A major trend in medical devices and wearables is miniaturization, where gadgets need to be as small as possible while still reliably performing their assigned functions. Flexible circuits address the challenges faced by FPC circuit board manufacturers. One of the notable features of FPC wiring is that it allows FPC wiring manufacturers to make smaller devices. Let's take a look at some of the main reasons flexible FPC wiring is used in medical devices and wearables.
The dynamic bending
FPC line has extraordinary bending or bending ability. Medical devices usually expand/contract during their operation. The bending characteristics of the FPC line make it ideal for medical applications. This property is also beneficial for applications connected by a hinged device. Flexibility is particularly challenging for designers in the healthcare industry, as it has not been a major consideration in medical electronics in the past. Most early medical devices used to be larger and more robust. With the advent of FPC boards, medical devices are evolving to be more compact, durable and flexible.
reliability
Reliability is the ability of a system to continuously perform its required functions without causing performance degradation or failure. Reliability is becoming critical in medical applications and wearables. In general, interconnect points are potential sources of electronic failure. Flexible circuits minimize connection points and simplify assembly. This property of flexible circuits eliminates the opportunity for defects such as poor solder joints for interconnection. FPC wires are basically made of polyimide material. These polyimide FPC circuit board materials are resistant to a variety of environmental and chemical changes. The ductility and flexibility of FPC row materials minimize the impact of shock and vibration events.
Electrical reliability
FPC wiring materials are essentially ideal for high-speed signal applications. FPC lines have the following features to provide electrical reliability: improved dielectric constant compared to standard rigid materials; Uniform material thickness; Consistent line width and spacing; Trace width calculator.
Space and weight
One of the dynamic features of the new age of medical devices and wearables is the minimization of size. These gadgets must be as small as possible while performing the desired functions. The growing demand for small devices such as FPC boards in the healthcare industry makes FPC wiring the ideal choice for such devices. Flexible circuits have thin layers of copper and insulation. Therefore, the bending radius of FPC rows can be minimized as needed. As a result, these FPC lines can be adapted to tighter Spaces.
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