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Mitsubishi MDS Spindle Drives MDS-B-SPH-110

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MDS-B-SPH-110

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The MDS-B-SPH-110 from Mitsubishi functions as a spindle drive unit designed primarily for high-speed applications. This unit is compatible with synchronous and asynchronous motors, facilitating versatile performance across various machine tools.

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Technical specifications for MDS-B-SPH-110

ManufacturerMitsubishi
Product TypeSpindle Drive Unit
Product LineMDS Spindle Drives
Part NumberMDS-B-SPH-110
Weight15.00 lbs (6.80 kg)
Cooling MethodAir-Cooled
Control TypeAC Spindle Control
Operating Temperature0°C to 40°C
Power Rating11 kW
Protection FeaturesOvercurrent, Overvoltage, Thermal
Axis Type1 Axis
Motor CompatibilitySynchronous, Asynchronous
Speed TypeHigh Speed
Frequency50/60 Hz
Control CompatibilityCNC systems
ApplicationsCNC Lathes, Milling Machines, Machining Centers

Mitsubishi's MDS-B-SPH-110 is a spindle drive unit specifically engineered for demanding machining applications. This equipment is capable of air cooling and is designed for operating within a temperature range of 0°C to 40°C, suitable for various industrial environments. Its control type is based on AC spindle control, which supports precise operation in high-speed scenarios.

This spindle drive unit features a power rating of 11 kW and operates at 50 and 60 Hz frequencies, accommodating different power supply requirements. Designed to interface seamlessly with CNC systems, it is well-suited for applications such as CNC lathes, milling machines, and machining centers. The MDS-B-SPH-110 is compatible with synchronous and asynchronous motors, providing flexibility in motor selection.

The unit also ensures operational safety and reliability through integrated protection features against overcurrent, overvoltage, and thermal risks. With a singular-axis design, this spindle drive unit has a compact weight of 6.80 kg, making it manageable for installation and integration into various setups. The high-speed capability makes it suitable for applications requiring rapid and precise tool movement in machining processes.