US3701963A - Single control device for plural variable resistors - Google Patents
Single control device for plural variable resistors Download PDFInfo
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- US3701963A US3701963A US221733*A US3701963DA US3701963A US 3701963 A US3701963 A US 3701963A US 3701963D A US3701963D A US 3701963DA US 3701963 A US3701963 A US 3701963A
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- 230000003247 decreasing effect Effects 0.000 description 2
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Images
Classifications
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01C—RESISTORS
- H01C10/00—Adjustable resistors
- H01C10/16—Adjustable resistors including plural resistive elements
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01V—GEOPHYSICS; GRAVITATIONAL MEASUREMENTS; DETECTING MASSES OR OBJECTS; TAGS
- G01V1/00—Seismology; Seismic or acoustic prospecting or detecting
- G01V1/02—Generating seismic energy
- G01V1/04—Details
- G01V1/09—Transporting arrangements, e.g. on vehicles
-
- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05G—CONTROL DEVICES OR SYSTEMS INSOFAR AS CHARACTERISED BY MECHANICAL FEATURES ONLY
- G05G9/00—Manually-actuated control mechanisms provided with one single controlling member co-operating with two or more controlled members, e.g. selectively, simultaneously
- G05G9/02—Manually-actuated control mechanisms provided with one single controlling member co-operating with two or more controlled members, e.g. selectively, simultaneously the controlling member being movable in different independent ways, movement in each individual way actuating one controlled member only
- G05G9/04—Manually-actuated control mechanisms provided with one single controlling member co-operating with two or more controlled members, e.g. selectively, simultaneously the controlling member being movable in different independent ways, movement in each individual way actuating one controlled member only in which movement in two or more ways can occur simultaneously
- G05G9/047—Manually-actuated control mechanisms provided with one single controlling member co-operating with two or more controlled members, e.g. selectively, simultaneously the controlling member being movable in different independent ways, movement in each individual way actuating one controlled member only in which movement in two or more ways can occur simultaneously the controlling member being movable by hand about orthogonal axes, e.g. joysticks
- G05G2009/04703—Mounting of controlling member
- G05G2009/04714—Mounting of controlling member with orthogonal axes
Definitions
- An improved control device for use in volume adjustment of a multi-speaker sound system is provided with means for simultaneously adjusting the volume of some or all of the speakers in the system.
- a plurality of variable resistors are mounted on an insulating substrate, the effective resistanceof each resistor being adjustable by sliding contact means.
- an independent sliding contact means is provided for each variable resistor, those sliding contacts being simultaneously adjustable by means of a control knob operatively connected to a crossover linkage arrangement.
- the control knob extends through a window in the, housing whereby the position of the apparent sound source is adjusted by reference to the position of the control knob within the housing substrate.
- the individual resistors each comprise a unique resistive pattern and a single carrier is provided with a plurality of sliding contacts engaging that resistive pattern in a predetermined manner in response to the manual operation of the control knob.
- each speaker is provided with avariable resistor device, said device being appropriately operatively connected to a common rotatable control knob which is thereby adapted to simultaneously increase or decrease the volume of one speaker relative to the volume of the other.
- the listener merely adjusts the balance control knob" in accordance with thedesired position of the balanced sound source relative to the speakers.
- an additional rotatablecontrol knob is necessary to adjust the balance of the two additional speakers.
- va control device for use involume adjustment of a multi-speaker sound system, of the type here described, adapted to simultaneous adjustment of the resistances associated with a plurality' of sound speakers by means of a single control knob so as to provide a balanced outputfor any desired listening position.
- that device comprises a plurality of triangular shaped resistive elements disposed on a base member and operatively connected to a like number of sound speakers.
- the operative resistances and thus-the audio volume of each of the associated speakers is adapted to be adjusted simultaneously by'means of a plurality of electrical contacts car any desired position by means of a single control member extending through a window in the housing of the device, that window being adapted to provide accurate visual indication of the resulting apparent sound source.
- the listening room generally with two speakers in front of the listener and two speakers at his rear. Increased listening enjoyment results from being surrounded and engulfed by sound. Ideally the listener should have the. illusion that he is actually sitting in the midst of the orchestra. The importance of a balanced output from the plurality of speakers is paramount in such a multi-channel sound system. Thus in order to obtain maximum listening pleasure the speaker outputs should be precisely balanced-in ac-, cordance with the listener's desire. The same is true for a dual channel system utilizing four or more speakers.
- the desired position of the apparent sound source may be coincident with the listeners position or the listener may desire to move the apparent sound source away from the listening position depending upon the f particular selection he islistening to andhis individual taste.
- the use of two twin variable rev sistor control knobs is not only cumbersome but, par ticularly in the case of a four-channel stereo system,
- control knob wasmoved from the origin along either the X or Y axis to one side ofthe window,.the two speakers at that side of v the room would be maintained at maximum volume while the volume of the remaining two speakers at the other side of the room would be reduced by approximately one-half. Accordingly, the operator, by use of the control knob, could not test the balance 'of only two speakers without at least some interference or distraction from the output of the other two speakers.
- variable resistor of the type described which is simpler and more compact in construction and substantially more versatile than prior art structures of this type.
- a device constructed in accordance with the present invention comprises a plurality of variable resistors mounted on an insulating substrate, a cover member secured to the substrate and defining an enclosure, a carrier mounted for sliding movement within that enclosure for movement parallel to the substrate in any direction and having a plurality of electrical contacts wipingly engaging said plurality of resistors respectively.
- the carrier is provided with a control member or knob extending through a window in the cover member. That window is adapted tosimulate the listeningroom and the resistors are so arranged on the substrate that when they are properly electrically concontrol knob within the cover member window.
- the resistors are in the form of four narrow strips of resistive material'disposed'along the sides of a generally square sub- .satile means for simultaneously adjusting the volume of members are provided with electrical contact members each having contacts biased into wiping engagement with the resistive and conductive elements thereby to provide an operative variable resistor circuit.
- the carriers on opposite sides of the substrate are movable in unison viaslotted crossover booms.
- An elongated control knob extends vertically through the slots in both boomsat the crossover region, whereby movement of the knob is effective to simultaneously adjust the effective ,resistancesof all four resistors.
- the resistive-strips may be varied in length and/or resistance value, thereby to :vary the adjustment characteristic-in accordance with individual desires and/or for use with rectangular rooms of varyingdimensions. Two additional embodiments of the crossover control boom configuration are described.
- the substrate is provided'with resistive patterns in a manner similar] to that I described in the aforementioned copending application.
- the resistive patterns comprise a sandwich structure in which a resistive area is bounded on opposite sides by conductive areas. These patterns are so designed that one, two, or even three of the four resistors may be adjusted while the resistances of remaining resistors are maintained at zero. This featureprovides greater versatility and facilitates independent speaker balancing and testing for defective speakers and/or channels.
- This embodiment also includes an improved contact structure wherein each of the four contact members are mounted for horizontal movement with a plate-like carrier member but are vertically slidable relative thereto and comprise a pair of contacts spring biased in opposite directions into wiping engagement with the resistive patterns on the substrate and opposing conductive areas disposed on a second substrate mounted above and parallel to the first substrate.
- This structural arrangement provides improved electrical contact and a smooth and reliable operation with increased operating life.
- the present invention relates to a control device for plural variable resistors as defined in the appended claims and as described herein, with reference to the accompanying drawings in which: v
- FIG. 1 is a perspective view of an assembled control device constructed in accordancewith one embodiment of the present invention
- FIG. 2 is a top plan view of the deviceof FIG. I with the cover removed;
- FIG. 3 is a cross sectional view taken along the line 3-3ofFIG. l;
- FIG. 4 is a circuit diagram of the variable resistors of FIG. 1;
- FIG. 5 is a circuit diagram similar to FIG. 4 showingthe variable resistors operatively connected in a fourchannel sound system
- FIG. 6 is a schematic illustration of a room containing four stereo speakers
- FIGS. '7A-7D are plan views showing four illustrative I embodiments of a substrate for use in the control device of FIG. 1, the substrate of FIG. 7D being designed for use in connection with an elongated rectangularroom;
- FIGS. 8A and 8B are perspective views of two additional embodiments of a crossover control boom structure for use in the control device of FIG. 1;
- FIG. 9 is a perspective view of an assembled control device constructed in accordance with a second embodiment of this invention.
- FIG. 10 is an exploded perspective view of the control deviceof FIG.9.
- FIGS. 11 and 12 are plan views of two embodiments of. an insulating substrate for use in the control device ofFIG.9.- v
- the present invention will be here specifically described for use in a four-channel stereo system having four speakers, one for each channel. It will be apparent, however, that the device may be modified for use with other multi-channel sound systems having any number of channels and/or speakers.
- That device comprises a substrate or base plate generally designated 10 and a cover member generally designated 12.
- Cover member 12 comprises a top wall 14 having a generally square window or aperture 16 and four bent over side walls 18 having a plurality of tabs 20.
- the cover member 12 is secured to base plate- 10 by tabs 20 received in registering notches'22 in the base plate and bent thereover.
- Base plate '10 preferably comprises a thin square substrate of electrically insulating material and as best shown in FIG. 2, is provided with four pairs of electrically operative elongated strips 24 and 26 extending along its four sides, respectively.
- the outer strips 24 comprise resistive material 24 along a major portion of the length thereof, the segments 24" at either end comprising conductive (i.e. metallic) material
- a pair of electrical terminals 28 are affixed to conductive areas 24" at either end of strips 24 and extend through slots 30 in substrate 10 for the purpose of external electrical connection.
- Inner strips 26 are formed of conductive material along their entire length and are eachprovided with one electrical terminal 32 at one end extending through a slot 34 in substrate 10 for external electrical connection.
- Elongated guide rails generally designated 36 are operatively secured to the substrate 10 and extend between strips 24 and 26. As best shown in FIG. 3,
- each carrier member 38 is formed of a suitable electrically insulating material and is provided at its lower surface with a rounded groove 40 adapted to seat on guide rail 36 for sliding movement therealong.
- resilient electrical contacts 42 adapted, when carrier 38 is urged into sliding engagement with rail 36, to wipingly engage strips 24 and 26on substrate 10.
- three contacts 42 are provided on each carrier member, two engaging the strip 24 and one engaging the strip 26. Those contacts are all electrically connected to one another in any suitable manner (not shown) (for example, by being formed integral on a single contact member having a connecting segment secured to the carrier 38 above the groove 40), thereby to electrically connect the strips 24 and 26.
- Carriers 38 are formed with upwardly extending tongues 44. Tongues 44 are receivedv in vertical slots 48 formed in sliding blocks. 46, those blocks being disposed between carriers 38 and the upper wall 14 of cover member 12 and being adapted to urge carriers 38 into sliding engagement with their respective guide rails 36. As a result, carriers 38 are moved along guide rails 36 by their engagement with blocks 46.
- those blocks are formed with rounded upper surfaces 50, those surfaces slidably engaging a thin sheet of low friction material 52 disposed between wall 14 of cover member 12 and blocks 46. Sheet 50 is formed with a window 52 registering'with window 16 in wall 14 to accommodate the control mechanism hereinafter described.
- Opposing blocks 46 are affixed to opposite ends of a pair of control booms 54 in any suitable manner.
- booms 54 extendin mutually perpendicular crossover relationship and are provided with longitudinally extending slots'56, those slots defining at their crossover point a generally square aperture 58.
- An elongated vertically extending control knob is received in aperture 58 through the slots 56 in both booms 54 and extends upwardly through windows52 and 16 in sheet 50 and wall 14 0f cover member 12, respectively.
- Control knob 60 is supported at its lower end by a rectangular base member 62, that base member being larger than aperture 58 in booms 54 and being provided with a downwardly extending teat 64 slidably engaging the substrate 10.
- Control knob 60' is preferably provided at its lower end 66 with a squarecross section being snugly'received in square aperture 58 and at its upper end 68 with a generally cir cular cross section to facilitate manual gripping.
- control knob 60 may be moved along either or both of longitudinal slots 56 in booms 54 to any location within window area 16, and when so moved is adapted to adjust the positions of booms 54 along the opposite sides of substrate 10 bridged by those booms.
- Booms 54 via the sliding blocks 46 at either end thereof are adapted to control the position of carriers 38 alongguide rails 36 and thus the position of contacts 42 along strips 24 and 26 thereby to vary the efi'ective length of resistive material 24' operatively connected in the external circuit, between one of the terminals 28 and terminal 32.
- FIGS. 7A-7D show alternative arrangements of the strips 24 and 26 on substrate 10, in which the four inner and outer strips are operatively connected to each other in a closed loop.
- FIG. 7A one of the two terminals 28 at either end of the strips 24 are eliminated and the conductive area 24" at that end is extended and operatively connected to the terminal 28 of the adjacent strip 24.
- the conductive strips 26 are connected .at their intersecting corners in a closed loop, a single terminal 32 being provided at one corner. This structure results in a simplification of the wiring system.
- FIG. 7B is identical to that of FIG. 7A with the exception that the strips 24 comprise resistive material 24' along a length greater than the adjustment span L of the carriers 38, whereby the contacts 42 remain engaged with resistive material 24' along the entire adjustment span of carrier 38, thereby to vary the effective resistance from a maximum value at one end of the span to a minimum value (other than zero) at the other end of the adjustment span.
- .sound is always emitted from all four speakers and unnatural sound field generation is minimized.
- FIG.'7C is again substantially identical to that of FIG. 7A with the exception that the conductive strips 26 are operatively connected to a centrally located terminal by means of intersecting conductive strips'27.
- FIG. 7D also utilizes the structure of FIG. 7A but is rectangular in configuration, the
- the two pairs of strips may be made of different resistive materials whereby the effective resistance of the longer strips is equal to that of the shorter strips thereby to maintain effective four speaker balance.
- This configuration is utilized with a correspondingly rectangular window area in the cover member to facilitate adjustment of the sound source within a rectangular room (or where the speakers are situated in a rectangular configuration other than a square).
- the electrical circuit embodied in a control device of the type thus far described using one of the substrate configurations of FIGS. 7 A-7D is best illustrated by the circuit diagram of FIG. 4, wherein the four terminals 28 are represented by nodes a-d, the four resistive strips are represented by resistors R R R and R and the terminal 32 is represented by node e.
- the node 60 represents the control knob 60 in FIG. 1 and the slider contacts 42 engaging the resistive strips are represented by pointers P P P and P
- node e is grounded and the corner nodes a, b, c and d are operatively connected in circuit arrangement with the four channels Cl-I 1-CI-I4 of a sound system.
- each channel comprises a terminal TR at which the audio signal is introduced. That signal is amplified by a preamplifier PA and then passes through a master amplifier MA to its respective speaker SP.
- volume adjustment for individual channels is effected through attentuation of the audio signal at nodes n -m. Those nodes are each connected to one of the For example, in the central position of knob illustrated, all four speakers will have equal sound volume. If control knob 60 is moved toward node b to its extreme upper'right hand position in FIG. 5, the signal levels at nodes a, b and c will be maximally attenuated (in the embodiment of FIG. 7A these nodes would be grounded resulting in no audio signal at all at the output of the respective preamplifiers), and the audio signal at node d will be minimally attenuated. As a result, the volume of speaker SP3 is increased to its maximum level while the volume at speakers SP1, SP2 and SP4 is decreased, to their minimum levels.
- the. signal (voltage) level at each of nodes a-d varies between a maximum of one-half RI to a minimum of zero where R is the resistance of the full length of each resistor strip and I is the current.
- the speakers should be arranged in a configuration corresponding to the window 16 within which the control knob 60 is movable.
- speaker SP3 is located at the upper right hand corner of a square listening area so that movement of the control knob 60 to the upper right hand corner (nodes b and n )-of the window 16 of the control mechanism is effective to move the apparent sound source to the corresponding corner of the listening area
- FIGS. 8A and 8B various crossover linkages other than that shown in FIGS. 2 and 3 may be utilized illustrated in FIGS. 8A and 8B.
- a pair of control rods 72 having a generally circular cross section are received respectively through a pair of mutually perpendicular but vertically spaced circular apertures 74 in a square block 76 affixed to the lower end of control knob 60.
- the carrier members here designated 38 comprise rectangular blocks having slots 78 adapted to receive the opposing ends of rods 72, whereby movement of the knob in any direction results in the mutually perpendicular sliding movement of the carriers associated with those rods.
- FIG. 8B shows a construction similar to that of FIG. 8A.
- the crossover members are in the form of flattened elongated members 80 received in narrow crossover slots 82 and formed with resilient fork-like fastening members 84 at opposite ends.
- the carriers 38" are in turn formed with corarecontrolled by four separated carrier members movable by means of a pair of crossover linkage members.- That structure has certain advantages over the stallation.
- the device may be easily modified for use with arectangular room-of other than a square configuration merely by lengthening the resistive strips on one pair of sides of thebase while maintaining the total resistance value of the stripthe same (i.e., as by using a material of slightly different resistance per inch).
- FIGS. 9-.-l2 is designed to provide such versatility while maintaining a simple and reliable construction which is easy to assemble and install. As illustrated in FIGS.
- That device is similar iii-construction and operation to the device disclosed in the aforementioned copending Ko-. matsu application and comprises a substrate 110 and a cover member 112 designed to-fit over substrate 110 and be securedthereto by depending tabs 120 received within slots 122 in a manner identical to that already described with respect to FIG. 1.
- the cover member is provided with a window 116 in its top wall 118 through which the control knob 160 extends.
- Affixed to the lower end of control knob 160 is a single carrier member 200 inthe form of a generally square plateof insulating materialhaving stepped portions 202 on its underside along two parallel edges.
- Carrier 200 is provided with four small apertures 204, one near each corner, those apertures slidably receiving contact elements 206.
- Each contact element comprises a pair of oppositely facing metallic contacts spring biased away from each other by a small compression coil spring 210 disposed therebetween.
- Carrier member 200 is mounted for universal sliding movement between substrate 110 and a second plate of insulating material 212 by means of a universal slide linkage comprising a rectangular guide frame 214 having guide rails 216 slidably supporting carrier 200 along stepped portions 202 for movement in a first direction indicated by arrow 218, that frame being itself slidably the 110.
- plate 212 is provided with a window 230 adapted to register with window 116 on cover member 112 through which control knob 160 is received.
- each conductive area 228 on the lower surface of plate 212 is electrically connected to a terminal 232, said terminals being secured 118 of cover member 112 and are provided with slots in pairs on two oppositely extending tongues 234 formed integral on plate 212. Those tongues are received through openings 236 in opposite side walls 238 receiving tabs 240 depending from the top wall 114 of cover member 112, thereby to laterally stabilize plate 212 within the assembly.
- guide frame 214 is mounted on guide rails 220, carrier member 200 is mounted on frame 214, plat'e'212 is placed atop carrier 200 and supported in that position by the four upwardlyfacing contacts 208, control knob 160 extending throughwindow 230, and finally covermember 112 is disposed atop plate 2l2,'tabs 240 being received in slots.238, and is secured to substrate 110 by tabs 120 received through slots 122 and bent under substrate 110.
- coil spring 210 on each contact member 206 is compressed between substrate 110 and plate 212, whereby contacts 206 establish firm electrical connection between the registering electrical elements 226 and 228 on substrate 110 and plate 212, respectively, and are moved along those elements by carrier member 200. Because contacts 206 are vertically movable within apertures 204 in carrier member 200, those contacts float between substrate 110 and plate 212 exerting equal pressure on both.
- electrically operative elements 226 on substrate 110' each comprise a resistive area R sandwiched between two conductive areas A and B.
- the resistive area R- isin the form of a strip extending between the two adjacent outer sides of the square element 226, and having a generally L- shaped outer boundary 242 with the outer conductive area A and an arcuate inner boundary 244 with the mounted on a pair of guide rails 220 by means of I stepped portions 222 for movement in a second direction indicated by arrow 224 perpendicularto said inner conductive area B. Consequently, the inner conductive area B encompasses both adjacent inner sides of the square elements 226.
- Terminals T are operatively electrically connected to the outer conductive areas A at the outer corners of the elements 226.
- the inner conductive areas B are operatively electrically connected to terminals T at the inner corners .of elements 226.
- Terminals T and T extend throughappropriate slots in the substrate 110 for external electrical connection to a sound system. That electrical connection is made in a manner identical to that shown and described in the aforementioned copending Komatsu application and accordingly will v not be described in detail here. Suffice it to say that the volume of each of four speakers is controlled by the effective resistance connected between the grounded terminals T' on substrate 110 and the terminals 232 on plate 212.
- the contacts 208 are located centrally of elements 226 at the boundary 242 between the resistive areas R and the outer conductive areas A.
- the entire resistive area R is connected between terminals T and terminals 232 (via contact members 206 and conductive elements 228) whereby substantially maximum volume is emitted from all four speakers.
- the knob 160 is moved to its extreme position at one of the corners of window 116, for example to the upper right hand corner as illustrated in FIG. 11, the upper right hand contact 208 remains engaged with the outerconductive area A and the other three contacts are moved fully. across resistive areas R R and R, into engagement with the inner conductive areas 8,, B and 8,, respectively.
- the volume of one speaker, associated with the upper right hand element 226, remains at its maximum level, while the volume of the remaining three speakers is reduced to zero.
- this configuration is desirable for testing the performance of a particular speaker and/or channel without interference from I the remaining speakers and/or channel.
- a second desirable feature of the resistive pattern here illustrated is the ability to test the balance between any two adjacentspeakers without interfering audio from the other two speakers.
- the balance between the two upper resistors R, and R or the two right hand resistors R and R may be independently adjusted merely by sliding the knob in the horizontal or vertical direction, respectively. It will be apparent that under these conditions the effective resistance of the remaining two resistors is maintained at zero value because their respective contacts slide along the inner conductive areas B thereby shorting out the audio signal for those speakers.
- the resistive patterns here illustrated provide maximum resistance (i.e., maximum volume) to all four channels when the control knob is centrally located within the window, the resistance (volume) of one or more of those channels decreasing upon movement of the control knob away'from the center of the window.
- the resistive pattern herein described provides exceptionally good accuracy in adjusting the apparent sound source by visual reference to the location control knob within the window opening in the cover member combined with increased versatility in providing pleasing sound effects.
- the inner terminals T are all grounded, those terminals may be conveniently replaced by a central conductive area C operatively connecting all four inner conductive areas B to a single central terminal T, as illustrated schematically in FIG. 12.
- the present invention represents a significant improvement in accordance with this invention provides increased versatility and superior operating characteristics as compared to prior art structures.
- the crossover-construction shown in FIG. 1 is particularly useful in connection with elongated rectangular listening areas or where variations in the sensitivity of balance adjustment in mutually perpendicular directions is desired. Moreover, that configuration results in a simplified wiring system in which all external connections are made to terminals on the substrate.
- FIG. 9 provides an extremely compact structure having improved floating electrical contact means andenhanced versatility which enables'independent volume adjustment of one or more speakers.
- control device of claim 1 wherein'said housing comprises a rectangular substrate, there being four electrically operative elements arranged symmetrically on said substrate, and wherein said other conductive area of each of said elements extends along the full length of two adjacent sides of said element rectangle, whereby movement of said contacts along said two adjacent sides of one of said elements is ineffective to dary between said resistive area and said one conductive area is L-shaped.
- a control device for use in volume adjustment of a multi-speaker sound system comprising a first plate of electrically insulating material, a plurality of first electrically operative elements disposed on said first plate, first terminal means on said first plate operatively electrically connected to said elements, a second plate of dicular to said plates, each of said contact elements comprising first and second electrical contacts extending in opposite directions toward said first and second plates, respectively, and resilient bias means operatively connected between said first and second contacts and effective to bias said contacts away from each other and into wiping engagement with opposing first and second electrically operative elements, respectively, said electrically operative elements on at least one of said first or second plates comprising a resistive pattern, whereby when said first and second terminal means are connected in operative circuit arrangement with said plurality of speakers, the position of the apparent sound source may be varied.
- said resistive patterns include at least two conductive areas separated from each other by a resistive area on said electrically operative element such that one or more of said contacts may engage one of said conductive areas while the remaining contacts simultaneously engage the other of said conductive areas on their respective electrically operative elements.
- a control device for use in volume adjustment of a multi-speakersound system comprising a substrate and a cover member operatively connected to said substrate to define a housing enclosure, said substrate having a plurality of resistive strips disposed along the periphery of said substrate and a plurality of conduc tive strips disposed adjacent and parallel tosaid re sistive strips thereby to define parallel pairs, first terminal means on said substrate operatively connected to said resistive strips, second terminal means on said sub! strate operatively connected to said conductive strips, a
- said cover member having a window opening, a control knob extending out from said housing enclosure through said window, and means operatively connected between said control knob and said plurality of sliding contact means and effective upon movement of said control knob within said window area in a direction parallel to said substrate to simultaneously adjust the effective length of said resistive strips operatively connected between said first and second terminal means, whereby when said first terminal means are connected, respectively, to a plu rality of sound speakers and said second terminal means is grounded, the position of the apparent sound source may be conveniently varied by reference to the position of said carrier within said window.
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Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP46003773A JPS5149303B1 (enExample) | 1971-02-03 | 1971-02-03 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US3701963A true US3701963A (en) | 1972-10-31 |
Family
ID=11566483
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US221733*A Expired - Lifetime US3701963A (en) | 1971-02-03 | 1972-01-28 | Single control device for plural variable resistors |
Country Status (2)
| Country | Link |
|---|---|
| US (1) | US3701963A (enExample) |
| JP (1) | JPS5149303B1 (enExample) |
Cited By (11)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3788649A (en) * | 1972-08-09 | 1974-01-29 | Alps Motorola | One-point-balance adjusting device |
| US3942148A (en) * | 1974-05-29 | 1976-03-02 | Matsushita Electric Industrial Company, Limited | Device for simultaneously controlling a plurality of variable resistors |
| US3952156A (en) * | 1972-09-07 | 1976-04-20 | Xerox Corporation | Signal processing system |
| US5086296A (en) * | 1987-12-02 | 1992-02-04 | U.S. Philips Corporation | Signal generating device |
| US5990869A (en) * | 1996-08-20 | 1999-11-23 | Alliance Technologies Corp. | Force feedback mouse |
| US6528740B2 (en) * | 2000-03-09 | 2003-03-04 | Hosiden Corporation | Pointing device |
| EP1118957A3 (en) * | 2000-01-21 | 2004-03-17 | Hosiden Corporation | Pointing device |
| EP1221672A3 (en) * | 2000-12-28 | 2004-03-24 | Hosiden Corporation | Pointing device |
| WO2006042754A1 (de) * | 2004-10-20 | 2006-04-27 | Heinz Herbert Malzahn | Computermaus |
| US20110102380A1 (en) * | 2009-11-05 | 2011-05-05 | Hung-Ming Huang | Direction Indicating Device |
| US20150198964A1 (en) * | 2014-01-16 | 2015-07-16 | Hosiden Corporation | Multidirectional input device |
Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3372359A (en) * | 1967-01-30 | 1968-03-05 | Carter Precision Electric Co | Coordinated control for variable resistors |
| US3629775A (en) * | 1970-06-19 | 1971-12-21 | Gulf & Western Industries | Stereo balance and fader potentiometer |
-
1971
- 1971-02-03 JP JP46003773A patent/JPS5149303B1/ja active Pending
-
1972
- 1972-01-28 US US221733*A patent/US3701963A/en not_active Expired - Lifetime
Patent Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3372359A (en) * | 1967-01-30 | 1968-03-05 | Carter Precision Electric Co | Coordinated control for variable resistors |
| US3629775A (en) * | 1970-06-19 | 1971-12-21 | Gulf & Western Industries | Stereo balance and fader potentiometer |
Cited By (16)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3788649A (en) * | 1972-08-09 | 1974-01-29 | Alps Motorola | One-point-balance adjusting device |
| US3952156A (en) * | 1972-09-07 | 1976-04-20 | Xerox Corporation | Signal processing system |
| US3942148A (en) * | 1974-05-29 | 1976-03-02 | Matsushita Electric Industrial Company, Limited | Device for simultaneously controlling a plurality of variable resistors |
| US5086296A (en) * | 1987-12-02 | 1992-02-04 | U.S. Philips Corporation | Signal generating device |
| US5990869A (en) * | 1996-08-20 | 1999-11-23 | Alliance Technologies Corp. | Force feedback mouse |
| EP1118957A3 (en) * | 2000-01-21 | 2004-03-17 | Hosiden Corporation | Pointing device |
| US6528740B2 (en) * | 2000-03-09 | 2003-03-04 | Hosiden Corporation | Pointing device |
| EP1132857A3 (en) * | 2000-03-09 | 2004-03-24 | Hosiden Corporation | Pointing device |
| EP1221672A3 (en) * | 2000-12-28 | 2004-03-24 | Hosiden Corporation | Pointing device |
| WO2006042754A1 (de) * | 2004-10-20 | 2006-04-27 | Heinz Herbert Malzahn | Computermaus |
| US20110102380A1 (en) * | 2009-11-05 | 2011-05-05 | Hung-Ming Huang | Direction Indicating Device |
| US8872806B2 (en) * | 2009-11-05 | 2014-10-28 | Wistron Corporation | Direction indicating device |
| US20150002396A1 (en) * | 2009-11-05 | 2015-01-01 | Wistron Corporation | Direction Indicating Device |
| US9323359B2 (en) * | 2009-11-05 | 2016-04-26 | Wistron Corporation | Direction indicating device |
| US20150198964A1 (en) * | 2014-01-16 | 2015-07-16 | Hosiden Corporation | Multidirectional input device |
| US9494966B2 (en) * | 2014-01-16 | 2016-11-15 | Hosiden Corporation | Multidirectional input device |
Also Published As
| Publication number | Publication date |
|---|---|
| JPS5149303B1 (enExample) | 1976-12-25 |
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