V: Power supply voltage Power consumption P: 1000 [W] Q = P = 1000 [W] P Cooling capacity = Considering a safety factor of 20%, Power consumption 1000 [W] x 1.2 = 1200 [W] e Derive the heat generation amount from the output. w Derive the heat generation amount from the power supply output. Output (shaft power, etc.)
A G E G A S K E T: N I P P L E: M-3N M-5N U N I V E R S A L T E E: M-3UT M-5UT P L U G: M-3P M-5P M-5G1 M-3G P R O D U C T S E L E C T O R P R O D U C T S E L E C T O R P R O D U C T S E L E C T O R P R O D U C T S E L E C T O R P R O D U C T S E L E C T O R E L B O W: M-5L G A S K E T: M-5GH T E E: M-5T H O S E N I P P L E: M-5H-4 M-5H-6 H O S E E L B O W: M-5HL-4 M-5HL-6 Similar to Picture
fl tube (mm: N6 (Nylon tube ~/4) 16.5 7 2,5 I P Q, R 'U6 ($Oft IIj).'>'6!
In the case of liquid: P Q = 1.9 x 106Av (9) G Q : Flow rate [l/min] Av : Flow coefficient [m2] P : Pressure difference [MPa] G : Relative density [water = 1] In the case of saturated aqueous vapor: Q = 8.3 x 106Av P(P2 + 0.1) (10) Q : Flow rate [m3/s] Av : Flow coefficient [m2] P : Pressure difference [Pa] P1 : Relative density [MPa]: P = P1 P2 P2 : Relative density [MPa] Front matter
P Q S R Drain cock Gray: N.C.
(A) 2 (A) 2 1 (P) 3 (R) 1 (P) 3 (R) q w e r q w e r N.O. N.O. (A) 2 (A) 2 1 (P) 3 (R) 1 (P) 3 (R) Component Parts No.
of q SI unit and w P kit (20 pins).
across flats K T 0 0.1 E W M D E 2 x N through 4 x O counterbore 2 x P (Rc, NPT, M thread) Stroke A + 2 stroke B + Stroke V H + Stroke Width across flats K T 0 0.1 Y M Q F D E A + 2 stroke B + Stroke V H + Stroke Width across flats K M T 0 0.1 D E 2 x P (Rc, NPT, G) A + 2 stroke B + Stroke V H + Stroke Width across flats K M Q F Z Stroke 2 x P (Rc, NPT, G) M E J Q F Z Stroke 32 40 50 RSQB
3 Port Solenoid Valve SYJ300/500/700 Series Low Power Consumption (0.5W) Interchangeable with the NVJ and NVZ Vacuum Applicable Base Mounted/Body Ported Configurations P R O D U C T S Q Q Q Table of Contents Q Q Q Q Features & Benefits .pages 4-5 Q Preferred Option Program.page 7 Q Specifications.page 9 Q SYJ300 .pages 10-12 SYJ500 .pages 13-15 SYJ700 .pages 16-18 Q
0 (B) (A) 2 4 (B) (A) 2 4 4(A) 3 5 1 3 5 1 (EB) (P) (EA) (EB) (P) (EA) 2(B) i 5(EA)/3(EB) 1(P) 2 position double with back pressure check valve 2 position double 2 position double o t r e w y q !1 u !
(Rc, NPT, M thread) E F Q 2 x N through 4 x O depth of counterbore Stroke Y 0 0.1 D E T M V B + Stroke H + Stroke A + 2 stroke 32 40 50 RSQB Bore size: 32, 40, 50 2 x P (Rc, NPT, G) Q Z F Stroke J I 0 0.1 D M E T V B + Stroke H + Stroke M 4 x N through A + 2 stroke E 8 x O depth of counterbore Built-in One-touch fittings (20 to 50) Tubing O.D.
P 100 80 63 100 CLJ2 50 40 80 m m 63 CLM2 32 50 40 CLG1 32 CL1 MLGC CNG MNB V V CNA Graph (6) Graph (3) P P CNS 100 80 CLS 63 100 50 40 CLQ 80 63 50 m m RLQ 32 40 MLU 32 !"
-9200-www.stevenengineering.com Model F L K P Q S SS Z ZZ MB CXWM25-225 96 241 20.5 90 525 227 282 509 553 CXWM25-250 108.5 266 20.5 90 575 252 307 559 603 MB1 CXWM25-275 121 291 20.5 90 625 277 332 609 653 CXWM25-300 133.5 316 20.5 90 675 302 357 659 703 CA2 20, 32 (mm) CS1 Model F L K P Q S SS Z ZZ C76 CXWM20-225 94.5 239 20 90 520 227 279 506 534 CXWM20-250 107 264 20 90 570 252 304 556
unit (3) S kit P kit F kit T kit Note 1) S kit is composed of a flat cable housing ass'y (AXT100-2-PU20) of q SI unit and w P kit (20 pin).
Unit AC10 to 60 Dimensions Pressure gauge port size AC10, 20 P G A Q E F L C B H OUT IN T H L J OUT Pressure gauge (Option) K M Square embedded type pressure gauge (Option) N Port size Lubricator Regulator Air filter Drain Min. clearance for maintenance D AC25, 30, 40, 50, 55, 60 Pressure gauge port size A P G E F Q L H B C OUT IN T H L OUT Pressure gauge (Option) K M Square embedded type
Accessories Basic Foot Front flange Rear flange Single clevis Double clevis Center trunnion Mounting P P P P P P P P P P P P P P P P P P P P P P P P P P P P P Rod end nut Standard Pin for clevis Single knuckle joint Option Double knuckle joint (with pin) Rod boot Weight/( ): Value for steel tube (kg) 40 50 63 80 100 Bore size (mm) 1.70 (1.75) 2.70 (2.76) 4.08 (4.12) 7.30 (7.46) 10.80
The series and their stopping accuracy are as follows: CLJ series (p.3.1-10), CLM2 series (p.3.1-18), CLG1 (p.3.127), CLA series (p.3.1-35), and CL1 series (p.3.1-50). wWhen kinetic energy acts upon the cylinder, such as when effecting an intermediate stop: There are constraints in terms of the allowable kinetic energy that can be applied to the cylinder in a locked state.