Allicdata Part #: | WM10032-ND |
Manufacturer Part#: |
21039-0339 |
Price: | $ 0.00 |
Product Category: | Cable Assemblies |
Manufacturer: | Molex, LLC |
Short Description: | CABLE FFC 18POS 1.00MM 4" |
More Detail: | 18 Position FFC, FPC Cable 0.039" (1.00mm) 4.000" ... |
DataSheet: | 21039-0339 Datasheet/PDF |
Quantity: | 1000 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
1 +: | 0.00000 |
Series: | Premo-Flex™ 21039 |
Part Status: | Obsolete |
Lead Free Status / RoHS Status: | -- |
Cable Type: | FFC, FPC |
Moisture Sensitivity Level (MSL): | -- |
Number of Conductors: | 18 |
Pitch: | 0.039" (1.00mm) |
Length: | 4.000" (101.60mm) |
Length - Exposed Ends: | 0.157" (4.00mm) |
Termination Style: | Top on Both Sides, Backers on Both Sides |
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Flat Flex and Ribbon Jumper Cables are commonly found in the 21039-0339 application field. These cables are used for short to medium runs of low-voltage, low-current signals within a device or between two or more devices.
Flat Flex Cables (or FFC) are flat cables made up of parallel insulated conducting paths, which are separated by a thin insulating material - typically polyimide, nylon, or teflon. These cables feature high flexibility, which makes them particularly beneficial for applications that involve frequent, tight-radius bending. The conducting paths on a flat flex cable are generally made from stranded copper wire, aluminum foil, or copper foil.
Ribbon Jumper Cables are similar to FFCs, but have their conductors arranged in a parallel linear pattern. Each conductor is insulated by a thin dielectric material. The dielectric material helps to reduce crosstalk between the cables, and it also minimizes signal reflections that can occur due to impedance mismatch. Ribbon Jumper Cables typically feature flat connectors on either end, which allows for easy connection and disconnection. The flat connectors are made up of metal contacts which make electrical contact with the conductors on the cable.
The 21039-0339 application field typically requires cables with superior electrical performance and signal integrity. To meet this requirement, both FFCs and Ribbon Jumper Cables feature a variety of shielding techniques. The shielding materials used can range from aluminum-Mylar tape, braided stranded copper, and FO-FEC. Additionally, some cables are also designed to be shielded in both directions, making them even more resilient to noise issues.
The versatility of FFCs and Ribbon Jumper Cables ensures that they can be used in a wide array of application fields. They are commonly used for signal transmissions in smartphones, tablets, computers, and other consumer electronics devices, as well as in other applications such as CCTV cameras, industrial automation, and aerospace systems. The superior electrical performance and signal integrity make these types of cables ideal for application fields requiring high reliability.
The working principle behind Flat Flex and Ribbon Jumper Cables is relatively simple. The cables consist of two parallel conductors separated by a thin dielectric material. When connected, the conductors enable electrical current to flow freely between the connected devices. This allows for efficient data transmission between two or more devices, while maintaining signal integrity.
The conductors on the cable are generally made from stranded copper wire, aluminum foil, or copper foil. The type of material used will depend on the application, as each material has its own unique characteristics. Generally copper is used for higher speed and power transmissions, while aluminum and copper foil are used for lower speed applications. The thin dielectric material helps to reduce crosstalk, and it also helps to ensure signal integrity by minimizing reflections that can occur due to impedance mismatch.
Flat Flex and Ribbon Jumper Cables are a widely used type of cable, and they are found in countless applications. They are easy to install, they have excellent electrical properties, and they feature superior signal integrity, making them ideal for a wide range of applications. They are especially useful in the 21039-0339 application field, as they provide reliable and efficient signal transmission with minimal interference.
The specific data is subject to PDF, and the above content is for reference
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