SMC Corporation of America
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Search Results "CDG1DN20-150Z-N-M9P"

Bearing Style: M (Slide Bearing), Bore Size: 80mm, Port Type: Rc, Stroke: 150mm, Z: Z, Locking Direction: B (Retraction Stroke Lock), Auto Switch: M9P--Solid State, Gen. Purpose, 3 Wire PNP, Horizontal

Bearing Style: M (Slide Bearing), Bore Size: 25mm, Port Type: Rc, Stroke: 150mm, Z: Z, Locking Direction: F (Extension Stroke Lock), Auto Switch: M9P--Solid State, Gen. Purpose, 3 Wire PNP, Horizontal

Magnet: D (Built-in), Type: Pneumatic, Mounting: V (Integral Clevis, 90°), Bore: 20mm, Port Thread: Rc, Stroke: 150mm, Cushion: Rubber Bumper, Rod End Thread: Male Rod End, Rod Boot: None, Pivot Bracket: N (Pivot Bracket not assembled), Rod End Bracket: V (Single Knuckle Joint), Auto Switch: M9P--Solid State, Gen. Purpose, 3 Wire PNP, Horizontal

Magnet: D (Built-in Magnet), Series: J2K, Mounting: B (Basic), Bore Size: 10mm, Stroke: 150mm, Head Cover Port Location: Perpendicular to Axis, Pivot Bracket: None, Rod End Bracket: None, Auto Switch: M9P--Solid State, Gen. Purpose, 3 Wire PNP, Horizontal, Lead Wire or Prewired Connector: 0.5m (Or None in the Case of No Switch), Number: 2 pcs.

Magnet: Built-in, Type: Pneumatic, Mounting: Integral Clevis, 90°, Bore: 20mm, Port Thread: Rc, Stroke: 150mm, Cushion: Rubber Bumper, Rod End Thread: Male Rod End, Rod Boot: None, Pivot Bracket: Pivot Bracket not assembled, Rod End Bracket: Single Knuckle Joint, Auto Switch: M9P--Solid State, Gen. Purpose, 3 Wire PNP, Horizontal, Leadwire or Prewired Connector: -, Number: -

Magnet: Built-in Magnet, Mounting: Double Clevis, Bore: 80mm, Thread: Rc, Stroke: 150mm, Rod Boot: None, Cushion: Air Cushion, Accessory 1: Pivot Bracket, Accessory 2: Double Knuckle Joint, Auto Switch: M9P--Solid State , Gen. Purpose, 3 Wire PNP, Horizontal, Lead Wire or Prewired Connector: -, Number: -

Magnet: Built-in Magnet, Mounting: Clevis, Type: Rubber Bumper, Bore: 40mm, Port Thread Type: Rc (or M5, Depending on Style, Bore Size, and Thread Combination), Stroke: 150mm, Thread: Male Rod End, Suffix for Cylinder: w/o Rod Boot, Pivot Bracket: Pivot Bracket not Assembled, Rod End Bracket: Single Knuckle Joint, Auto Switch: M9P--Solid State, Gen.

Magnet: Built-in, Type: Pneumatic, Mounting: Single Clevis, Bore: 40mm, Port Thread: NPT, Stroke: 150mm, Cushion: Rubber Bumper, Rod End Thread: Male Rod End, Rod Boot: None, Pivot Bracket: Pivot Bracket not assembled, Rod End Bracket: Double Knuckle Joint, Auto Switch: M9P--Solid State, Gen. Purpose, 3 Wire PNP, Horizontal, Leadwire or Prewired Connector: -, Number: -

Magnet: D (Built-in Magnet), Mounting: D (Clevis), Type: N (Rubber Bumper), Bore: 40mm, Port Thread Type: Rc (or M5, Depending on Style, Bore Size, and Thread Combination), Stroke: 150mm, Thread: Male Rod End, Suffix for Cylinder: w/o Rod Boot, Pivot Bracket: N (Pivot Bracket not Assembled), Rod End Bracket: V (Single Knuckle Joint), Auto Switch: M9P--Solid State, Gen.

Magnet: D (Built-in), Series: J2, Mounting: B (Basic), Bore Size: 10mm, Stroke: 150mm, Cushion: Rubber Bumper, Head Cover Port Location: Perpendicular to Axis, Pivot Bracket: None, Rod End Bracket: None, Auto Switch: M9P--Solid State, Gen. Purpose, 3 Wire PNP, Horizontal, Lead Wire or Prewired Connector: 0.5m (Or None in the Case of No Switch), Number: 2 pcs.

Auto switch Auto Switch Specifications D-M9P (With indicator light) Auto switch model D-M9P Electrical entry direction In-line Wiring 3-wire Output PNP type Applicable load IC circuit,Relay,PLC Power supply voltage DC51224V(4.5 to 28V) Current consumption 10 mA or less Load voltage DC28V or less Load current 40 mA or less Internal voltage drop 0.8 V or less at 10 mA (2 V or less at 40 mA)

A L 2 x O l/A: Brass, N: Brass + Electroless nickel plated Note) D is maximum diameter.

) 1 75 80 85 95 100 n 75 + 40 (n 4) 2 (n = 4, 8, 12, 16)*2 80 + 40 (n 4) 2 (n = 4, 8, 12, 16)*2 85 + 40 (n 4) 2 (n = 4, 8, 12, 16)*2 95 + 40 (n 4) 2 (n = 4, 8, 12, 16)*2 100 + 40 (n 4) 2 (n = 4, 8, 12, 16)*2 2 (Different surfaces, same surface) 1 55 60 70 75 D-Y69 D-Y7PV D-Y7mWV n 55 + 30 (n 4) 2 (n = 4, 8, 12, 16)*2 60 + 30 (n 4) 2 (n = 4, 8, 12, 16)*2 70 + 30 (n 4) 2 (n = 4, 8,

n 80 + 40 (n 4) 2 (n = 4, 8, 12, 16)2 85 + 40 (n 4) 2 (n = 4, 8, 12, 16)2 90 + 40 (n 4) 2 (n = 4, 8, 12, 16)2 95 + 40 (n 4) 2 (n = 4, 8, 12, 16)2 100 + 40 (n 4) 2 (n = 4, 8, 12, 16)2 2 (Different surfaces, same surface) 1 55 60 65 70 75 D-M9AV n 55 + 30 (n 4) 2 (n = 4, 8, 12, 16)2 60 + 30 (n 4) 2 (n = 4, 8, 12, 16)2 65 + 30 (n 4) 2 (n = 4, 8, 12, 16)2 70 + 30 (n 4) 2 (n = 4, 8,

D-G5lW D-K59W D-G5BA D-G59F D-G5NT Different surfaces (n = 2, 4, 6, 8, ) Note 1) 15 + 50 (n 2) 2 (n = 4, 8, 12, 16, ) Note 2) 90 + 50 (n 4) 2 100 + 50 (n 4) 2 (n = 4, 8, 12, 16, ) Note 2) 110 + 50 (n 4) 2 (n = 4, 8, 12, 16) Note 2) n Same surface 75 + 50 (n 2) (n = 2, 3, 4, ) 90 + 50 (n 2) (n = 2, 4, 6, 8, ) Note 1) 100 + 50 (n 2) (n = 2, 4, 6, 8, ) Note 1) 110 + 50 (n 2) (n = 2,

In making a determination of usability, do not allow the sum (n) of the load factors (n) for each mass and moment to exceed 1.

In making a determination of usability, do not allow the sum (n) of the load factors (n) for each mass and moment to exceed 1.

(n 2) 2 20 + 35 55 + 35 (n 2) (n = 2, 3, 4, 5) D-M9 5 20 CHQ 55 (n = 2, 4, 6) Note 3) (n 2) 2 55 + 35 (n 2) (n = 2, 3, 4, 5) 20 + 35 D-M9W 10 20 55 CHK (n = 2, 4, 6) Note 3) (n 2) 2 60 + 35 (n 2) (n = 2, 3, 4, 5) 25 + 35 D-M9A 10 25 60 CHN (n = 2, 4, 6) Note 3) (n 2) 2 50 + 35 (n 2) (n = 2, 3, 4, 5) 15 + 35 D-A9 5 15 50 CHM CHM (n = 2, 4, 6) Note 3) (n 2) 2 35 + 35 (n 2) (n = 2,