Custom Industrial Equipment Multilayer PCB Board
$109.90
Custom industrial equipment multilayer PCB board is manufactured to meet the unique needs of industrial machines and control systems. The complex circuitry and high component density of multilayer circuit boards are essential for space-limited and performance-required industrial environments.
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Layer Counts | 8L |
Base Material | High-Tg FR4 |
Board Thickness(mm) | 2.4mm |
Max board size(mm) | 570*670mm |
PCB size tolerance | ±0.2mm |
Min. Hole Size | 0.15mm |
Min. Line Width | 0.4mil |
Copper Weight | 3oz |
Surface Finish | ENIG |
Certificate | UL, IPC-6012, RoHS, ISO 9001, ISO14001,REACH |

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Questions & Answers
1. Why choose multilayer over single or double-layer PCBs in industrial equipment?
Compared to single and double-layer PCBs, multilayer industrial PCBs provide more complex and compact designs, which is beneficial to industrial equipment in limited space or with high performance demands.
2. Can I order low volume or prototypes before mass production?
Yes, we support prototype orders before large-volume orders.
3. What thermal management options are available for the industrial equipment multilayer PCB board?
We may design thermal vias that connect hot components to internal or external copper planes, or use thicker copper layers(2/3/higher oz) to transfer heat efficiently.
4. What types of silkscreen and solder mask colors do you provide?
We provide white, black, and yellow for silkscreen, and green, blue, black, red, white, or transparent or custom color for solder mask.
5. How do multiple layers help with signal integrity and noise reduction for industrial equipment?
Multilayer PCBs can use dedicated power and ground planes to reduce EMI and provide consistent return paths for signals to minimize signal reflection and crosstalk. The signal traces can be routed across different layers so as to reduce path length and signal delay.
6. What makes multilayer PCBs durable for long-term use in factories?
To fabricate robust multilayer PCBs for long-term use, the PCB can be built with strong materials, like high-Tg FR4 and ceramic-filled substrate, to withstand high temperature, vibration, and harsh environments. Workers may also use thicker copper and surface finishes and add conformal layers to enhance PCBs’ resistance to corrosion, wear, and electrical failure.