Designed for Digital Print Systems: Purpose-built to handle dense data lines and maintain stable signal pathways in commercial printing hardware.
Extended 16-Inch Length: Ideal for wider carriage tracking systems or longer internal routing runs that require extra reach.
Superior Flex Life: Highly flexible architecture allows it to bend, fold, and travel smoothly back and forth without structural fatigue.
Reliable Connection: Slides easily into matching ZIF (Zero Insertion Force) or LIF slot connectors for rapid, secure maintenance.
Designed for Digital Print Systems: Purpose-built to handle dense data lines and maintain stable signal pathways in commercial printing hardware.
Extended 16-Inch Length: Ideal for wider carriage tracking systems or longer internal routing runs that require extra reach.
Superior Flex Life: Highly flexible architecture allows it to bend, fold, and travel smoothly back and forth without structural fatigue.
Reliable Connection: Slides easily into matching ZIF (Zero Insertion Force) or LIF slot connectors for rapid, secure maintenance.
| Parameter / Specification | Details |
| Product Name | Paper Cable / Flexible Flat Cable (FFC) |
| Component Type | Digital Printing Machine Spare Part |
| Number of Pins | 14 Pins |
| Cable Length | 16 Inches (Approx. 406 mm) |
| Insulation Material | Industrial-grade PET Film |
Here is an e-commerce-ready product description for your 16-inch version, along with an updated specifications table.
Keep your commercial printing equipment running smoothly with this premium Paper Cable 14-Pin 16-Inch Flexible Flat Cable (FFC). Specifically designed as a high-durability replacement spare part for digital printing machines, this flat ribbon cable ensures flawless high-speed data and signal transmission between the mainboard, printhead carriage assemblies, or internal sensors.
Engineered with a robust PET insulation film and ultra-thin tinned copper conductors, its extra-long 16-inch planar design allows for clean, unhindered movement along the printer's tracks and tight internal pathways.
