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Product category: Boards and Backplanes
News Release from: In2Connect | Subject: Advanced Flexible Circuits
Edited by the Electronicstalk Editorial Team on 31 March 2006

US flexible circuits are supported in
the UK

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UK design engineers have new local contact point for rigid-flex and flexible circuit specialist Advanced Flexible Circuits of the USA.

Flexible printed circuits were designed as a space and weight saving replacement for traditional cabling and connectors in point-to-point interconnections There are primarily four types of flexible circuit - single-sided, double sided, multilayer and rigid-flex

The lack of mechanical connectors and elimination of manual wiring in an integrated circuit reduce wiring errors and greatly increase signal quality and impedance, and the circuit fits into spaces that no standard cable and connector harness would.

The circuit laminate for plated-through-hole and multilayer boards is generally constructed from woven glass reinforced epoxy resin with electrodeposited copper foil tracks in thicknesses of 18 microns (half-ounce) and track spacing from 0.005 to 0.002in.

Flame retardant FR4 (IPC4101/21) or high temperature FR4 (IPC4101/24/26/28) laminates are the mainstay of the printed circuit industry.

Single-sided circuits are normally specified for dynamic flexing applications such as printers, disk drives and internal laptop to screen wiring.

Such AFC products have reliably undergone 500 million flex cycles without failure.

Double-sided and multilayer circuits are used in relatively static applications where increased circuit density is required.

Rigid-flex types combine elements of flexible circuitry with rigid boards, almost entirely negating the use of mechanical connectors, and are great for motor vehicle dashboard cluster wiring, handheld communication devices etc, especially those requiring strain free bonding of SMT devices.

These hybrid hard board/flex circuits can have up to 20 layers of flex interconnects, sandwiched between rigid outer layers.

Vibrations and shocks that would crack rigid PCBs have little or no effect on flexi circuits.

The base material on which the signal circuits are plated will dictate the temperature range for a given integrated circuit.

To ensure higher yields and customer satisfaction, AFC design engineers, quality, and manufacturing teams work with the client to assess the thermal, mechanical and environmental situation so as to offer the optimum materials, construction, solderability and cost for a given task.

The AFC "prototype-to-production" programme lowers overall production costs, eliminates the need for multiple suppliers, and saves time in creating circuits for military aircraft, missiles, cockpit radios, radar guidance and flight control systems, ground support instrumentation, satellite systems, and navigational instruments; as well as medical and industrial process control.

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