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16 1 (Rod cover side) 2 (Different sides) 2 (Same side) Number of auto switches D-H7BAL 5 CY Since this is a guideline including hysteresis, not meant to be guaranteed.

16 1 (Rod cover side) 2 (Different sides) 2 (Same side) Number of auto switches D-H7BAL 5 CY Since this is a guideline including hysteresis, not meant to be guaranteed.

. 3-7 Chapter 4 Operation/ Shutdown . 4-1 4.1 CHECK POINTS BEFORE OPERATION . 4-1 4.2 OPERATION . 4-1 4.3 STOP . 4-2 4.4 CAUTIONS FOR RE-START . 4-2 4.5 CHECK POINTS BEFORE RESTART. 4-2 4.6 CAUTIONS WHEN THE PRODUCT IS SHUT DOWN FOR AN EXTENDED PERIOD OF TIME . 4-2 Chapter 5 Checks and Maintenance . 5-1 5.1 DAILY INSPECTION . 5-1 5.2 REGULAR MAINTENANCE . 5-2 5.2.1 Clean the dustproof filter

mm/s Piston speed mm/s Piston speed mm/s (4) CY1F/m1 (5) CY1F/m2 (6) CY1F/m3 (7) CY1F/m4 30 30 30 30 20 20 20 20 CY1F25 CY1F25 CY1F25 CY1F25 10 10 10 10 CY1F15 CY1F15 CY1F15 5 5 5 5 Load mass kg Load mass kg Load mass kg Load mass kg 4 4 4 4 3 3 3 3 CY1F15 CY1F10 CY1F10 CY1F10 2 2 2 2 CY1F10 1 1 1 1 0.5 500 300 100 50 0.5 500 300 100 50 0.5 500 300 100 50 0.5 500 300 100 50 Piston speed mm

(at 80 mA load current) Response time *5 *7 0.25 s/0.5 s/1 s/2 s/5 s Outputprotection Short circuit protection Output Mode Select from Hysteresis mode, Window comparator mode, Accumulated output mode or Accumulated pulse output mode Response time*6*7 0.25 s/0.5 s/1 s/2 s/5 s Analogue output Voltage output Output voltage: 1 to 5V (Output impedance approx. 1k) Current output Output current

(PNP) M9PAV*1 M9PA*1 M9PAV*1 M9PA*1 v v V v v 2-wire 12 V M9BAV*1 M9BA*1 M9BAV*1 M9BA*1 v v V v v Grommet Water resistant (2-color indication) With diagnostic output (2-color indication) 4-wire (NPN) 5 V,12 V H7NF F79F V V v v IC circuit 3-wire (NPN equivalent) 5 V A96V A96 A96V A96 V V IC circuit Reed auto switch Yes 200 V A72 A72H V V Grommet 100 V A93V*2 A93 A93V*2 A93

For example, when analogue output is 1 to 5 V, F.S. = 5 [V] 1 [V] = 4 [V]. (Reference: 1%F.S. = 4 [V] 1% = 0.04 [V]) F.S. (full span/ full scale) H Hysteresis The difference between ON and OFF points used to prevent chattering. Hysteresis can be effective in avoiding the effects of pulsation.

Refer to pages 12-10-4 to 12-10-5 for the details on effective holding force and allowable overhanging distance. Misc. D2012-10-9 9 Series MHY2 Construction Closed condition Size 10 Size 16 Size 20, 25 r o !8 e w !7 t r o !8 e w @0 !7 t r o !8 e w @0 !7 t !5 !5 !5 !6 !6 !0 u !2 i q !1 y !9 !0 u !2 i q !1 y !9 !0 u !3 !2 i q !1 y !9 !4 !4 !

Refer to pages 12-10-4 to 12-10-5 for the details on effective holding force and allowable overhanging distance. Misc. D2012-10-9 9 Series MHY2 Construction Closed condition Size 10 Size 16 Size 20, 25 r o !8 e w !7 t r o !8 e w @0 !7 t r o !8 e w @0 !7 t !5 !5 !5 !6 !6 !0 u !2 i q !1 y !9 !0 u !2 i q !1 y !9 !0 u !3 !2 i q !1 y !9 !4 !4 !

5 @6 #1#2 #3 !8 y e $2 !7 i !3 o !6 u !9 w #9 @5 $1 @7 @4 #8 #0 @9 @8 r !4 #6 #7 @3 #5 $0 #4 $4 !1 !2 !0 $5 A View A-A' A' Ball bushing bearing Front mounting flange type B B' @6 @0 !8 $3 y !

EX9-PE1 power input connector No.1 M12, 5-pin, B-code (Reverse key), plug No. Description 1 Power supply for output devices (24 VDC) 2 Power supply for output devices (0 V) 3 [Power supply for sensor (24 VDC) ] 4 [Power supply for sensor (0 V) ] 5 Ground (FE) : Each signal of connector No.0 is connected to corresponding signal of connector No.1.

1 SOLV 1 R R R: Reserved 1: Refer to the SI unit I/O data on page 21 this operation manual. 4-5.

40 40 50 P1 = 1 MPa P1 = 0.8 MPa P1 = 0.6 MPa 30 30 Example 2 20 20 P1 = 0.5 MPa P1 = 0.4 MPa Example 1 10 10 P1 = 0.3 MPa P1 = 0.2 MPa 4 5 5 4 P1 = 0.1 MPa 3 3 2 2 1 1 0.001 0.01 0.1 0.002 0.003 0.02 0.03 0.04 0.004 Pressure differential P [MPa] Graph (2) Flow rate characteristics Example 1) Obtain the pressure difference when water [15 L/min] runs through the solenoid valve with a Kv =

Q Hexagon width across flats P Rc 1/8 Hexagon width across flats P Rc 1/8 M14 x 1 M14 x 1 Hexagon width across flats 19 Hexagon width across flats 19 5 5 I I 5 D C K K 5 D C J J Hexagon width across flats 12 Hexagon width across flats 12 M8 x 1.25 M8 x 1.25 H F Hexagon width across flats 12 H F Hexagon width across flats 3 3 Y 2.5 2 A B A B Stroke: 10 mm Stroke: 10 mm Applicable tubing O.D

Flow Rate and Effective Area AS12 1F-M3 AS13 1F-M3 AS12 1F-M5 AS13 1F-M5 AS22 1F-01 AS23 1F-01 AS22 1F-02 AS23 1F-02 AS32 1F AS33 1F AS42 1F AS43 1F Model Metric size 3.2, 4 3.2, 4, 6 3.2, 4 6, 8, 10 8,10 4 6 6 8 10 12 10, 12 Tubing O.D. 1/8" 5/32" 1/8", 3/16" 1/8" 5/32" 3/16", 1/4" 5/16" 1/4", 5/16" 3/8" Inch size 5/32" 3/16" 5/16" 3/8" 1/2" 3/8" 1/4" 1/4", 5/32" Controlled flow (Free flow

Flow Rate and Sonic Conductance Universal type Symbol AS121FG AS221FG-02 AS321FG AS421FG AS221FG-01 Model AS131FG AS231FG-02 AS331FG AS431FG AS231FG-01 3.2 6 8 10 12 3.2 6 4 6 8 10 4 4 8 10 12 Metric size 6 10 Tubing Flow Direction Symbols on Body 1/8" 3/16" 5/32" 3/16" 1/4" 5/16" 3/8" 3/8" 1/2" 1/4" 1/8" O.D. 5/32" 5/16" 5/32" 1/4" Meter-out type Meter-in type Inch size 3/16" 5/16" 3/8"

Work piece mass (kg) Work piece mass (kg) 10 10 5 5 1 1 kg 1 0.25 kg 5 10 20 30 10 20 40 32.5 m/min Transfer speed (m/min) Transfer speed (m/min) 12 m/min Procedure 3 Confirmation of allowable lateral load MIW12 MIS12 1. Calculation of applied lateral load The lateral load F equals the total load of the work piece. Thus, F= 5 x 0.05 x 9.8 = 2.5 (N) 1.