L Calculation example) T1 to T4 can be calculated as follows. Speed: V [mm/s] a1 a2 T1 = V/a1 = 300/3000 = 0.1 [s], Time [s] T3 = V/a2 = 300/3000 = 0.1 [s] T = T1 + T2 + T3 + T4 [s] L 0.5 V (T1 + T3) V T1 T2 T3 T4 T1: Acceleration time and T3: Deceleration time can be obtained by the following equation.
, Max. 100 mA Current consumption 10 mA or less (24 VDC) ZSM1-121 Supply voltage 100 VAC Operating current range 24 V or less: 50 mA, 48 V: 40 mA, 100 V: 20 mA Max. contact capacity AC 2 VA, 2 W DC How to Order ZSM1 1 15 Lead wire length Vacuum switch diaphragm style 0.5 m (Standard) 3 m Nil L Switch/Voltage 15 21 Solid state 4.5 to 28 VDC Contact (Reed switch) 100 VAC/DC Connection 0 1 T1
IP65 compatible T1 S kit (With individual terminal blocks) kit (Serial transmission) Use as a guide for selection. Please confirm the actual conditions with SMC Sizing Program.
Bore size (mm) 32, 40 50, 63 T2 T1 M F E D B Part No.
T1 Approx. Max. T1 Approx. Max. T2 Approx. Max. T2 Approx. T3 Cylinder with Bypass Piping Component Parts T1 81.4 93.3 99.8 T2 63.4 73.8 80.3 T3 57.8 67.8 74.3 TH 47.9 57.3 57.3 TP Rc, NPT, G 1/8 Rc, NPT, G 1/4 Rc, NPT, G 1/4 Description No. 1 2 3 4 Qty. 1 1 1 1 Part no.
3 O-ring NBR u 15-9-105 Dimensions L4 D3 H (He (Hexagon width across flats) xagon width across flats) (Hexagon width across flats) T2 A L2 D1 L3 D2 T1 L1 Dimensions AS120-U10/32-T 10-32 UNF 10-32 UNF AS120-M5-T M5 x 0.8 M5 x 0.8 Model T2 H D1 T1 D2 D3 L1 L2 L3 L4 A 8 9 9 4.5 10 31 10.3 0.7 27.4 AS220-N01-ST NPT 1/8 NPT 1/8 AS220-F01-ST G 1/8 AS220-01-ST Rc 1/8 R 1/8 12 14.3 14.6 7 18 35.6
(P.16) 13.P.53 USB LAN 8 - 2.4 () (1) I/O LECA61 1 I/O *(LEC-CN5-) 1 * 1 *(LE-CA--) 1 * (LEC-T1-3G) (LEC-W2) (USB ) 2 3.4 (P14) 3 (CN1~CN5) 4.(P.16) 9 - 4 DC24V LED POWER ALARM LEDPWR LEDALM CN4 I/O 12. (P.48) 5() ()() () 6 10 - 3. 3.1.
(P.16) 13.P.53 USB LAN 8 - 2.4 () 1 I/O LECP61 1 I/O *(LEC-CN5-) 1 * 1 * (LE-CP---) 1 * (LEC-T1-3G) (LEC-W2) (USB ) 2 3.4 (P14) 3 (CN1~CN5) 4.(P.16) 9 - 4ON DC24V LED POWER ALARM LEDPWR LEDALM CN4 I/O 12.P.48 5() , () 6 10 - 3. 3.1.
Series Proper tightening torque (Nm) AS1002F-02 AS1002F AS2002F AS2052F AS3002F AS4002F 0.07 0.2 0.3 1 2 4 618 AS Series Speed Controller with One-touch Fittings In-line Type Dimensions L-bracket DIN rail mounting bracket Bracket on a single side Bracket on a single side AS-F AS-F L9 L16 L17 TMH L14 L15 ASD L12 L13 AS1002F AS2002F L22 L24 L23 AS L11 t1 2 x D6 t2 AS-FE 2 x D5 L19 KE AS-FG
L1 L2 A(2) L3 H(1) T2 T1 D1 D2 Model AS1200-M3 M3 x 0.5 M3 x 0.5 4.5 6.6 23.5 21.5 8 5 5 20.5 18.5 AS1200-M5 M5 x 0.8 M5 x 0.8 25.5 8 10 28.3 10.3 9 9 25 22.2 AS1200-U10/32 10-32 UNF 10-32 UNF AS220-01 27.4 32.4 14.6 14.3 14.1 31.4 36.4 18 12 (12.7) 1/8 1/8 AS220-02 29.8 34.8 19.5 18 18 35.8 40.8 27.2 17 (17.5) 1/4 1/4 AS320-03 35.6 40.6 24.3 22.5 20.8 41.9 46.9 30 19 3/8 3/8 AS420-04 42.4
Temperature N1 P1 Q1 R1 R2 R3 S1 T1 U1 Main valve: Indicator/ Pilot port direction Symbol Nil Without indicator Kalrez Number of auto switches/Mounting position Symbol Nil Without auto switch 2 pcs. 1 pc. 1 pc.
= / 1 Angular deceleration time T3 = / 2 Constant speed time T2 = { 0.5 x x (T1 + T3)}/ Settling time T4 = 0.2 (sec) Speed: [/sec] 1 2 Cycle time T = T1 + T2 + T3 + T4 Selection example Time [s] Angular acceleration time T1 = 420/1,000 = 0.42 sec Angular deceleration time T3 = 420/1,000 = 0.42 sec Constant speed time T2 = {180 0.5 x 420 x (0.42 + 0.42)}/420 = 0.009 sec T1 T2
ZPA-T1-B01 ZPA-T1-N01 ZPA-T1-T01 ZPA-T2-B01 ZPA-T2-N01 ZPA-T2-T01 ZPA-T2-B01 ZPA-T2-N01 ZPA-T2-T01 ZPA-T3-B01 ZPA-T3-N01 ZPA-T3-T01 ZPA-T3-B01 ZPA-T3-N01 ZPA-T3-T01 ZPA-T1-B8 ZPA-T1-B10 ZPA-T1-B8 ZPA-T1-B10 ZPA-T2-B8 ZPA-T2-B10 ZPA-T2-B12 ZPA-T2-B16 ZPA-T2-B8 ZPA-T2-B10 ZPA-T2-B12 ZPA-T2-B16 ZPA-T3-B12 ZPA-T3-B16 ZPA-T3-B12 ZPA-T3-B16 ZP40 ZP40 With three M3 bolts With three M3 bolts ZP50
Calculation example) T1 to T4 can be calculated as follows. L Speed: V [mm/s] a1 a2 T1 = V/a1 = 300/10 = 0.03 [s], T3 = V/a2 = 300/10 = 0.03 [s] Time T = T1 + T2 + T3 + T4 [s] [s] L 0.5 V (T1 + T3) V T1: Acceleration time and T3: Deceleration time can be found by the following equation.
Communication is interrupted. 5. 4 CN2: PC/TB connector The connector which connects the tools teaching box (LEC-T1-3*G*) or PC (LEC-W2) for setting the controller (LEC.
Communication is interrupted. 5. 4 CN2: PC/TB connector The connector which connects the tools teaching box (LEC-T1-3*G*) or PC (LEC-W2) for setting the controller (LEC.
Alphabetical Index Length Measuring/ Counter 595 Series PCW 32 Point Output Reduced Common Unit Specifications PLC connection Weight 130 g Ambient temperature 25 to 55C Note) Since the PCW series specifications are included in the common specifications, also refer to the common specifications on page 7 in CAT.E02-20. PLC Connected to PLC via connection cable.
1400 [W] T = T2 T1 Cooling capacity = Considering a safety factor of 20%, 1400 [W] x 1.2 = 1680 [W] T1: Outlet temperature 207 HRSE Series Required Cooling Capacity Calculation Example 3: When there is no heat generation, and when cooling the object below a certain temperature and period of time.
ZPA-T1-B01 ZPA-T1-N01 ZPA-T1-T01 ZPA-T2-B01 ZPA-T2-N01 ZPA-T2-T01 ZPA-T2-B01 ZPA-T2-N01 ZPA-T2-T01 ZPA-T3-B01 ZPA-T3-N01 ZPA-T3-T01 ZPA-T3-B01 ZPA-T3-N01 ZPA-T3-T01 ZPA-T1-B8 ZPA-T1-B10 ZPA-T1-B8 ZPA-T1-B10 ZPA-T2-B8 ZPA-T2-B10 ZPA-T2-B12 ZPA-T2-B16 ZPA-T2-B8 ZPA-T2-B10 ZPA-T2-B12 ZPA-T2-B16 ZPA-T3-B12 ZPA-T3-B16 ZPA-T3-B12 ZPA-T3-B16 ZP40 ZP40 With three M3 bolts With three M3 bolts ZP50
Q = qm x C x (T2 T1) x qv x C x iT 60 1 x 35 x 4.186 x 103 x 3.0 60 = = qm x C x (T2 T1) 860 Q = = 7325 [J/s] 7325 [W] = 7.3 [kW] x qv x 60 x C x iT 860 = Cooling capacity = Considering a safety factor of 20%, 7.3 [kW] x 1.2 = 8.8 [kW] 1 x 35 x 60 x 1.0 x 103 x 3.0 860 = Q: Heat generation amount T1: Outlet temperature Thermo-chiller Users equipment T = T2 T1 7325 [W] = 7.3 [kW] Cooling