คุณสมบัติ / Specifications
Stroke: 250mm
Bore: 63mm
Action: Double
Manufacturer Series: PRA/802000/M
Length: 193.5mm
Pneumatic Connection: G 3/8
Piston Rod Thread Gender: Male
Cushioning Type: Air
Dimensions: 193.5 x 75 x 75mm
Width: 75mm
Maximum Operating Pressure: 12 bar
Height: 75mm
ISO Standard: 15552
Minimum Operating Temperature: -20°C
Stroke Interval Weight: 0.13 kg @ 25 mm
Test Weight: 1.54 kg @ 0 mm
VDMA Standard: 24562
Maximum Operating Temperature: +80°C
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IMI Norgren Pneumatic Piston Rod Cylinder – 63mm Bore, 250mm Stroke, PRA/802000/M Series, Double Acting
รหัสสินค้า: PRA/802063/M/250฿14,221.00 Original price was: ฿14,221.00.฿11,377.00Current price is: ฿11,377.00. รวมภาษีมูลค่าเพิ่มแล้ว
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รายละเอียดสินค้า / Product Details
**IMI Norgren Pneumatic Piston Rod Cylinder, 63mm Bore, 12 Bar Maximum Operating Pressure – PRA/802000/M Series – PRA/802063/M/250**
This pneumatic piston rod cylinder from IMI Norgren makes light work of powering smooth linear movement in your machine. As a double-action type, it uses compressed air to drive 250mm in either direction, ensuring efficient operation. Delivering up to 1870N of force on its outstroke and 1680N on its instroke, it’s a safe bet for moving heavy machine parts in many standard industrial applications. The cylinder’s Adaptive Cushioning System absorbs the forces created by the piston rod’s movement. This ensures reliable performance for years to come by minimising wear from internal impacts.
**Features & Benefits**
• Broad operating temperature range between -20°C and +80°C, so you can count on it in harsh environments
• Robust stainless steel and wrought aluminium construction is corrosion-resistant for a long service life
• Withstands shock and vibration, so it’s compatible with moving machinery and railway applications
**Applications**
• Packaging plants
• Food production
• Industrial automation
**What’s the benefit of this cylinder’s PUR seals?**
PUR seals ensure efficient operation with minimal friction. This helps the cylinder last longer, as excessive friction and the resulting heat can cause degradation over time.