The embodiments herein relate generally to effects pedals used for musical instruments such as guitars. More specifically, embodiments of the invention are directed to a cordless magnetic board apparatus that transmits power and sound between musical effects pedals.
Effects pedals are well known in the art as devices used by musicians to change some aspect of the sound coming from their musical instrument. The pedals can be moved by the musician's foot to alter the sound that the musical instrument makes.
Currently, devices including effects pedals and musical stringed instruments such as electric guitars and base guitars are often connected together by patch cords with phono plugs to transmit sound signals between the connected devices. During the use of multiple effects pedals and musical instruments at the same time, patch cords often get tangled with each other. This makes the assembly and disassembly of these devices inefficient and a burden. In particular, it takes time to unplug the phono plugs out of the devices and insert phono plugs into the desired devices.
As such, there is a need in the industry for a cordless magnetic board apparatus that addresses the limitations of the prior art, which effectively facilitates sound and power connections between a plurality of musical effects pedals without the use of external power and/or patch cords that create a mess and burden on the user.
In certain embodiments of the invention, a cordless magnetic board apparatus for use to transmit power and sound signals between a plurality of musical effects pedals thereon is provided. The apparatus is connected to a power supply and an input sound source. Each effects pedal comprises an input sound connector, an output sound connector and an input power connector, The board apparatus comprises a base comprising a plurality of magnetic members secured thereto, the plurality of magnetic members forming a plurality of sets of magnetic members where each set of the magnetic members corresponds to one of the plurality of effects pedals, each set of magnetic members comprising a first magnetic member corresponding to negative power, a second magnetic member corresponding to positive power, a third magnetic member corresponding to input sound and a fourth magnetic member corresponding to output sound, wherein the plurality of sets of magnetic members form a daisy chain connection with the first magnetic members in the plurality of sets of magnetic members electrically coupled together, and the second magnetic members in the plurality of sets of magnetic members electrically coupled together.
In one embodiment, a first set of magnetic members in the plurality of sets of magnetic members is configured to connect to a first effects pedal. The first and second magnetic members of the first set of magnetic members are electrically coupled to the power supply and the power input connector of the first effects pedal, the third magnetic member of the first set of magnetic members is electrically coupled to the input sound source and input sound connector of the first effects pedal, the fourth magnetic member of the first set of magnetic members is electrically coupled to the output sound connector of the first effects pedal.
In certain embodiments, a second set of magnetic members in the plurality of sets of magnetic members is configured to connect to a second effects pedal. The first and second magnetic members of the second set of magnetic members are electrically coupled to the power input connector of the second effects pedal, the third magnetic member of the second set of magnetic members is electrically coupled to the fourth magnetic member of the first set of magnetic members and input sound connector of the second effects pedal, the fourth magnetic member of the second set of magnetic members is electrically coupled to the output sound connector of the second effects pedal.
The detailed description of some embodiments of the invention will be made below with reference to the accompanying figures, wherein the figures disclose one or more embodiments of the present invention.
In certain embodiments of the invention, a cordless magnetic board apparatus comprises a main base with a plurality of magnetic members that are configured to connect to a plurality of musical effects pedals using a plurality of adapter bases to facilitate the transmission of power and sound signals between the plurality of connected effects pedals. This eliminates the use of external power wires or patch cords to connect the plurality of musical effects pedals together.
In certain embodiments of the invention as depicted in
In one embodiment as depicted in
In an alternative embodiment as depicted in
In certain embodiments as depicted in
Each set 160 of magnetic members comprises first magnetic member 111 corresponding to negative (−) power, ground, and the common line for DC power, input and output sound, second magnetic member 112 corresponding to positive (+) power, third magnetic member 113 corresponding to input sound, and fourth magnetic member 114 corresponding to output sound. Each magnetic member 111, 112, 113, 114 is made from steel or another magnetic material.
Magnetic members 111, 112, 113, 114 of sets 160 of magnetic members are electrically coupled together by wires on main base 100 to form a daisy chain connection for power and sound. In one embodiment as depicted in
Fourth magnetic member 114 in first set 161 of magnetic members corresponding to output sound of a first effects pedal is electrically coupled to third magnetic member 113 of second set 162 of magnetic members on main base 100, which corresponds to input sound for a second effects pedal. Fourth magnetic member 114 in second set 162 of magnetic members corresponding to output sound of a second effects pedal is electrically coupled to third magnetic member 113 of a third set of magnetic members on main base 100, which corresponds to input sound for a third effects pedal. This same sequential connection is repeated up to the eighth set of magnetic members, which is connected to output sound connector 150, such as a phono connector coupled to an output device such as an amplifier or speaker. In this connection, fourth magnetic member 114 in the eighth set of magnetic members is electrically coupled to the tip of output sound connector 150.
In one embodiment as depicted in
In this configuration, a plurality of effects pedals are coupled to main base 100 with each effects pedal electrically coupled to one set 160 of magnetic members to transmit power and sound between the plurality of effects pedals. In certain embodiments as depicted in
In certain embodiments as depicted in
In one embodiment of the invention best shown in
In one embodiment as depicted in
In operation in an embodiment with the power and sound connections previously described, eight effects pedals 300 are coupled to the plurality of sets 160 of magnetic members on main base 100. Each pair of connected effects pedal 300 and adapter base 150 is electrically coupled to one set 160 of magnetic members on main base 100. In one embodiment, first effects pedal 300 and first adapter base 350 are disposed on first set 161 of magnetic members so that first magnet 351 of adapter base 350 engages with first magnetic member 111 to establish a negative power connection, second magnet 352 of adapter base 350 engages with second magnetic member 112 to establish a positive power connection, third magnet 353 of adapter base 350 engages with third magnetic member 113 to establish an input sound connection, and fourth magnet 354 of adapter base 350 engages with fourth magnetic member 114 to establish an output sound connection.
Each of the remaining connected pairs of effects pedal 300 and adapter base 150 are electrically coupled to the remaining sets 160 of magnetic members (second set to the eighth set of magnetic members) in the same manner. Each of the eight effects pedals 300 is powered through its respective connected adapter base 350 via the electrical connection with first and second magnetic members 111, 112 of the corresponding set, which is electrically coupled to DC power supply 170.
Input sound is transferred from a source such as a guitar to first effects pedal 300 through input sound connector 120. This input sound is transmitted to the first effects pedal through third magnetic member 113 in first set 161 of magnetic members, third magnet 353 in first adapter base 350 and input sound connector 310 of first effects pedal 300. The input sound is altered by first effects pedal 300 and transmitted as output altered sound through output sound connector 311 of first effects pedal 300, fourth magnet 354 in first adapter base 350 and fourth magnetic member 114 in first set 161 of magnetic members.
The output altered sound from first effects pedal 300 is transmitted from fourth magnetic member 114 in first set 161 of magnetic members to second effects pedal 300 through third magnetic member 113 in second set 162 of magnetic members, third magnet 353 in second adapter base 350 and input sound connector 310 of second effects pedal 300. Second effects pedal 300 further alters the sound from first effects pedal 300 and transmits the altered sound to third effects pedal 300 in the same manner previously described. The transmitted sound is altered through the remaining, fourth, fifth, sixth, seventh and eighth effects pedals. The final altered sound through all eight effects pedals is transmitted through output sound connector 150 to an amplifier or speaker.
In an alternative embodiment, a user can connect fewer effects pedals 300 to main base 100. In this embodiment, effects pedals 300 are connected to main base 100 in sequence as described in embodiments of the invention. An insert is electrically coupled to main base 100 to short circuit the components and circuit pertaining to the unused portions of main base 100 to allow the final altered sound of the last effects pedal 300 in sequence to be transmitted through output sound connector 150.
In an alternative embodiment as depicted in
It shall be appreciated that the components of the magnetic board apparatus described in several embodiments herein may comprise any alternative known materials in the field and be of any color, size and/or dimensions. It shall be appreciated that the components of the magnetic board apparatus described herein may be manufactured and assembled using any known techniques in the field.
Persons of ordinary skill in the art may appreciate that numerous design configurations may be possible to enjoy the functional benefits of the inventive systems. Thus, given the wide variety of configurations and arrangements of embodiments of the present invention, the scope of the invention is reflected by the breadth of the claims below rather than narrowed by the embodiments described above.
The application claims priority to provisional patent application U.S. Ser. No. 62/711,024 filed on Jul. 27, 2018, the entire contents of which is herein incorporated by reference.
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Number | Date | Country | |
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62711024 | Jul 2018 | US |