B2 Series Characterized Control Valve, Spring Return Actuator

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1 Series Characterized Control Valve, Spring ctuator Two-way Valve with Stainless Steel all and Stem, NPT Female Ends Service: Flow Characteristic: Media Temp Range: Maximum Differential: Pressure ( P) mbient Temp Range: Leakage chilled or Hot Water, 60% glycol -port equal percentage 0 F to 1 F [-18 C to 100 C] 0 psi for typical applications - F to 1 F [-0 C to 50 C] 0% for to TF LF F Two-way Characterized Control Valve, Stainless Steel all and Stem Valve Spring ctuator On/Off Floating Proportional Proportional / MFT Model C v Valve # Rating Nominal Size Close- TFX4 US TF4- US TF4-SR US TF4-MFT US** CCV DN Off LF4 US LF4- US LF4-SR US LF4-MFT US Valve Inches mm psi F4 US F4-SR US F4-MFT US / Pg 15 Pg 154 Pg 156 Pg 166 Pg / Pg 15 Pg 154 Pg 156 Pg 166 Pg / Pg 15 Pg 154 Pg 156 Pg 166 Pg / Pg 15 Pg 154 Pg 156 Pg 166 Pg / Pg 15 Pg 154 Pg 156 Pg 166 Pg / Pg 15 Pg 154 Pg 156 Pg 166 Pg / Pg 15 Pg 154 Pg 156 Pg 166 Pg / Pg 15 Pg 154 Pg 156 Pg 166 Pg * 10 1/ Pg 15 Pg 154 Pg 156 Pg 166 Pg / Pg 15 Pg 154 Pg 156 Pg 166 Pg / Pg 15 Pg 154 Pg 156 Pg 166 Pg / Pg 15 Pg 154 Pg 156 Pg 166 Pg 158 0* 4 / Pg 15 Pg 154 Pg 156 Pg 166 Pg Pg 160 Pg 16 Pg 164 Pg Pg 160 Pg 16 Pg 164 Pg Pg 160 Pg 16 Pg 164 Pg 166 5* Pg 160 Pg 16 Pg 164 Pg /4 00 Pg 160 Pg 16 Pg 164 Pg 166 0* /4 00 Pg 160 Pg 16 Pg 164 Pg /4 00 Pg 168 Pg 170 Pg 17 * 7 1-1/4 00 Pg 168 Pg 170 Pg / Pg 168 Pg 170 Pg / Pg 168 Pg 170 Pg 17 40* 7 1-1/ Pg 168 Pg 170 Pg Pg 168 Pg 170 Pg Pg 168 Pg 170 Pg 17 50* Pg 168 Pg 170 Pg Pg 168 Pg Pg 168 Pg Pg 168 Pg 17 54* Pg 168 Pg / Pg 168 Pg / Pg 168 Pg / Pg 168 Pg / Pg 168 Pg 17 65* 10-1/ Pg 168 Pg Pg 168 Pg Pg 168 Pg 17 80* Pg 168 Pg 17 Electrical ft cable, ft cable, ft cable, ft cable, ft cable, Connection 1/ conduit fitting 1/ conduit fitting 1/ conduit fitting 1/ conduit fitting 1/ conduit fitting * Models without characterizing discs. **TF4-MFT US available September 007. See pg 11 for corrected C v s with piping reduction factor. TFX4 US LF4 US F4 US LF4- US TF4- US Options TFX4 US TF4- US TF4-SR US LF4 US LF4- US LF4-SR US LF4-MFT US LF4-MFT-0 US LF4-MFT-S-0 US F4 US F4-MFT US F4-MFT95 US 10 foot cable TF /00 US 16 foot cable TF /500 US built-in aux. switch -S US 10 VC power supply Ω control 6-9 VDC control 6-9 VDC with 1 switch dd to -MFT price. See elimo s flexible product range on page 4 for a complete list of configurable actuators and options. Note: For TF/TR actuators, no weather shield available at this time. Call TF4-SR US LF4-SR US F4-SR US F4-MFT US LF4-MFT US TF4-MFT US J070-04/07 - Subject to change. 16

2 Two-way Characterized Control Valve, Stainless Steel all and Stem LF ctuators, MFT Technical Data/Submittal pplication This valve is typically used in air handling units on heating or cooling coils, and fan coil unit heating or cooling coils. Some other common applications include Unit Ventilators, VV box re-heat coils and bypass loops. This valve is suitable for use in a hydronic system with variable flow. This valve is designed with MFT functionality which facilitates the use of various control input. This valve is designed for use where fail safe is required. Valve Specifications Service chilled or hot water, 60% glycol Flow characteristic -port equal percentage ction max 90 rotation Sizes 1/ to 1-1/4 (0) Type of end fitting female, NPT Materials: ody forged brass, nickel plated all stainless steel Stem stainless steel Seats PTFE Characterizing disc TEFZEL Packing EPDM O-rings, lubricated Pressure rating 600 psi Media temp. range 0 F to 1 F [-18 C to 100 C] Close off pressure 00 psi Maximum differential 0 psi for typical applications pressure ( P) Leakage 0% Cv rating -port: see product chart for values Tefzel is a registered trademark of DuPont ctuator Specifications LF4-MFT US LF4-MFT-S US Control Control signal Power consumption Transformer sizing Electrical connection Overload protection Input impedance Feedback MFT to 10 VDC.5 W running, 1 W holding 5 V, class power ft, 18 G appl. cable, 1/ conduit fitting electronic throughout rotation 100kΩ for to 10 VDC (0.1 m) 500Ω for 4 to 0m 750Ω for PWM 500Ω for on/off and floating point to 10 VDC, 0.5 m max ngle of rotation 95 Direction of rotation selected by switch: CW=CW with decrease signal CCW=CCW with decrease signal Spring return direction CW/CCW mounting Position indication visual indicator uxiliary switch 1 x SPDT. 5 to 85 (-S) Running time <40 to 75 sec. (on-off) 150 sec. independent of load (proportional) spring: <5 F to +1 F [-0 C to +50 C] <60 F [-0 C] mbient temperature - F to 1 F [-0 C to 50 C] Housing NEM gency listings UL 87, CS C. No. 4 certified, CE Quality standard ISO 9001 Noise level max. 6 d() J070-01/07 - Subject to change. LISTED 94D5 TEMP. IND & REG. EQUIP. UL MFT 166 See Selection Chart Pg 16 for Control Valve No., C v and Close-off

3 Two-way Characterized Control Valve, Stainless Steel all and Stem LF ctuators, MFT Technical Data/Submittal Dimensions.65" [9].7" [94] 7.64" [194] D07.8" [58] Nominal Valve Valve Size Dimensions in Inches [mm] ody in [mm] / [5.] 1.9 [5.] / 15.8 [60.5] 1.6 [41.4] Nominal Valve Size Dimensions in Inches [mm] in mm /4 0.6 [66.8] 1.75 [5.] [88.9] 1.81 [46.0] 1-1/4 4.0 [10] 1.87 [48] Flow Pattern Wiring Diagrams Flow Direction CUTION Equipment damage! ctuators may be connected in parallel if not mechanically mounted to the same shaft. Power consumption must be observed and input impedance must be observed. Characterizing Disc (Where applicable) Two-way E L I M O INSTLLTION NOTES ctuators may also be powered by 4 VDC. PPLICTION NOTES 500Ω resistor converts the 4 0 m control signal to to 10 VDC. (ZG-R01) IN4004 or IN4007 diode. IN4007 supplied, elimo part number 40155) Triac and can also be contact closures. Control signal may be pulsed from either the Hot (Source) or Common (Sink) 4 VC line. Position feedback cannot be used with Triac sink controller. The actuators internal common reference is not compatible. WRNING 4 VC Transformer (C only) W0 J070-01/07 - Subject to change. On/Off control WRNING 4 VC/DC Transformer Position ( ) Feedback VDC (+) WRNING 4 VC Transformer (C only) 7 Position Feedback VDC ( ) (+) 6 a (1) Common () Hot () Y Input (5) U Output MFT (1) Common () + Hot () Y Input (5) U Output W04 W041 Hot MFT actuators are compatible with contact closure, triac source and triac sync type controllers. Controller Floating Point control WRNING Control Signal to 10 VDC COM to 10 VDC Position Feedback Signal Position Feedback lk (1) Common Red () + Hot Wht () Y Input Wht (5) U Output (Grn) 5 4 MFT US 4 VC/DC Transformer ( ) (+) Ω 500Ω 1/4 watt Diode may be placed at the control panel. Reduces field wiring Why is a diode required? The actuator is designed to recognize the rectified voltage as an opposite control signal request. lk (1) Common Red () + Hot Wht () Y Input to 10V Grn (5) U Output to 10V W0 MFT With a 4-0 m Input, up to 4 actuators may be wired in parallel. % shift in the signal is seen when using a 500Ω resistor. Power consumption must be observed. MFT US PWM, triac source and sink Proportional to 10 VDC or 4 to 0 m control signal 167

4 Electronic Characterized Control Valves / Series Characterized Control Valves Default Set-Up: Two-way Valve Two-way Valve Three-way Valve Three-way Valve (Specify upon ordering) (Specify upon ordering) (Specify upon ordering) (Specify upon ordering) Non-Spring - Stays in Last Position TR4--T US Power to pin will Power to pin will drive valve CCW. drive valve CCW. Power to pin will Power to pin will drive valve CW. drive valve CW. TR4-SR-T US NC: Closed to, will NO: Open to, will close NC: Closed to, will NO: Open to, will close open as voltage increases. as voltage increases. open as voltage increases. as voltage increases. (Can be chosen with (Can be chosen with switch inside terminal switch inside terminal block of actuator). block of actuator). LR4-, LR4-MFT Power to pin will drive valve NO: Open to, will close Power to pin will drive valve NO: Open to, will close LR4-SR, CW. Power to pin will drive as voltage increases or power CW. Power to pin will drive as voltage increases or power LRX4-MFT, valve CCW. The above will applied. (Can be chosen valve CCW. The above will applied. (Can be chosen R4-, R4-SR function when the directional with CW/CCW switch ). function when the directional with CW/CCW switch ). R4-MFT switch is in the 1 position, to switch is in the 1 position, to reverse select the 0 position. reverse select the 0 position. TFX4 US NO/FO Valve: Open to NC/FC Valve: Closed to NO/FO Valve: Open to NC/FC Valve: Closed to LF4 US will drive closed. will drive open. will drive closed. will drive open. F4 US Spring ction: Will spring Spring ction: Will spring Spring ction: Will spring Spring ction: Will spring open to closed to open to closed to Spring - Note Fail Position TF (-), MFT, SR NC/FO Valve: Closed to NC/FC or NO/FC NC/FO Valve: Closed to NC/FC or NO/FC LF (-), MFT, SR will drive open. Valve: Closed to or will drive open Valve: Closed to F, MFT, SR Spring ction: Will spring Open to Spring ction: Will spring or Open to Floating or proportional open to (Can be chosen with open to (Can be chosen with type actuators CW/CCW switch). CW/CCW switch). Spring ction: Will spring Spring ction: Will spring closed to closed to NO/FO Valve: Open to Spring ction: Will spring open to (NO action can be chosen with CW/CCW switch). NO/FO Valve: Open to Spring ction: Will spring open to (NO action can be chosen with CW/CCW switch). J070-01/07 - Subject to change. General Wiring Instructions WRNING The wiring technician must be trained and experienced with electronic circuits. Disconnect power supply before attempting any wiring connections or changes. Make all connections in accordance with wiring diagrams and follow all applicable local and national codes. Provide disconnect and overload protection as required. Use copper, twisted pair, conductors only. If using electrical conduit, the attachment to the actuator must be made with flexible conduit. lways read the controller manufacturer's installation literature carefully before making any connections. Follow all instructions in this literature. If you have any questions, contact the controller manufacturer and/or elimo. Transformer(s) elimo actuators require a 4 VC class transformer and draws a maximum of 10 V per actuator. The actuator enclosure cannot be opened in the field, there are no parts or components to be replaced or repaired. EMC directive: 89/6/EEC Software class : Mode of operation type 1 Low voltage directive: 7//EEC CUTION: It is good practice to power electronic or digital controllers from a separate power transformer than that used for actuators or other end devices. The power supply design in our actuators and other end devices use half wave rectification. Some controllers use full wave rectification. When these two different types of power supplies are connected to the same power transformer and the DC commons are connected together, a short circuit is created across one of the diodes in the full wave power supply, damaging the controller. Only use a single power transformer to power the controller and actuator if you know the controller power supply uses half wave rectification. 17

5 Electronic Characterized Control Valves / Series Characterized Control Valves Operation/Installation Correct Piping: -way valves should be installed with the disc upstream. If installed with disc downstream, flow curve will be deeper. If installed backwards it is NOT necessary to remove and change. No damage or control problems will occur. Two-Way Valve Piping Diagram (1 Input, 1 Output) Three-Way Mixing Valve Piping Diagram ( Inputs, 1 Output) Three-Way Diverting Valve Piping Diagram (1 Input, Outputs) -way valves must be piped correctly. They can be mixing or diverting. Mixing is the preferred piping arrangement. The ELIMO Characterized Control Valve is a CONTROL valve, not a manual valve adapted for actuation. The control port is the port. It is similar to the globe valve in that the middle port is the or bypass port. The common port is on the main opposite the port. These diagrams are for typical applications only. Consult engineering specification and drawings for particular circumstances. The port must be piped to the coil to maintain proper control. The port restricts flow by 0% of port value. Incorrect Piping: Three-Way Mixing Valve Piping Diagram ( Inputs, 1 Output) Three-Way Diverting Valve Piping Diagram (1 Input, Outputs) WRNING! Do Not Pipe in this manner! Note Valve Porting! The port must be piped to the coil! Not the port! Flow is not possible from to. If port is not piped as the common port, the valve must be re-piped. It is good practice to install a balancing valve in the bypass line. These valves are intended for closed loop systems. Do not install in an open loop system or in an application that is open to atmospheric pressure. ssembly: 1 1 One screw attaches actuator to valve Four actuator mounting positions -way flow pattern 4 5 -way flow pattern (mixing shown) Top of valve stem indicates direction of flow (Flow to shown) Note: For diverting flow, flow enters in and diverts to and ports. 5 CCW 4 x 90 J070-01/07 - Subject to change. -=0% 4 -=100% 18

6 -FRONT Characterized Control Valves (CCV) Flow Pattern Two-way Characterized Control Valves (elimo Series) (elimo 6 Series) Flow Direction Characterizing Disc (Where applicable) Two-way *Two-way valves should be installed with the disc upstream. E L I M O Three-way Characterized Control Valves (elimo Series) Three-way Mixing *The port must be piped to the coil to maintain proper control. Three-way Diverting Characterizing Disc (where applicable) YPSS Port Disc (ll -way models) Characterizing Disc (where applicable) J070-01/07 - Subject to change. Port Disc (ll -way models) Port must be piped to the by-pass line. Mounting: The valves can be mounted in any position, except stem below horizontal. 60 D

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