DE5E5K2QLZDDU030M
EDGE8® MTP® Trunk 50 µm multimode (OM4), 8F MTP (pinned) Connector to 8F MTP (pinned) Connector, 192F, with 840 mm legs, pulling grip both sides, 30 m
Allgemeine Spezifikation
| Produktnummer | DE5E5K2QLZDDU030M |
| Faserkategorie | 50 µm MM (OM4) |
| Konfektionstyp | EDGE8® Trunk |
| Kabeltyp | Verbindungskabel |
Normen
| Brandverhalten | Cca, s1b, d1, a1 |
| RoHS | Frei von gefährlichen Substanzen gemäß RoHS 2011/65/EU |
| Design und Testkriterien | ANSI/ICEA S-83-596 |
| Kompatibilität | TIA/EIA-604-5 / TIA/EIA-604-5 |
Environmental Conditions
| Temperature Range, Installation | -5 °C bis 50 °C (23 °F bis 122 °F ) |
| Temperature Range, Operation | -10 °C bis 60 °C (14 °F bis 140 °F ) |
| Temperature Range, Storage | -25 °C bis 70 °C (-13 °F bis 158 °F ) |
Design
| Faseranzahl | 192 |
| Außenmantelmaterial | LSZH/FRNC |
| Fasertyp | Multimode |
Mechanische Eigenschaften
| Zugkraft | 440 N |
| Querdruckfestigkeit | 1000 N/10 cm |
| Min. Biegeradius, Installation | 240 mm |
| Min. Biegeradius, Betrieb | 80 mm |
Optical Characteristics
| Fiber Code | T |
| Performance Option Code | 98 |
| Fiber Category | OM4 |
| Fiber Type | Multimode |
| Fiber Name | 50 µm MM (OM4) |
| Maximum Attenuation | 2,8 dB/km / 1,0 dB/km |
| Wavelengths | 850 nm / 1300 nm |
| Fiber Compliance | IEC 60793-2-10 |
| Fiber Core Diameter | 50 µm |
| Cladding diameter | 125 µm |
| Coating diameter | 242 µm |
| Serial 1 Gigabit Ethernet | 1000 m / 600 m |
| Serial 10 Gigabit Ethernet | 550 m / - |
| Minimum Effective Modal Bandwidth (EMB) | 4700 MHz*km / - |
| Min. Overfilled Launch (OFL) Bandwidth | 3500 MHz*km / 500 MHz*km |
Specifications - Connector A
| Insertion Loss, Typical | 0.35 dB |
| Insertion Loss, Max. | 0.35 dB |
| Note: | *IL in preconnectorized products is measured in the factory through two mated pairs. |
| Tensile Strength Jacketed Cable | 44 N |
| Durability | ≤ 0.2 dB change, 200 rematings, FOTP-21 |
| Keyed (security) | No |
| Boot Color | Black |
| Connector Type | MTP® (pinned) |
| Ferrule Material | Composite |
| Housing Color | Aqua |
| Housing Material | Composite |
| Boot Type | Simplex |
| Reflectance | ≤ -20 dB |
Specifications - Connector B
| Insertion Loss, Typical | 0.35 dB |
| Insertion Loss, Max. | 0.35 dB |
| Note: | *IL in preconnectorized products is measured in the factory through two mated pairs. |
| Tensile Strength Jacketed Cable | 44 N |
| Durability | ≤ 0.2 dB change, 200 rematings, FOTP-21 |
| Keyed (security) | No |
| Knickschutztüllenfarbe | Schwarz |
| Steckertyp | MTP® (mit Pins) |
| Ferrulenmaterial | Kunststoff |
| Gehäusefarbe | Türkis |
| Gehäusematerial | Kunststoff |
| Rückflussdämpfung | ≤ -20 dB |
Furcation - Connector A
| Staggering Legs per Group | 6 |
| Leg Length | 840 mm -0 / +140mm |
| Leg Diameter | 2 mm |
| Staggering Increment | 100 mm |
| Shortest Staggering Leg Length (mm) | 840 mm |
| Plug Type | Heat Shrink |
| Leg Count | 24 |
| Plug Height | 15 mm |
| Plug Width | 15 mm |
| Plug Depth | 170 mm |
Furcation - Connector B
| Leg Diameter | 2 mm |
| Staggering Increment | 100 mm |
| Shortest Staggering Leg Length (mm) | 840 mm |
| Plug Type | Heat Shrink |
| Plug Height | 15 mm |
| Plug Width | 15 mm |
| Plug Depth | 170 mm |
| Staggering Legs per Group | 6 |
| Leg Length | 840 mm -0 / +140mm |
Einzugshilfe - Stecker A
| Einzugshilfe | Ja |
| Zugkraft | 440 N |
| Min. Rohr-/ Kabelkanaldurchmesser | 980 mm |
Einzugshilfe - Stecker B
| Einzugshilfe | Ja |
| Zugkraft | 660 N |
| Min. Rohr-/ Kabelkanaldurchmesser | 980 mm |
Abmessungen
| Länge | 30 m |
| Außendurchmesser | 15 mm |
Bestellinformationen
| Verpackung | Kunststoffspule |
| Packungsinhalt | 2x U-clip 2nd generation, test report |
| Stück pro Liefereinheit | 1/1 |
Snap-in strain-relief clips
Provide easier cable management
Low-loss connectivity
Enables system design flexibility
Small outer diameter
Improves cable tray fill ratio and allows for imported airflow
Bend-improved fiber
Allows tighter cable bends for slack storage and routing, less risk of downtime due to pinched or bent cables
Corning® CleanAdvantage™ technology and optimized dust cap
Eliminates the need for scoping and cleaning prior to initial field connection