MOOG D791Z140B S16Jxqofvsb0 Servo Valve

MOOG D791Z140B S16Jxqofvsb0 Servo Valve. MOOG, D791Z140B, MOOG D791Z140B, S16Jxqofvsb0, MOOG S16Jxqofvsb0, D791Z140B S16Jxqofvsb0
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رقم المنتج D791Z140B S16Jxqofvsb0 Servo Valve
المصنع MOOG

Description: D791Z140B S16Jxqofvsb0 Servo Valve ( MOOG )

MOOG D791Z140B S16Jxqofvsb0 Servo Valve



Product Name: MOOG D791Z140B S16Jxqofvsb0 Servo Valve
Product Brand: MOOG
Product Code: D791Z140B S16Jxqofvsb0 Servo Valve
Product Artikel: MOOG D791Z140B S16Jxqofvsb0 Servo Valve
The flow control servo proportional valves D791 and D792 Series are throttle valves for 3-way and preferably 4-way applications. These MOOG three stage servo valves have been especially developed for such demanding applications where high flow rates and at the same time extreme dynamic performance requirements must be met. The design of these valves is based on the well known D079 Series. The integrated electronics has been replaced by a new design applying SMD technology. The valves are offered with pilot valves of MOOG D761 or D765 Series, optional standard response or high response versions are available. Series D791 can deliver rated flow up to 250 l/min, Series D792 is available with rated flow up to 1000 l/min. These MOOG valve D791 /D792 are suitable for pressure or force control, position and velocity control systems with high dynamic response requirements. An electrical command signal (set point, input signal) is applied to the integrated control amplifier which drives a current through the pilot valve coils. The pilot valve produces differential pressure in its control ports. This pressure difference results in a pilot flow which causes main spool displacement. The position transducer which is excited via an oscillator measures the position of the main spool (actual value, position voltage). This signal then is demodulated and fed back to the control amplifier where it is compared with the command signal. The control amplifier drives the pilot valve until the error between command signal and feedback signal is zero. Thus, the position of the main spool is proportional to the electrical command signal.

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