The initial value is " A: A contact (normally open)(output 1,3) / B: B contact (normally closed) (output 2)".
Normal output Reversed output P_1 = A (A B)/4 n_1 = B + (A B)/4 A = Maximum pressure H_1 = (A B)/2 H_1 = (A B)/2 B = Minimum pressure In the OUT2 setting, the above P_1, n_1 and H_1 will be P_2, n_2 and H_2 respectively.
data) a: Inclination b: Intercept [Inclination and intercept to the unit specification] Series Unit Flow range Inclination a Intercept b 4 L 0.125 0 L/min 16 L 0.25 0 40 L 0.5 0 PF2MC7 4 L 0.004415 0 cfm 16 L 0.0088275 0 40 L 0.0176575 0 [Calculation example] (1) Conversion from the process data to the flow measurement value (For PF2MC7 series, unit L/min, flow range 1000 L and PD = 2500
-1.8WDC WF333O Exhaust Conter NVF343O GNced Center (B) (A) (B) (a) 01 c2 \ t \ T I'f E I J E Z (R2)(PxFl) (R2XPXR1) Prssure Center NVF3530 (B) (A) Spej;ifications -, Flurd-Art f Operatangprssurcrange2Positionsingle2O-12gPSlS(1.5-9kgF) U 2 pooition double-1 5 1 28 PSI (1 9kgf/cm'?
Filter holder C D B A A B Filter Filter holder Hooks 27 Doc. No.: IZ-OMR0035 5. Performance Performance data shown in this chapter is based on an electrified plate (dimensions: 150 x 150 mm, electrostatic capacity: 20pF) defined by ANSI standard (ANSI/ESD STM3.1-2006).
Normal output Reversed output P_1 = A (A B)/4 n_1 = B + (A B)/4 A = Maximum pressure H_1 = (A B)/2 H_1 = (A B)/2 B = Minimum pressure In the OUT2 setting, the above P_1, n_1 and H_1 will be P_2, n_2 and H_2 respectively.
[VF323O (B) (A) ct c2 #\ilIrb Compact size and lisht weighi 1.04inch wide Large flow capaci$ -CvI.o(%) Shgb !|vF3l3O (B) (A) ' 0 1 c 2 Clo6td C.l49r rd d#{Ft ffi# E I S E 2 {R2XPXB1) Low power consumption -1.8WDc (F2)(P)(F1l NVF3S3O Exh.Bt C.ii.. i{VF3,(3O (B) (A) c1 c2 ryffTfl-TTrl,* Er\llt'lll/'Es) EI SE2 Pr.aqa ConL.
AF-OMX0052-C PRODUCT NAME Air Filter MODEL / Series / Product Number AF20-(F,N)01(F,N)02(B,C)(-2,6,C,J,L,R,Z)-D AF30-(F,N)02(F,N)03(B,C,D)(-2,6,8,J,L,R,W,Z)-D AF40-(F,N)02(F,N)04(B,C,D)(-2,6,8,J,L,R,W,Z)-D AF40-(F,N)06(B,C,D)(-2,6,8,J,R,W,Z)-D AF50-(F,N)06(F,N)10(B,C,D)(-2,6,8,J,L,R,W,Z)-D AF60-(F,N)10(B,C,D)(-2,6,8,J,L,R,W,Z)-D Contents Page 1. Safety Instructions 2-7 2.
CAT.ES11-82 B 3 Port Solenoid Valve Power consumption 0.1 W (with power saving circuit) Power consumption 0.1 W (with power saving circuit) Power consumption 0.1 W (with power saving circuit) Series V100 Coil temperature rises: 1C (with power saving circuit) Sonic conductance C: 0.037 (Standard)/C: 0.076 (Large flow capacity) Series Flow characteristics C[dm3/(s bar)] b Cv Standard Large
With drain With drain With drain With drain With drain gauge guide cock guide cock guide B B B B B B B B B AFF20 159. 6 159. 4 146. 1 142. 1 148. 6 AFF30 219. 8 219. 8 219. 8 186. 6 184. 9 180. 6 185. 1 200. 6 205. 1 AFF40 263.3 265.1 265.1 232 230. 3 225. 9 230. 4 245. 9 250. 4 -31- Revision history Revision A: September 2020 Addition of the Series 20 and 40 Revision B: August 2021 Addition
With drain With drain With drain With drain With drain gauge guide cock guide cock guide B B B B B B B B B AMD20 159. 6 159. 4 146. 1 142. 1 148. 6 AMD30 219. 8 219. 8 219. 8 186. 6 184. 9 180. 6 185. 1 200. 6 205. 1 AMD40 263. 3 265. 1 265. 1 232 230. 3 225. 9 230. 4 245. 9 250. 4 -31- Revision history Revision A: September 2020 Addition of the Series 20 and 40 Revision B: August 2021 Addition
N)02~(F,N)04(-B,S)(-K,M,R,Z)-D VHS40W-(F,N)06(-B,S)(-K,M,R,Z)-D VHS50W-(F,N)06~(F,N)10(-B,S)(-K,M,R,Z)-D Contents Page 1.
For pipe fitting 4B through 6B Applicable fittings For pipe fitting 3/4B through 3B Welding Welding Piping B Reducing tees B 1 1 x 1 x 1 24 or more 11/4 11/2 11/4 x 11/4 x 1 1B socket 11/2 x 11/2 x 1 cut in half 2 x 2 x 1 2 21/2 x 21/2 x 1 21/2 3 x 3 x 1 3 Pipe 4B through 6B Reducing tees B Socket Pipe : JIS B 2301 : JIS B 2302 : JIS B 3452 Without flash 16-12-8 Paddle Style Flow Switch Series
(B contact). Contact output signal 5selects Signal type and N.O. (A contact ) or N.C. (B contact). Contact output signal 6selects Signal type and N.O. (A contact) or N.C. (B contact).
AF-OMX0053-B PRODUCT NAME Mist Separator MODEL / Series / Product Number AFM20-(F,N)01(F,N)02(B,C)(-2,6,C,J,L,R,Z)-D AFM30-(F,N)02(F,N)03(B,C,D)(-2,6,8,J,L,R,W,Z)-D AFM40-(F,N)02(F,N)04(B,C,D)(-2,6,8,J,L,R,W,Z)-D AFM40-(F,N)06(B,C,D)(-2,6,8,J,R,W,Z)-D Contents Page 1. Safety Instructions 2-7 2. Application 8 3. Standard Specifications 8 4. How to Order 9 5.
Refer to page 2. 11 3.5 2-M3 x 0.5 (port size) M3 x 0.5 (Relief port: 10 See above) (Vacuum port: 11 See above) 3.5 3 C + Stroke B + Stroke A + Stroke (mm) Without auto switch With auto switch A B C A B C Bore size (mm) 24 18 29 23 11.5 16.5 6, 8, 10 4 Series CUJ Construction Double acting !3 w e q !1 r y o e t !2 For 4 Built-in magnet Without magnet Single acting u i r y o e w i e u !
With drain With drain With drain With drain With drain gauge guide cock guide cock guide B B B B B B B B B AM20 159. 6 159. 4 146. 1 142. 1 148. 6 AM30 219. 8 219. 8 219. 8 186. 6 184. 9 180. 6 185. 1 200. 6 205. 1 AM40 263. 3 265. 1 265. 1 232 230. 3 225. 9 230. 4 245. 9 250. 4 -31- Revision history Revision A: September 2020 Addition of the Series 20 and 40 Revision B: September 2020 Addition
AF-OMX0054-B PRODUCT NAME Micro Mist Separator MODEL / Series / Product Number AFD20-(F,N)01(F,N)02(B,C)(-2,6,C,J,L,R,Z)-D AFD30-(F,N)02(F,N)03(B,C,D)(-2,6,8,J,L,R,W,Z)-D AFD40-(F,N)02(F,N)04(B,C,D)(-2,6,8,J,L,R,W,Z)-D AFD40-(F,N)06(B,C,D)(-2,6,8,J,R,W,Z)-D Contents Page 1. Safety Instructions 2-7 2. Application 8 3. Standard Specifications 8 4. How to Order 9 5.
No.VQ1000V-OMM0002-B 10 - VQ1000/2000 series Specific Product Precautions 3 Be sure to read this before handling How to Calculate Flow Rate Conversion with sonic conductance C: S=5.0XC Q : Air flow rate [dm3/min(ANR)] S : Effective area [mm2] P1 : Upstream pressure [MPa] P2 : Downstream pressure [MPa] t : Temperature [] No.VQ1000V-OMM0002-B 11 - When the valve is failing, use this flow chart
Normal output Reversed output P_1 = A (A B)/4 n_1 = B + (A B)/4 A = Maximum pressure H_1 = (A B)/2 H_1 = (A B)/2 B = Minimum pressure In the OUT2 setting, the above P_1, n_1 and H_1 will be P_2, n_2 and H_2 respectively.