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  • epub文档 Getting Started in KiCad 4.0

    1.5. Support If you have ideas, remarks or questions, or if you just need help: Visit the Forum Join users on IRC or Discord Watch Tutorials Chapter 2. KiCad Workflow Despite its similarities with generate two 25-pin components separately, re-number their pins using a Python script and finally merge the two by using copy and paste to make them into one single DEF and ENDDEF component. 3. You will
    0 码力 | 63 页 | 756.22 KB | 1 年前
    3
  • pdf文档 Getting Started in KiCad 5.1

    Support If you have ideas, remarks or questions, or if you just need help: • Visit the Forum • Join users on IRC or Discord • Watch Tutorials Getting Started in KiCad 4 / 43 Chapter 2 KiCad Workflow generate two 25-pin components separately, re-number their pins using a Python script and finally merge the two by using copy and paste to make them into one single DEF and ENDDEF component. 3. You will
    0 码力 | 48 页 | 752.57 KB | 1 年前
    3
  • epub文档 Getting Started in KiCad 5.1

    1.2. Support If you have ideas, remarks or questions, or if you just need help: Visit the Forum Join users on IRC or Discord Watch Tutorials Chapter 2. KiCad Workflow Despite its similarities with generate two 25-pin components separately, re-number their pins using a Python script and finally merge the two by using copy and paste to make them into one single DEF and ENDDEF component. 3. You will
    0 码力 | 63 页 | 634.01 KB | 1 年前
    3
  • pdf文档 Getting Started in KiCad 4.0

    Support If you have ideas, remarks or questions, or if you just need help: • Visit the Forum • Join users on IRC or Discord • Watch Tutorials Getting Started in KiCad 4 / 45 Chapter 2 KiCad Workflow generate two 25-pin components separately, re-number their pins using a Python script and finally merge the two by using copy and paste to make them into one single DEF and ENDDEF component. 3. You will
    0 码力 | 50 页 | 892.87 KB | 1 年前
    3
  • pdf文档 KiCad 8.0 PCB Editor

    selected lines until they intersect each other. The two lines will share a coincident endpoint. Merge polygons combines two or more selected polygons into one new polygon that is the union of the original Cleanup Graphics… . The following cleanup actions are available and will be performed when selected: Merge lines into rectangles: combines individual graphic lines that together form a rectangle into a single Graphics… . 136 The following cleanup actions are available and will be performed when selected: Merge lines into rectangles: combines individual graphic lines that together form a rectangle into a single
    0 码力 | 204 页 | 6.90 MB | 1 年前
    3
  • pdf文档 KiCad 8.0 PCB Editor

    selected lines until they intersect each other. The two lines will share a coincident endpoint. Merge polygons combines two or more selected polygons into one new polygon that is the union of the original Cleanup Graphics… . The following cleanup actions are available and will be performed when selected: Merge lines into rectangles: combines individual graphic lines that together form a rectangle into a single Graphics… . 136 The following cleanup actions are available and will be performed when selected: Merge lines into rectangles: combines individual graphic lines that together form a rectangle into a single
    0 码力 | 205 页 | 6.78 MB | 1 年前
    3
  • pdf文档 KiCad 8.0 PCB 编辑器

    selected lines until they intersect each other. The two lines will share a coincident endpoint. Merge polygons combines two or more selected polygons into one new polygon that is the union of the original Cleanup Graphics… . The following cleanup actions are available and will be performed when selected: Merge lines into rectangles: combines individual graphic lines that together form a rectangle into a single Graphics… . 127 The following cleanup actions are available and will be performed when selected: Merge lines into rectangles: combines individual graphic lines that together form a rectangle into a single
    0 码力 | 194 页 | 8.27 MB | 1 年前
    3
  • epub文档 KiCad 4.0 Schematic Editor

    toolbar. These elements are: Wires: most connections between components. Buses: to graphically join bus labels Polylines: for graphic presentation. Junctions: to create connections between crossing there is no connection. Note 3: Wires that cross are not implicitly connected. It is necessary to join them with a junction dot if a connection is desired. The previous figure (wires connected to DB25FEMALE connects invisible power pins of the same name to the power net of that name. It may be necessary to join power nets of different names (for example, "GND" in TTL components and "VSS" in MOS components);
    0 码力 | 237 页 | 1.61 MB | 1 年前
    3
  • epub文档 KiCad 5.1 Schematic Editor

    right toolbar. These elements are: Wires: most connections between symbols. Buses: to graphically join bus labels Polylines: for graphic presentation. Junctions: to create connections between crossing there is no connection. Note 3: Wires that cross are not implicitly connected. It is necessary to join them with a junction dot if a connection is desired. The previous figure (wires connected to DB25FEMALE connects invisible power pins of the same name to the power net of that name. It may be necessary to join power nets of different names (for example, "GND" in TTL components and "VSS" in MOS components);
    0 码力 | 263 页 | 2.36 MB | 1 年前
    3
  • pdf文档 KiCad 4.0 Schematic Editor

    / 139 These elements are: • Wires: most connections between components. • Buses: to graphically join bus labels • Polylines: for graphic presentation. • Junctions: to create connections between crossing there is no connection. Note 3: Wires that cross are not implicitly connected. It is necessary to join them with a junction dot if a connection is desired. The previous figure (wires connected to DB25FEMALE connects invisible power pins of the same name to the power net of that name. It may be necessary to join power nets of different names (for example, ”GND” in TTL components and ”VSS” in MOS components);
    0 码力 | 149 页 | 1.96 MB | 1 年前
    3
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