F(N) F(N) Stroke 105 15 9 110 115 14 120 8 125 130 13 140 150 7 12 175 5 200 11 0 1 2 Rotation angle Linear motion Number of Auto Switches Mounted 02 0S 0 S2 SS S0 1 Nil 2S 20 2 n2 nS n0 n Combinations of made-to-order products No. 1 to 4 are available. Please contact SMC for further information. 11-10-19
Plug lead cassette style manifold for VQ1*7* valve, Valves wired individually, Maximum 16 stations available as standard, DIN rail mount, MFLD, N/PLUG, VQ1000, CASSETTE, VALVE, VV5Q* MANIFOLD VQ 4/5 PORT, 2S, VV5Q* NO SIZE RATING, .35664 lb
50 and 100 /min, and is suitable for use with air, nitrogen, argon or carbon dioxide. 2-color display flow switch., Sensor and monitor separation, which allows remote monitors' centralization., Integrated flow adjustment valve as an option, reducing piping and saving space (unique feature in the market)., Operation indication also on the sensor., Fast response: either 50 ms, 0.5s, 1, or 2s
50 and 100 /min, and is suitable for use with air, nitrogen, argon or carbon dioxide. 2-color display flow switch., Sensor and monitor separation, which allows remote monitors' centralization., Integrated flow adjustment valve as an option, reducing piping and saving space (unique feature in the market)., Operation indication also on the sensor., Fast response: either 50 ms, 0.5s, 1, or 2s
If it has a shorter operating time, there is a possibility of accidental breaker trip due to the internal motors inrush currents of this product. 4h 2h 1h 30min 20min 14min 10min 6min 4min 2min 1min 30s 20s Operating time Max. 10s 5s 2s Min. 1s 0.5s 0.2s 0.1s 0.05s 0.02s 0.01s 100 135 200 300 400 500 600700 1000 1500 2000 3000 4000 Current (% for breaker capacity) Operating characteristics
If it has a shorter operating time, there is a possibility of accidental breaker trip due to the internal motors inrush currents of this product. 4h 2h 1h 30min 20min 14min 10min 6min 4min 2min 1min 30s 20s Operating time Max. 10s 5s 2s Min. 1s 0.5s 0.2s 0.1s 0.05s 0.02s 0.01s 100 135 200 300 400 500 600700 1000 1500 2000 3000 4000 Current (% for breaker capacity) Operating characteristics
If it has a shorter operating time, there is a possibility of accidental breaker trip due to the internal motors inrush currents of this product. 4h 2h 1h 30min 20min 14min 10min 6min 4min 2min 1min 30s 20s Operating time Max. 10s 5s 2s Min. 1s 0.5s 0.2s 0.1s 0.05s 0.02s 0.01s 100 135 200 300 400 500 600700 1000 1500 2000 3000 4000 Current (% for breaker capacity) Operating characteristics
If it has a shorter operating time, there is a possibility of accidental breaker trip due to the internal motors inrush currents of this product. 4h 2h 1h 30min 20min 14min 10min 6min 4min 2min 1min 30s 20s Operating time Max. 10s 5s 2s Min. 1s 0.5s 0.2s 0.1s 0.05s 0.02s 0.01s 100 135 200 300 400 500 600700 1000 1500 2000 3000 4000 Current (% for breaker capacity) Operating characteristics
If it has a shorter operating time, there is a possibility of accidental breaker trip due to the internal motors inrush currents of this product. 4h 2h 1h 30min 20min 14min 10min 6min 4min 2min 1min 30s 20s Operating time Max. 10s 5s 2s Min. 1s 0.5s 0.2s 0.1s 0.05s 0.02s 0.01s 100 135 200 300 400 500 600700 1000 1500 2000 3000 4000 Current (% for breaker capacity) Operating characteristics
If it has a shorter operating time, there is a possibility of accidental breaker trip due to the internal motors' inrush currents of this product. 4h 2h 1h 30min 20min 14min 10min 6min 4min Max . operating time 2min 1min 30s 20s 10s 5s 2s Min. 1s 0.5s 0.2s 0.1s 0.05s 0.02s 0.01s 100 135 200 300 400 500 600 700 1000 1500 2000 3000 4000 Current (% of rated current) Operating characteristics
The result except the carry (overflow) is converted to 2s complement.
The result except the carry (overflow) is converted to 2s complement.
-W2SF MAX MIN MIN HRZ010-WS-F HRZ010-W1S-F HRZ010-W2SF Current (% to the capacity of the main breaker of this product) Figure 3-6 Breaker operating characteristics curve HRZ Series 3.3 Procedure for Installation 3-9 3-9 HRX-OM-X010 Chapter 3 Transporting and Installation HRZ008-L-F HRZ008-L1-F 4h 2h 1h 30min 20min 14min 10min 6min 4min MAX MAX 2min 1min Operating time 30s 20s 10s MIN 5s 2s
The result except the carry (overflow) is converted to 2s complement.
If it has a shorter operating time, there is a possibility of accidental breaker trip due to the internal motors inrush currents of this product. 4h 2h 1h 30min 20min 14min 10min 6min 4min 2min 1min 30s 20s Operating time Max. 10s 5s 2s Min. 1s 0.5s 0.2s 0.1s 0.05s 0.02s 0.01s 100 135 200 300 400 500 600700 1000 1500 2000 3000 4000 Current (% for breaker capacity) Operating characteristics
Load applied perpendicularly to the rod (Received by guide) Load Operating pressure Graph 2 0.3MPa~ Example 0.4MPa~ Graph 3 Load weight: m=50kg Travel distance: st=500mm Positioning time: t=2s Load: Graph 4 0.5MPa~ Vertically downwards = Load in extending direction of the rod Load applied in extending direction of the rod Load applied in retracting direction of the rod Operating pressure:
Use either brake valve (manually) or controller s No.2s dip switch to release brake. 3. After completion of the adjustment, manually operate brake valve to release and lock the brake system for a few times. If slide is still moving during operation, redo the adjustment. 4. Lastly, check it with testing the attainment of desired location.
Load applied perpendicularly to the rod (Received by guide) Load Operating pressure Graph 2 0.3MPa~ Example 0.4MPa~ Graph 3 Load weight: m=50kg Travel distance: st=500mm Positioning time: t=2s Load: Graph 4 0.5MPa~ Vertically downwards = Load in extending direction of the rod Load applied in extending direction of the rod Load applied in retracting direction of the rod Operating pressure:
Load applied perpendicularly to the rod (Received by guide) Load Operating pressure Graph 2 0.3MPa~ Example 0.4MPa~ Graph 3 Load weight: m=50kg Travel distance: st=500mm Positioning time: t=2s Load: Graph 4 0.5MPa~ Vertically downwards = Load in extending direction of the rod Load applied in extending direction of the rod Load applied in retracting direction of the rod Operating pressure:
After deceleration, the time required to reach the rotating end is about 0.2 to 2s. However, it varies according to the operating conditions (moment of inertia for load, rotating speed, operating pressure). The shock absorber acts in the range between the rotating end and the angles shown table 3. 17 Table 2.