Images
Mfr.Part #
In Stock
Manufacturer
Description
Package
1000610076 1000610076 Molex - Temp Flex CBL RIBN 6COND 0.01 500' Spool
1000570062 1000570062 Molex CBL RIBN 50 OHM 20 SIG 100' Spool
1000570344 1000570344 Molex - Temp Flex CBL RIBN 16COND 0.05 RED 500' Spool
1000570356 1000570356 Molex - Temp Flex CBL RIBN 20COND 0.05 GREEN 500' Spool
1000570359 1000570359 Molex - Temp Flex CBL RIBN 50COND 0.05 GREEN 500' Spool
1000570357 1000570357 Molex - Temp Flex CBL RIBN 26COND 0.05 GREEN 500' Spool
304-28-14-MC-0250F 304-28-14-MC-0250F CNC Tech CBL RIBN 14COND 0.05 MULTI 25' Spool
1000570352 1000570352 Molex - Temp Flex CBL RIBN 50COND 0.05 RED 500' Spool
1000570346 1000570346 Molex - Temp Flex CBL RIBN 24COND 0.05 RED 500' Spool
1000570351 1000570351 Molex - Temp Flex CBL RIBN 40COND 0.05 RED 500' Spool
304-28-26-MC-0250F 304-28-26-MC-0250F CNC Tech CBL RIBN 26COND 0.05 MULTI 50' Spool
1000570349 1000570349 Molex - Temp Flex CBL RIBN 34COND 0.05 RED 500' Spool
1000570350 1000570350 Molex - Temp Flex CBL RIBN 37COND 0.05 RED 500' Spool
HF625/14SF-100M HF625/14SF-100M 3M CBL RIBN 14COND 0.039 GRY 328.1' Spool
1000570331 1000570331 Molex - Temp Flex CBL RIBN 9COND 0.05 GRAY 100' Spool
1000570337 1000570337 Molex - Temp Flex CBL RIBN 40COND 0.05 GRAY 500' Spool
1000570336 1000570336 Molex - Temp Flex CBL RIBN 34COND 0.05 GRAY 500' Spool
1000570348 1000570348 Molex - Temp Flex CBL RIBN 26COND 0.05 RED 500' Spool
1000570157 1000570157 Molex - Temp Flex CBL RIBN 16COND 0.05 RED 500' Spool
1000570343 1000570343 Molex - Temp Flex CBL RIBN 14COND 0.05 RED 500' Spool

Flat Ribbon Cables

Flat Ribbon Cables have become a common wiring solution in industrial automation, electronic equipment, and other fields due to their compactness, flexibility, and reliability.

1. What are the Basic Structure of Flat Ribbon Cables?

Conductor: Usually composed of multiple parallel tinned soft copper wires, such as 7-stranded conductors, to improve conductivity and flexibility.

Insulation Layer: Made of materials such as soft PVC or FEP (fluorinated ethylene propylene), it is heat-resistant and oil-resistant, and can maintain the integrity of the insulation layer when torn.

Band Form: The conductors are arranged side by side in a flat form to form a "ribbon" structure, and high-density connectors can be connected at both ends to save equipment space.

 

2. What are the Core Features of Flat Ribbon Cables?

High Flexibility: It can be easily bent and curled, suitable for scenes that require frequent movement such as robotic arms and robots.

Anti-interference: Through twisted conductors and shielding design, electromagnetic interference is reduced, suitable for signal transmission.

 

Environmental Resistance: Some models support oil resistance and high-temperature resistance (such as environments below 80 °C).

 

3. Where are Flat Ribbon Cables Used?‌

‌Internal Wiring of Electronic Equipment‌: such as computer wiring, signal, and power connection in industrial control equipment‌.

‌High-speed Motion Equipment‌: used for power or signal transmission modules that need to be frequently moved in automation equipment‌.

 

Oil-resistant Environment‌: scenarios that need to be exposed to oil in automobiles or industrial machinery‌.

 

4. What are the Differences Compared to FFC (Flexible Flat Cable)?‌

‌Structural Difference‌: Flat Ribbon Cables are usually a flat arrangement of independent wires, and the outer material is mostly PVC or FEP; while FFC is thinner, with integrated conductors on a flexible substrate (such as polyimide), suitable for high-density connections‌.

‌Termination Method‌: Flat Ribbon Cables are commonly terminated with standard IDC (insulation displacement connector); FFC mostly uses ZIF (zero insertion force) connectors‌.

‌Application Focus‌: Flat Ribbon Cables are more used for medium and low-speed signal or power transmission; FFC tends to be more high-frequency, high-density scenarios (such as inside mobile devices)‌.

 

5. How to Choose Flat Ribbon Cables?‌

‌Conductor Quantity and Spacing‌: Select the number of conductors (such as 5 to 50 circuits) and spacing (such as 0.5mm and 1.0mm) according to the equipment requirements.

‌Environmental Adaptability‌: Parameters such as oil resistance and temperature resistance need to be considered‌.