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Double Sided Pcb Double Layer Flexible Pcb Board applicated in Infrared Analyzer Medical Device -Capel with 15 years of professional technical experience-
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How double-sided PCB double-layer flexible PCB board is applied to infrared analyzer medical equipment In today's fast-paced world, technological advancements have played a major role in transforming the healthcare industry. One of these innovations is the infrared analyzer medical device. This cutting-edge technology has transformed the way medical professionals diagnose and treat patients. Behind the scenes, however, there is one important component that ensures the seamless operation of this device - the PCB, or printed circuit board. The PCB is an essential element in any electronic device, acting as the nerves and brains that connect the various components together. As far as infrared analyzer medical equipment is concerned, the use of double-sided PCB double-layer flexible PCB board is essential for its efficient operation. In this blog post, we'll explore how this PCB type is used in an infrared analyzer medical device and its unique features, including immersion gold finish. Product Type - Flexible PCB BoardInfrared analyzer medical devices require flexible PCB boards to accommodate their complex designs and functions. Flex PCB boards provide devices with the necessary flexibility and adaptability for optimal performance. This type of PCB design allows bending, folding and twisting without compromising the integrity of the circuit. Number of Layers - 2 Layers/Double Layers Double-sided PCB double-layer flexible PCB board used in infrared analyzer medical equipment consists of two layers. This configuration enables efficient routing of signals, reduces interference, and provides greater control over device functionality. With a double-sided PCB, the design possibilities are endless and more complex circuits can be seamlessly integrated. Line Width and Line Space - 0.12/0.1mm The line width and line spacing of PCB are the key factors to determine the electrical performance of infrared analyzer medical equipment. The PCB line width is 0.12mm, and the line spacing is 0.1mm, which ensures the accurate transmission of the whole board signal. This precision is necessary for the device to provide accurate data and reliable results. Plate thickness - 0.15mm The board thickness of the double-sided PCB double-layer flexible PCB board for infrared analyzer medical devices is 0.15mm. This thin and light design is critical to the overall portability and ease of use of the device. The reduced thickness also helps minimize interference and optimize device performance. Copper Thickness - 18um Copper is an important part of any PCB as it acts as a conductor for electrical signals. Taking infrared analyzer medical equipment as an example, the copper thickness of the double-sided PCB double-layer flexible PCB board is 18um. This optimum thickness ensures high electrical conductivity and allows the device to function flawlessly. Minimum aperture - 0.15mm The minimum aperture refers to the size of the hole drilled on the PCB. For infrared analyzer medical equipment, the minimum hole diameter of double-sided PCB double-layer flexible PCB board is 0.15mm. This small aperture size was chosen to support the complex circuitry of the device and prevent any signal leakage. Flame retardant-94V0 When it comes to medical devices, safety is a top priority. The use of flame retardant materials is critical to ensuring that infrared analyzer medical devices comply with safety regulations. The double-sided PCB double-layer flexible PCB board used by the device has a flame retardant rating of 94V0, which provides fire resistance and enhances the overall safety of the device. Surface treatment - immersion gold To improve the performance and durability of the PCB, surface treatments are used. The double-sided PCB double-layer flexible PCB board used in the infrared analyzer medical equipment is treated with immersion gold surface treatment. This treatment not only improves the electrical conductivity of the PCB, but also provides excellent corrosion resistance and ensures long-term reliability. Resistance welding color - yellow The color of resistance soldering on a PCB is usually chosen for identification and aesthetic purposes. For double-sided PCB double-layer flexible PCB boards used in infrared analyzer medical equipment, the color of resistance welding is yellow. This choice provides clear visibility of solder joints and adds a touch of elegance to the overall design. Stiffness - PI, FR4 Double-sided PCBs used in infrared analyzer medical equipment Two-layer flexible PCB boards use a combination of polyimide (PI) and FR4 materials. This hybrid design offers the perfect balance between flexibility and rigidity. The PI material provides excellent flexibility, enabling the PCB to withstand bending and twisting, while the FR4 material provides stability and supports secure placement of components. Application - Medical Devices Infrared analyzer medical equipment is a prime example of how advanced technology can improve medical diagnosis. It uses infrared light to analyze samples and provide medical professionals with valuable insights. Double-sided PCB Double-layer flexible PCB board ensures accurate transmission of signals, enabling the device to provide accurate and reliable results. Application Equipment-Infrared Analyzer As the name suggests, infrared analyzer medical equipment is mainly used as an infrared analysis tool. Its ability to detect, measure, and analyze infrared light emissions plays a vital role in a variety of medical applications. By utilizing a double-sided PCB double-layer flexible PCB board, the device can efficiently capture and interpret infrared signals to provide valuable information to medical practitioners. In summary, the use of double-sided PCB double-layer flexible PCB boards is essential for optimal functionality of infrared analyzer medical devices. Its unique characteristics, such as immersion gold surface treatment, line width, line spacing, board thickness, copper thickness, flame retardancy, ensure the accuracy, durability and safety of the device. This innovative PCB technology combined with the device's infrared analysis capabilities has contributed significantly to the advancement of medical diagnostics and patient care.