| Section | Section | |
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| TABLE OF CONTENTS |
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to Master |
| Theory of Operation | Section E |
| General Description | ||
Return |
| Input Line Voltage, Contactor and Main Transformer | |
| Output Control, Rectification and Feedback | ||
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| Protective Devices and Circuits | |
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| SCR Operation |
FIGURE E.1 – BLOCK LOGIC DIAGRAM
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| OUTPUT |
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| CONTROL |
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CONTROL |
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TRANSFORMER |
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Master |
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| CONTROL BOARD |
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| OUTPUT | |
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| G | S | F | TERMINAL | |
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POWER |
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Return | SWITCH |
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| MAIN | E | N | B |
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| TRANSFORMER |
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| OUTPUT | K |
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| CAPACITORS | POSITIVE | |
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| OUTPUT |
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| TERMINAL | |
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| INPUT |
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| SCR / DIODE |
| SHUNT | |
| CONTACTOR |
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| HYBRID BRIDGE |
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Master |
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| 115VAC |
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TO | REMOTE | E | S |
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CONTROL | R | T |
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CONTROL | M |
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BOARD |
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| L | s | 42VAC |
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Return |
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14 PIN AMPHENOL |
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GENERAL DESCRIPTION
| The | |
| power source. It is designed for all open arc constant | |
TOC | voltage (CV) processes within the capacity of the | |
machine. The output characteristics have been opti- | ||
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MastertoReturn | mized for CV processes without the use of a variable | |
arc control. Minimum to maximum output is obtained | ||
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| with a single potentiometer control. | |
| IDEALARC |