Note 3) Weight without sub-plate 1.12-7 VQZ1000/2000/3000 Body Ported Construction: VQZ1000/2000/3000 Metal seal Rubber seal e w q r e w q r 2 position single 2 position single (A) 4 (B) 2 (A) 4 (B) 2 5 (R1) 1 (P) 3 (R2) 5 (R1) 1 (P) 3 (R2) e w q r e w q r 2 position double 2 position double (A) 4 (B) 2 (A) 4 (B) 2 5 (R1) 1 (P) 3 (R2) 5 (R1) 1 (P) 3 (R2) e w q e w q 4 r 3 position pressure
P O Flow Characteristics/Operating Principles P O, O Construction Detail .. PO Dimensions P O Installation PO Power Amp.: Series VEA Model / Spe c i f i c a t i o n s . . . . . P O H o w t o O r d e r . . . . . . . . . P @ Dimensions/ Handling Instructions . . . . . P@, @, @ External Connections P@, @ Features and Functions P@ Sample Applications . . .
VQZ (A) 2 (A) 2 VZ 3 (R) 1 (P) 3 (R) 1 (P) VS VFN r e w q r e w q N.O. N.O. (A) 2 (A) 2 3 (R) 1 (P) 3 (R) 1 (P) Component Parts No.
Construction VHS20/30 VHS40/40-06/50 y i u w w t t r q IN OUT OUT IN q e o EXH. EXH. VM Component Parts No.
Then, port P and port A are connected. At this time, there will be gaps between the armature t and the core y, but the armature will be magnetically attracted to the core y. Air flow direction: Port P Port A , Port R Block Component Parts Operation principle
Option Symbol and Composition Option Symbol and Composition Main body, shading coil material Holder material (in core ass'y) Option symbol Seal material Coil insulation type Main body, shading coil material Standard A B D E F G H J L N P T X Option symbol Seal material Coil insulation type NBR FKM Standard A B D E F G H J L N P T X NBR FKM B Polyacetal B FKM EPDM Brass or BC6, Copper FKM
Type Borc D Type S T y p e ' DC Type ' -T rtpe A B , " , ,.
W D 1.6 x P 0.1 x W + W D 5.0 x P 20Data W W > Wv P > Pv Determination of allowable load weight & pressure Inclined operation (For vertical operation, refer to page 8-15-64.)
P P P P T T T T U T U U U U E L E E E E L S L L L S S S S L L L L L 6 9 6 9 6 9 6 9 6 9 IN IN IN MPa MPa MPa MPa MPa Right Left Right Bracket DIN rail mounting bracket DIN rail mounting bracket Stations 1 Stations 1 Stations 1 2 3 IISA2NSR-1B1 set (1 station manifold part number) ISA2-GE41P1 set (Air catch sensor part number) IISA2NSR-3D1 set (3 stations manifold part number) ISA2-HE41P 3
for purge air discharge (Option: P) u t e q IN OUT i } r w y HA Purge air for dehumidification Purge air for dehumidification AT ID AMG Component Parts AFF Material Description No.
OUT 1 Thread type Rc NPT NPTF G Nil N T F IN Voltage 1 2 3 4 5 6 36 100VAC 200VAC 110VAC 220VAC 24VDC 12VDC 230VAC Port size Class 3 Class 2 Port size 1/8 (6A) 1/4 (8A) 3/8 (10A) 1/2 (15A) 3/4 (20A) Symbol 01 02 03 04 06 Class 4 Class B with AC has a built-in rectifying circuit. Class H is AC only. Without rectifying circuit. Contact P/A regarding other voltages.
6 ASR530F-02 type ASR630F-03 type ASR530F-02 type ASR630F-03 type !8 u o !3 !8 u o !3 !7 !7 !9 !9 t t q @0 q @0 r r !4 i y !0 !1 !2 !4 i !5 !6 Component Parts Note Material No. q w e r t y u i o !0 !1 !2 !3 Description No. !4 !5 !6 !7 !8 !
1 o w !0 !1 e w r e 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 u r u t t y y q q Component Parts Description Material No. Option Standard Stainless steel Body C37 q w e r t y u i o !0 !
90 0.5 W W W 0.5 F 117 108 95 76 0.7 C J G5-S 0.1 0 500 1000 1500 81 75 66 51 0.3 CV G 60 55 49 37 0.5 Cylinder stroke (mm) The above curve in the graph refers to P = 0.5 MPa of supply pressure.
Contents 9.4 Cooling capacity . 9-9 9.4.1 HRR010-A -10. 9-9 9.4.2 HRR010-W-10. 9-9 9.4.3 HRR010-A -20. 9-10 9.4.4 HRR010-W-20. 9-10 9.5 Heating capacity . 9-11 9.5.1 HRR010-A-10. 9-11 9.5.2 HRR010-W-10. 9-11 9.5.3 HRR010-A-20. 9-12 9.5.4 HRR010-W-20. 9-12 9.6 Pump capacity. 9-13 9.6.1 HRR010-A/W-10 . 9-13 9.6.2 HRR010-A/W-10-T1 . 9-13 9.7 Required facility water flow (for water-cooled type
VZ (A) 2 (A) 2 VS 3 (R) 1 (P) 3 (R) 1 (P) r e w q r e w q N.O. N.O. (A) 2 (A) 2 3 (R) 1 (P) 3 (R) 1 (P) Component Parts Material Description Notes No.
Power consumption P: 20 [kW] Q = P = 20 [kW] Cooling capacity = Considering a safety factor of 20%, 20 [kW] x 1.2 = V: Power supply voltage P 24 [kW] Power consumption e Derive the heat generation amount from the output. Output (shaft power, etc.) W: 13 [kW] w Derive the heat generation amount from the power supply output.
Slroke = 079 (20mrt) w h Boot Mr limelers i. Parenlneses CPA1 BN do Boot with Boot' BORE D E G'GB J K M MM N P H z.
V Ps + 0.1 293 S = 12.1 log10 () (6) t P + 0.1 T S : Effective area [mm2] V : Air tank capacity [dm3] t : Discharging time [s] Ps : Pressure inside air tank before discharging [MPa] P : Residual pressure inside air tank after discharging [MPa] T : Temperature inside air tank before discharging [K] Power supply Thermometer Pressure switch Control circuit Solenoid valve Pressure control equipment
Material Replacement Parts Material Note Component Parts VQZ No. q w e r t y No. !0 !