C D E F G J K 15 2(A) 4 1(P) 4 VHK R-04F-04F 14.4 VHK-B1A 44.5 14.5 1 27 22 16.5 26 VHK-B1A 44.5 14.5 1 27 22 16.5 26 VHK-B1A 44.5 14.5 1 27 22 16.5 26 VHK-B2A 49 17 1 30 25 21.5 31 VHK-B2A 49 17 1 30 25 21.5 31 VHK R-06F-06F 16 6 6 16.8 VHK R-08F-08F 17 8 8 19.2 VHK R-10F-10F 29 10 10 23.3 VHK R-12F-12F 32 25.7 12 12 Flame Resistant Type: 1(P)/2(A): Male Thread Reference dimensions after
SZ3B60 [N.C. valve x 2pcs.] 4 (A) 2 (B) SOL.b 5 (R) SOL.a 3 (R) 1 (P) SZ3B60K/With back pressure check valve 4 (A) 2 (B) 5 (R) SOL.a SOL.b 3 (R) 1 (P) 5 (R) 1 (P) 3 (R) SZ3C60 [N.C valve, N.O. valve 1pc. each] SZ3C60 [N.C. valve, N.O. valve 1pc. each] 4 (A) 2 (B) SOL.b 5 (R) SOL.a 3 (R) 1 (P) SZ3C60K/With back pressure check valve 4 (A) 2 (B) SOL.b 5 (R) SOL.a 3 (R) 1 (P) 5 (R) 1 (P) 3 (R
Rmrye her @kd*d and molnt lcvor in rny po.lllon 36C 1 1 Series NVM MECHANICAL VALVES DIMENSIONS NVM830-N01-01 Steel Roller F O F ' 4 4 1 l b s ( 6 k g ) P T 20" O T 30' T T 50' 'Length from center to cenler of r o l l e r = 1 5 i n ( 3 8 1 m m ) 0 0 4 ( 1 ) A B c D e F G H J 4.46 113.4 0.57 14.6) 2.34 t59.5) 1 . 5 7 (40) 1.30 (33) 1.03 '26.2)0.59 (15) 1.03 (26.2\ 1.00 '25.4 A B c o E F G
Rmrye her @kd*d and molnt lcvor in rny po.lllon 36C 1 1 Series NVM MECHANICAL VALVES DIMENSIONS NVM830-N01-01 Steel Roller F O F ' 4 4 1 l b s ( 6 k g ) P T 20" O T 30' T T 50' 'Length from center to cenler of r o l l e r = 1 5 i n ( 3 8 1 m m ) 0 0 4 ( 1 ) A B c D e F G H J 4.46 113.4 0.57 14.6) 2.34 t59.5) 1 . 5 7 (40) 1.30 (33) 1.03 '26.2)0.59 (15) 1.03 (26.2\ 1.00 '25.4 A B c o E F G
D D t D t t c e c c e e u u s u s s d i d i d i g g g o o o n n n r r r P P P A A A 1 1 9 9 9 9 9 9 w w 9 w 9 9 m I m I n n 9 9 9 u d u d a a a r u r u o s o F s tr F i e tr i e 9 9 9 D r r D r r r e e e e v v s 1 d d s 1 1 d o o i i n g n g n n n n a a H H n P n P g g r r o o i i s s d d e e u u D D c c t t d A d A r r w w a a 12-11-1 2 Courtesy of Steven Engineering, Inc.-230 Ryan Way,
If the adjusting screw of the speed controller is loosened, the operating speed will increase, so the screw should be tightened completely. m Impact force MXZ12 MXZ16 1.4 2.5 V = mm/s V = mm/s 1.2 2.0 Load weight m [kg] Load weight m [kg] 1.0 1.5 0.8 0.6 1.0 V = 50 V = 50 0.4 V = 100 V = 100 V = 200 V = 200 0.5 V = 500 V = 500 0.2 0.0 0.0 60 50 40 30 20 10 0 0 5 20 15 10 25 30 35 40 45 50
lH 61 I Type Single Knuckle Joint Y Type Double Knuckle Joint r\'Id 1'-< t~ m L ~ ~1 -r0 ~ '-' P. _(mm) e ,.
2 r!4 i yq !3t!8!1!7w !6ui e!5 CJ1 CJP CJ2 CM2 C85 !
XRAY-1250-100 XRAY-1250-100-POB XRAY-1250-200 XRAY-1250-200-POB Tandem XRAY1250-200 x-KIT-1250-100-COV XRAY-1250-100 x-KIT-1250-200-COV XRAY-1250-200 To Mount 6.5mm Prox. X-KIT-1250.I2MM To Mount 12mm Prox. X-KIT-1250-t8MM To Mount 1Smm Prox. The right to chnge designs and specifications without trolice is rcserved. All dat!
(R)-LL-02 L (Lead wire length) 104 Insulator: Red (+) Insulator: Black () 0.3 mm2 4.1 34.5 37.2 Terminal type (TT) 53-SY5140(R)-TT-02 Max. 10 L (Lead wire length) 120.8 Lead wire marking No. 1 (+), No. 2 () 0.75 mm2 5.9 23 Base Mounted Series 53-SY5000/7000/9000 Dimensions: 53-SY5000 2-position double, 4-position dual 3 port L-type plug connector (L) 19 18 9.5 2 A B C 53-SY5 40(R)-L-02 37.2
Because of this, VAC and the pilot chamber e are connected, the pressure in the pilot chamber e becomes negative and acts on the top of the diaphragm. As a result, the vacuum pressure valve t which is linked to the diaphragm r opens, VAC and OUT are connected, and the set pressure becomes negative. This negative pressure feeds back to the control circuit i via the pressure sensor u.
VS3135 A01-01 A01-02 A07-52 q Description Electrical entry VS3145 Solenoid cover Body 100 VAC 200 VAC Grommet A12-01 A12-02 A08-52 w e Spool/Sleeve 24 VDC A01-01-63 A01-02-63 A07-52-63 100 VAC 200 VAC Conduit terminal 24 VDC A12-01-63 A12-02-63 A08-52-63 Replacement Parts Material Part no. VS3135 XT019-6 XT013-13-2 XT010-15 Description VS3145 No.
Calculate the area of the cylinder piston Area = r2 where = 3.1416 r = 12 the bore diameter 2. Multiply the piston area by the air pressure to be used. Area x Pressure = Force Output Example: What is the theoretical force output of a 2 12 bore cylinder operating at 80 lbs. per square inch air pressure? Step 1.
Calculate the area of the cylinder piston Area = r2 where = 3.1416 r = 12 the bore diameter 2. Multiply the piston area by the air pressure to be used. Area x Pressure = Force Output Example: What is the theoretical force output of a 2 12 bore cylinder operating at 80 lbs. per square inch air pressure? Step 1.
e, r are for selection of valve composition.
holes) 1/8" (External pilot port) 25 27 5 A4 B2 Insulation Black () 28.5 PE A B 47 57 X Insulation Red (+) 3EB 1P 5EA 96.5 27 69.1 25 1/8" (Pilot EXH. port)
9 e r t q !3 w !0 @3 @2 !1 !2 !5 !4 y u i o @1 @0 !8 !6 Component Parts Component Parts Qty. No. Description Material Note No.