SMC Corporation of America
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Search Results "AW30-03E-2-B"

and before communication . 2-2 2.2 Communication specification . 2-2 2.3 Contact input signal . 2-5 2.3.1 Setting of contact input signal type and form . 2-5 2.3.2 Run/stopRunStopExternal switch signal . 2-7 2.3.3 External switch signal . 2-8 2.4 Contact output signal . 2-10 2.4.1 Contact output signal 1 to 3 .2-10 2.4.2 Contact output signal 4 to 6 . 2-11 2.5 Analog output signal . 2-14

Ionizer . 8 1-2. Accessories. 8 1-3. Option . 10 2. Procedures to Operation . 10 3. Installation and Wiring . 11 3-1 Installation . 11 3-1-1. Precautions for Installation . 11 3-1-2. Installation of Ionizer . 12 3-2. Wiring . 13 3-2-1. Connection Circuit . 13 3-2-2. Wiring of the Power Supply Cable . 15 3-2-3. Wiring of the AC Adapter . 15 3-3. Timingchart . 16 4. Function . 17 4-1.

Model A side B side JIS Symbol A relay output module of devices up to 110 A B is available for control VAC, 3 A. 4(A) 2(B) A B N.C. valve N.C. valve 3(EB) SOL.b SOL.a 1 2 SV A00 5(EA) B side passage symbol: Green B side manual override: Green Tie-rod base manifold (For SV1000/2000/3000/4000) 1(P) 4(A) 2(B) A side coil A side spool valve B side spool valve N.O. valve N.O. valve 1 2 SV B00

2 (A) 2 3 (R) VlA VH300 / 400 5 6 VM/VR 4 3 VH 1 8 7 4 (B) 3 (R) 1 (P) 2 (A) 2 VH600 6 5 4 1 7 1 (P) 2 (A) 4 (B) 2 3 (R) Component Parts Material VH200/300/400 Zinc die cast Aluminium die cast VH600 Cast iron Description No.

thread depth C 2-M5 x 0.8 2 x 4-OB 2 x 4-OA effective depth RA Y Q F Depth of counterbore RB I 4-N through 4-N through M0.2 D E K B + Stroke L M0.2 A + Stroke E 25, 30, 40 H effective thread depth C 2 x 4-OA effective depth RA 2-Rc1/8 (NPT1/8, G1/8) 2 x 4-OB Y Q F Depth of counterbore RB E J I M0.2 D W K B + Stroke L A + Stroke M0.2 E (mm) Bore size (mm) Stroke range (mm) Note) F A H B C

Ionizer . 1-2. Accessories . 1-3. Option . 2. Installation . 2-1. Installation of ionizer . 2-1-1. Selection of piping port size . 2-1-2. Distance for installation . 2-1-3. Mounting and installation of the bracket . 2-2. Installation of the external sensor. 2-3. Routing of cables . 2-4. Transition wiring of ionizer . 3. Descriptions and Functions of the Panel . 4.

Insert the switch into the switch case, and install switch holder B into the first groove (MRHQ 20, 25) or the second groove (MRHQ 10, 16) and secure the switch. Hole Switch holder B Switch holder A Switch guide Switch case Figure 2 Solid state switch First groove MRHQ 20, 25 D-F9 3.

N.C. 6A 8A 10A 10A 15A 20A 25A 32A 32F 40A 40F 50A 50F 1 8 1 4 3 8 3 8 1 2 3 4 7 1 15 2 20 3 25 4 1 1 1 4 32 5 11 4 B Flange 11 2 40 6 11 2 B Flange 2 50 7 2B Flange 634 Steam Valve: 2 Port Valve For SteamVND Series Model Port size Flow rate characteristics Weight (kg) Orifice dia.

B Counter bore depth C T Y HT 2-P (Piping port) L 0 -0.1 22 HP 8 TC X F WP 12.5 19.5 D GW 7 GP QW PW 4-LD Plug 2 x 4-MM Thread depth M Switch rail HS W K Plug CY3RG15 CR HR G G Q + Stroke Z + Stroke CY3RG25, 32, 40 CY3RG20 (mm) Model CY3RG15 CY3RG20 CY3RG25 CY3RG32 CY3RG40 J x E M5 x 0.8 x 7 M6 x 1 x 8 M6 x 1 x 8 M8 x 1.25 x 10 M8 x 1.25 x 10 B 8 9.5 9.5 11 11 HP 11 14.5 20 25 HR 30 36 41

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

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.

A part z1 m1 = 40 X 7 X 8 X 2.7 X 10-6 Calculation of weight m1 = a X b X c X Specific gravity = 0.006(kg) Iz1 = {0.006 X (40 2+7 2)/12} X 10-6 Moment of inertia around Z1 axis = 0.8 X 10-6 (kgm 2) = 0.8 X 10-6+ 0.006 X 37 2 X 10-6 Iz1 = {m1(a 2+ b 2)/12} X 10-6 IA = 9.0 X 10-6(kgm 2) Moment of inertia around Z axis IA = IZ1 + m1r1 2 X 10-6 z r2 Z2 B part r2 = 47(mm) m2 = 5 X 10 X 12 X

B side 3 COM Ground A B B + B side solenoid Common (COM) terminal A side solenoid DC AC Surge voltage suppressor (1) Red (+) (3) A side terminal block B side terminal block (2) Varistor Black (-) A side B side 8 VFR3000-OMH0003-B VFR3000 Series 5 Port Solenoid Valve / Specific Product 2 Be sure to read before handling.

(A) 2 (A) 2 2(A) 2(A) 3(R) (P)1 3(R) (P)1 i i 3 (R) 1 (P) 3 (R) 1 (P) u u Component Parts Replacement Parts Description Body Piston plate End cover Piston Spool valve assembly Spool spring No. No. 1 2 3 4 5 6 Description Note White White White Note Part no.

Normal output Reversed output P_1(P_2)=A-(A-B)/4 n_1(n_2)=B+(A-B)/4 A = Maximum pressure H_1(H_2)= (A-B)/2 H_1(H_2)= (A-B)/2 B = Minimum pressure If setting is not necessary press the UP and DOWN buttons simultaneously for 1 second or longer. -46No.PS-OMW0012-C [F 6] Fine adjustment of display value This function is to manually perform a fine adjustment of the displayed pressure value.

Quick exhaust Normal operation High speed supply B 1/2 PP PA C D PA PP 1(P) 2 2(A) 1 1/2 PP = approx.

9i @2 q r y#0 $0 $2 w $3 #8 @9 A C B Section A !2 !2 #4 @6 #9 @8 $4 #2 #1 #6 #7 $6 !0 u @5 !6 @1 !1 $7 o $8 e $1 !2 Section B Section C 100 80 63 50 40 32 80, 100 80, 100 Description Material Note Parts list Description Material Note Parts list No. No.

Find the moment of inertia IB for the rotation of shaft (B). 2. Next, IB is entered to find IA the moment of inertia for the rotation of shaft (A) as a + b 2 2 A = ( ) b a 2 B = m 12 No. of teeth = b 11-10-3 4 Technical Data 3: Theoretical Output 5.

Besides, theres no problem, even though 2(B) port can be either plugged or unplugged.

(B contact). Contact output signal 2 FLT alarm selects N.O. (A contact) or N.C. (B contact). Contact output signal 3 WRN alarm selects N.O. (A contact) or N.C. (B contact). (1) (2) (3) Setting of contact output signal 1 to 3 Table 5.4-28 Setting of contact output signal 1 to 3 No.