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US3066567A - Magnetic pick-up for steel string instruments - Google Patents

Magnetic pick-up for steel string instruments
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US3066567A
US3066567AUS7932AUS793260AUS3066567AUS 3066567 AUS3066567 AUS 3066567AUS 7932 AUS7932 AUS 7932AUS 793260 AUS793260 AUS 793260AUS 3066567 AUS3066567 AUS 3066567A
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pick
strings
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magnetic body
string
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Jr Joseph J Kelley
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Dec. 4, 1962 J. J. KELLEY, JR 3,066,567
MAGNETIC PICK-UP FOR STEEL STRING INSTRUMENTS Filed Feb. 10, 1960 2 Sheets-Sheet 1 22 23 24 25' 26 27 28 9 Z. o o\ B/(// 17 f ll ll "ll ll" ll ll" ll lr'fi l I 16 70 15\ }AMPL/F/EP 18 I I I INPUT F1 2 18a. j 1 a INVENTOR.
JosEPH J: KELLEY-k BY Arrears? Dec. 4, 1962 J. J. KELLEY, JR 3,066,567
MAGNETIC PICK-UP FOR STEEL STRING INSTRUMENTS Filed Feb. 10, 1960 2 Sheets-Sheet 2 36 34 INVENTOR. JOSEPH J 22:21:22 J2.
gvwmaazmd A Treasury United States Patent ()fifice 3,056,567 Patented Dec. 4, 1962 3,066,567 MAGNETIC PICKUP FER STEEL STRING INSTRUMENTS Joseph J. Kelley, Jr", 3025 th Ave, 8., Minneapolis, Minn. Filed Feb. 10, 1960, er. No 7,932 4 Claims. (Cl. 84-136) The present invention relates generally to an improved pick-up for string instruments employing a plurality of parallelly disposed strings, and more particularly to an improved pick-up of the type described which is particularly adapted to deliver strong output signals, the design of which is readily adaptable for use with a plurality of different instruments.
Apparatus designed for this particular purpose have been and are being currently widely used, the pick-up being employed to provide a suitable electrical signal which may be amplified and reproduced as desired at a higher volume or energy level. Depending upon the type of pick-up utilized, the particular design thereof may render the unit unduly cumbersome for use in connection with a given instrument, or the design, if magnetically unsound, may tend to provide such a weak or limited electrical signal that pick-up and subsequent true amplification are particularly difficult to achieve. For example, if the device is only capable of generating weak signals and if the pick-up leads are unduly long, losses may occur or noises may be generated which render subsequent amplification unrealistic and noisy. These problems are readily overcome by the apparatus of the present invention.
According to the present invention, a permanent magnet is provided having a large unitary mass, and being particularly adapted to deliver a particularly strong electrical signal. The various tones from the individual strings of the musical instrument may accordingly be picked up, transmitted to a suitable amplifier over reasonably long leads, and subsequently amplified as desired. Because of the nature of the pick-up, the reproduction is substantially free from noise, and is accordingly realistic in nature. The device employs a properly poled magnetic body having a suitable coil wrapped therearound, and further provides alternate pedestals and grooves, the pedestals being particularly adapted for use as a specific area for pick-up for a given instrument string.
It is accordingly an object of the present invention to provide an improved magnetic pick-up for stringed musical instruments, the magnetic body being unitary and having a relatively large mass for providing the necessary lines of flux.
It is another object of the present invention to provide an improved magnetic pick-up for stringed musical instru ments wherein a unitary magnetic body is employed which utilizes a pick-up face comprising a plurality of alternate pedestals and grooves, each pedestal being arranged as a specific pick-up zone for a given instrument string.
Other and further objects of the present invention will become apparent to those skilled in the art upon a study of the following specification, appended claims, and accompanying drawings in which:
FIG. 1 is a perspective view of the magnetic body utilized in connection with the preferred embodiment of the present invention;
FIG. 2 is a side view of a preferred embodiment of the pick-up apparatus of the present invention;
FIG. 3 is a top plan view of the apparatus of the present invention, showing the pedestal faces thereof;
FIG. 4 is a top plan view of the apparatus of the present invention shown on a reduced scale in combination with a suitable stringed musical instrument;
FIG. 5 is a perspective view of a magnetic body utilized in connection with a somewhat modified version of the present invention;
FIG. 6 is an end view of the finished apparatus prepared in accordance with the somewhat modified embodiment of the present invention as set forth in FIG. 5;
FIG. 7 is a top plan view of the device shown in FIG. 6;
FIG. 8 is a coil guide arranged to be used in combination with the apparatus illustrated in FIGS. 5-7; and,
FIG. 9 is a perspective view of a mounting plate which is adapted to retain the various forms of the present invention, and which is further arranged to retain the strings of a musical instrument therein.
According to the preferred embodiment of the present invention, the pick-up apparatus generally designated 10 is provided with a magnetic body ormass 11 having a plurality of spaced grooves 12-42 arranged along a major face thereof, the spaces between the grooves forming a plurality of pedestal members 1313. The magnetic body is permanently polarized across the thickness dimension thereof, thereby rendering each pedestal in effect a pole-face for a specific string. The flux lines 14-14 are utilized to illustrate this polarization arrangement. The pick-upmember 10 is further provided with a plurality of turns of aconductor 15 wrapped around the shank of thebody 11 thereby forming a suitable coil therearound. A pair of insulatedlead members 16 and 16A are arranged to conduct the signal generated in the device to a suitable amplifier arrangement (not shown). In this connection, for a normal pick-up number 43 copper magnetic wire may be employed. In order to obtain suitable results, the total coil resistance of between 4,000 and 11,000 ohms is desired, this value depending, among other things, upon the input impedance of the amplifier employed. If a total resistance of about 10,000 ohms is desired, about 9,000 turns will provide the desired resistance value in a magnetic body having a length of 3% inches, a width of A inch and a depth of inch. Of course, the various amplifiers and the like employed in connection with this device may dictate the desired resistance value in the finished device, however the selection of the proper values is considered to be within ordinary skill in the art. In order to properly confine the wire, insulatingshields 17 and 18 are provided at the top surface and bottom surface respectively of the pick-up member.
Reference is made to FIG. 4 of the drawings wherein the pick-up device is shown arranged in combination with a suitable musical instrument. The instrument generally designated 20 is provided with a plurality of strings respectively numbered 21 through 29, these strings being preferably made from a material such as iron, steel, or the like which is magnetic in nature. The individual vibrating strings upon being struck, plucked or the like will vibrate in accordance with a frequency as determined by the length and tension thereof, this frequency of vibration in the tensioned magnetic string being generated as a signal in the magnetic pick-up. The generated signalis then conducted out through theconductors 16 and 16A. As is conventional in apparatus of this type, if several strings are set into vibration simultaneously the resultant vibrational signal will accordingly be picked up and suitably amplified.
In order to aifix the pick-up member 10 to a suitable musical instrument,mounting plate 18 is provided with a plurality of mounting holes 18A18A. Furthermore, aresilient member 19 is arranged to be interposed between the face of the musical instrument upon which the pick-up is mounted and themounting base 18. Accordingly, the pick-up 10 is received in substantially vibrationfree relationship on a mounting surface. In addition, it is possible to utilize the resilient member which may be, for example, sponge rubber or the like, to dispose the various pole faces either more closely to or more remote from the individual vibrating strings 2149 inclusive. In this connection, the operator merely applies more tightening force to one pair of mounting screws than to the other. Accordingly, the desired spacing between the pole face and the individual vibrating strings may be obtained.
Inasmuch as the magnetic member is unitary, there is no problem due to loss of magnetic coupling between the various components of the magnetic body. Accordingly, for an apparatus of this size, the unitary member provides for an unusually strong output signal from the device. Furthermore, the polarization of the magnetic body is arranged across the thickness or depth dimension, thereby rendering each pedestal a pole-face. The strength of the magnetic field or the flux density is accordingly substantially constant from one pedestal to the other along the length of the pick-up. The electrical signal generated by any given string vibrating at a given distance from the face of the pick-up will be expected to be substantially constant. Therefore, the advantages of this arrangement are significant over that of a device employing, for example, one leg of a horseshoe magnet as the magnetic body unit.
Referring now to the embodiment shown in FIGS. -8, the pick-up apparatus generally designated 31 includes a modified form ofmagnetic body 32 which is a form of a horseshoe magnet. Themagnet 32 includes alongitudinal groove 33 and a plurality of transverse grooves 3434 and 3535. The grooves 3434 separate the alternate pedestals 3636 while the grooves 3535 separate alternate pedestals 37-37. Each transverse pair of pedestals 3637 are arranged to function as a pick-up for anindividual string 39 which is arranged directly above each magnet couple 3637. In this connection, themagnetic body 32 is unitary in its structure and hence it is not necessary to provide for magnetic coupling between a pair of separate bodies. This arrangement enables a greater signal to be generated in the apparatus and hence problems of noise and the like are not expected to be encountered. The assembly is further provided with amagnetic coil 40 which is similar to thecoil 15 disclosed hereinabove,coil 40 being along thelongitudinal groove 33 and along the corresponding ormating groove 42 of theplastic coil guide 41. As was stated previously, the device will include as many turns as are deemed essential for the purpose and application of the device. Thecoil guide 41 is attached to themagnetic body 32 by means of a suitable arrangement ofscrews 43 and tapped holes. Intervening between thecoil guide 41 and thebody 32 is a mountingplate 45. The mountingplate 45 has a plurality of mounting holes 46-46 which are adapted to receive screws 46A46A therethrough. Resilient members 4747 are arranged to be received on the shank of the mounting screws 46A- 46A, and hence the pick-up may be disposed as desired relative to thestrings 39,39A, 39B, 39C and 39D. It will be appreciated that it may be desirable in some instances to have string 39D more closely spaced to the poleface of the pick-up than 39, for example.
Therefore, in operation, the individual strings, such asstring 39, may be struck, plucked or the like and the vibration thereof will be picked up as a signal generated in thecoil 40 of the device. This signal is carried to an appropriate amplifier along the conductors 40A and 4013. Because of the physical arrangement of the magnet, it is possible to pick up a signal generated due to the vibration of a string, for example 39, even though this vibration may be of extremely low magnitude. Inasmuch as the lines of flux run between the pole faces along the upper surface of the unit and inasmuch as the lines of flux also are carried around the body of the magnet, a substantial number of flux lines are affected by the vibration of any string. Of course, any given string affects only the flux pattern in the poles which are next adjacent thereto.
The pick-up retaining apparatus generally designated 50 includes abody portion 51 having a hollow or central cut awayportion 52 along with adepression cavity 53. A pair of mountingholes 54 and 55 are arranged to accommodate suitable screws or the like (not shown) for mounting theretainer 50 on a suitable instrument body. Tap holes 56 and 57 are provided in order thatstring retaining bar 58 is provided for retaining the ends of the various instrument strings, for example thestrings 59, 6t 61, 62 and 63 therein. Either of the modifications of the pick-up apparatus may be received in thecavity 53 and thereby have the pole faces immediately adjacent to the vibrating strings, such as the strings 5963 inclusive. For purposes of clarity, a pick-upapparatus 10 is shown disposed within thecavity 53 and in operative relationship to the various strings 59-63 inclusive. Regarding theretainer 50, it is possible with this device to prepare an instrument without the need for having a particular. form or configuration. It is essential, however, that suitable mounting means be provided on the instrument for receiving themember 50, such as, for example, by screws, bolts, or. the like through theholes 54 and 55.
It will be appreciated that various modifications of the present invention may be prepared without departing from the spirit and scope of the present invention. Thus, the specific examples given herein are for purposes of illustration only and are not to be construed as a limitation upon the coverage to which the present invention is entitled.
I claim:
1. In a device for transducing the vibrations of a plurality of independently vibratory parallelly disposed strings into electrical impulses; a unitary magnetic body permanently polarized along a mode between a first and a second pole face thereof, said magnetic body having a plurality of turns of a conductor forming a coil around a central shank portion thereof between said pole faces, at least one transverse groove being formed along said first pole face to define alternate pedestals and grooves therealong, the face of each of said pedestals being arranged to be disposed adjacent one side only of said vibratory parallel strings.
2. In a device for transducing the vibrations of a plurality of independent, magnetic, vibratory parallelly disposed strings of a musical instrument into electrical impulses; a unitary magnetic body permanently polarized along a mode between a first and a second pole face thereof so as to define a flux path therebetween, said magnetic body having a plurality of turns of a conductor forming a coil around a central shank portion thereof between said pole faces, a plurality of transverse grooves being formed along said first pole face to define alternate pedestals and grooves therealong, the face of each of said pedestals being arranged to be disposed adjacent one side only of said vibratory parallel strings, said strings being disposed in said flux path.
3. In a device for transducing the vibrations of a plurality of independent, magnetic, vibratory parallelly disposed strings of a musical instrument into electrical impulses; a unitary magnetic body permanently polarized along a mode between a first and a second pole face thereof, said magnetic body having a plurality of turns of a conductor forming a coil around a central shank porion thereof, a plurality of transverse grooves formed along said first pole face to define alternate pedestals and grooves therealong, the face of each of said pedestals being arranged to be disposed adjacent one side only of said vibratory parallel strings and modulate the flux path 5 6 existing between said first pole face and said second pole alternate pedestals and grooves therealong, the face of face. each of said pedestals being arranged to be disposed ad- 4. A magnetic variable reluctance pick-up arranged for jacent one side only of said vibratory parallel strings. use in combination With a musical instrument having a References Cited in the file of this patent plurality of independently suspended vibratory parallelly disposed strings and comprising: a unitary magnetic body UNITED STATES PATENTS permanently polarized in a mode between a first and a 435,679 Breed p 1890 second pole face thereof, said magnetic body having 3 2,048,515 Pfeil y plurality of turns of a conductor forming a coil around a 2,087,106 Hart July 13, 1937 central shank portion thereof, a plurality of transverse 10 2,262,335 Russell Nov. 11, 194
grooves being formed along said first pole face to define 2,897,709 McCarty et a1- g- 1959
US7932A1960-02-101960-02-10Magnetic pick-up for steel string instrumentsExpired - LifetimeUS3066567A (en)

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Cited By (28)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3236930A (en)*1962-05-111966-02-22Columbia Records Distrib CorpElectromagnetic pickup for electrical musical instruments
US3525797A (en)*1968-01-161970-08-25Leonard W PaviaStringed musical instrument with electromagnetic pickup also functioning as a bridge
US3530228A (en)*1968-04-231970-09-22Baldwin Co D HElectric guitar piezoelectric transducer bridge with replaceable string height adjustors
US3657461A (en)*1970-12-211972-04-18Quilla H FreemanSingle pickup frequency control for stringed instrument
US3673303A (en)*1969-09-031972-06-27Nippon Musical Instruments MfgVoltage generating device for controlling musical tone output from electronic musical instruments
US3983778A (en)*1974-08-211976-10-05William BartoliniHigh asymmetry variable reluctance pickup system for steel string musical instruments
US4026178A (en)*1975-04-111977-05-31Norlin Music, Inc.Magnetic pickup for stringed musical instrument
US4069732A (en)*1975-09-081978-01-24Massachusetts Institute Of TechnologyElectric guitar
FR2506109A1 (en)*1981-05-181982-11-19Berton VincentMicrophone for electric guitar - has reduced winding on axis parallel to strings under which magnetic flux guides extend
WO1982004156A1 (en)*1981-05-181982-11-25Vincent BertonMicrophones for electric guitares
US4809578A (en)*1987-07-141989-03-07Lace Jr Donald AMagnetic field shaping in an acoustic pick-up assembly
US5336845A (en)*1993-01-041994-08-09Actodyne General, Inc.Pick-up assembly for a stringed musical instrument
USD354507S (en)1993-01-141995-01-17Actodyne General, Inc.Pickup unit for a stringed musical instrument
US5391831A (en)*1990-10-101995-02-21Thomas E. DornElectromagnetic musical pickup having U-shaped ferromagnetic core
US5401900A (en)*1993-01-141995-03-28Actodyne General, Inc.Mounting assembly for an acoustic pick-up
US5408043A (en)*1990-10-101995-04-18Thomas E. DornElectromagnetic musical pickups with central permanent magnets
US5418327A (en)*1993-01-041995-05-23Actodyne General, Inc.Mounting assembly
US5422432A (en)*1990-10-101995-06-06Thomas E. DornElectromagnetic pickup for a plural-string musical instrument incorporating a coil around a multi-laminate ferromagnetic core
US5438157A (en)*1993-01-141995-08-01Actodyne General, Inc.Acoustic pick-up assembly for a stringed musical instrument
US5464948A (en)*1994-04-221995-11-07Actodyne General, Inc.Sensor assembly for a stringed musical instrument
US5641932A (en)*1995-01-191997-06-24Actodyne General, Inc.Sensor assembly for stringed musical instruments
US6392137B1 (en)2000-04-272002-05-21Gibson Guitar Corp.Polyphonic guitar pickup for sensing string vibrations in two mutually perpendicular planes
US20040103776A1 (en)*1999-04-262004-06-03Juszkiewicz Henry E.Digital guitar processing circuit
US20040144241A1 (en)*1999-04-262004-07-29Juskiewicz Henry E.Digital guitar system
US20040168566A1 (en)*2003-01-092004-09-02Juszkiewicz Henry E.Hexaphonic pickup for digital guitar system
US20040261607A1 (en)*2003-01-092004-12-30Juszkiewicz Henry E.Breakout box for digital guitar
US20070056435A1 (en)*2005-09-092007-03-15Juszkiewicz Henry EAngled pickup for digital guitar
US9837063B1 (en)2016-01-212017-12-05Michael David FeesePickup coil sensors and methods for adjusting frequency response characteristics of pickup coil sensors

Citations (5)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US435679A (en)*1890-09-02breed
US2048515A (en)*1933-04-281936-07-21Creszentia A PfeilMusical instrument
US2087106A (en)*1936-02-081937-07-13Gibson IncElectrical musical instrument
US2262335A (en)*1939-07-211941-11-11Clarence W RussellMusical instrument
US2897709A (en)*1956-11-071959-08-04Gibson IncElectrical pickup for stringed musical instruments

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US435679A (en)*1890-09-02breed
US2048515A (en)*1933-04-281936-07-21Creszentia A PfeilMusical instrument
US2087106A (en)*1936-02-081937-07-13Gibson IncElectrical musical instrument
US2262335A (en)*1939-07-211941-11-11Clarence W RussellMusical instrument
US2897709A (en)*1956-11-071959-08-04Gibson IncElectrical pickup for stringed musical instruments

Cited By (40)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3236930A (en)*1962-05-111966-02-22Columbia Records Distrib CorpElectromagnetic pickup for electrical musical instruments
US3525797A (en)*1968-01-161970-08-25Leonard W PaviaStringed musical instrument with electromagnetic pickup also functioning as a bridge
US3530228A (en)*1968-04-231970-09-22Baldwin Co D HElectric guitar piezoelectric transducer bridge with replaceable string height adjustors
US3673303A (en)*1969-09-031972-06-27Nippon Musical Instruments MfgVoltage generating device for controlling musical tone output from electronic musical instruments
US3657461A (en)*1970-12-211972-04-18Quilla H FreemanSingle pickup frequency control for stringed instrument
US3983778A (en)*1974-08-211976-10-05William BartoliniHigh asymmetry variable reluctance pickup system for steel string musical instruments
US4026178A (en)*1975-04-111977-05-31Norlin Music, Inc.Magnetic pickup for stringed musical instrument
US4069732A (en)*1975-09-081978-01-24Massachusetts Institute Of TechnologyElectric guitar
FR2506109A1 (en)*1981-05-181982-11-19Berton VincentMicrophone for electric guitar - has reduced winding on axis parallel to strings under which magnetic flux guides extend
WO1982004156A1 (en)*1981-05-181982-11-25Vincent BertonMicrophones for electric guitares
US4809578A (en)*1987-07-141989-03-07Lace Jr Donald AMagnetic field shaping in an acoustic pick-up assembly
WO1990010287A1 (en)*1987-07-141990-09-07Lace Donald AA pickup device for stringed instruments
US5422432A (en)*1990-10-101995-06-06Thomas E. DornElectromagnetic pickup for a plural-string musical instrument incorporating a coil around a multi-laminate ferromagnetic core
US5391831A (en)*1990-10-101995-02-21Thomas E. DornElectromagnetic musical pickup having U-shaped ferromagnetic core
US5408043A (en)*1990-10-101995-04-18Thomas E. DornElectromagnetic musical pickups with central permanent magnets
US5336845A (en)*1993-01-041994-08-09Actodyne General, Inc.Pick-up assembly for a stringed musical instrument
US5430246A (en)*1993-01-041995-07-04Actodyne General, Inc.Dual coil pick-up assembly for a springed musical instrument
US5418327A (en)*1993-01-041995-05-23Actodyne General, Inc.Mounting assembly
US5438157A (en)*1993-01-141995-08-01Actodyne General, Inc.Acoustic pick-up assembly for a stringed musical instrument
US5401900A (en)*1993-01-141995-03-28Actodyne General, Inc.Mounting assembly for an acoustic pick-up
USD354507S (en)1993-01-141995-01-17Actodyne General, Inc.Pickup unit for a stringed musical instrument
US5464948A (en)*1994-04-221995-11-07Actodyne General, Inc.Sensor assembly for a stringed musical instrument
US5684263A (en)*1994-04-221997-11-04Actodyne General, Inc.Electromagnetic sensor assembly for musical instruments having a magnetic lining
US5641932A (en)*1995-01-191997-06-24Actodyne General, Inc.Sensor assembly for stringed musical instruments
US20040103776A1 (en)*1999-04-262004-06-03Juszkiewicz Henry E.Digital guitar processing circuit
US20070089594A1 (en)*1999-04-262007-04-26Juszkiewicz Henry EDigital guitar system
US20040144241A1 (en)*1999-04-262004-07-29Juskiewicz Henry E.Digital guitar system
US7952014B2 (en)1999-04-262011-05-31Gibson Guitar Corp.Digital guitar system
US20080276794A1 (en)*1999-04-262008-11-13Juszkiewicz Henry EDigital guitar system
US6888057B2 (en)1999-04-262005-05-03Gibson Guitar Corp.Digital guitar processing circuit
US7399918B2 (en)1999-04-262008-07-15Gibson Guitar Corp.Digital guitar system
US7220912B2 (en)1999-04-262007-05-22Gibson Guitar Corp.Digital guitar system
US6392137B1 (en)2000-04-272002-05-21Gibson Guitar Corp.Polyphonic guitar pickup for sensing string vibrations in two mutually perpendicular planes
US7220913B2 (en)2003-01-092007-05-22Gibson Guitar Corp.Breakout box for digital guitar
US7166794B2 (en)2003-01-092007-01-23Gibson Guitar Corp.Hexaphonic pickup for digital guitar system
US20040261607A1 (en)*2003-01-092004-12-30Juszkiewicz Henry E.Breakout box for digital guitar
US20040168566A1 (en)*2003-01-092004-09-02Juszkiewicz Henry E.Hexaphonic pickup for digital guitar system
US20070056435A1 (en)*2005-09-092007-03-15Juszkiewicz Henry EAngled pickup for digital guitar
US7285714B2 (en)2005-09-092007-10-23Gibson Guitar Corp.Pickup for digital guitar
US9837063B1 (en)2016-01-212017-12-05Michael David FeesePickup coil sensors and methods for adjusting frequency response characteristics of pickup coil sensors

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