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Silent interval is indicated by T1-T2-T3-T4. Table 3.8-2 RTU mode message frame a)Start b)Slave Address c)Function d)Data e) Checksum (CRC) f)End T1-T2-T3-T4 XX XX XX XX XX XX T1-T2-T3-T4 a) Start In Modbus RTU mode, message frames are separated by a silent interval (non-communication time).

T3 Cylinder with by-pass piping component parts No. 1 2 3 4 Quantity 1 1 1 1 Description Part No.

Lead 5: LES16K 3 Work load [kg] T1 = V/a1 = 220/5000 = 0.04 [s], Lead 10: LES16J 2 T3 = V/a2 = 220/5000 = 0.04 [s] T = T1 + T2 + T3 + T4 [s] T2 = L 0.5 V (T1 + T3) V T1: Acceleration time and T3: Deceleration time can be obtained by the following equation. 1 0 = 50 0.5 220 (0.04 + 0.04) 220 0 100 200 300 400 500 T1 = V/a1 [s] T3 = V/a2 [s] Speed [mm/s] = 0.19 [s]

Silent interval is indicated by T1-T2-T3-T4. Table 3.8-2 RTU mode message frame a)Start b)Slave Address c)Function d)Data e) Checksum (CRC) f)End T1-T2-T3-T4 XX XX XX XX XX XX T1-T2-T3-T4 a) Start In Modbus RTU mode, message frames are separated by a silent interval (non-communication time).

-A5 ZP3A-T3-B5 Note 1) ; in the table indicates the pad material.

Silent interval is indicated by T1-T2-T3-T4. Table 3.8.2 RTU mode message frame a)Start b)Slave Address c)Function d)Data e) Checksum (CRC) f)End T1-T2-T3-T4 XX XX XX XX XX XX T1-T2-T3-T4 a) Start In Modbus RTU mode, message frames are separated by a silent interval (non-communication time).

L Speed: V [mm/s] a1 a2 T = T1 + T2 + T3 + T4 [s] P T1: Acceleration time and T3: Deceleration time can be obtained by the following equation. Time [s] T1 T2 T3 T4 T1 = V/a1 [s] T3 = V/a2 [s] P T2: Constant speed time can be found from the following equation.

= / 2 Constant speed time T2 = { 0.5 x x (T1 + T3)}/ Settling time T4 = 0.2 (sec) Speed: [/sec] 1 2 Cycle time T = T1 + T2 + T3 + T4 Selection example Time [s] Angular acceleration time T1 = 420/1,000 = 0.42 sec Angular deceleration time T3 = 420/1,000 = 0.42 sec Constant speed time T2 = {180 0.5 x 420 x (0.42 + 0.42)}/420 = 0.009 sec T1 T2 T3 T4 : Rotation angle [] T1: Acceleration

Description lVtaterial Q',y 6 . ., Aluminium alloy Blac k alumite SWitch mounti.ng bracket Piston seal NBR 2 OYP-6 Dy pl0 OYP15 ~ III Rod seal NBR 1 OYR-3K OYR-5K OYR-6K ~ Cap g~ket NBR 1 rPS X 1 ~9X~ ' ~14 X 1 Steel wire Black zinc chromate 1 Switch strew ;OO ... ~ , ~l-. I Auto 8witCN' D-90'0-97 Note)The Bmm bore cylinder is nol repairable. o Series CJP -~ D~--n-~-( -m) ,-.

response Start ID Note 2) Error function Check Details of sum End code error ) T1-T2-T3-T4 1 byte 1 byte 1 byte 2 bytes T1-T2-T3-T4 The MSB of the function code is Problems 3.5 character code Note 5) CRC 3.5 character times Note 1) 01 FF times Note 1) changed to 1.

Body oplion %NPTF subplate O :lndividual pllot exhaust I t -43 W 3:Common exhaust for main and pilot valve I :Without subolate 'ubplate ' -T3,l#:' G:Grommet(std.)

.220 g8 1t4 5/8.18 .89 .86 .283 U8 3i8 5/8-18 .91 .93 .283 3ri8 112 Consult factory tor inlormation 112 3/8 u4-16 1 .06 .95 .408 112 1t2 3V416 1.00 .97 .406 5/8 112 7lS-14 1.21 1 . 1 6 .502 Steel Terminal Bolt: FEMALE BULKHEAD' * Zinc Dichromate Plating '-Consult tactory lor inlormation SteEI Terminal BoIt: MALE BULKHEAD* * Zinc Dichromate Plating "Consult lactory for information \ H1 H2 T3

O-A7 D-A80 NOTEi Ahgulaf dimensions sama as 'A" type on page t tNOTE 1) Femalethread length ('l') is shoder lor the lollowing strok6s. 150 (11/r) Series NCDQT Dimensiotn With Aub Switch Bore 200 (2',1 ' 250 ' ' 1tu$ and Thru Diamelr Circles d Hotes) 300 (3',1 +00 ,_'. ( 4 ) . . 2O012',) 13h6 13hB 257/u 2s7/6a 31le 2 1 1 h a1/2-2O o.7 * 1 0 250 12112\ 17h6 3r/rc 36/s2 31/a 1/2-m o.7 300 t3

arki ng, U L( CSA) Prot ect i ve st ruct ure I P65 I P65 equi val ent M odel I TV10 0 I TV20 0 I TV30 0 Si ze ( m m m m m m ) 50 50 124 50 50 146 66 66 167 W ei ght ( N o opt i on) 350 450 750 9 Com m uni cat i on speci f i cat i on ( Com m on) I t em Speci f i cat i ons Rem arks Com m uni cat i on prot ocol PRO FI BU SD P For D PV0 Baud rat e ( N ot e) 9. 6k/19. 2k/45. 45k/93. 75k/187. 5k

114.5 T1 P : Pressure drop between the static pressure tapping ports [bar] P1 : Pressure of the upstream tapping port [bar gauge] P2 : Pressure of the downstream tapping port [bar gauge]:P2 = P1 P Q : Flow rate [dm3/s standard condition] Pa : Atmospheric pressure [bar absolute] T1 : Test conditions of the upstream absolute temperature [K] is < P1 + Pa = 6.5 0.2 bar absolute, T1 = 297 5K

T3 Cylinder with Bypass Piping Component Parts T2 63.4 73.8 80.3 T3 57.8 67.8 74.3 TH 47.9 57.3 57.3 TP Rc, NPT, G 1/8 Rc, NPT, G 1/4 Rc, NPT, G 1/4 T1 81.4 93.3 99.8 No. 1 2 3 4 Description Qty. 1 1 1 1 Part no.

T3 Cylinder with Bypass Piping Component Parts T1 81.4 93.3 99.8 T2 63.4 73.8 80.3 T3 57.8 67.8 74.3 TH 47.9 57.3 57.3 TP Rc, NPT, G 1/8 Rc, NPT, G 1/4 Rc, NPT, G 1/4 Description No. 1 2 3 4 Qty. 1 1 1 1 Part no.

Lead wire.bngrh 1.56 (39.2) n) 7 I 10 1'l 't3 14 15 't6 19 20 L1 1.40 (35.5) 1.al (46) (s6.5) 2.M (67) 3.05 177.s) 3.46 (88) 3.84 (e8.5) 4.29 (1oe) 4.70 (119.5) 5.12 (iso) 5.53 fi40.5) 5.94 (151) 6.36 {16r.5) 6.77 t172) 7.19 082.5)(193) 8.01 (203.5 8..13 \214) 8.84 \224.5) L2 1 i D (28.5) 1.54 {3s) 1.95 (49.5)2.36 (60) 2.7A {705) 3.19 (81) 3.@ (9r.514.O2 (102) 4.43 (1125) 4.84 (1Al 5.2 (13s

Lead wire.bngrh 1.56 (39.2) n) 7 I 10 1'l 't3 14 15 't6 19 20 L1 1.40 (35.5) 1.al (46) (s6.5) 2.M (67) 3.05 177.s) 3.46 (88) 3.84 (e8.5) 4.29 (1oe) 4.70 (119.5) 5.12 (iso) 5.53 fi40.5) 5.94 (151) 6.36 {16r.5) 6.77 t172) 7.19 082.5)(193) 8.01 (203.5 8..13 \214) 8.84 \224.5) L2 1 i D (28.5) 1.54 {3s) 1.95 (49.5)2.36 (60) 2.7A {705) 3.19 (81) 3.@ (9r.514.O2 (102) 4.43 (1125) 4.84 (1Al 5.2 (13s

Lead wire.bngrh 1.56 (39.2) n) 7 I 10 1'l 't3 14 15 't6 19 20 L1 1.40 (35.5) 1.al (46) (s6.5) 2.M (67) 3.05 177.s) 3.46 (88) 3.84 (e8.5) 4.29 (1oe) 4.70 (119.5) 5.12 (iso) 5.53 fi40.5) 5.94 (151) 6.36 {16r.5) 6.77 t172) 7.19 082.5)(193) 8.01 (203.5 8..13 \214) 8.84 \224.5) L2 1 i D (28.5) 1.54 {3s) 1.95 (49.5)2.36 (60) 2.7A {705) 3.19 (81) 3.@ (9r.514.O2 (102) 4.43 (1125) 4.84 (1Al 5.2 (13s