High Reliability Industrial Control PCB Solutions for PLCs, Motor Drives, Power Systems and Factory Automation.
From engineering review to final delivery, we are built for the demands of industrial-grade electronics — ruggedness, reliability, and precision manufacturing.
Full compliance with IPC-6012 Class 3 and IPC-A-610 for the most demanding industrial control and automation applications.
Advanced fabrication supporting up to 12 oz copper weight for high-current power electronics, motor drives and inverter PCBs.
Every board undergoes AOI, X-ray inspection, flying probe testing and high-voltage dielectric withstanding tests before shipment.
Rapid prototype capability with expedited production cycles. From Gerber files to finished industrial control boards in record time.
High-Tg FR4, Polyimide and Halogen-Free laminates selected for extreme thermal, high-humidity and vibration-prone industrial environments.
Our industrial PCB engineers provide DFM review, thermal management analysis and EMI/EMC design support throughout your entire project.
Our dedicated industrial PCB engineers work closely with your team from concept to delivery — optimizing PCB design for durability, electrical performance, and manufacturability in the harshest factory environments.
Early-stage design reviews to eliminate costly errors before fabrication begins.
Electromagnetic interference analysis to ensure compliance with industrial EMC standards.
Heat dissipation strategies for power electronics operating in high-temperature factory conditions.
High-Tg FR4, Polyimide and Halogen-Free laminates matched to your voltage, temperature and environment specs.
TopfastPCB provides high-reliability PCB fabrication and assembly for industrial control electronics, including heavy copper power boards, multilayer control PCBs and backplane technologies used in PLCs, motor drives, inverters and factory automation systems.
High-current power boards with up to 12 oz copper for motor drives, inverters and industrial power supply units.
Precision multilayer PCBs for PLC control cards, HMI interfaces and industrial computing modules.
Wide creepage and clearance designs with high-Tg laminates for industrial high-voltage isolation applications.
DFM analysis and design optimization before production starts.
Precision multilayer manufacturing with strict quality control.
Advanced SMT and through-hole assembly for industrial control boards.
AOI, flying probe, X-ray and HV dielectric testing before shipment.
Trusted by industrial automation and power electronics engineers worldwide for high-reliability PCB solutions across every mission-critical manufacturing application.
Our ISO-certified facility is equipped with advanced industrial PCB production lines, heavy copper plating tanks, precision testing equipment and cleanroom environments to meet the strictest quality standards for industrial control electronics.
Leading industrial automation companies and manufacturing organizations rely on TopfastPCB for their most demanding industrial control PCB projects.
Everything you need to know about industrial control PCB manufacturing. Can't find the answer?
Ask Our Engineers →IPC-6012 Class 2 and Class 3 standards are used for industrial control PCB fabrication and assembly. For high-reliability applications such as safety systems and power controls, IPC Class 3 is required to ensure maximum reliability and traceability.
Heavy copper PCBs use copper weight of 3 oz or greater per layer. They are widely used in industrial motor drives, power inverters, high-current bus bars, and welding equipment PCBs where high current carrying capacity and superior thermal management are required.
Yes. We support rapid prototyping with expedited turnaround services for industrial control boards, as well as small and medium batch production with full DFM review and engineering support included.
Standard tests include Automated Optical Inspection (AOI), X-ray inspection for hidden solder joints, flying probe electrical testing, high-voltage dielectric withstanding tests (HV DWV), and thermal cycling to validate board reliability under industrial operating conditions.
High-Tg FR4 (Tg ≥ 170°C) is the standard choice for most industrial applications. For extreme temperature environments above 150°C or high-voltage isolation requirements, Polyimide and Halogen-Free laminates are recommended. Aluminum-based PCBs are ideal for LED and power module thermal dissipation.