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Mfr.Part #
In Stock
Manufacturer
Description
Package
1000570239 1000570239 Molex CBL RIBN 24COND 0.05 NAT 150' Spool
09180287005 09180287005 HARTING CBL RIBN 28COND 0.05 MULT 100' Bulk
1000570180 1000570180 Molex CBL RIBN 30COND 0.039 BLUE 100' Spool
302-28-10-GR-0250F 302-28-10-GR-0250F CNC Tech CBL RIBN 10COND 0.05 GRAY 25' Spool
1000570292 1000570292 Molex CBL RIBN 64COND 0.025 NAT 100' Spool
1000570271 1000570271 Molex CBL RIBN 60COND 0.025 NAT 100' Spool
1000570091 1000570091 Molex CBL RIBN 8COND 0.1 BLUE 100' Spool
1000570095 1000570095 Molex CBL RIBN 10COND 0.05 MULT 100' Spool
1000570264 1000570264 Molex CBL RIBN 34COND 0.025 NAT 100' Spool
1000570452 1000570452 Molex CBL RIBN 9COND 0.05 NATURAL 100' Spool
1000570133 1000570133 Molex CBL RIBN 40COND 0.05 BLUE 100' Spool
1000570205 1000570205 Molex CBL RIBN 50COND 0.05 BLUE 100' Spool
1000570449 1000570449 Molex CBL RIBN 44COND 050 BLU Bulk
1000570243 1000570243 Molex CBL RIBN 26COND 0.05 NAT 150' Spool
1000570482 1000570482 28884 Molex CBL RIBN 15COND 050 26AWG Bulk
09180247004 09180247004 13916 HARTING CBL RIBN 24COND 0.05 GRAY 328.1' Bulk
09180347004 09180347004 29003 HARTING CBL RIBN 34COND 0.05 GRAY 328.1' Bulk
1000570076 1000570076 19143 Molex CBL RIBN 10COND 0.05 NAT 100' Spool
09180267004 09180267004 27581 HARTING CBL RIBN 26COND 0.05 GRAY 328.1' Bulk
1000570161 1000570161 35505 Molex CBL RIBN 20COND 0.039 BLUE 100' 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.