$5,000,000+
Inventory Delivered By
Name:
In stock - Ready to Ship
$20,000.00
$9,081.0054.6% off
Quantity:
Business price:
3 Year Extended Warranty
Same-day Shipping
14-Day Money Back Guarantee
Shipping:
Payment:
3 Year Extended Warranty
Same-day Shipping
14-Day Money Back Guarantee
Need Additional Discount on Product?
Request a quote below - Get Exclusive Pricing and Support.
Shipping:
Payment:
DWDM-X2-35.04
DWDM X2 1535.04 nm X2 (100 GHz ITU grid)
TRUSTED, TRIED, PROVEN
Inventory Delivered By
& Verified By
Solutions Powered By
DWDM-X2-35.04 is a DWDM optical transceiver built in an SFP form factor that supports a 10G data rate. It features LC connectors and is designed for long-range communications over single-mode fiber, making it ideal for telecom networks and data center interconnects using Ethernet protocols.
DWDM-X2-35.04 offers a compact design with precise physical dimensions that facilitate easy integration into existing network infrastructures. Engineered to operate between 0 to 70°C with storage conditions from -40 to 85°C, this transceiver is compatible with major vendors including Cisco, Juniper, Huawei, and Arista, ensuring reliable performance in diverse enterprise environments.
DWDM-X2-35.04 price is $9,081.00, a 54.6% saving from the Cisco list price of $20,000.00. DWDM-X2-35.04 is in stock and available for next-day dispatch. (terms applied)
Request bulk order quote for DWDM-X2-35.04 for additional pricing. Browse the full Cisco X2 Module series or explore all Cisco products.
To get the detailed certification, please go to the Compliance Center.
| Product Type | Transceiver | Transceiver | Transceiver | Transceiver | Transceiver |
| Form Factor | SFP | SFP | X2 | SFP | X2 |
| Data Rate | 10G | 10G | 100G | 10G | 10G |
| Connector Type | LC | LC | LC | LC | LC |
| Wavelength | 1550 nm | 1550nm | 1550 nm | 1550 nm | 1550 nm |
| Transmission Distance | Long-Range | Long-Range | Long-Range | Long-Range | Long-Range |
| Fiber Type | Single-mode | Single-mode | Single-mode | Single-mode | Single-mode |
| Max Distance | 80 km | 80 km | 80 km | 80 km | 80 km |
| Supported Protocols | Ethernet | Ethernet, Fibre Channel | Ethernet, Fibre Channel | Ethernet, SONET/SDH | Ethernet, SONET/SDH |
| Network Interface | Fiber | Fiber | Fiber | Fiber | Fiber |
| Power Consumption | 3.3W | 3.5W | 8W | 1.5W | 3.5W |
| Operating Temperature | 0 to 70°C | 0 to 70°C | 0 to 70°C | 0 to 70°C | 0 to 70°C |
| Storage Temperature | -40 to 85°C | -40 to 85°C | -40 to 85°C | -40 to 85°C | -40 to 85°C |
| Input Voltage | 3.3V | 3.3V | 3.3V | 3.3V | 3.3V |
| Compatibility | Cisco / Juniper / Huawei / Arista | Cisco, Juniper, Huawei, Arista | Cisco, Juniper, Huawei, Arista | Cisco, Juniper, Huawei, Arista | Cisco, Juniper, Huawei, Arista |
| Product Name | DWDM-X2-35.04 | DWDM-X2-31.12 | DWDM-X2-55.75 | DWDM-X2-58.98 Optical Transceiver Module | DWDM-X2-32.68 |
| Height | 0.75 inches | 0.5 inches | 0.80 inches | 0.3 inches | 0.6 inches |
| Width | 0.55 inches | 0.8 inches | 2.00 inches | 0.8 inches | 0.8 inches |
| Depth | 0.65 inches | 1.5 inches | 1.50 inches | 1.5 inches | 2.7 inches |
| Weight | 0.20 lbs | 0.1 lbs | 0.20 lbs | 0.1 lbs | 0.2 lbs |
DWDM-X2-35.04 maintained accurate 1535.04nm channel alignment.
Strong 10G performance on the 100GHz ITU grid.
Integrated seamlessly into our X2-based platform.
Reliable optical output with steady throughput.
Dependable DWDM X2 module for metro transport.
Consistent latency and stable signal integrity.
High-quality X2 optic supporting wavelength expansion.
The DWDM-X2-35.04 is a dual-channel X2 transceiver operating at 1535.04 nm on a 100 GHz ITU grid for high-capacity dense wavelength division multiplexing networks.
The DWDM-X2-35.04 operates on ITU channel 35 (1535.04 nm) using a standard 100 GHz channel spacing for precise wavelength alignment.
This X2 module supports up to 10 Gbps per channel over single-mode fiber, with reach up to 80 km using standard SMF-28 fiber and optional amplification for longer links.
It requires single-mode fiber (ITU-T G.652) with duplex LC/APC connectors to ensure minimal insertion loss and optimized channel isolation.