TI has a good chart(check images) on the website showing you the different capacitance ranges and which you can use for different applications based on speed. Instead of traditional PCB checks such as trace-to-trace. You can use higher capacitance ones for GPIO/Vbus lines as there are slightly cheaper if needed. PADS HyperLynx DRC provides a customizable and powerful electrical rule checker for PCB designs. Hence when you select an ESD diode make sure to use low-capacitance ones for high-speed data lines. HyperLynx DRC Design Rule Check is a Siemens tool that provides fast, automated electrical design rule checking and supports iterative design inspection. Adding a larger capacitor diode will reduce its rise and fall times which will cause communication errors and you make fail the USB compliance eye diagrams. ![]() ![]() These data rates are in 10+Gbps and this pulls the line low and high at a very fast rate. If you use a diode with higher capacitance to protect lets a high-speed signal like USB 3.2 Super Speed TX/RX data lanes it will create a problem. The value of the capacitance has a huge role to play in the lines it protects. In normal operation, the ESD diode in the reverse biased mode, shows a capacitance due to its PN junction. This is where the capacitance of the ESD diode matters. HyperLynx Compliance Analysis automatically configures analysis based on the selected protocol so users don’t have to master all of the details. ESD strikes are usually rare and in the normal operation of the device, ESD diodes ideally should not affect the regular functioning of the circuit. ![]() Please don't confuse ESD Capacitance with an "ESD capacitor" which is an entirely different thing.Įvery ESD diode is connected in parallel to a line/trace that it tries to protect from ESD strikes. ![]() Another critical item to discuss is ESD capacitance. Last week we focussed on one facet of ESD diode selection which was unilateral vs bilateral and focussed on when to use each one of them.
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