Background of the Invention
The instant invention relates to a device for switching a coil between a state where it is fed and a state where it is used as a receiver. Thus, the instant invention aims more particularly at the switching of a coil used in relation with a videotape recorder magnetic head liable to serve as a read/write head.
In the read state, one of the terminals of the coil is grounded and the voltage on the other terminal is detected. In the write state, the terminal which was grounded is connected to a current source and the other terminal is connected to a power supply voltage, means being provided for modulating the current source and letting a current flow in the coil as a function of the signal to be recorded.
When it is desired to switch from a state to another, it is essential to avoid that a voltage be impressed to the coil when its other terminal is directly grounded and conversely that this other terminal be connected to the ground when a voltage is being impressed onto the coil. Indeed, overcurrents might occur as well as overvoltages impairing the operation and the lifetime of the device.
In the prior art, in order to resolve this problem, one has generally made use of devices, difficult to integrate, and comprising a high number of switches, the operation of which is to be precisely synchronized by means of complex processes.
One object of the instant invention is to provide for such a switching device which is particularly simple, comprises few switches, and is easily integrable.
Summary of the Invention
In order to achieve this purpose, the instant invention provides a device for switching a coil between a first state where it is connected between a power supply source and the ground through an impedance, and a second state where it is connected between an output terminal and the ground, a first switch being arranged between the output terminal and the supply source. This switching device comprises a diode connected between the output terminal and the supply source a controlled switch connected in parallel on the impedance between a second coil terminal and the ground ; and a detection and control means connected between the diode and the supply source for detecting the time when the voltage between the diode and the ground becomes equal to a predetermined value, lower than the forward voltage drop across the diode, and for thereby controlling said switch.
According to an embodiment of the instant invention, the detection and control means comprises a comparator comparing the power supply voltage with a predetermined voltage lower than the forward voltage drop across the diode.
According to an embodiment of the instant invention, the supply source is connected to the diode through a time constant circuit, the first switch being arranged between the power supply source and this time constant circuit.
According to an embodiment of the instant invention, it comprises means for discharging the time constant circuit, once the first switch has been switched off and the voltage has reached the threshold voltage of the diode.
A specific advantage resulting from the simplicity and the possibility of integrating the circuit is obtained in case of an application to a video tape recorder wherein high frequencies are used and wherein an increase in the number of components and connections causes spurious reactances.
Brief Description of the Drawings
Those objects, features, advantages and others of the instant invention will clearly appear from the following detailed description of preferred embodiments, in connection with the attached drawings, wherein:
FIG. 1 partially shows in the form of block diagrams an embodiment of the invention; and
FIGS. 2A, 2B, 2C show time diagrams useful to understand the operation of the circuit of FIG. 1.
Detailed Description of the Drawings
In FIG. 1, the coil, the switching of which is to be controlled, is designated by reference 1. It is coupled with a coil in series with a read/write head of a video tape recorder 3.
In the write or recording mode, the coil 1 is connected in series with a power supply source V.sub.REC through a switch T.sub.REC and a time constant circuit comprising for example a series impedance 5 and a parallel capacitor 6. The other terminal of the coil 1 is grounded through a current source I.sub.REC. This current source is for example a portion of an integrated circuit 10 comprising means, not shown, for ensuring the modulation of the current as a function of the signal to be recorded by the recording head 3.
In the read or reproducing mode, the lower terminal of the coil 1 is directly grounded through a switch T.sub.PB and the other terminal of the coil 1 is connected through a capacitor 8 to an input 10-1 of the integrated circuit 10 coupled with an amplifier 12 for supplying the read signal at the output terminal of the integrated circuit.
Thus, in the recording phase, the switch T.sub.REC is on and the switch T.sub.PB is off whereas, in the read phase, the switch T.sub.REC is off while the switch T.sub.PB is on.
According to the invention, only the switch T.sub.REC is handled from outside and the switch T.sub.PB is automatically controlled in order to avoid the switching on of this switch when a voltage is impressed onto the coil 1. For this purpose, the instant invention comprises a diode 14 connected between the upper terminal 16 of the coil 1 and the supply voltage, as represented. The second terminal of diode 14, not connected to the terminal 16, is also connected to an input pad 18 of the integrated circuit and from there to the non-inverting input terminal of a comparator 20. The pad 18 is also grounded through a current source 22. The inverting input terminal of comparator 20 is grounded through a power supply voltage V.sub.REF. The output of comparator 20 is connected through an interface circuit 24, especially comprising flip-flops, at the control input of the switch T.sub.PB and possibly at other regions of the circuit, for example, as illustrated, at the input 12-1 of amplifier 12.
In FIG. 1, a square wherein a cross is drawn designates an input pad of the integrated circuit 10.
The operation of the circuit of FIG. 1 will be described in more detail in relation with FIGS. 2A, 2B and 2C ; FIG. 2A shows the d.c. voltage level at terminals 16 and 18, FIG. 2B shows the state of the switch T.sub.REC and FIG. 2C shows the state of the switch T.sub.PB. In FIGS. 2B and 2C, the high level corresponds to the ON-state of a switch.
Let the initial state be the read state wherein switch T.sub.REC is off and switch T.sub.PB is on. If, at a time t.sub.0, the switch T.sub.REC is switched on, the voltage will start increasing at terminal 18 while the capacitor 6 is charging. At the time t.sub.1, when this voltage reaches the value V.sub.REF which is chosen lower than the forward voltage drop V.sub.D in the diode 14, the comparator 20 switches and the interface circuit 24 causes the switching off of the switch T.sub.PB. It will be noted that this switching off occurs while there is no voltage on terminal 16, a voltage starts occurring at this terminal only once the voltage across the capacitor 6 has reached the value V.sub.D, at the time t.sub.2.
The recording mode is maintained until a time t.sub.3 when the switch T.sub.REC is switched off. From that time t.sub.3, the voltage across the capacitor 6 is linearly discharged by the action of the current source I.sub.REC until a time t.sub.4 when the voltage on the terminal 18 has reached the forward voltage drop in diode 14. Then, the voltage on terminal 18 continues to decrease by the action of the current source 22 and, at a time t.sub.5, when this voltage has reached the value V.sub.REF, comparator 20 switches again for causing, through the interface circuit 24, the switching on of the switch T.sub.PB.
It will be noted that the sequence of events implemented by the circuit according to the invention presents the advantage of being entirely self-acting from the time when the switch T.sub.REC is operated; the circuit "checks" if the voltage across the coil 1 is null before switching the switch T.sub.PB. Thus, this circuit is particularly simple since only one switch is handled, the second switch being self-operated.
As described hereinabove, this circuit is liable to be essentially realized in the form of an integrated circuit and necessitates practically no external components such as switches or filters for supplying time delays. Moreover, owing to its simplicity, this circuit necessitates a small surface when implemented as an integrated circuit. On the other hand, as it is well known to generate a reference voltage V.sub.REF lower, in a determined way, than the forward conduction threshold voltage of a diode, this circuit exhibits a high reliability and does not require any external adjustment.
Of course, this circuit is liable of various variations and modifications which will clearly appear to those skilled in the art who will be able, especially, to realize various types of interface circuits and various types of switches, such as the switch T.sub.PB realized in the integrated circuits, for example in the form of bipolar transistors.