 KiCad PCB Editor 4.0available via the pop-up menu. In addition, the view can zoom to the area described by the block. The framework of the block is traced by moving the mouse while holding down the left mouse button. The operation button held down Trace framework to move block Shift + Left mouse button held down Trace framework for invert block Action Effect Ctrl + Left mouse button held down Trace framework for rotating block 90° 90° Shift + Ctrl + Left mouse button held down Trace framework to delete the block Centre mouse button held down Trace framework to zoom to block When moving a block: Move block to new position and0 码力 | 268 页 | 2.81 MB | 1 年前3 KiCad PCB Editor 4.0available via the pop-up menu. In addition, the view can zoom to the area described by the block. The framework of the block is traced by moving the mouse while holding down the left mouse button. The operation button held down Trace framework to move block Shift + Left mouse button held down Trace framework for invert block Action Effect Ctrl + Left mouse button held down Trace framework for rotating block 90° 90° Shift + Ctrl + Left mouse button held down Trace framework to delete the block Centre mouse button held down Trace framework to zoom to block When moving a block: Move block to new position and0 码力 | 268 页 | 2.81 MB | 1 年前3
 KiCad PCB Editor 5.1available via the pop-up menu. In addition, the view can zoom to the area described by the block. The framework of the block is traced by moving the mouse while holding down the left mouse button. The operation mouse button held down Trace framework to move block Shift + Left mouse button held down Trace framework for invert block Ctrl + Left mouse button held down Trace framework for rotating block 90° Action Action Effect Shift + Ctrl + Left mouse button held down Trace framework to delete the block Center mouse button held down Trace framework to zoom to block When moving a block: Move block to new position0 码力 | 279 页 | 3.02 MB | 1 年前3 KiCad PCB Editor 5.1available via the pop-up menu. In addition, the view can zoom to the area described by the block. The framework of the block is traced by moving the mouse while holding down the left mouse button. The operation mouse button held down Trace framework to move block Shift + Left mouse button held down Trace framework for invert block Ctrl + Left mouse button held down Trace framework for rotating block 90° Action Action Effect Shift + Ctrl + Left mouse button held down Trace framework to delete the block Center mouse button held down Trace framework to zoom to block When moving a block: Move block to new position0 码力 | 279 页 | 3.02 MB | 1 年前3
 KiCad PCB Editor 4.0available via the pop-up menu. In addition, the view can zoom to the area described by the block. The framework of the block is traced by moving the mouse while holding down the left mouse button. The operation mouse button held down Trace framework to move block Shift + Left mouse button held down Trace framework for invert block Ctrl + Left mouse button held down Trace framework for rotating block 90° Shift Shift + Ctrl + Left mouse button held down Trace framework to delete the block Centre mouse button held down Trace framework to zoom to block When moving a block: • Move block to new position and operate0 码力 | 153 页 | 3.10 MB | 1 年前3 KiCad PCB Editor 4.0available via the pop-up menu. In addition, the view can zoom to the area described by the block. The framework of the block is traced by moving the mouse while holding down the left mouse button. The operation mouse button held down Trace framework to move block Shift + Left mouse button held down Trace framework for invert block Ctrl + Left mouse button held down Trace framework for rotating block 90° Shift Shift + Ctrl + Left mouse button held down Trace framework to delete the block Centre mouse button held down Trace framework to zoom to block When moving a block: • Move block to new position and operate0 码力 | 153 页 | 3.10 MB | 1 年前3
 KiCad PCB Editor 5.1available via the pop-up menu. In addition, the view can zoom to the area described by the block. The framework of the block is traced by moving the mouse while holding down the left mouse button. The operation mouse button held down Trace framework to move block Shift + Left mouse button held down Trace framework for invert block Ctrl + Left mouse button held down Trace framework for rotating block 90° Shift Shift + Ctrl + Left mouse button held down Trace framework to delete the block Center mouse button held down Trace framework to zoom to block When moving a block: Pcbnew 18 / 154 • Move block to new position0 码力 | 166 页 | 3.28 MB | 1 年前3 KiCad PCB Editor 5.1available via the pop-up menu. In addition, the view can zoom to the area described by the block. The framework of the block is traced by moving the mouse while holding down the left mouse button. The operation mouse button held down Trace framework to move block Shift + Left mouse button held down Trace framework for invert block Ctrl + Left mouse button held down Trace framework for rotating block 90° Shift Shift + Ctrl + Left mouse button held down Trace framework to delete the block Center mouse button held down Trace framework to zoom to block When moving a block: Pcbnew 18 / 154 • Move block to new position0 码力 | 166 页 | 3.28 MB | 1 年前3
 Kicad 5.1 Pluginson January 29, 2016. 1. Introduction to the KiCad plugin system The KiCad plugin system is a framework for extending the capabilities of KiCad using shared libraries. One of the main advantages of using without requiring major changes to the KiCad source for each new model type supported. The plugin framework was later generalized so that in the future developers can create different classes of plugins. declares a loader for the 3D Plugin Class. The loader is responsible for loading a given plugin and making its functions available to KiCad. Each instance of a plugin loader represents an actual plugin implementation0 码力 | 48 页 | 44.28 KB | 1 年前3 Kicad 5.1 Pluginson January 29, 2016. 1. Introduction to the KiCad plugin system The KiCad plugin system is a framework for extending the capabilities of KiCad using shared libraries. One of the main advantages of using without requiring major changes to the KiCad source for each new model type supported. The plugin framework was later generalized so that in the future developers can create different classes of plugins. declares a loader for the 3D Plugin Class. The loader is responsible for loading a given plugin and making its functions available to KiCad. Each instance of a plugin loader represents an actual plugin implementation0 码力 | 48 页 | 44.28 KB | 1 年前3
 Kicad 4.0 Pluginson January 29, 2016. 1. Introduction to the KiCad plugin system The KiCad plugin system is a framework for extending the capabilities of KiCad using shared libraries. One of the main advantages of using models without requiring major changes to the KiCad source for each new model supported. The plugin framework was later generalized so that in the future developers can create different classes of plugins. declares a loader for the 3D Plugin Class. The loader is responsible for loading a given plugin and making its functions available to KiCad. Each instance of a plugin loader represents an actual plugin implementation0 码力 | 48 页 | 66.10 KB | 1 年前3 Kicad 4.0 Pluginson January 29, 2016. 1. Introduction to the KiCad plugin system The KiCad plugin system is a framework for extending the capabilities of KiCad using shared libraries. One of the main advantages of using models without requiring major changes to the KiCad source for each new model supported. The plugin framework was later generalized so that in the future developers can create different classes of plugins. declares a loader for the 3D Plugin Class. The loader is responsible for loading a given plugin and making its functions available to KiCad. Each instance of a plugin loader represents an actual plugin implementation0 码力 | 48 页 | 66.10 KB | 1 年前3
 Kicad 4.0 PluginsKicad Plugins 2 / 33 1 Introduction to the KiCad plugin system The KiCad plugin system is a framework for extending the capabilities of KiCad using shared libraries. One of the main advantages of using models without requiring major changes to the KiCad source for each new model supported. The plugin framework was later generalized so that in the future developers can create different classes of plugins declares a loader for the 3D Plugin Class. The loader is responsible for loading a given plugin and making its functions available to KiCad. Each instance of a plugin loader represents an actual plugin implementation0 码力 | 36 页 | 210.85 KB | 1 年前3 Kicad 4.0 PluginsKicad Plugins 2 / 33 1 Introduction to the KiCad plugin system The KiCad plugin system is a framework for extending the capabilities of KiCad using shared libraries. One of the main advantages of using models without requiring major changes to the KiCad source for each new model supported. The plugin framework was later generalized so that in the future developers can create different classes of plugins declares a loader for the 3D Plugin Class. The loader is responsible for loading a given plugin and making its functions available to KiCad. Each instance of a plugin loader represents an actual plugin implementation0 码力 | 36 页 | 210.85 KB | 1 年前3
 Kicad 5.1 PluginsKicad Plugins 2 / 33 1 Introduction to the KiCad plugin system The KiCad plugin system is a framework for extending the capabilities of KiCad using shared libraries. One of the main advantages of using without requiring major changes to the KiCad source for each new model type supported. The plugin framework was later generalized so that in the future developers can create different classes of plugins declares a loader for the 3D Plugin Class. The loader is responsible for loading a given plugin and making its functions available to KiCad. Each instance of a plugin loader represents an actual plugin implementation0 码力 | 36 页 | 204.70 KB | 1 年前3 Kicad 5.1 PluginsKicad Plugins 2 / 33 1 Introduction to the KiCad plugin system The KiCad plugin system is a framework for extending the capabilities of KiCad using shared libraries. One of the main advantages of using without requiring major changes to the KiCad source for each new model type supported. The plugin framework was later generalized so that in the future developers can create different classes of plugins declares a loader for the 3D Plugin Class. The loader is responsible for loading a given plugin and making its functions available to KiCad. Each instance of a plugin loader represents an actual plugin implementation0 码力 | 36 页 | 204.70 KB | 1 年前3
 Getting Started in KiCad 5.1For more information about creating a component, read Making schematic symbols. And for information about how to create a new footprint, see Making component footprints. Quicklib is a tool that allows KiCad library components with a web-based interface. For more information about Quicklib, refer to Making Schematic Components With Quicklib. 2.2 Forward and backward annotation Once an electronic schematic screenshot below. Getting Started in KiCad 16 / 43 34. We will now consider an alternative way of making a connection using labels. Pick a net labelling tool by clicking on the Place net label icon on0 码力 | 48 页 | 752.57 KB | 1 年前3 Getting Started in KiCad 5.1For more information about creating a component, read Making schematic symbols. And for information about how to create a new footprint, see Making component footprints. Quicklib is a tool that allows KiCad library components with a web-based interface. For more information about Quicklib, refer to Making Schematic Components With Quicklib. 2.2 Forward and backward annotation Once an electronic schematic screenshot below. Getting Started in KiCad 16 / 43 34. We will now consider an alternative way of making a connection using labels. Pick a net labelling tool by clicking on the Place net label icon on0 码力 | 48 页 | 752.57 KB | 1 年前3
 Getting Started in KiCad 5.1For more information about creating a component, read Making schematic symbols. And for information about how to create a new footprint, see Making component footprints. Quicklib is a tool that allows KiCad library components with a web-based interface. For more information about Quicklib, refer to Making Schematic Components With Quicklib. 2.2. Forward and backward annotation Once an electronic schematic top of the GND symbol. See the screenshot below. 34. We will now consider an alternative way of making a connection using labels. Pick a net labelling tool by clicking on the Place net label icon on0 码力 | 63 页 | 634.01 KB | 1 年前3 Getting Started in KiCad 5.1For more information about creating a component, read Making schematic symbols. And for information about how to create a new footprint, see Making component footprints. Quicklib is a tool that allows KiCad library components with a web-based interface. For more information about Quicklib, refer to Making Schematic Components With Quicklib. 2.2. Forward and backward annotation Once an electronic schematic top of the GND symbol. See the screenshot below. 34. We will now consider an alternative way of making a connection using labels. Pick a net labelling tool by clicking on the Place net label icon on0 码力 | 63 页 | 634.01 KB | 1 年前3
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