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F 3 COMPRESSED AIR THEORY Units Pressur Prooerties of Gases lsothermic change (Boyle's Law) lsobaric change Charles Law Law of Gay Lussac lsochoric change Adiabatic (lsentropic) change Standard Volume Flow Bernoulli's Equation Air Humidity Relative humidity Pressur and Flow Use of the diagram: Formulae: 6 6 I 1 0 1 0 1 1 1 1 1 1 1 1 1 2 1 2 1 2 1 2 1 2 1 3 1 5 1 6 1 6 AE 36 36 5 AIR TBEATMENT

: : ' : ' r : : 1 1 ' . ' , ' , ' . ' , ' , , : , . ' , , ' , ' , , 1 1 1 ' , I , ' , ' ' ' ' @-g'.ttr' SMC Pneumatics. Inc" Air PiSot tlperated Series HV$A ,3f .,'5.

..p s y. itrdu.r* 6p,{r) res$dtsLdi.O oF .td d 16, (1) indaaiorrigtrtGdrbry.b r 7 a 1 8, (1) d.t 19, (21 dsi 13, l2l (H 121. and O )dol7 {valw tvDe'F1 1 3 2 1 5 AXT333-16 1 5 1 1 1 a E K l9 I oao) 4.aa t122) 3.25 (43) 136) L0a (23) en 1.09 (23) 06j 1.63 0) 136) axl3i,t12-2 2 Hold ddn bolls r'd bd(waBlm I&s2 !

Metal parts material Applicable tubing material Metric size Inch size Seal method Body size Port size 2 3.2 4 6 8 10 12 16 1/8" 5/32" 1/4" 5/16" 3/8" 1/2" Note) Gasket seal 1 M5 x 0.8 Note) 10-32UNF Note) 1/8 2 Note) Note) 1/4 Sealant R 3 1/4 NPT Brass/ Steel wire 3/8 Nylon (T,TIA Series) Soft nylon (TS,TISA Series) Note) Stainless steel 4 1/2 Note) 1/8 2 Note) 1/4 Polyurethane (T,TIUB

. 0 = 2 0 . . , . . o l:.1:/ 0 a 0 2 0 4 0 . 6 0 8 1 . 0 1 2 1 . 4 1 6 1 . 4 2 . 0 1 . 0 1 . 5 2 0 2 5 3 . 0 0 0 5 TOTAL ENERGY (i IbS/C) (Tho!

Connection thread size (R, NPT, G) Proper tightening torque [Nm] 1/16, 1/8 3 to 5 1/4 8 to 12 3/8 15 to 20 1/2 20 to 25 Body size Maximum allowable torque [Nm] M5 0.05 1/8 0.07 1/4 0.16 3/8 0.2 1/2 0.4 2. Insufficient tightening may cause seal failure, or loosen the threads. 3.

Inch size 1/8" 1/4" 5/32" 1/8" 5/32" 1/4" 5/16" 1/8" 5/32" 1/4" 5/16" 3/8" 1/4" 5/16" 3/8" 3/8" 1/2" Free flow 0.2 0.3 0.4 0.6 0.6 0.7 1.0 1.3 1.5 1.6 1.7 2.5 4.4 4.8 C values: Sonic conductance dm3/(sbar) Controlled flow 0.2 0.3 0.4 0.7 0.8 0.6 0.9 1.3 2.1 2.4 3.3 4.4 4.9 Free flow 0.3 0.4 0.2 0.3 0.3 0.4 0.4 0.3 0.3 b values: Critical pressure ratio Controlled flow 0.2 0.2 0.3 0.3 0.3

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.

1 310 -1 310 -1 310 -1 ft ft ft ft 310 -1 0.1 ft 310 -1 1 ft 310 -1 1 ft 310 -1 / 0.1 ft 0.1 1 1 1 310 -1/pulse 310 -1/pulse 310 -1/pulse 310 -1/pulse ft ft ft ft 0.927= -23No.PF-OMJ0005CN-I [F 1] OUT1 OUT1 <> [F 1] [oU1] [1ot] () -24No.PF-OMJ0005CN-I 21 [P_1] [P1L][P1H] [P1.1][P1.2]([P1.1]3[P1.2]3) Pn [H_1] [CoL] ON OFF ON OFF [F 1] OUT1 -25No.PF-OMJ0005CN-I H_1(H_2) H1(H2) H1(H2

With (1) Without (1) Coil voltage 100V AC (50/60Hz) 200V AC (50/60Hz) 110V AC (50/60Hz) 220V AC (50/60Hz) 24V DC 12V DC Others (1) With With (Without light) 1 (1) 2 Note 1) DIN is applicable to VQZ 200 and 300.

Note 1) 2 1/8, 1/4 3 3/8 4 1/2 Type Metric size Inch size 2 Elbow 3 Universal Tubing O.D. 01 1/8" 03 5/32" 07 1/4" 09 5/16" 11 3/8" 13 1/2" Tubing O.D. 23 3.2 Note 2) 04 4 06 6 08 8 10 10 12 12 16 16 Control type 0 Meter-out 1 Meter-in * Meter-out and meter-in types can be visually identified by color of the knob.

button: White color) 2, 3.2, 4, 6, 8, 10, 12 Inch size (Release button: Orange color) 1/8", 5/32", 3/16", 1/4", 5/16", 3/8", 1/2" AS321F-02 AS331F-02 R1/4 AS321F-03 AS331F-03 R3/8 AS421F-04 AS431F-04 R1/2 Note 1) AS121F-M5-02 applicable cylinder bore sizes are 2.5, 4, 6.

Note 1) Body size AS-F AS-F With indicator Metric size Inch size 2 1/8, 1/4 3 3/8 4 1/2 Type Tubing O.D. 23 3.2 Note 2) Tubing O.D. 01 1/8" 03 5/32" 07 1/4" 09 5/16" 11 3/8" 13 1/2" TMH 2 Elbow 04 4 06 6 08 8 10 10 12 12 16 16 ASD Control type Note) AS 0 Meter-out 1 Meter-in Indicator window direction AS-FE Note) Meter-out and meter-in types can be visually identified by color of the knob

.:; ;,i=-, ,,.r:,,. ,:: 1::':::,4':::rr.i,;.::'i.ri:;.: 'i.t.i.il:i:i=*1+at=r=i1t:i:i:t:, =!i i:r-i=,, ti ' ' ' ,*r:,:,.r.,:::aa:.:;l.;:i.i.i.tii-,:,'.ar'''ll.'1:1,:,::,1*tlLr:f:fl:a::.:::a::l:a:..:r.:,,::,i,.i,i..,. -r.rLi'g+;,:,=.:11:i:::':itf::1.:i,;=:.:,1 ;,t .,.', , . i:,:*:,'*':,1=]:t*r:1:f?:t:a:l*!a,-,'a*r1]la::1::':..:::.:::.1 . . =r. r::!1::1+ti i:a"a:r:r ia '.

Confirm the total of x, y, and z is 1 or less. x + y + z 1 When 1 is exceeded, please consider a reduction of acceleration and work load, or a change of the work load center position and series. Acceleration [mm/s2]: a Work load [kg]: m Work load center position [mm]: Xc/Yc/Zc z y 1. Horizontal 3. Wall x y x z x 2. Bottom 4. Vertical z y x y z Example 1.

Movement mode Speed Position Acceleration Deceleration Pushing force Trigger LV Pushing speed Moving force Area 1 Area 2 In position 0 1: Absolute 100 10 3000 3000 0 0 0 100 0 0 0.50 1 1: Absolute 100 100 3000 3000 0 0 0 100 0 0 0.50 Sequence 1: Servo ON instruction Sequence 2: Instruction to return to origin Sequence 3: Specify step data No. 0 to input the DRIVE

RY0F H ol d out put pressure 1 Set dependi ng on t he dat a of RY00RY0B 0 Set pressure i m m edi at el y bef ore com m uni cat i on abnorm al i t y Set t i ng w hen f act ory i s shi pped 1 2 1 2 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 OFF OFF OFF OFF OFF OFF OFF OFF OFF OFF ON ON 7 Pressure set t i ng and out put m oni t ori ng Pressure set t i ng can be done by sendi ng i nput dat a usi

VBAT05A1-U-X104 O-ring For VBA1 mounting 1 pc. Accessory set VBAT5A-Y-3 Hex. socket head plug For Drain port 1 pc. AIR TANK Safety valve Pressure gauge Piping components for tank connection 1 pc. 1 pc. 1 pc.