| Brand Name: | Gracyfiber |
The 1×64 PLC Fiber Optic Splitter is a passive optical component designed to distribute one optical input signal into 64 output channels. Based on Planar Lightwave Circuit (PLC) technology, it is suitable for high-port-count optical power distribution in FTTH, PON, telecom access, and other passive optical network applications.
1×64 Optical Splitting Configuration
One optical input is distributed to 64 output channels.
PLC Technology
Uses a planar waveguide structure for high-port-count optical power distribution.
Passive Optical Operation
Requires no external electrical power.
High-Density Fiber Distribution
Suitable for networks that require a large number of downstream optical branches.
Compact System Integration
Can be installed in optical distribution boxes, cabinets, frames, and communication equipment.
Flexible Configuration
Fiber type, connector, pigtail length, and package can be specified according to deployment requirements.
FTTH and FTTx networks
GPON and EPON systems
Optical Distribution Networks
Telecom access networks
Fiber distribution boxes
Fiber distribution frames
CATV optical distribution
Passive Optical Networks
Optical monitoring systems
High-density fiber distribution
1×64 means the splitter has one optical input and 64 optical outputs. The input optical power is distributed among the 64 output channels.
No. A PLC splitter divides optical power among multiple outputs, while a WDM device combines or separates signals according to wavelength.
No. It is a passive optical distribution device and does not increase data transmission speed.
No. The device operates passively and does not require an external electrical power supply.
Typical applications include FTTH, GPON, EPON, telecom access networks, optical distribution systems, and other passive fiber infrastructures requiring a high number of output branches.
A 1×64 configuration provides a single high-port-count optical distribution point, which can simplify network architecture where many downstream optical connections are required.
Yes. Fiber type, connector type, pigtail length, package format, and other structural parameters can be specified according to project requirements.
Typical parameters include operating wavelength, insertion loss, uniformity, return loss, PDL, directivity, fiber type, connector type, fiber length, package dimensions, and operating temperature.