Kaboer’s Single-Sided Flexible PCB for Automotive Applications is tailor-made for in-vehicle electronic components such as in-vehicle central control button modules, power window control units, seat adjustment circuits, ambient light driver boards, and automotive sensor signal adapters. It precisely addresses the core demands of automotive scenarios—wide-temperature resistance, vibration resistance, compact adaptation, and stable signal transmission—with a practical configuration of "1mil immersion gold finish + cost-effective single-sided wiring". As a low-cost, high-reliability preferred solution in the automotive electronics field, it empowers automakers and supporting manufacturers to develop high-quality electronic components adapted to complex in-vehicle environments!
Featuring a single-sided flexible core structure, it perfectly balances the space adaptability and operational reliability of automotive electronics: with an overall thickness of only 0.13mm, it is extremely slim and boasts excellent bending resilience, seamlessly fitting curved in-vehicle panels, narrow installation cavities (e.g., door trim panels, central control gaps), and component joints. It easily avoids wiring interference, adapting to the modular and compact design needs of automotive interiors, and completely solving the pain point of poor adaptability of traditional rigid PCBs in complex in-vehicle layouts; with precise dimensions of 91.72*100.38mm, the moderate board size supports integration of multiple interfaces and components (e.g., simultaneous layout of key contacts, small chips, and signal terminals) without occupying redundant space, leaving ample installation room for other functional components in the vehicle; the 0.2/0.2mm equal line width/spacing ensures standardized wiring and stable signal transmission, adapting to the transmission needs of basic in-vehicle signals (e.g., control commands, sensor data) and guaranteeing consistent circuit conduction.
Key advantages directly tackle key pain points in automotive environments, demonstrating automotive-grade practical performance: ① Equipped with 1mil immersion gold finish, it offers excellent oxidation resistance, wear resistance, and low contact resistance. It can withstand high-temperature and high-humidity in-vehicle environments (summer exposure, rainy season humidity), avoiding issues such as power window failure and seat adjustment lag caused by oxidation or poor contact. Meanwhile, the immersion gold surface enhances terminal plug-in durability, adapting to the long-term high-frequency use of in-vehicle components; ② The single-sided wiring design balances cost-effectiveness and maintenance convenience, meeting the transmission needs of non-core in-vehicle signals while effectively controlling procurement costs. With clear wiring logic, it enables more efficient later fault diagnosis, adapting to the mass production and after-sales maintenance needs of automotive electronics; ③ The flexible substrate features wide-temperature resistance (-40℃ to 85℃) and excellent vibration resistance, withstanding bumps and vibrations during vehicle driving, low-temperature startup in winter, and high-temperature operation in summer. It reduces circuit failures caused by environmental factors, aligning with the core demand of "long service life and low failure rate" for automotive electronics.
Backed by Kaboer’s years of technical expertise in flexible PCBs and strict quality control systems, this single-sided flexible PCB for automotive applications can be customized for circuit layout, contour, and mounting holes based on the functional needs of in-vehicle components (e.g., interface type, protection level, installation method). Paired with full-chain services including "1-30 layer FPC customization, rapid prototyping, and efficient SMT assembly", it helps customers shorten R&D cycles and accelerate product mass production. Whether for precise command transmission of in-vehicle central control, stable control of power windows/seats, or signal connection for ambient light drivers, it serves as a "reliable signal link" for automotive electronics with core advantages of "high adaptability, high durability, and high cost-effectiveness", helping enterprises reduce costs, enhance product competitiveness, and gain an edge in the automotive electronics niche market!