PCB design services require skilled designers who know how to come up with an optimum physical layout for a printed circuit board. They use cutting-edge CAD tools and other PCB design software that helps them create all kinds of board designs. No matter what sort of board and layout is required to be made, it's always going to be a multi-stage designing process starting with schematic capture.
At this point, it would be appropriate to note that the client is usually required to provide the designer with information about at least three basic aspects. One is the aforementioned schematic, although it may also be provided by the client as a netlist file. The netlist is simply a file that contains all the connectivity information for the design, along with descriptions of components used.
Another thing the client is required to provide is the bill of materials (BOM) specifying each component used and its footprint. Designers are sometimes asked to help with component footprint capture. The client is also expected to provide the board outline. Once they have the schematic or netlist, BOM and the board outline, the designer should be able to do the rest.
Starting from the netlist/schematic, the process is taken further using techniques including library development, signal integrity and EMI checks, stress analysis, thermal simulation, etc. The series of intermediate steps ends with the creation of the gerber file. This format is the preferred one used by the electronics industry to transfer finished PCB images that are ready to be used in the manufacturing stage.
Designers must be able to work on complex solutions involving everything from digital and analog to RF circuits and mixed PCBs. The board can be designed as per specifications as a single or double sided board, or a multi-layered one. The size is also likely to vary, and so will other factors such as component quantities and pin densities.
Another important thing that has to be decided in the designing stage is about the characteristics of the board. The most critical thing is deciding the technique used for creating traces and mounting components. The most widely used solution is surface-mount technology.
Components on boards that use this technology have their end caps soldered on the same side as the components themselves. This is hugely different from earlier techniques such as through-hole boards. The leads of components in such older boards were inserted through holes and soldered on to the traces on the other side.
Designing new boards is just one part of the services offered by PCB designers. They may also be asked to perform other functions such as evaluate designs, along with the components used and their footprints. Clients sometimes ask them to assist with procurement of prototypes and check for availability and pricing information against the BOM contents.
Certain PCB design services are required even after the client receives the finished product. Customers may seek changes to the design immediately or in future, and reorders are quite common. It works the other way around too, with designers asked to reverse engineer gerber files or film artwork into a netlist format or schematic. This is often required when complex circuits require heavy modifications at the most basic level.
At this point, it would be appropriate to note that the client is usually required to provide the designer with information about at least three basic aspects. One is the aforementioned schematic, although it may also be provided by the client as a netlist file. The netlist is simply a file that contains all the connectivity information for the design, along with descriptions of components used.
Another thing the client is required to provide is the bill of materials (BOM) specifying each component used and its footprint. Designers are sometimes asked to help with component footprint capture. The client is also expected to provide the board outline. Once they have the schematic or netlist, BOM and the board outline, the designer should be able to do the rest.
Starting from the netlist/schematic, the process is taken further using techniques including library development, signal integrity and EMI checks, stress analysis, thermal simulation, etc. The series of intermediate steps ends with the creation of the gerber file. This format is the preferred one used by the electronics industry to transfer finished PCB images that are ready to be used in the manufacturing stage.
Designers must be able to work on complex solutions involving everything from digital and analog to RF circuits and mixed PCBs. The board can be designed as per specifications as a single or double sided board, or a multi-layered one. The size is also likely to vary, and so will other factors such as component quantities and pin densities.
Another important thing that has to be decided in the designing stage is about the characteristics of the board. The most critical thing is deciding the technique used for creating traces and mounting components. The most widely used solution is surface-mount technology.
Components on boards that use this technology have their end caps soldered on the same side as the components themselves. This is hugely different from earlier techniques such as through-hole boards. The leads of components in such older boards were inserted through holes and soldered on to the traces on the other side.
Designing new boards is just one part of the services offered by PCB designers. They may also be asked to perform other functions such as evaluate designs, along with the components used and their footprints. Clients sometimes ask them to assist with procurement of prototypes and check for availability and pricing information against the BOM contents.
Certain PCB design services are required even after the client receives the finished product. Customers may seek changes to the design immediately or in future, and reorders are quite common. It works the other way around too, with designers asked to reverse engineer gerber files or film artwork into a netlist format or schematic. This is often required when complex circuits require heavy modifications at the most basic level.
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