Device and method for reduction of electrical noise from pulsed signal devices
10263591 ยท 2019-04-16
Assignee
Inventors
Cpc classification
H02H9/08
ELECTRICITY
International classification
H03H3/00
ELECTRICITY
Abstract
A device and method for reducing ground currents and electromagnetic interference in pulsed signal devices are described. In one embodiment, the device may include, in addition to regular filtering components and circuits, a separate noise-suppressing choke in the ground wire to reduce current in the ground wire that causes damage to bearings and electrical overstress. Such choke may be of a saturation type that offers high inductance and good noise-blocking properties in normal operating conditions and sufficiently low impedance at fail currents which provides proper tripping of safety circuits.
Claims
1. A device for reducing electrical noise from operation of a pulsed digital control signal device, the device comprising: one or more inductors, wherein each inductor is configured to be connected to a phase drive signal line of the pulsed digital control signal device, the pulsed digital control signal device having one or more phase drive signal lines; and a ground line inductor, separate from the one or more inductors, that is in a line different from the one or more phase drive signal lines and that is configured to be connected to a ground line of the pulsed digital control signal device, the ground line inductor being a saturable inductor having high impedance in normal operating conditions and having a core that saturates at fail currents resulting in low impedance at fail currents.
2. The device of claim 1, wherein the ground line inductor is a common mode inductor.
3. The device of claim 2, wherein the common mode inductor has windings connected in parallel in order to increase effective wire gage.
4. The device of claim 1, wherein the one or more inductors further comprise a differential inductor configured to be connected to each of the one or more phase drive signal lines.
5. The device of claim 4, wherein the one or more inductors further comprise a multi-phase common mode inductor configured to be connected to the one or more phase drive signal lines and a plurality of capacitors.
6. A device, comprising: a pulsed digital control signal device; one or more inductors, wherein each inductor is configured to be connected to a phase drive signal line of the pulsed digital control signal device, the pulsed digital control signal device having one or more phase drive signal lines; and a ground line inductor, separate from the one or more inductors, that is in a line different from the one or more phase drive signal lines and that is configured to be connected to a ground line of the pulsed digital control signal device, the ground line inductor being a saturable inductor having high impedance in normal operating conditions and having a core that saturates at fail currents resulting in low impedance at fail currents.
7. The device of claim 6, wherein the ground line inductor is a common mode inductor.
8. The device of claim 7, wherein the common mode inductor has windings thereof connected in parallel in order to increase effective wire gage.
9. The device of claim 6, wherein the one or more inductors further comprise a differential inductor configured to be connected to each of the one or more phase drive signal lines.
10. The device of claim 9, wherein the one or more inductors further comprise a multiple-phase common mode inductor configured to be connected to the one or more phase drive signal lines and a plurality of capacitors.
11. The device of claim 6, wherein the pulsed digital control signal device is one of a servo motor, a servo actuator, a variable frequency motor, a variable frequency actuator, a stepper motor and a stepper actuator.
12. A device, comprising: one or more inductors, wherein each inductor is configured to be connected to a signal line of a plurality of signal lines; a ground line inductor, separate from the one or more inductors, that is in a line different from the plurality of signal lines and that is configured to be connected to a ground line, the ground line inductor being a saturable common mode inductor having high impedance in normal operating conditions and having a core that saturates at fail currents resulting in low impedance at fail currents; and wherein the saturable common mode inductor has windings thereof connected in parallel in order to increase effective wire gage.
13. A device, comprising: a ground filter; the ground filter having a saturable common mode inductor that is in a line configured to be connected to a ground line, the saturable common mode inductor having high impedance in normal operating conditions and having a core that saturates at fail currents resulting in low impedance at fail currents; and wherein the common mode inductor has windings thereof connected in parallel in order to increase effective wire gage.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF ONE OR MORE EMBODIMENTS
(16) The disclosure is particularly applicable to a filter for a servo motor and it is in this context that the disclosure will be described. It will be appreciated, however, that the device and method has greater utility since it may be implemented in different manners and may also be used in other pulsed signal devices that use digital control signals, such as a servo motor or actuator, a variable frequency motor or actuator, a stepper motor or actuator and other similar types of electric motors and actuators.
(17) A device and method for reducing ground currents and electromagnetic interference in servo and similar motors is described. In one embodiment, the device may include, in addition to regular filtering components and circuits, a separate noise-suppressing choke on a ground wire to reduce current in the ground line that causes damage to bearings and electrical overstress. The choke may be of a saturation type that offers high inductance and good noise-blocking properties in normal operating conditions and sufficiently low impedance at fail currents which provides proper tripping of safety circuits. In accordance with another embodiment, a motor filter may be combined with a power line filter in one enclosure in order to reduce required space and cost.
(18) One aspect of the device and method is that the device may use of one or more common-mode inductors in a ground line instead of a differential inductor. The one or more common-mode inductors offer several magnitudes higher inductance than equivalent current differential inductors, are significantly less expensive than differential inductors and are physically smaller. For example, a common mode inductor made be Wurth (details of which are available at http://katalog.we-online.de/pbs/datasheet/7448243104310.pdf) can be purchased for about $3.50 in quantities, has a 10 mH inductance and is rated at 3 A and a size of 27.5 mm by 33 mm by 18.5 mm. In contrast, a 10 mH differential inductor rated at 3 A or higher may be found (http://www.hammondmfg.com/pdf/5c0032.pdf), but the differential inductor has a footprint that is 42.25 If a lesser performance differential inductor is used (see http://www.vishay.com/docs/34015/ihb.pdf), the price is about $30 but the inductance is only 2.7 mHalmost four times worse and the size is larger2 diameter footprint.
(19) A common mode inductor/choke is an inductor in which two coils are wound on a single core and they pass differential currents (equal but opposite) while blocking common-mode currents. A differential mode inductor/choke is one or more in series with the supply line, the return line or both and they pass common mode currents while blocking differential currents. The reason that one or more common-mode inductors are used instead of the differential inductor is that currents in the opposite directions in its windings cause mutually-cancelled magnetic fields. However, common mode inductors cannot handle high differential current due to saturation of their core which is used in the device. The use of common mode inductors in a differential circuit of the ground line is possible because in normal operation ground current is substantially lower than the current in power lines and at high fault currents common mode core easily saturates effectively lowering inductance to close to zero. This is explained in more details below.
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(23) Another aspect of the device and method is two filters in one enclosure as shown in
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(25) In order to fit two separate filters, the motor filter and the AC mains filter, into a small enclosure that would easily fit space-tight applications, two separate boards may be required. For example, the two filter boards may fit into an enclosure that is 3 tall, 1.85 wide and 5 deep and the mounting footprint, which is the most critical parameter for space, is essentially 1.854. For purposes of comparison, the typical motor filter described in the background to Xenus may have a footprint of 2.554, but still requires an additional AC power line filter. In addition, for a 3 A motor filter, the power rating of the AC filter should be about 10 A and the footprint for a typical AC filter 6.142.26 for Schaffner filter FN2070-10-06 (found at http://www.schaffner.com/en/products/datasheet-high-res/product/fn-2070-multi-stage-performance-emcemi-filter.html.)
(26) As shown in
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(30) The foregoing description, for purpose of explanation, has been described with reference to specific embodiments. However, the illustrative discussions above are not intended to be exhaustive or to limit the disclosure to the precise forms disclosed. Many modifications and variations are possible in view of the above teachings. The embodiments were chosen and described in order to best explain the principles of the disclosure and its practical applications, to thereby enable others skilled in the art to best utilize the disclosure and various embodiments with various modifications as are suited to the particular use contemplated.
(31) While the foregoing has been with reference to a particular embodiment of the disclosure, it will be appreciated by those skilled in the art that changes in this embodiment may be made without departing from the principles and spirit of the disclosure, the scope of which is defined by the appended claims.