mm) | Minimum allowable
Tensile Strength (N) |
minimum allowable
Crush Load(N/100mm) |
Minimum Bending
Radius(MM) |
| 12 | 2.0±0.15
&3.0±0.15 |
Short-term: 150;
Long-term: 80 |
Short-term: 500;
Long-term: 150 |
Static:10D
Dynamic:20D |
Optical Specification:
| Spec items. | Single mode (APC 8-degree polished) | Multimode (PC Flat polish) |
| Insertion loss (MPO)
(IEC 61300-3-34) |
Standard loss:≤0.75dB(max), ≤0.35dB(Typical)
Super Low loss:≤0.35dB(max), ≤0.20dB(Typical) |
Standard loss:≤0.6dB(max), ≤0.35(Typical)
Super Low loss:≤0.35dB(max) , ≤0.20dB(Typical) |
| Return loss(MPO) | ≥60dB(8degree polishing) | ≥25dB |
| Durability | <0.3dBtypical change, 200 matings | |
| Interchangeability | ≤0.2dB | |
| Tensile strength | >70N | |
| Operating Temperature | -40 to + 85°C | |
3D Interference Index
| Item (IEC-61300-3-30) | Minimum | Maximum | ||
| Radius of curvature (mm) | ROC-X(ABS) | 2000 | \ | |
| ROC-Y(ABS) | 50mm | \ | ||
| Angle | Angle-X | -0.2° | -0.2° | |
| Angle-Y | APC | 7.85° | 8.15° | |
| PC | -0.2° | -0.2° | ||
| Fiber height (nm) | 1000nm | 3500nm | ||
| Max.DH.All Fiber: | -300nm | 300nm | ||
| DH.Adj: | -300nm | 300nm | ||
| DH.Ave Fiber: | -300nm | 300nm | ||
| Core Dip: | SM | N/A | N/A | |
| MM | -200nm | 300nm | ||
Pre-terminated MPO Technology-Polarity
12F MPO:

Length Tolerance

| Overall Length(L)(m) | length of tolerance(cm) |
| 0<L<1 | +5/-0 |
| 1<L<10 | +10/-0 |
| 10<L<40 | +15/-0 |
| 40<L | +0.5% x L/-0 |
Application
Application:
12F OM5 Wideband Multimode MPO Patch Cord
Bandwidth: Offers 4700 MHz·km bandwidth at 850nm and covers a wide wavelength band of 850–950nm, specially designed for SWDM4 multi-wavelength transmission, fully backward compatible with OM3 and OM4 systems.
Transmission Rate & Reach: Supports 40G SR4 up to 150m, 40G SWDM4 up to 440m, 100G SR4 / SWDM4 up to 150m, 400G SR4.2 up to 150m, and 800G SR8 up to 100m, delivering the best 800G short-reach performance among multimode fibers.
Application Scenarios: Perfect for next-generation high-speed data centers, AI computing clusters, and SWDM-based multi-wavelength network systems. It supports network upgrade while being compatible with existing legacy multimode cabling to save project costs.











