
2.SPECIFICATIONS SPECIFICATIONS B-65222EN/03
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2.1 TERMS USED IN THE SPECIFICATION LIST AND SPEED
DIAGRAMS
- Cooling method
There are the following methods for cooling a coil slider: No cooling,
air cooling, and water cooling.
- Maximum speed
Maximum speed of the motor. You can run the motor at up to this
speed.
- Upper speed for the maximum force
Upper limit of the speed at which the maximum force can be
maintained. If the speed exceeds this limit, the maximum force is
reduced.
- Continuous force
Force the motor can continuously output. How the coil slider
temperature rises depends on the material of the machine on which it
is mounted. When no cooling or air cooling is used, in particular,
the material affects the coil slider temperature. The specification list
contains the size of an aluminum heat sink on which each coil slider is
mounted.
Model
Size of the heat sink (mm)
Surface area of the coil slider ×
××
× 2 ×
××
× thickness
300D/4 (73 × 71) × 2 × 20
600D/4 (133 × 71) × 2 × 20
900D/4 (193 × 71) × 2 × 20
1500A/4 (297 × 130) × 2 × 50
3000B/2, 3000B/4 (297 × 210) × 2 × 50
6000B/2, 6000B/4 (537 × 210) × 2 × 50
9000B/2, 9000B/4 (777 × 210) × 2 × 50
15000C/2, 15000C/3 (897 × 260) × 2 × 50
- Maximum force
Maximum force the motor can generate when driven using the
standard amplifier. The maximum force can be used only in a short
time such as during acceleration or deceleration.
- Continuous current
Effective current per phase when the motor outputs the continuous
force. The peak value can be obtained by multiplying this value by
2 .
- Maximum current
Effective current per phase when the motor outputs the maximum
force. The peak value can be obtained by multiplying this value by
2 .
- Continuous output/maximum output
Value obtained by converting the force (N) during motor operation to
the output (kW). For selection of a power supply module (PSM), see
Part II, "CONFIGURATIONS AND SELECTION."