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PWM PWM Proportional Solenoid Driver
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Our Price: $225.00
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This pulse width modulated (PWM) valve driver module is packaged in a standard DIN plug. It is designed to be used for open loop pressure, position and speed control systems. The output is a unipolar current signal and will drive all proportional and servo valves that have coil current requirements up to 2 amps. The user supplied command signal can be derived from either a potentiometer or external voltage source. The DIN plug construction allows all of the electronics to be mounted directly on the valve and thus eliminates the need for a separate control panel.
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Linear Valve Driver, Unidirectional
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Our Price: $304.00
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This linear valve driver module is designed to be used for unidirectional open loop motion, pressure and speed control systems. The output is unipolar and will drive all servo valves and pump displacement controllers that have coil current requirements up to 200 ma. The command signal can be generated from either a potentiometer or external voltage source.
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Single Coil PWM Proportional Solenoid Driver
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Our Price: $482.00
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This model series of pulse width modulated (PWM) valve driver modules is designed to be used for open loop motion, speed, torque and pressure control systems. The output is unipolar and will drive all solenoids that have coil current requirements up to 5 amps. The command signal can be obtained from either a potentiometer, an external voltage or 4 to 20 ma. source.
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Linear Servo Amplifier
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Our Price: $516.00
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This series of linear servovalve driver modules is designed to be used for open or closed loop motion and speed control systems. The output is a linear bipolar current signal and will drive all pump displacement control devices and servovalves that have coil current requirements up to 200 ma. The command signal can be derived from either from an external voltage source or a potentiometer.
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PWM Proportional Solenoid Driver, Single Coil Output
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Our Price: $623.00
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This model series of pulse width modulated (PWM) solenoid driver modules is designed to be used for open loop motion, speed, torque and pressure control systems. Acceleration and deceleration rates are adjustable. The output is unipolar and will drive all solenoids that have current requirements up to 5 amps. The command signal can be obtained from either a potentiometer or an external voltage source.
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Linear Servovalve Amplifier with Adjustable Ramps
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Our Price: $647.00
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This series of linear servovalve driver modules is designed to be used for open or closed loop motion and speed control systems. Acceleration and deceleration rates are adjustable. The output is a linear bipolar current signal and will drive all pump displacement control devices and servovalves that have coil current requirements up to 200 ma. The command signal can be derived from either an external voltage source or a potentiometer.
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PWM Proportional Solenoid Driver, Dual Coil Output, Unipolar
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Our Price: $695.00
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The model series of pulse width modulated (PWM) solenoid driver module is designed to be used for open loop motion and speed control systems. Each of the two outputs is unipolar and will drive all solenoids that have current requirements up to 5 amps. The command signal can be obtained from either a potentiometer or an external voltage source.
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PWM Proportional Solenoid Driver, Dual Coil Output, Bi-Polar
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Our Price: $695.00
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This pulse width modulated (PWM) solenoid driver module is designed to be used for open loop motion and speed control systems. Each of the two outputs is unipolar and will drive all solenoid coils with current requirements up to 5 amps. The command signal can be obtained from either a potentiometer or an external, bipolar voltage source. This industrial grade module is a true high performance current regulator. It incorporates current loop feedback to maintain the output signal to the valve coil within 1% of the setpoint as the load impedance, input voltage, and ambient temperature are varied over the specified operating range. Pulse width modulated switching provides high efficiency as the output current is varied from minimum to maximum.
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