Feature | DANA Electronics Control single valve
DANA Electronics Control single valve
Electronic control single valve – SE3AN21RS series
Feature | DANA Electronics Control systems valve
Electronic format eurocards for XDC3 SERIE 2 positional transducer valves control. The electronic cards type SE.3.AN.21.RS…serie 3 have been planned for controlling single and double solenoid proportional valves XDC3….serie 2 equipped with position transducer type LVDT. The card has a EUROCARD format for being assembled on a connector type DIN 41612 D 32. The output stage operates on the basis of the Pulse Width Modulation (PWM) and is subject to the current feedback so that it is possible to obtain an output solenoid current directly proportional to the input signal. The regulator is supplied with standard calibration for proportional valve control. The card is equipped with a control module type PI which compares the reference signal with the position transducer signal: the eventual error is used to optimize the regulation. It is possible to carry out further regulations by operating on the relative trimmers placed on the frontal panel.
Control single valve – CEPS series
Electronic amplifier plug-in version for single solenoid proportional control valves. The electronic amplifier Plug version was designed in compliance with EN 175301-803 (ex DIN43650), for direct mounting on the valve solenoid. The CEP.S can used with proportional valves XD.*.A…, XDP.*.A…, XP.3…, XQP.*…, CXQ.3.. . The output stage operates on the pulse width modulation principle (P.W.M.) and is provided with current feedback in order to obtain a solenoid output current proportional to the reference input signal. Gain, minimum current and rise and fall ramp time adjustments are possible through the corresponding potentiometers fitted on top side of the card, and can be accessed by slackening the relative screw and opening the cover of the connector. While the output current to the solenoid can be measured via the Valve Current test points. SERIE 2, has the diode reverse polarity protection inside on the power line.
Control single valve – REMD series
Electronic regulators for double solenoids proportional control valves. The electronic control card type REM.D.RA has been designed to drive the double solenoid proportional valves series “XD.*.C…and XDP.3.C” without integral position transducer. The control card is enclosed in an “UNDECAL” type housing, a typical relay mounting standard. The output stage operates on the pulse width modulation principle (P.W.M.) and is provided with current feedback in order to obtain a solenoid output current proportional to the reference input signal. Output short circuit and supply polarity inversion protection is provided. Gain, minimum current and rise and fall ramp time adjustments are possible through the corresponding front panel trimming potentiometers, while the output current to the solenoid can be measured via the Valve Current test points, and the ramps can be excluded. The product incorporates a serial interface for adjustment of parameters
Control single valve – REMS series
Electronic regulators for single solenoid proportional control valves. The electronic control card type REM.S.RA has been designed to drive the “XD.*.A, XDP.3.A, XP.3, XQ.3, XQP.*. and CXQ.3” series single solenoid proportional valves without integral position transducer. The control card is enclosed in an “OCTAL” type housing, a typical relay mounting standard. The output stage operates on the pulse width modulation principle (P.W.M.) and is provided with current feedback in order to obtain a solenoid output current proportional to the reference input signal. Output short circuit and supply polarity inversion protection is provided. Gain, minimum current and rise and fall ramp time adjustments are possible through the corresponding front panel trimming potentiometers, while the utput current to the solenoid can be measured via the Valve Current test points, and the ramp operation can be excluded. The product incorporates a serial interface for adjustment of parameters.