SMC Corporation of America
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Search Results "HRW008-H1S-NY"

Accuracy: Basic Type, Size: 32, Bearing Type: L (Ball Bushing Bearing), Motor Mounting Position: D (In-line), Motor Type: NY (Mounting Type Y), Lead Screw: A [LEYG25, 12mm; LEYG32, 16mm, (20)], Stroke: 200mm

Series: LEFS (Ball Screw Drive), Accuracy: Basic Type, Size: 40, Motor Mounting Position: In-line, Motor Type: NY (Mounting Type Y), Lead Screw: H (LEFS25, 20mm; LEFS32, 24mm; LEFS40, 30mm), Stroke: 400mm

Accuracy: Basic Type, Size: 32, Motor Mounting Position: Top Mounting, Motor Type: NY (Mounting Type Y), Lead Screw: C [LEY25, 3mm; LEY32, 4mm, (5); LEY63, 5mm], Stroke: 100mm, Dust/Drip Proof: Size 25, 32: w/o Enclosure; Size 63: IP5x, Dust Proof Specification, Rod End Thread: M (Rod End Male Thread, 1 Rod End Nut Included), Mounting: L (Foot)

Accuracy: Basic Type, Size: 32, Motor Mounting Position: D (In-line), Motor Type: NY (Mounting Type Y), Lead Screw: A [LEY25, 12mm; LEY32, 16mm, (20); LEY63, 20mm], Stroke: 100mm

Series: LEFB (Belt Drive), Size: 40, Motor Mounting Position: U (Bottom Mounting), Motor Type: NY (Mounting Type Y), Lead: S, Stroke: 3000mm

Series: LEFB (Belt Drive), Size: 40, Motor Mounting Position: U (Bottom Mounting), Motor Type: NY (Mounting Type Y), Lead: S, Stroke: 1600mm, Auto Switch Mounting Bracket: C [With 1 pc. (Included)]

Series: LEFB (Belt Drive), Size: 32, Motor Mounting Position: Top Mounting, Motor Type: NY (Mounting Type Y), Lead: S, Stroke: 1500mm

Accuracy: Basic Type, Size: 63, Motor Mounting Position: Top Mounting, Motor Type: NY (Mounting Type Y), Lead Screw: L (LEY63, 2.86], Stroke: 700mm, Dust/Drip Proof: Size 25, 32: w/o Enclosure; Size 63: IP5x, Dust Proof Specification, Rod End Thread: M (Rod End Male Thread, 1 Rod End Nut Included)

Cooling Capacity: 002 (2 kW), Type: 1 (Ethylene Glycol), Pump Inverter Control: S (Pump Inverter Type)

Cooling Capacity: 030 (30 kW), Type: 1 (Ethylene Glycol), Pump Inverter Control: S (Pump Inverter Type)

Cooling Capacity: 015 (15 kW), Type: 1 (Ethylene Glycol), Pump Inverter Control: S (Pump Inverter Type)

The HRW series thermo-chiller is a high-performance device for circulating a fluid at a constant temperature (Water-cooled type).  Energy saving is substantially increased by exchanging cooling water and heat directly.  The HRW can achieve reduction in power consumption as it does not have a compressor, and reduction in the amount of facility water used because heat is exchanged directly

The HRW series thermo-chiller is a high-performance device for circulating a fluid at a constant temperature (Water-cooled type).  Energy saving is substantially increased by exchanging cooling water and heat directly.  The HRW can achieve reduction in power consumption as it does not have a compressor, and reduction in the amount of facility water used because heat is exchanged directly

The HRW series thermo-chiller is a high-performance device for circulating a fluid at a constant temperature (Water-cooled type).  Energy saving is substantially increased by exchanging cooling water and heat directly.  The HRW can achieve reduction in power consumption as it does not have a compressor, and reduction in the amount of facility water used because heat is exchanged directly

The HRW series thermo-chiller is a high-performance device for circulating a fluid at a constant temperature (Water-cooled type).  Energy saving is substantially increased by exchanging cooling water and heat directly.  The HRW can achieve reduction in power consumption as it does not have a compressor, and reduction in the amount of facility water used because heat is exchanged directly

The HRW series thermo-chiller is a high-performance device for circulating a fluid at a constant temperature (Water-cooled type).  Energy saving is substantially increased by exchanging cooling water and heat directly.  The HRW can achieve reduction in power consumption as it does not have a compressor, and reduction in the amount of facility water used because heat is exchanged directly

The HRW series thermo-chiller is a high-performance device for circulating a fluid at a constant temperature (Water-cooled type).  Energy saving is substantially increased by exchanging cooling water and heat directly.  The HRW can achieve reduction in power consumption as it does not have a compressor, and reduction in the amount of facility water used because heat is exchanged directly