LANmark-OF MPO-MPO Pre-Term OFNP Method B APAC

Products

LANmark-OF METHOD B MPO/M-MPO/M Pre-Term MM OM3 12c OFNP xxxM Aqua

Nexans ref. N145.BU12LPxxx-PA

  • 光纤类型: OM3 50/125
  • 光纤数: 12
  • 最大插入损耗,dB: 0.35 dB
  • 最小回波损耗,dB: 20 dB
  • 最大安装拉力: 450 N

 

LANmark-OF METHOD B MPO/M-MPO/M Pre-Term MM OM3 24c OFNP xxxM Aqua

Nexans ref. N145.BU24LPxxx-PA

  • 光纤类型: OM3 50/125
  • 光纤数: 24
  • 最大插入损耗,dB: 0.35 dB
  • 最小回波损耗,dB: 20 dB
  • 最大安装拉力: 660 N

 

LANmark-OF METHOD B MPO/M-MPO/M Pre-Term MM OM3 48c OFNP xxxM Aqua

Nexans ref. N145.BU48LPxxx-PA

  • 光纤类型: OM3 50/125
  • 光纤数: 48
  • 最大插入损耗,dB: 0.35 dB
  • 最小回波损耗,dB: 20 dB
  • 最大安装拉力: 660 N

 

LANmark-OF METHOD B MPO/M-MPO/M Pre-Term MM OM3 96c OFNP xxxM Aqua Pulling eye one side

Nexans ref. N145.BU96LAxxx-PA

  • 光纤类型: OM3 50/125
  • 光纤数: 96
  • 最大插入损耗,dB: 0.35 dB
  • 最小回波损耗,dB: 20 dB
  • 最大安装拉力: 1000 N

 

LANmark-OF METHOD B MPO/M-MPO/M Pre-Term MM OM4 12c OFNP xxxM Aqua

Nexans ref. N147.BU12LPxxx-PA

  • 光纤类型: OM4 50/125
  • 光纤数: 12
  • 最大插入损耗,dB: 0.35 dB
  • 最小回波损耗,dB: 20 dB
  • 最大安装拉力: 450 N

 

LANmark-OF METHOD B MPO/M-MPO/M Pre-Term MM OM4 12c Ultra low loss OFNP xxxM Aqua

Nexans ref. N147.BU12UAxxx-PA

  • 光纤类型: OM4 50/125
  • 光纤数: 12
  • 最大插入损耗,dB: 0.25 dB
  • 最小回波损耗,dB: 27 dB
  • 最大安装拉力: 450 N

 

LANmark-OF METHOD B MPO/M-MPO/M Pre-Term MM OM4 24c OFNP xxxM Aqua

Nexans ref. N147.BU24LPxxx-PA

  • 光纤类型: OM4 50/125
  • 光纤数: 24
  • 最大插入损耗,dB: 0.35 dB
  • 最小回波损耗,dB: 20 dB
  • 最大安装拉力: 660 N

 

LANmark-OF METHOD B MPO/M-MPO/M Pre-Term MM OM4 24c Ultra low loss OFNP xxxM Aqua

Nexans ref. N147.BU24UPxxx-PA

  • 光纤类型: OM4 50/125
  • 光纤数: 24
  • 最大插入损耗,dB: 0.25 dB
  • 最小回波损耗,dB: 27 dB
  • 最大安装拉力: 660 N

 

LANmark-OF METHOD B MPO/M-MPO/M Pre-Term MM OM4 48c OFNP xxxM Aqua

Nexans ref. N147.BU48LPxxx-PA

  • 光纤类型: OM4 50/125
  • 光纤数: 48
  • 最大插入损耗,dB: 0.35 dB
  • 最小回波损耗,dB: 20 dB
  • 最大安装拉力: 660 N

 

LANmark-OF METHOD B MPO/M-MPO/M Pre-Term MM OM4 96c OFNP xxxM Aqua pulling eye one side

Nexans ref. N147.BU96LAxxx-PA

  • 光纤类型: OM4 50/125
  • 光纤数: 96
  • 最大插入损耗,dB: 0.35 dB
  • 最小回波损耗,dB: 20 dB
  • 最大安装拉力: 1000 N

 

LANmark-OF METHOD B MPO/M-MPO/M Pre-Term SM OS2 G.657.A1 12c OFNP xxxM Yellow

Nexans ref. N144.BU12SPxxx-PY

  • 光纤类型: SM (G657.A1)
  • 光纤数: 12
  • 最大插入损耗,dB: 0.75 dB
  • 最小回波损耗,dB: 45 dB
  • 最大安装拉力: 450 N

 

LANmark-OF METHOD B MPO/M-MPO/M Pre-Term SM OS2 G.657.A1 12c Ultra Low loss OFNP xxxM Yellow - copy

Nexans ref. N144.BU12UAxxx-PY

  • 光纤类型: SM (G657.A1)
  • 光纤数: 12
  • 最大插入损耗,dB: 0.35 dB
  • 最小回波损耗,dB: 65 dB
  • 最大安装拉力: 660 N

 

LANmark-OF METHOD B MPO/M-MPO/M Pre-Term SM OS2 G.657.A1 24c OFNP xxxM Yellow

Nexans ref. N144.BU24SPxxx-PY

  • 光纤类型: SM (G657.A1)
  • 光纤数: 24
  • 最大插入损耗,dB: 0.75 dB
  • 最小回波损耗,dB: 45 dB
  • 最大安装拉力: 660 N

 

LANmark-OF METHOD B MPO/M-MPO/M Pre-Term SM OS2 G.657.A1 24c Ultra Low loss OFNP xxxM Yellow

Nexans ref. N144.BU24UPxxx-PY

  • 光纤类型: SM (G657.A1)
  • 光纤数: 24
  • 最大插入损耗,dB: 0.35 dB
  • 最小回波损耗,dB: 65 dB
  • 最大安装拉力: 660 N

 

LANmark-OF METHOD B MPO/M-MPO/M Pre-Term SM OS2 G.657.A1 48c OFNP xxxM Yellow

Nexans ref. N144.BU48SPxxx-PY

  • 光纤类型: SM (G657.A1)
  • 光纤数: 48
  • 最大插入损耗,dB: 0.75 dB
  • 最小回波损耗,dB: 45 dB
  • 最大安装拉力: 660 N

 

LANmark-OF METHOD B MPO/M-MPO/M Pre-Term SM OS2 G.657.A1 96c OFNP xxxM Yellow pulling eye one side

Nexans ref. N144.BU96SAxxx-PY

  • 光纤类型: SM (G657.A1)
  • 光纤数: 96
  • 最大插入损耗,dB: 0.75 dB
  • 最小回波损耗,dB: 45 dB
  • 最大安装拉力: 1000 N

 

Description

Description

Standards

  • International
    ISO/IEC 11801

Pre-Term for data centres, buildings and campus based on Micro-Bundle.

The cable has a small diameter and bend raduis to meet data centre requirements.

Fire performance

The cables have been tested for fire performance according to Planum rated, providing a very high fire performance with minimal fire load and can be used in air flow space.

MPO-MPO Pre-Term characteristics

The MPO-MPO Pre-Term has standard pinned (male) connectors. This matches with the un-pinned (female) connectors in the female Plug&Play modules.

In order to reduce overlengths in data centers the Pre-Terms are custom made and available with 1m increments. The "xxx" in the N-number is the length in metre between the cable glands, i.e. the Pre-Term length between the back side of the patch panels.

After the cable gland the Pre-Term has a fan-out. The fan-out splits the cable into tubes. The tubes are reinforced with aramid yarns. At the end of each tube a MPO-connectors is mounted. The jacket of the tube is the same colour as the cable jacket. Close to the MPO-connector a label is installed to identify the number of the leg.

Pre-terminated MPO fibre cable can be ordered separately with a removable pulling eye for fast deployment onsite. The pulling eye provides minimum 450N installation tension. High crush resistant pulling eye is also available with a high strength protection tube. The removable pulling eye can be quickly detached after installation and can be reinstalled, reducing construction waste and making it more suitable for sustainable environmental protection. Prefabricated pulling eye is also available with the MPO pre-term. The detachable pulling eye with corrugrated tube can be ordered using PN N890.100HP.

The MPO-MPO Pre-Terms come with a PG-13 cable gland that fits into the LANmark-OF ENSPACE and Plug&Play patch panel slots.

Optical Performance and Polarity

The insertion loss for a multimode the MPO-MPO connection has Ultra Low Loss performance: typical insertion loss is 0,2 dB with a maximum of 0,35 dB insertion loss.

The typical insertion loss for a singlemode the MPO-MPO connection  is 0,5 dB with a maximum of 0,75 dB insertion loss.

The insertion loss of a MPO-MPO connection is measured according to standard IEC61300-3-45.

The minimum return loss for a multimode MPO connection is 20 dB . The minimum return loss for a singlemode MPO connection is 45 dB. The measurement is according to IEC 61300-3-6.

MPO cable standard is METHOD B. Other common standards recognized by ISO/IEC 11801 and TIA 568 standards are available, such
as METHOD A, METHOD B, METHOD C, etc.

Characteristics

Characteristics

机械特性

机械特性

机械耐冲击性能
10次冲击/ 3N.M
耐挤压 (IEC 794-1-E3)
100 N/cm

使用特性

使用特性

操作温度范围
-20 ... 60 °C
最小弯曲半径 - 静态(XD)
10
最小弯曲半径 - 动态
20 (xD)

Resources

Resources

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