 Getting Started in KiCad 4.0all the wires except GND. In fact, we will connect all GND connections in one go using a ground plane placed on the bottom copper (called B.Cu) of the board. 13. Now we must choose which copper layer could do this with the ground plane. Notice how the colour of the track has changed. 21. Go from pin A to pin B by changing layer. It is possible to change the copper plane while you are running a track track by placing a via. While you are running a track on the upper copper plane, right click and select Place Via or simply press the v key. This will take you to the bottom layer where you can complete your0 码力 | 63 页 | 756.22 KB | 1 年前3 Getting Started in KiCad 4.0all the wires except GND. In fact, we will connect all GND connections in one go using a ground plane placed on the bottom copper (called B.Cu) of the board. 13. Now we must choose which copper layer could do this with the ground plane. Notice how the colour of the track has changed. 21. Go from pin A to pin B by changing layer. It is possible to change the copper plane while you are running a track track by placing a via. While you are running a track on the upper copper plane, right click and select Place Via or simply press the v key. This will take you to the bottom layer where you can complete your0 码力 | 63 页 | 756.22 KB | 1 年前3
 Getting Started in KiCad 5.1all the wires except GND. In fact, we will connect all GND connections in one go using a ground plane placed on the bottom copper (called B.Cu) of the board. 13. Now we must choose which copper layer the ground plane. Notice how the colour of the track has changed. Getting Started in KiCad 27 / 43 21. Go from pin A to pin B by changing layer. It is possible to change the copper plane while you are are running a track by placing a via. While you are running a track on the upper copper plane, right click and select Place Via or simply press [v]. This will take you to the bottom layer where you can0 码力 | 48 页 | 752.57 KB | 1 年前3 Getting Started in KiCad 5.1all the wires except GND. In fact, we will connect all GND connections in one go using a ground plane placed on the bottom copper (called B.Cu) of the board. 13. Now we must choose which copper layer the ground plane. Notice how the colour of the track has changed. Getting Started in KiCad 27 / 43 21. Go from pin A to pin B by changing layer. It is possible to change the copper plane while you are are running a track by placing a via. While you are running a track on the upper copper plane, right click and select Place Via or simply press [v]. This will take you to the bottom layer where you can0 码力 | 48 页 | 752.57 KB | 1 年前3
 Getting Started in KiCad 5.1all the wires except GND. In fact, we will connect all GND connections in one go using a ground plane placed on the bottom copper (called B.Cu) of the board. 13. Now we must choose which copper layer could do this with the ground plane. Notice how the colour of the track has changed. 21. Go from pin A to pin B by changing layer. It is possible to change the copper plane while you are running a track track by placing a via. While you are running a track on the upper copper plane, right click and select Place Via or simply press [v]. This will take you to the bottom layer where you can complete your track0 码力 | 63 页 | 634.01 KB | 1 年前3 Getting Started in KiCad 5.1all the wires except GND. In fact, we will connect all GND connections in one go using a ground plane placed on the bottom copper (called B.Cu) of the board. 13. Now we must choose which copper layer could do this with the ground plane. Notice how the colour of the track has changed. 21. Go from pin A to pin B by changing layer. It is possible to change the copper plane while you are running a track track by placing a via. While you are running a track on the upper copper plane, right click and select Place Via or simply press [v]. This will take you to the bottom layer where you can complete your track0 码力 | 63 页 | 634.01 KB | 1 年前3
 Getting Started in KiCad 4.0up all the wires except GND. In fact, we will connect all GND connections in one go using a ground plane placed on the bottom copper (called B.Cu) of the board. 13. Now we must choose which copper layer could do this with the ground plane. Notice how the colour of the track has changed. 21. Go from pin A to pin B by changing layer. It is possible to change the copper plane while you are running a track track by placing a via. While you are running a track on the upper copper plane, right click and select Place Via or simply press the v key. This will take you to the bottom layer where you can complete0 码力 | 50 页 | 892.87 KB | 1 年前3 Getting Started in KiCad 4.0up all the wires except GND. In fact, we will connect all GND connections in one go using a ground plane placed on the bottom copper (called B.Cu) of the board. 13. Now we must choose which copper layer could do this with the ground plane. Notice how the colour of the track has changed. 21. Go from pin A to pin B by changing layer. It is possible to change the copper plane while you are running a track track by placing a via. While you are running a track on the upper copper plane, right click and select Place Via or simply press the v key. This will take you to the bottom layer where you can complete0 码力 | 50 页 | 892.87 KB | 1 年前3
 KiCad PCB Editor 6.0setting and that four types of objects (tracks, vias, pads, and zones) have opacity Ctrl H 6 control sliders. The opacity setting here will be multiplied with any opacity set in the layer colors. By appearance panel shows a list of all nets and net classes in the board. Each net has a visibility control that controls the visibility of that net in the ratsnest. Hiding nets in the ratsnest does not change changes can be saved to a file using the Save… button. Options The tool has several options to control its behavior. 12 Option Description Re-link footprints to schematic symbols based on their reference0 码力 | 110 页 | 3.61 MB | 1 年前3 KiCad PCB Editor 6.0setting and that four types of objects (tracks, vias, pads, and zones) have opacity Ctrl H 6 control sliders. The opacity setting here will be multiplied with any opacity set in the layer colors. By appearance panel shows a list of all nets and net classes in the board. Each net has a visibility control that controls the visibility of that net in the ratsnest. Hiding nets in the ratsnest does not change changes can be saved to a file using the Save… button. Options The tool has several options to control its behavior. 12 Option Description Re-link footprints to schematic symbols based on their reference0 码力 | 110 页 | 3.61 MB | 1 年前3
 KiCad PCB Editor 7.0
setting and that four types of objects (tracks, vias, pads, and zones) have opacity Ctrl H 6 control sliders. The opacity setting here will be multiplied with any opacity set in the layer colors. By appearance panel shows a list of all nets and net classes in the board. Each net has a visibility control that controls the visibility of that net in the ratsnest. Hiding nets in the ratsnest does not change box next to the B.Silkscreen layer. 13 NOTE Copper layers can be designated as signal, power plane, mixed, or jumper in the Board Editor Layers section. This designation is intended as a guide for0 码力 | 129 页 | 7.75 MB | 1 年前3 KiCad PCB Editor 7.0
setting and that four types of objects (tracks, vias, pads, and zones) have opacity Ctrl H 6 control sliders. The opacity setting here will be multiplied with any opacity set in the layer colors. By appearance panel shows a list of all nets and net classes in the board. Each net has a visibility control that controls the visibility of that net in the ratsnest. Hiding nets in the ratsnest does not change box next to the B.Silkscreen layer. 13 NOTE Copper layers can be designated as signal, power plane, mixed, or jumper in the Board Editor Layers section. This designation is intended as a guide for0 码力 | 129 页 | 7.75 MB | 1 年前3
 KiCad 8.0 PCB Editorhave no color setting and that four types of objects (tracks, vias, pads, and zones) have opacity control sliders. The opacity setting here will be multiplied with any opacity set in the layer colors. By appearance panel shows a list of all nets and net classes in the board. Each net has a visibility control that controls the visibility of that net in the ratsnest. Hiding nets in the ratsnest does not change box next to the B.Silkscreen layer. 14 NOTE Copper layers can be designated as signal, power plane, mixed, or jumper in the Board Editor Layers section. This designation is intended as a guide for0 码力 | 204 页 | 6.90 MB | 1 年前3 KiCad 8.0 PCB Editorhave no color setting and that four types of objects (tracks, vias, pads, and zones) have opacity control sliders. The opacity setting here will be multiplied with any opacity set in the layer colors. By appearance panel shows a list of all nets and net classes in the board. Each net has a visibility control that controls the visibility of that net in the ratsnest. Hiding nets in the ratsnest does not change box next to the B.Silkscreen layer. 14 NOTE Copper layers can be designated as signal, power plane, mixed, or jumper in the Board Editor Layers section. This designation is intended as a guide for0 码力 | 204 页 | 6.90 MB | 1 年前3
 KiCad 8.0 PCB Editorhave no color setting and that four types of objects (tracks, vias, pads, and zones) have opacity control sliders. The opacity setting here will be multiplied with any opacity set in the layer colors. By appearance panel shows a list of all nets and net classes in the board. Each net has a visibility control that controls the visibility of that net in the ratsnest. Hiding nets in the ratsnest does not change box next to the B.Silkscreen layer. 14 NOTE Copper layers can be designated as signal, power plane, mixed, or jumper in the Board Editor Layers section. This designation is intended as a guide for0 码力 | 205 页 | 6.78 MB | 1 年前3 KiCad 8.0 PCB Editorhave no color setting and that four types of objects (tracks, vias, pads, and zones) have opacity control sliders. The opacity setting here will be multiplied with any opacity set in the layer colors. By appearance panel shows a list of all nets and net classes in the board. Each net has a visibility control that controls the visibility of that net in the ratsnest. Hiding nets in the ratsnest does not change box next to the B.Silkscreen layer. 14 NOTE Copper layers can be designated as signal, power plane, mixed, or jumper in the Board Editor Layers section. This designation is intended as a guide for0 码力 | 205 页 | 6.78 MB | 1 年前3
 KiCad 5.1 PCB CalculatorMicrowave Journal, pp. 109-115, November 1989. Coplanar wave guide. Coplanar wave guide with ground plane. Rectangular waveguide: S. Ramo, J. R. Whinnery and T. van Duzer, "Fields and Waves in Communication downtime cannot be tolerated and must function when required suchas in life support items or flight control systems. Printed boards in this class are suitable for applications where high levels of assurance0 码力 | 10 页 | 415.30 KB | 1 年前3 KiCad 5.1 PCB CalculatorMicrowave Journal, pp. 109-115, November 1989. Coplanar wave guide. Coplanar wave guide with ground plane. Rectangular waveguide: S. Ramo, J. R. Whinnery and T. van Duzer, "Fields and Waves in Communication downtime cannot be tolerated and must function when required suchas in life support items or flight control systems. Printed boards in this class are suitable for applications where high levels of assurance0 码力 | 10 页 | 415.30 KB | 1 年前3
 KiCad 7.0 PCB CalculatorMicrowave Journal, pp. 109-115, November 1989. Coplanar wave guide. Coplanar wave guide with ground plane. Rectangular waveguide: S. Ramo, J. R. Whinnery and T. van Duzer, "Fields and Waves in Communication downtime cannot be tolerated and must function when required suchas in life support items or flight control systems. Printed boards in this class are suitable for applications where high levels of assurance0 码力 | 8 页 | 336.64 KB | 1 年前3 KiCad 7.0 PCB CalculatorMicrowave Journal, pp. 109-115, November 1989. Coplanar wave guide. Coplanar wave guide with ground plane. Rectangular waveguide: S. Ramo, J. R. Whinnery and T. van Duzer, "Fields and Waves in Communication downtime cannot be tolerated and must function when required suchas in life support items or flight control systems. Printed boards in this class are suitable for applications where high levels of assurance0 码力 | 8 页 | 336.64 KB | 1 年前3
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