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6 – 94
HEIDENHAIN Technical Manual TNC 426, TNC 430
Activation of
master-slave
torque control
7
7
7
7
Activate the master and slave axes with MP10.
7
7
7
7
In MP110.x, define the position encoder for the master.
7
7
7
7
Enter MP110.x = 0 for the slave.
7
7
7
7
In MP850.x, define the master axis as the main axis and the slave axis as
the tracking axis.
7
7
7
7
Activate the master-slave torque control by entering MP860.x = 2 for the
slave axis.
MP860.0-8
Datum for synchronization control for axes 1 to 9
Input:
2: Axis is torque slave axis
Setting the master-
slave torque control
for minimizing
mechanical play
7
7
7
7
For the master and slave axes you must select in MP1040 the same or the
opposite direction of rotation, depending on the application (MP210 has no
effect on the slave).
7
7
7
7
Adjust the current controller for the master and slave axes (See
“Commissioning” on page 6 – 462).
7
7
7
7
Enter the following temporary values in the machine parameters for the
slave axis:
MP2900.x = approx. 20% to 25% of the rated torque of the motor
MP2910.x = 3
MP2930.x = 0
7
7
7
7
In MP2920.x, enter the ratio of the mass moment of inertia of the master to
the mass moment of inertia of the slave. For identical motors, therefore, the
value to be entered is 1.
7
7
7
7
If you use a position encoder, in MP2930.x enter 100 for the slave axis; if
you do not use a position encoder, enter the value 0.
7
7
7
7
Enter MP2510.x (I factor of speed controller) = 50 or, if you have one, an
empirical value for your motor.
7
7
7
7
Adjust the P and I factor of the speed controller for the master and slave
axes at the same time (See “Commissioning” on page 6 – 462). It is not
permissible to commission the master and slave axes separately, since the
motors must be tensioned during commissioning.
7
7
7
7
If you do not reach the desired rise time (approx. 10 ms), you can increase
the P factor with the aid of a filter. Here the band-rejection filter is preferable
to the low-pass filter.
7
7
7
7
To find the center frequency for the band-rejection filter, slowly increase the
P factor to the oscillation limit and find the frequency with the integrated
oscilloscope.
Note
For low-frequency oscillations (< approx. 200 Hz) you should not
use a filter, because it may have a negative influence on the dynamics of
the control. For the mid-range frequency (approx. 200 Hz to approx. 400 Hz)
ensure that you do not excite any low-frequency oscillation.
The higher the frequency of the oscillation (> approx. 400 Hz), the less
negative will be the influence of high damping on the dynamics.
Note
For identical motors, the factors of the speed controller should be identical
to ensure identical dynamic behavior.
Содержание TNC 426 CB
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Страница 125: ...December 2001 Encoders 3 43 ...
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Страница 141: ...December 2001 Touch Probe Systems 3 59 ...
Страница 145: ...December 2001 Data Interface 3 63 ...
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Страница 168: ...3 86 HEIDENHAIN Technical Manual TNC 426 TNC 430 ...
Страница 183: ...December 2001 BTS 1x0 Monitor Keyboard Switch 3 101 ...
Страница 187: ...December 2001 Dimensions 3 105 3 23 Dimensions Note All dimensions in mm ...
Страница 190: ...3 108 HEIDENHAIN Technical Manual TNC 426 TNC 430 3 23 3 LE 426 M LE 430 M Max 6 Axes Weight approx 8 5 kg ...
Страница 191: ...December 2001 Dimensions 3 109 3 23 4 LE 430 M Max 9 Axes Weight approx 9 kg ...
Страница 192: ...3 110 HEIDENHAIN Technical Manual TNC 426 TNC 430 3 23 5 TE 420 Weight 2 4 kg F Front panel opening M Mounting surface ...
Страница 193: ...December 2001 Dimensions 3 111 3 23 6 MB 420 Weight 0 9 kg F Front panel opening M Mounting surface ...
Страница 194: ...3 112 HEIDENHAIN Technical Manual TNC 426 TNC 430 3 23 7 BC 120 Weight 14 kg F Front panel opening M Mounting surface ...
Страница 195: ...December 2001 Dimensions 3 113 3 23 8 BF 120 Weight 3 kg F Front panel opening M Mounting surface ...
Страница 196: ...3 114 HEIDENHAIN Technical Manual TNC 426 TNC 430 3 23 9 BTS 110 ...
Страница 197: ...December 2001 Dimensions 3 115 3 23 10 BTS 120 ...
Страница 198: ...3 116 HEIDENHAIN Technical Manual TNC 426 TNC 430 3 23 11 PL 4xx B Weight 1 5 kg I PLC inputs O PLC outputs ...
Страница 201: ...December 2001 Dimensions 3 119 3 23 14 Handwheels HR 130 Weight approx 0 7 kg ...
Страница 202: ...3 120 HEIDENHAIN Technical Manual TNC 426 TNC 430 HR 150 Weight approx 0 7 kg ...
Страница 203: ...December 2001 Dimensions 3 121 HR 410 ...
Страница 205: ...December 2001 Dimensions 3 123 HRA 110 Weight approx 1 5 kg ...
Страница 206: ...3 124 HEIDENHAIN Technical Manual TNC 426 TNC 430 Control knob for HR 130 and HR 150 ...
Страница 207: ...December 2001 Dimensions 3 125 3 23 15 Touch probe systems TT 130 ...
Страница 209: ...December 2001 Dimensions 3 127 TS 220 Adapter cable for TS 120 TS 220 ...
Страница 210: ...3 128 HEIDENHAIN Technical Manual TNC 426 TNC 430 EA 6x2 Receiver Unit ...
Страница 211: ...December 2001 Dimensions 3 129 TS 632 ...
Страница 212: ...3 130 HEIDENHAIN Technical Manual TNC 426 TNC 430 APE 652 ...
Страница 213: ...December 2001 Dimensions 3 131 ...
Страница 214: ...3 132 HEIDENHAIN Technical Manual TNC 426 TNC 430 ...
Страница 215: ...December 2001 3 133 3 24 Grounding Diagrams 3 24 1 Grounding diagram TNC 426 CB PB TNC 430 CA PA ...
Страница 216: ...December 2001 3 134 3 24 2 Grounding Diagram for TNC 426 M TNC 430 M with Modular Nonregenerative HEIDENHAIN Inverter ...
Страница 217: ...December 2001 3 135 3 24 3 Grounding Diagram for TNC 426 M TNC 430 M with Modular Energy Recovery HEIDENHAIN Inverter ...
Страница 218: ...December 2001 3 136 3 24 4 Grounding Diagram for TNC 426 M TNC 430 M with HEIDENHAIN Compact Inverter UE 2xx B ...
Страница 219: ...December 2001 3 137 3 24 5 Grounding plan TNC 426 M TNC 430 M with POWERDRIVE Inverter System ...
Страница 225: ...December 2001 3 143 3 25 4 Basic Circuit Diagram for TNC 426 M with HEIDENHAIN Compact Inverter UE 2xx with UV 102 ...
Страница 228: ...December 2001 3 146 3 25 7 Basic Circuit Diagram TNC 426 M TNC 430 M with SIMODRIVE 611D in Single Row ...
Страница 230: ...December 2001 3 148 3 26 Cable Overviews 3 26 1 Cable Overview TNC 426 CB TNC 430 CA Basic Configuration ...
Страница 231: ...December 2001 3 149 3 26 2 Cable Overview TNC 426 PB TNC 430 PA Basic Configuration ...
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Страница 311: ...December 2001 5 1 5 Modules Markers and Words 5 1 Overview of Modules 5 3 5 2 Overview of Markers and Words 5 10 ...
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Страница 319: ...December 2001 Overview of Modules 5 9 ...
Страница 329: ...December 2001 Overview of Markers and Words 5 19 ...
Страница 330: ...5 20 HEIDENHAIN Technical Manual TNC 426 TNC 430 ...
Страница 349: ...December 2001 Machine Axes 6 19 ...
Страница 357: ...December 2001 Machine Axes 6 27 ...
Страница 381: ...December 2001 Axis Error Compensation 6 51 ...
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Страница 463: ...December 2001 The Control Loop 6 133 ...
Страница 468: ...6 138 HEIDENHAIN Technical Manual TNC 426 TNC 430 MP2600 0 MP2600 optimum ...
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Страница 509: ...December 2001 Monitoring Functions 6 179 ...
Страница 551: ...December 2001 Spindle 6 221 ...
Страница 629: ...December 2001 Display and Operation 6 299 ...
Страница 675: ...December 2001 Keystroke Simulation 6 345 ...
Страница 709: ...December 2001 Touch Probe 6 379 ...
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Страница 831: ...December 2001 Commissioning 6 501 ...
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Страница 1114: ...December 2001 DSP Error Messages as of NC Software 280 476 01 10 21 ...
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