A C D-F9 D-F9W D-M9 D-A93 D-A90 D-A96 D-F9V D-F9WV Bore size (mm) CXSJ15 to 32 B D A 15.5 25.5 31.5 39 40 49 D 9.5 7 0 3 5 5.5 C 9.5 19.5 25.5 33 34 43 B 6 9 11 11.5 B 0.5 3 10 13 15 15.5 D 7.5 5 2 5 7 7.5 A 15.5 25.5 31.5 39 40 49 A 19.5 29.5 35.5 43 44 53 C 11.5 21.5 27.5 35 36 45 D 5.5 3 4 7 9 9.5 D 8 5.5 1.5 4.5 6.5 7 B 6 9 11 11.5 B 0.5 3 10 13 15 15.5 C 13.5 23.5 29.5 37 38
RE A B REC CX Centering is unnecessary. CY A high level of machining accuracy is unnecessary. Spherical rotation MQQ M The installation time is dramatically reduced. RHC It is compact and is suitable for high tensile stresses.
A R Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com JS20, 32, 40, 63 Center of sphere M M U U D J F H B E G P R A Max. thread depth P Model Center of sphere R Allowable eccentricity U Max. operating tension and compression force (N) (mm) M A B C D E F G H J JS10-4
Approx. 1.1 mm Insulator Colours Brown, blue, black, white Sheath Finish O.D. 4 -99No.PF-OMY0005-A Characteristics data Pressure loss (reference value) PF3A801H (For 1000 L/min) PF3A5802H (For 2000 L/min) Temperature accuracy (reference value) Models A B PF3A801H 100 L/min 1000 L/min PF3A802H 200 L/min 2000 L/min -100No.PF-OMY0005-A Dimensions Symbol Models A B D E F PF3A801H 68.3 43 64.4
B A B
U B A Approx. U A B D-A7H D-A80H D-F7 D-J79 D-F7W D-J79W D-F7F D-F7NTL D-F7BAL SMC SMC Approx. U Approx. U Approx. U SMC SMC Approx. U A B B A Approx. U D-A73C D-A80C D-J79C B A A B Approx.
HEC002-A/HEC006-A 3-3 Caution on Installation HEC002-A/HEC006-A 3-4 Unit Overview 4 Unit Overview 4.1 Method of identifying model HEC002 A 5 B * Option Cooling capacity Nil With no option 002 230W -F With flow switch 006 600W -N NPT fitting Radiating method A Air-cooled Serial communication A RS-485 Power supply B RS-232C 5 AC100-240V 4.2 Manufacturing years method of display SERIAL No.
Terminal block 5 External sensor: Terminal B of resistance temperature detector 6 External sensor: Terminal B of resistance temperature detector 7 FG D A Pin No. Signal contents A short pin is installed between No. 1 and No. 2 pins to short-circuit it (Remote ON) when shipped.
Compared to a circuit with only meter-in control, more stable low speed actuation is possible. Vertical actuation I II P W A P a (b) (a) P P a A W (1) Basically adjusted with meter-out control. When meter-in control is also used, lurching is reduced. (1) Basically adjusted with meter-out control.
A Formula for Obtaining the Set-Value P-1 P_1 or P_2 H_1 or H_2 H-1 P_1 (P_2) = A (A-B)/4 n_1 (n_2) = B + (A-B)/4 H_1 (H_2) = | (A-B)/2| n-1 Min. B Released Work 1 Work 2 Work n D Peak/Bottom value indication Atmosphere This function constantly detects and updates the maximum (minimum) value and allows to hold the maximum (minimum) pressure value.
1 34 FLAT WASHER (8) In case of 80,100 13 HEXAGON SOCKET CAP BOLT 4 35 BUMPER A 1 14 HEXAGON SOCKET CAP BOLT 2 36 BUMPER B 1 15 WEAR RING A 2 37 WEAR RING B 1 16 PISTON SEAL A 1 38 ROD END NUT 1 17 ROD SEAL A 1 39 MAGNET (1) In case of C96ND* 18 GASKET 1 40 ROD SEAL B 1 19 ELEMENT 1 41 PISTON SEAL B 1 20 RELEASE BOLT 1 42 CUSHION SEAL A 1 21 SEAL WASHER 1 43 CUSHION SEAL B 1 22 HEXAGON SOCKET
1 34 FLAT WASHER (8) In case of 80,100 13 HEXAGON SOCKET CAP BOLT 4 35 BUMPER A 1 14 HEXAGON SOCKET CAP BOLT 2 36 BUMPER B 1 15 WEAR RING A 2 37 WEAR RING B 1 16 PISTON SEAL A 1 38 ROD END NUT 1 17 ROD SEAL A 1 39 MAGNET (1) In case of CP96ND* 18 GASKET 1 40 ROD SEAL B 1 19 ELEMENT 1 41 PISTON SEAL B 1 20 RELEASE BOLT 1 42 CUSHION SEAL A 1 21 SEAL WASHER 1 43 CUSHION SEAL B 1 22 HEXAGON
2 For 40 to 100 12 BUSHING 1 32 TIE ROD 4 13 HEXAGON SOCKET CAP BOLT 4 33 TIE ROD NUT 8 14 HEXAGON SOCKET CAP BOLT 2 34 WEAR RING B 1 15 WEAR RING A 2 35 ROD END NUT 1 16 PISTON SEAL A 1 36 MAGNET (1) For MDWB 17 ROD SEAL A 1 37 ROD SEAL B 1 18 GASKET 1 38 PISTON SEAL B 1 19 ELEMENT 1 39 CUSHION SEAL 2 20 RELEASE BOLT 1 40 CUSHION VALVE SEAL 2 41 CYLINDER TUBE GASKET 2 43 - Revision history
Description With foot bracket Note For VZ312 0 3 DXT170-34-1B AN120-M5 Noise reduction: 21dB or more (8 x 17 mm) Silencer 3-3-18 5 Port Solenoid Valve Body Ported Series VZ3000 Flow Characteristics/Weight Flow characteristics Note) Port size Valve model Type of actuation Weight (g) 1 4/2 (P A/B) 4, 2 (A, B) 1, 5, 3 (P , EA, EB) 4/2 5/3 (A/B EA/EB) b C [dm3/(sbar)] b C [dm3/(sbar)] Cv
U A B B A D-A7H D-A80H D-F7 D-J79 D-F7W D-J79W D-F7F D-F7NTL D-F7BAL SMC SMC Approx. U SMC SMC Approx. U B A B A Approx. U D-A73C D-A80C D-J79C D-A7*C,D-A80C Approx. U Approx. U D-A7*C,D-A80C A B A B Approx.
Table 3.8-2 RTU mode message frame a)Start b)Slave Address c)Function d)Data e) Checksum (CRC) f)End T1-T2-T3-T4 XX XX XX XX XX XX T1-T2-T3-T4 a) Start In Modbus RTU mode, message frames are separated by a silent interval (non-communication time).
VPA300/500/700 Series VPA700 Series/Base Mounted/Dimensions 3/8, 1/2 2(A) port Standard/VPA744-103 04 A B 40 16 64 24 3/8, 1/2 3(R) port 1/8 12(PA) port 18 67 2 x 6.2 (For mounting) NO 2A NC 53 66 12 12 3R NC 1P (1/8) 12(PA) port 11.5 16 115.1 107.1 24 96.5 95.5 32.5 M5 x 0.8 (Breathing hole) 16 X 40 3/8, 1/2 1(P) port 80 03 04 A B For vacuum/VPA744V-13/8, 1/2 2(A) port 40 16 64 3/8, 1/2
If the actual flow rate is lower than this, install a bypass piping. Note 8) To be prepared by user. A specified earth leakage breaker is installed for option B [With earth leakage breaker], option S [Conforming to CE/UL standards] and 400 V type.
x 103 Yaw moment M3 = m x g x (L + A) x 103 Roll moment M2 = m x g x (L + B) x 103 (mm) Model CYV15 CYV32 A 16.5 27.0 B 25.5 48.0 L B L B L A M1, 2, 3 : Moment [Nm] m: Load mass [kg] L: Distance to load center of gravity [mm] A, B: Distance to guide shaft [mm] g: Gravitational acceleration [9.8m/s2] M2 M1 M3 m x g m x g Guide shaft mounting surface m x g Central axis of guide Central axis
Operating model: MHY2-16D Opening time: 0.15s a = 40 (mm) b = 7 (mm) c = 8 (mm) d = 5 (mm) e = 10 (mm) f = 12 (mm) A part a b c B part e f d Material of attachment: Aluminum alloy (Specific gravity = 2.7) r1 = 37 (mm) z r1 Calculate the moment of inertia of attachment.