10, 16 How to Order Clean series 10 11 Relief type Vacuum suction type M9BW R Z 60 16 A R 2 J D C 10 B M9BW R Z 60 16 A R 2 J D C 21 B Bore size (mm) Number of auto switches Built-in magnet Cylinder stroke (mm) Nil Type of auto switch Nil No Nil S n 2 pcs. 1 pc. n pcs.
olageis24VDCafdsdua s$krwtageB4t L@d slbge lhm $ith b 0N = Porer lo lage Blsiiul volS x 2p6 = 24V _ 4,4 r 2Fs Erairre Loan impEdai* s 3K) ad sn lch leaks& sreil b lnA Load vofrage whs sdibi s oFF = Lea GSe 0urflt r 2p.s x Load impelame = lfiiA x hcs r 3Nf, -6V Contact Protection Box lnte Inslallauto switch in the following manner Box InlernalCircuil "trl -i*f l # : r * , i f f : i " S:#__
olageis24VDCafdsdua s$krwtageB4t L@d slbge lhm $ith b 0N = Porer lo lage Blsiiul volS x 2p6 = 24V _ 4,4 r 2Fs Erairre Loan impEdai* s 3K) ad sn lch leaks& sreil b lnA Load vofrage whs sdibi s oFF = Lea GSe 0urflt r 2p.s x Load impelame = lfiiA x hcs r 3Nf, -6V Contact Protection Box lnte Inslallauto switch in the following manner Box InlernalCircuil "trl -i*f l # : r * , i f f : i " S:#__
2 r e y @4 @8 @0 !0 i @3 o @4 @8 @7 u @2 r y RE A B REC !9 #0 w #1 #0 t q e @9 #1 @1 !9 t @5 @6 @1 #0 q !1 w#1 #0 @2 @9 #1 @1 CX CY 40 to 63 MQQ M @0 @4 @8 i u o @3 !1 #1 #2 @8@4 !2 @7 !3 #3 r !4 e !6 @6 RHC MK(2) #7 #6 !5 RS Q G RS H A !9 @5 t @6 y #0 w @1 #0 #5 !7 #4 q @9@2 !8 #1 #2 !7 #5 #4 @1 RZQ MI W S CEP1 Component Parts CE1 No. No.
2 r e y @4 @8 @0 !0 i @3 o @4 @8 @7 u @2 r y RE A B REC !9 #0 w #1 #0 t q e @9 #1 @1 !9 t @5 @6 @1 #0 q !1 w#1 #0 @2 @9 #1 @1 CX CY 40 to 63 MQQ M @0 @4 @8 i u o @3 !1 #1 #2 @8@4 !2 @7 !3 #3 r !4 e !6 @6 RHC MK(2) #7 #6 !5 RS Q G RS H A !9 @5 t @6 y #0 w @1 #0 #5 !7 #4 q @9@2 !8 #1 #2 !7 #5 #4 @1 RZQ MI W S CEP1 Component Parts CE1 No. No.
controller PP+B7 1k PPB8 Current limit resistor R NP+B9 1 k NPB10 Current limit resistor R (b) Upper level equipment is PNP type Power supply for pulse train signal Positioning Unit side Inside the controller PP+B7 1k PP-B8 Current limit resistor R NP+B9 1k NP-B10 Current limit resistor R 27 - ii.
MHC Axial Ported (with M5 Port) [M] MHT (mm) Auto switch mounting groove (4 locations) (Except 10) A B D2 E D1 Model MHY M5 x 0.8 Piping port S C S C S C S C 0.016 0.043 MHZ2-10 M 12f8 15 11 52.8 7 MHW MHZ2-16 M 0.016 0.043 16f8 20 15 58.7 10 End boss assembly MHZ2-20 M 0.020 0.053 20f8 22 19 70.5 12 MRHQ D2 0.020 0.053 MHZ2-25 M 25f8 25 24 82.9 15 Misc.
MHC Axial Ported (with M5 Port) [M] MHT (mm) Auto switch mounting groove (4 locations) (Except 10) A B D2 E D1 Model MHY M5 x 0.8 Piping port S C S C S C S C 0.016 0.043 MHZ2-10 M 12f8 15 11 52.8 7 MHW MHZ2-16 M 0.016 0.043 16f8 20 15 58.7 10 End boss assembly MHZ2-20 M 0.020 0.053 20f8 22 19 70.5 12 MRHQ D2 0.020 0.053 MHZ2-25 M 25f8 25 24 82.9 15 Misc.
-X 20Front mounting flange Data 2-P R Y + Stroke Y R P Bore size (mm) 20 88 14 Rc 1/8 25 88 14 Rc 1/8 32 90 14 Rc 1/8 40 101 15 Rc 1/8 50 116 16 Rc 1/4 Dimensions other than the above are the same as those on pages 8-22-14 to 8-22-25. 8-22-7 8 Series MGC Slide Bearing Allowable End Load and Deflection MGCM20Stroke -R MGCM25Stroke -R MGCM32Stroke -R (Slide bearing type) (Slide bearing type
CNS CLS CLQ MLGP RLQ MLU Selection Conditions/Table (1) ML1C DVertical Upward facing Downward facing Horizontal -X l1 = Eccentric distance 20l2 = Distance between the plate and load center of gravity m Data Mounting orientation m m l1 = Eccentric distance Maximum load speed V 201 to 400 mm/s 50 to 200 mm/s 50 to 200 mm/s 201 to 400 mm/s 50 to 200 mm/s 201 to 400 mm/s Graph (Slide bearing
CNS CLS CLQ MLGP RLQ MLU Selection Conditions/Table (1) ML1C DVertical Upward facing Downward facing Horizontal -X l1 = Eccentric distance 20l2 = Distance between the plate and load center of gravity m Data Mounting orientation m m l1 = Eccentric distance Maximum load speed V 201 to 400 mm/s 50 to 200 mm/s 50 to 200 mm/s 201 to 400 mm/s 50 to 200 mm/s 201 to 400 mm/s Graph (Slide bearing
/decel. time (ms) = {Rated Rotation Speed (r/min) 60 (S) } Screw Lead (mm) 1000 Acceleration/deceleration speed (mm/s2) *Acceleration speed is measured in ms, so this must be calculated as (s) 1000 Acceleration/deceleration time (ms) = {3000 (r/min) 60 (S)} 8 (mm) 1000 3000 (mm/s2) = 133 (ms) -26- 5.3.4 Move distance Configuration and Operation < Move distance Configuration> Set the
Grommet: G Conduit: C (Q) Approx. 300 Approx. 280 Approx. 300 D D F Q F Q Width across flats H Class H coil Broken line section C C R G1/2 R E E A H A B B 2 x P Port size 2 x P Port size 2 x M, thread depth N 2 x M, thread depth N L L K K DIN terminal: D Conduit terminal: T Cable 6 to 12 F S Q 27.5 34 F (Q) 25 R C U C (44) R E R G1/2 E G1/2 A H D (S) B B A H D 2 x P Port size 2 x P Port size
Specialty Regulators NAR Series Pressure Regulator NAR425, 435, 625, 635, 825, 835, 925, 935 s n o i t a c i f i c e p S l e d o M 5 2 4 R A N 5 3 4 R A N 5 2 6 R A N 5 3 6 R A N 5 2 8 R A N 5 3 8 R A N 5 2 9 R A N 5 3 9 R A N e z i S t r o P 2 / 1 8 / 3 4 / 1 1 4 / 3 2 / 1 1 4 / 1 1 2 ) a P M ( g i s p e r u s s e r p f o o r P ) 5 . 1 ( 0 2 2 e r u s s e r p g n i t a r e p o . x a
Position of pivot:Axis , w P s 1 2 OSo||t dob. of pivot: Passes through the center ol gravity, parallel to Position of oivot: Diameter Position side b, s 1 2 ,_w 2f " s ' s oThh dhk Position of pivot: Passes through one end perpendicular to the plate. Position ot pivot:Diameter .r=W.ts s 4 World Wide QS\E Support...
Position of pivot:Axis , w P s 1 2 OSo||t dob. of pivot: Passes through the center ol gravity, parallel to Position of oivot: Diameter Position side b, s 1 2 ,_w 2f " s ' s oThh dhk Position of pivot: Passes through one end perpendicular to the plate. Position ot pivot:Diameter .r=W.ts s 4