Ciena 130-1337-910 ISS1 DWDM Tran

Ciena 130-1337-910 ISS1 DWDM Tran
Ciena 130-1337-910 ISS1 DWDM Tran
The Ciena ISS1 DWDM Tran (part number 130-1337-910) is a high performance optical transceiver designed for dense wavelength division multiplexing (DWDM) networks. Engineered for reliability and low power consumption, this module delivers flexible, ca... Read More
price
$0.00
  • In Stock: 3
  • Manufacturer: Ciena
  • Model or Part: 130-1337-910
  • Condition: Refurbished
  • Weight: 1.00lb

Get a Price Quote

This Ciena 130-1337-910 is ready to ship from our partner network. Because market pricing on this part fluctuates, we want to ensure you get the lowest price possible. Enter your email address below and our team will get back to you with a custom quote.

United States Shipping
Orders over $200 qualify for Free Super-Saver Shipping! We ship at our discretion via the most cost-effective method using FedEx, UPS, or USPS.

To ensure your order is processed efficiently, all shipping charges must be pre-paid at checkout. We are unable to bill directly to third-party shipper accounts or use customer-provided labels for domestic shipments.
International Shipping
International orders begin processing as soon as payment is confirmed.

  • Pre-paid Shipping: For your convenience, you can select and pay for international shipping directly at checkout.
  • Carrier Accounts: Alternatively, we can bill transport costs directly to your FedEx account number. (Note: We cannot bill to DHL, TNT, or UPS accounts).
  • Customer Labels: We are also happy to ship internationally using pre-paid labels provided by you for any carrier.
Expedited and Rush Shipping
Need it faster? HardwareJet.com offers 1 or 2-day expedited shipping options during checkout for eligible items.

To get your order to the front of the line, expedited orders include a small rush fee in addition to the carrier's shipping charges. If an item is not available for expedited shipping, these options will not appear in your cart.

Item Condition

New - Sealed or Open Box Condition
Excellent - Almost-New, Missing Original Packaging
Refurbished - Seller Refurbished, Good Condition, Previously Used Item

To bring you an even wider selection, some of our items are shipped directly from our trusted partners. Delivery times may vary for these items.

Overview

The Ciena ISS1 DWDM Tran (part number 130-1337-910) is a high performance optical transceiver designed for dense wavelength division multiplexing (DWDM) networks. Engineered for reliability and low power consumption, this module delivers flexible, carrier grade connectivity across long haul and metro environments. Its compact form factor fits seamlessly into standard Ciena chassis, providing a cost effective upgrade path for existing infrastructure while supporting future bandwidth growth.

Key Features

  • Supports 100 Gbps and 200 Gbps data rates per wavelength
  • Compatible with Ciena 6500, 3900 and 3000 platform series
  • Low power consumption - less than 8 watts per module
  • Built in forward error correction (FEC) for enhanced signal integrity
  • Plug and play installation with hot swap capability
  • Extended temperature range from -5 degrees to 55 degrees Celsius
  • Robust mechanical design meets Telcordia GR-326 standards

Technical Specifications

  • Form factor: 2.5 inch x 1.5 inch x 0.6 inch (standard Ciena transceiver size)
  • Wavelength range: 1528 nm to 1565 nm (C band)
  • Channel spacing: 50 GHz or 100 GHz selectable
  • Optical output power: up to +5 dBm
  • Receiver sensitivity: -30 dBm (typical)
  • Connector type: LC duplex
  • Management interface: SNMP v2/v3, NETCONF, CLI
  • Power supply: 12 VDC, 0.7 A max

Applications

  • Long haul backbone links for service providers
  • Metro aggregation and transport networks
  • Data center interconnect (DCI) solutions
  • High capacity enterprise campus networks
  • Cloud and content delivery network (CDN) backbones
  • Carrier Ethernet and IP/MPLS transport

The ISS1 DWDM Tran from Ciena delivers the scalability and performance needed to meet today's bandwidth demands while providing a reliable platform for tomorrow's network expansions.