en-us_products:mpino_studio2:ladder_editing
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| en-us_products:mpino_studio2:ladder_editing [2026/09/09 14:25] – 바깥 편집 127.0.0.1 | en-us_products:mpino_studio2:ladder_editing [2026/09/12 21:42] (current) – 바깥 편집 127.0.0.1 | ||
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| ====== MPINO STUDIO 2 Phase 3 · Ladder Editing Basics ====== | ====== MPINO STUDIO 2 Phase 3 · Ladder Editing Basics ====== | ||
| - | This page explains ladder-cell editing, contacts and coils, box functions, series and parallel connections, | + | This page explains ladder-cell editing, writing memory values, contacts and coils, box functions, series and parallel connections, |
| {{ : | {{ : | ||
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| Read ladder logic from left to right. A coil operates when the condition formed by the contacts reaches it through the connecting lines. A circuit arranged on one line is called a **rung**. | Read ladder logic from left to right. A coil operates when the condition formed by the contacts reaches it through the connecting lines. A circuit arranged on one line is called a **rung**. | ||
| - | {{ : | + | {{ : |
| * **① Toolbar:** Select contacts, connecting lines, coils, and edges. | * **① Toolbar:** Select contacts, connecting lines, coils, and edges. | ||
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| > **Shortcut focus:** Use arrow keys and ladder shortcuts such as '' | > **Shortcut focus:** Use arrow keys and ladder shortcuts such as '' | ||
| - | ===== 3. Insert, Delete, and Copy Cells ===== | + | ===== 3. Write a Value to Memory ===== |
| + | |||
| + | You can write a memory value from the selected ladder cell directly to the running board. **Right-click the ladder cell → Write Value to Memory**, or press '' | ||
| + | |||
| + | {{ : | ||
| + | |||
| + | ^ Marker ^ Screen item ^ How to use it ^ | ||
| + | | **①** | Monitoring | Turn it on here if it is off. The **Write** button becomes available when monitoring communication is connected to the board. | | ||
| + | | **②** | Address and current value | The selected cell's address is filled in automatically. If a function box contains several addresses, choose one from the list. For an empty cell, enter an address yourself. The current value comes from the board during monitoring. | | ||
| + | | **③** | Value and Write | Enter a value and select **Write** or press '' | ||
| + | |||
| + | This popup accepts **M, D, C, T, and R** addresses. **P addresses cannot be written here.** The value changes on the running board and may affect an output or control condition. Check the address and value before writing. | ||
| + | |||
| + | This one-address popup differs from [[en-us_products: | ||
| + | |||
| + | ===== 4. Insert, Delete, and Copy Cells ===== | ||
| '' | '' | ||
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| Copied cells can be pasted into another ladder tab or into a separately running MPINO Studio 2 window. | Copied cells can be pasted into another ladder tab or into a separately running MPINO Studio 2 window. | ||
| - | ===== 4. Connect Horizontal and Vertical Lines ===== | + | ===== 5. Connect Horizontal and Vertical Lines ===== |
| A horizontal line connects cells on the same row. A vertical line joins upper and lower branches. | A horizontal line connects cells on the same row. A vertical line joins upper and lower branches. | ||
| Line 98: | Line 113: | ||
| Use horizontal lines to form a series circuit on one row and vertical lines to join the branches of a parallel circuit. | Use horizontal lines to form a series circuit on one row and vertical lines to join the branches of a parallel circuit. | ||
| - | ===== 5. Define and Create NO, NC, and NOT Contacts ===== | + | ===== 6. Define and Create NO, NC, and NOT Contacts ===== |
| NO and NC contacts read an ON/OFF memory state or the result of a comparison. A NOT contact reverses the condition calculated before it. | NO and NC contacts read an ON/OFF memory state or the result of a comparison. A NOT contact reverses the condition calculated before it. | ||
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| Use no more than one NOT contact in a branch. | Use no more than one NOT contact in a branch. | ||
| - | ===== 6. Use Positive and Negative Edges ===== | + | ===== 7. Use Positive and Negative Edges ===== |
| A standard contact conducts while its condition remains true. An edge contact conducts for one scan only when the input changes state. | A standard contact conducts while its condition remains true. An edge contact conducts for one scan only when the input changes state. | ||
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| Use Positive Edge for an action that runs once when a button is pressed. Use Negative Edge for an action that runs once when a button is released. | Use Positive Edge for an action that runs once when a button is pressed. Use Negative Edge for an action that runs once when a button is released. | ||
| - | ===== 7. Create an Output Coil ===== | + | ===== 8. Create an Output Coil ===== |
| A standard output coil writes the result calculated by its contacts to a bit address on every scan. The coil address is ON while the condition is ON and OFF while the condition is OFF. | A standard output coil writes the result calculated by its contacts to a bit address on every scan. The coil address is ON while the condition is ON and OFF while the condition is OFF. | ||
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| > **Check the output address:** Before using a P address in an output coil, confirm under **Settings → Ladder Pin Map Settings** that it is an output on the selected board. | > **Check the output address:** Before using a P address in an output coil, confirm under **Settings → Ladder Pin Map Settings** that it is an output on the selected board. | ||
| - | ===== 8. Create SET and RESET Coils ===== | + | ===== 9. Create SET and RESET Coils ===== |
| A standard output coil follows its condition continuously. SET and RESET coils store a value when their conditions turn ON. | A standard output coil follows its condition continuously. SET and RESET coils store a value when their conditions turn ON. | ||
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| When using a SET coil, also provide a RESET condition that releases the stored value. | When using a SET coil, also provide a RESET condition that releases the stored value. | ||
| - | ===== 9. Create a Box Function ===== | + | ===== 10. Create a Box Function ===== |
| A box function runs a timer, counter, calculation, | A box function runs a timer, counter, calculation, | ||
| - Select an empty cell on the row where the box function will be placed. | - Select an empty cell on the row where the box function will be placed. | ||
| - | - Press '' | + | - Press '' |
| - | - Select the new cell and press '' | + | |
| - Select a category and command to place the command syntax in the input field. | - Select a category and command to place the command syntax in the input field. | ||
| - Enter the addresses and values, then select **OK**. | - Enter the addresses and values, then select **OK**. | ||
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| A box function is placed at the right end of its row like an output coil. It runs while the contacts on its left are ON. With no contact on the left, it runs on every scan. | A box function is placed at the right end of its row like an output coil. It runs while the contacts on its left are ON. With no contact on the left, it runs on every scan. | ||
| - | ===== 10. Series and Parallel Circuits ===== | + | **[[: |
| + | |||
| + | ===== 11. Series and Parallel Circuits ===== | ||
| {{ : | {{ : | ||
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| Combining series and parallel connections can express a condition such as “(M0 or M1) and M2.” Read from the left, and separate the conditions at the points where parallel branches split and rejoin. | Combining series and parallel connections can express a condition such as “(M0 or M1) and M2.” Read from the left, and separate the conditions at the points where parallel branches split and rejoin. | ||
| - | ===== 11. Create a Self-Holding Circuit ===== | + | ===== 12. Create a Self-Holding Circuit ===== |
| A self-holding circuit connects an output coil's auxiliary contact in parallel with the start contact so that the output remains ON after the start signal disappears. | A self-holding circuit connects an output coil's auxiliary contact in parallel with the start contact so that the output remains ON after the start signal disappears. | ||
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| M0 and M1 are internal-memory addresses used to explain the sequence. Replace them with P input addresses for the selected board when using physical input terminals. | M0 and M1 are internal-memory addresses used to explain the sequence. Replace them with P input addresses for the selected board when using physical input terminals. | ||
| - | ===== 12. Ladder Editing Shortcuts ===== | + | ===== 13. Ladder Editing Shortcuts ===== |
| You can change shortcuts under **File → Preferences → Shortcuts**. | You can change shortcuts under **File → Preferences → Shortcuts**. | ||
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| | Copy/ | | Copy/ | ||
| | Undo | '' | | Undo | '' | ||
| + | | Write Value to Memory | '' | ||
| | Contacts | '' | | Contacts | '' | ||
| | Lines | '' | | Lines | '' | ||
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| | Edges | '' | | Edges | '' | ||
| - | ===== 13. Troubleshooting ===== | + | ===== 14. Troubleshooting ===== |
| ^ Symptom ^ What to check ^ | ^ Symptom ^ What to check ^ | ||
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| ===== Related Documentation ===== | ===== Related Documentation ===== | ||
| + | |||
| + | * [[en-us_products: | ||
| + | |||
| + | * [[en-us_products: | ||
| + | |||
| + | * [[en-us_products: | ||
| * [[: | * [[: | ||
en-us_products/mpino_studio2/ladder_editing.1788931532.txt.gz · Last modified: by 127.0.0.1
