Fast regenerative current control of inductive loads
An inductive driver circuit with improved speed of clamping down a powered solenoid element, which solenoid exhibits inductive properties, for purposes of rapid shut down of the solenoid.
1. An inductive driver circuit with improved speed of clamping down an already powered inductor ( 106 ), said inductive driver circuit comprising:
a center circuit path comprising a first polarity of a voltage power source Vbat ( 101 ), wherein the voltage power source Vbat ( 101 ) is positive 45 volts direct current, wherein the Vbat ( 101 ) is connected at node ( 102 ) to a ground ( 111 ), wherein the voltage power source Vbat ( 101 ) comprises a battery, capacitor-coupled supply or other type supply that can accept a temporary reverse current,
a high voltage braking switch ( 103 ) comprising a rectifier connected between the node ( 102 ) and another node ( 105 ), whereas said inductor ( 106 ) is connected between the another node ( 105 ) and a further node ( 107 ), and a normal pulse width modulated switch ( 108 ) comprising a rectifier is connected between the node ( 107 ) and a yet further node ( 110 ), and a grounding means is connected from the node ( 110 ) to the ground ( 111 ),
an absorption circuit path comprising a zener diode means ( 109 ) serving as a high voltage snubber device connected between the another node ( 105 ) and node ( 110 ), and
a flyback circuit path comprising a diode means ( 104 ) which includes a rectifier diode connected between the node ( 107 ) and the node ( 102 ), and
wherein the opposite polarity of the voltage power source Vbat ( 101 ) is connected at the ground ( 111 ), and whereupon to start powering up said inductor ( 106 ), both switches ( 103 ) and ( 108 ) are closed, to free wheel said inductor ( 106 ), thereafter the switch ( 108 ) is opened but the switch ( 103 ) is kept closed, and to clamp shut down said already powered inductor, both said switches ( 103 ) and ( 108 ) are then again closed, and wherein the current in the inductor ( 106 ) is configured to collapse in 1 millisecond, and wherein the inductive driver circuit is used in a tank gun automation for fast clamping of soft recoil systems, for fast clamping of weapon pointing brakes to improve stability while firing, and for fast clamping of turret actuator brakes for stopping.