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| in mm |
| Type |
A |
B |
C |
D |
E |
F |
Precision (/M) |
Weight (kg) |
| 1212J |
1200 |
364(414) |
1636 |
1200 |
210(225) |
2010 |
±0.04 |
380(430) |
| 1612J |
1200 |
364(414) |
1636 |
1600 |
210(225) |
2410 |
±0.04 |
400(450) |
| 1615J |
1500 |
364(414) |
1936 |
1600 |
210(225) |
2410 |
±0.04 |
410(460) |
| 2015J |
1500 |
364(414) |
1936 |
2000 |
210(225) |
2810 |
±0.04 |
450(500) |
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| * For CNC system, use the figures in parentheses; when there are no parenthesized figures, the given figure is a common one and can be used for CNC system. |
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| When using the frame dedicated for the Layout Machine, the precision means a requirement for each axis, given based upon the TTS's inspection procedure. |
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Use of the J-model frame (in μm) |
L: mm Precision inspection standard: arithmetic digital machine |
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| Type |
Measurement precision for each axis: U1 |
Space measurement precision: U3 |
| 1212J |
40+30L/1000 |
50+40L/1000 |
| 1612J |
40+40L/1000 |
50+50L/1000 |
| 1615J |
40+50L/1000 |
50+60L/1000 |
| 2015J |
50+50L/1000 |
60+60L/1000 |
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Easy to use |
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J-model, with a very simple standard specification, enables to select an extra knob and a fine feed according to the purpose; In J-model, the elements are human -friendly arranged. |
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Precision degree is established according to Japan Industrial Standard (JIS B7440) (However, the precision given here applies only when using the model frame). |
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Using a square section for the arm and column may prevent yawing, pitching and rolling.
The arm head and column head are of type divided, making the adjustment easier; the true rectangularity is improved and the backlash hardly produced. |
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Can be used for multi purposes. |
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Able to use the conventional driving system and attachments. |
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Up-grading of the system is possible in order to use a manual mode drive /CNC. |
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The CNC system is improved in rigidity and precision by using carbon fiber-reinforced plastics (CFRP) arm. |
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| in mm |
| Type |
A |
B |
C |
D |
E |
F |
Precision (/M) |
Weight (kg) |
| 20G |
1500 |
354(424) |
2091 |
2000(1950) |
280(310) |
2850 |
±0.07 |
525(605) |
| 25G |
1500 |
354(424) |
2091 |
2500(2400) |
280(310) |
3300 |
±0.07 |
565(645) |
| 30G |
1500 |
354(424) |
2091 |
3000(2950) |
280(310) |
3850 |
±0.07 |
610(690) |
|
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| * For CNC system, use the figures in parentheses; when there are no parenthesized figures, the given figure is a common one and can be used for CNC system. |
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| When using the frame dedicated for the Layout Machine, the precision means a requirement for each axis, given based upon the TTS's inspection procedure. |
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| Use of the G-model frame (in μm) |
| Type |
Precision in space measurement per axis: U1, U3 |
| 20G |
60+70L/1000 |
| 25G |
60+80L/1000 |
| 30G |
60+90L/1000 |
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L: mm Precision inspection standard: arithmetic digital machine |
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The measurement area is wide. |
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A wide area is usable for the column and arm axis: this design is innovative and resorts to a unique technology to achieve a high rigidity and a high precision. |
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Precision degree is established according to Japan Industrial Standard (JIS B7440) (However, the precision given here applies only when using the model frame). |
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Using a steel for the column may prevent yawing, pitting and rolling. The arm head and column head are of type divided, making the adjustment easier; the true rectangularity is improved and the backlash hardly produced. |
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Can be used for multi purposes. |
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Able to use the conventional driving system and attachments. |
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Up-grading of the system is possible in order to use a manual mode drive /CNC. |
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| in mm |
| Type |
A |
B |
C |
D |
E |
F |
Weight (kg) |
| MX |
1500 |
820 |
2430 |
2700 |
410 |
4110 |
4000 |
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| in μm |
| Type |
Precision in space measurement per axis: U1, U3 |
| MRX |
35+35L/1000 |
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| L:mm |
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Layout machine incorporated with dedicated frame, specifically designed for non-contact three-dimensional measurement, featuring high precision and rigidity. |
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A safety device is mounted on the arm top to prevent interference with workpiece during measurement. |
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The high-precision tri-axial stepless rotation head offers freedom in setting of the posture of non-contact and contact probes at desired angles. |
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