A or less 24 VDCj 10pA or less 1.5 V or less (10mA: 0.8 V of less) 24 VOCj 1opA or less R e d : O N 1 mS or less solid state switch 3 Wirc lC circuit 28 VDC l5OmA 0.8 V or less 2 V or less (10mA: 0.8 V or less) 24 VDC: 10pA or less 24 VDC] 10llA or less ON: red light emilUng diode ON: red lighl milling diode 1 mS or less ftlo$I{ildl Smies CIA Reed Type Internal Circuit D-A59W.
SUP = 0.2 MPa 150 100 50 1 0 2 3 4 5 6 7 Caution Cycle (Hz) 1. These flow characteristics are for fresh water (viscosity 1mPas, specific gravity 1.0). 2. The discharge rate differs greatly depending on properties (viscosity, specific gravity) of the fluid being transferred and operating conditions (density, lifting range, transfer distance).
[Driving to the intermediate position] 24 V 0 V Power supply (5) Alarm Reset ON OFF Alarm reset IN0-3 Input ON OFF Input RESET ON OFF OUT0-3 ON OFF ALARM Output Output BUSY Alarm out Release Hold ALARM is expressed as negative-logic circuit.
Series 10-VQD1000 [Option] 4 Port Direct Operated Poppet Solenoid Valve How to Order Valve Clean series Valve option Nil Standard (2 W) V Vacuum (2 W) U For large flow (3.2 W) W For large flow, Vacuum (3.2 W) Energy saving type Rated voltage 5 24 VDC 6 12 VDC Body type 2 Body ported (Single unit) 3 Body ported (Manifold) 5 Base mounted 10 V Q D 1 1 5 1 U 5 L M5 Electrical entry
For example, when analogue output is 1 to 5 V, F.S.=5[V] 1[V]=4[V]. (Reference: 1%F.S. = 4[V] 1% = 0.04[V]) F F.S. (full span / full scale) Fluid contact part A part that comes into physical contact with the fluid. I Instantaneous flow The flow passing per unit of time. If it is 10 L/min, there is a flow of 10 L passing through the device in 1 minute.
V (2) Analog Output 2 Analog output signal 2 CH2 circulating fluid temperature 0C100C: 010 V 1 CH2 electric conductivity 0.150.0 S/cm: 0.0210.0 V 2: In the case of option D1 "CH1 with electrical conductivity control".
Connecting a servo motor of the wrong axis to U, V, W, or CN2 of the driver may cause a malfunction. 12. The illustration of the 24 V DC power supply is divided between input signal and output signal for convenience. However, they can be configured by one. -6- (2) Using 1-phase 200 V AC to 240 V AC power supply for LECSN2-T Note 1. Between P3 and P4 is connected by default. 2.
SYJ71 R 2 4 SYJ72 R 2 4 Standard With power saving circuit 0.35 (With light: 0.4 (DIN terminal with light: 0.45)) Power consumption (W) DC (A) 2 (A) 2 0.1 (With light only) X X 1.4 (With light: 1.5) 100 V 110 V [115 V] 200 V 1.6 (With light: 1.7) [1.7 (With light: 1.8)] 1 (P) 3 (R) 1 (P) 3 (R) Apparent power (VA) AC 2.3 (With light: 2.4) 2.5 (With light: 2.6) [2.7 (With light: 2.8)] 220
) 4 AC 200 V 2.3 (With light: 2.4) 2.5 (With light: 2.6) [2.7 (With light: 2.8)] 220 V [230 V] 1 (P) 3 (R) 5 (R) 1 (P) 3 (R) Surge voltage suppressor Diode (Non-polarity type: valistor) 3 position exhaust center 3 position exhaust center (B) 2 (A) 4 (B) 2 (A) 4 Indicator light LED In common between 110 VAC and 115 VAC, and between 220 VAC and 230 VAC.
circuit 0.35 (With light: 0.4) Power consumption (W) DC 0.1 (With light only) External pilot 1.4 (With light: 1.5) 100 V 110 V [115 V] 200 V SYJ31 R 2 4 SYJ32 R 2 4 1.6 (With light: 1.7) [1.7 (With light: 1.8)] (A) 2 (A) 2 Apparent power (VA) AC X X 2.3 (With light: 2.4) 220 V [230 V] 2.5 (With light: 2.6) [2.7 (With light: 2.8)] 1 (P) 3 (R) 1 (P) 3 (R) Surge voltage suppressor Indicator
center Apparent power VA (B) 2 (A) 4 (B) 2 (A) 4 AC 200 V 2.3 (With indicator light: 2.4) 2.5 (With indicator light: 2.6) [2.7 (With indicator light: 2.8)] 220 V [230 V] 1 (P) 3 (R) 5 (R) 1 (P) 3 (R) Surge voltage suppressor Diode (Non-polarity type: valistor) 3 position exhaust center 3 position exhaust center (B) 2 (A) 4 (B) 2 (A) 4 Indicator light LED In common between 110 VAC and 115
Solenoid valve model VO307-1 0.3 to 0.7 MPa Valve unit Small flow Large flow Solenoid valve type Stop valve Skip valve Valve type Nominal size (mm) 63, 100 100, 160 External pilot pressure N.O No mark 100, 200, 110, 220, 240 No mark N.O AC (50/60 Hz) Coil rated voltage (V) 24, 12 Valve opens when solenoid valve conducts electricity.
Auto Switch Weights Unit: g Auto Switch Internal Circuits Lead wire length Model 3m 5m D-P5DWL 150 240 Indicate "Z" at the end of the model number for 5m lead wire.
Normally open Grommet, Grommet terminal Conduit terminal DIN terminal Grommet, DIN terminal Electrical entry VNB01V VNB02V VNH 12 (P1) 10 (P2) Coil rated voltage (V) AC (50/60 Hz) 100 V, 200 V, Other voltage (Semi-standard) 24 V, Other voltage (Semi-standard) 15% to +10% of rated voltage VND DC Air operated Allowable voltage fluctuation Temperature rise 1 2 1 2 VCC 50C or less (When rated
PD3 Circuit without release valve (Usage example of vacuum connection) V V PD2 PD2 Supply valve EXH. P Pressure sensor Do not loosen this nut. Male thread Adapter connection bracket PD1 PD3 P Adapter plate V PD2 Circuit with release valve (Usage example of pressure sensor) Release valve Restrictor 12.
V V S With V y Pilot port size * Port size: 14 only Select Nil for 06 and 10.
Safety cannot be assured in the case of unexpected malfunction. 7 3 5 6 9 1 2 4 8 10 0 Blue : 24 VDC (for input and controlling) 118.5 76.5 97.5 108 139.5 55.5 66 87 129 150 L1 45 4 3 Black : 0 V (for input and controlling) 236.8 152.8 194.8 215.8 278.8 L2 110.8 131.8 173.8 257.8 299.8 89.8 Power supply connector Provide grounding to assure the safety and noise resistance of the Fieldbus
Indication Item Output Setting, selection and display CH1 circulating fluid temperature 0C to 100C: 0 to 10 V CH2 circulating fluid Analog temperature 0C to 100C: 0 to 10 V (1) Analog output signal 1 Output 1 CH2 electrical conductivity 0.1 to 50.0 S/cm: 0.02 to 10.0 V CH1 circulating fluid temperature 0C to 100C: 0 to 10 V Analog CH2 circulating fluid temperature 0C to 100C: 0 to 10 V (2
AS 0 0.1 0.15 0.2 0.25 0.3 Return stroke pressure (MPa) ASP ASN v v w w a a o o l l v v l l F F e e AQ ASV u u r r e e s s v v s s a a e e l l v v r r P P e e AK ASS ASR ASF Working stroke Working stroke Return stroke Return stroke Pressure valve Flow valve 15-16-1 2 Cuts air consumption by operating the return stroke at a reduced pressure.
Brown Brown Load Load Switch 1 Switch 1 Blue Blue Brown Brown Switch 2 Switch 2 Blue Blue Load voltage at ON = Power supply voltage Internal voltage drop x 2 pcs. = 24 V 4 V x 2 pcs. = 16 V Load voltage at OFF = Leakage current x 2 pcs. x Load impedance = 1 mA x 2 pcs. x 3 k = 6 V Example: Power supply is 24 VDC Internal voltage drop in switch is 4 V. Example: Load impedance is 3 k.