Claims
- 1. A preamplifier assembly for a musical instrument, comprising:
a housing including a face portion and a battery holder, the battery holder being configured to hold a battery, the housing being connectable to a surface of the musical instrument while allowing unobstructed user access to the face portion of the housing; a cover for securely enclosing the battery within the battery holder, the cover being movably mounted on the face portion of the housing to allow the user to access the battery within the battery holder; preamplifier circuitry disposed in the housing; and an output connector operatively connected to the preamplifier circuitry, the output connector being mounted on the face portion of the housing.
- 2. The preamplifier assembly of claim 1 further including at least one control mechanism operatively connected to the preamplifier circuitry, the control mechanism being configured to control at least one characteristic of an output signal provided by the preamplifier circuitry via the output connector.
- 3. The preamplifier assembly of claim 2 wherein the face portion of the housing is configured to allow the user to access the control mechanism.
- 4. The preamplifier assembly of claim 2 wherein the signal characteristic controlled by the control mechanism is selected from the group consisting of volume and tone.
- 5. The preamplifier assembly of claim 1 wherein the housing includes an electronics enclosure, the electronics enclosure being configured to house the preamplifier circuitry.
- 6. The preamplifier assembly of claim 5 wherein the preamplifier circuitry is secured within the electronics enclosure via the mounting of the output connector on the face portion of the housing.
- 7. The preamplifier assembly of claim 1 wherein the housing further includes a mounting flange configured to connect the housing to the surface of the musical instrument.
- 8. The preamplifier assembly of claim 7 wherein the surface of the musical instrument is a planar or contoured surface, and wherein the mounting flange is configured for flexibly and conformably connecting the housing to the planar or contoured surface of the instrument.
- 9. The preamplifier assembly of claim 1 further including at least one input device operatively connected to the preamplifier circuitry.
- 10. The preamplifier assembly of claim 9 wherein the input device is selected from the group consisting of a pre-wired pickup, a pre-wired microphone, a vibration sensitive transducer, a force sensor, an accelerometer, and a pressure sensor.
- 11. The preamplifier assembly of claim 9 wherein the at least one input device includes a first input device and a second input device, the first and second input devices being configured to provide respective input signals to the preamplifier circuitry.
- 12. The preamplifier assembly of claim 11 further including at least one control mechanism operatively connected to the preamplifier circuitry for adjustably blending the respective input signals provided by the first and second input devices.
- 13. The preamplifier assembly of claim 12 wherein the face portion of the housing is configured to allow the user to access the control mechanism.
- 14. The preamplifier assembly of claim 1 wherein the musical instrument is selected from the group consisting of an acoustic guitar, a hollow body electric guitar, a semi-hollow body electric guitar, a solid body electric guitar, a ukulele, a mandolin, a violin, a viola, a cello, and a bass violin.
- 15. The preamplifier assembly of claim 1 wherein the output connector comprises an output jack.
- 16. The preamplifier assembly of claim 15 wherein the face portion of the housing is configured to reinforce the output jack.
- 17. The preamplifier assembly of claim 15 wherein the output jack is configured to receive an output plug, the preamplifier circuitry including a shorting contact configured to be actuated when the output plug is received by the output jack, thereby allowing power to be provided to the preamplifier circuitry.
- 18. The preamplifier assembly of claim 1 further including a printed circuit board subassembly comprising first and second printed circuit boards and a printed circuit board spacer, the first and second circuit boards being mechanically connected to each other in a predetermined fixed orientation by the circuit board spacer.
- 19. The preamplifier assembly of claim 18 wherein the preamplifier circuitry is disposed on at least one of the first and second circuit boards.
- 20. The preamplifier assembly of claim 18 wherein the output connector is connected to a selected one of the first and second circuit boards.
- 21. The preamplifier assembly of claim 20 wherein the face portion of the housing has an opening formed therethrough, wherein the circuit board assembly is configured to engage the housing, and wherein the first and second circuit boards are oriented to allow the user to access the output connector via the opening when the circuit board assembly engages the housing.
- 22. The preamplifier assembly of claim 21 wherein the output connector comprises an output jack, the output jack being mounted on the face portion at the opening formed therethrough.
- 23. A preamplifier housing for a musical instrument, the housing being connectable to a surface of the musical instrument, comprising:
a face portion, the housing being connectable to the surface of the musical instrument while allowing unobstructed user access to the face portion of the housing; an electronics enclosure configured to house preamplifier circuitry; a battery holder configured to hold a battery therein for powering the preamplifier circuitry, the face portion of the housing being configured to provide access to the battery holder; and a cover movably mounted on the face portion of the housing, the cover being configured to enclose the battery within the battery holder.
- 24. The preamplifier housing of claim 23 wherein the cover is slidably mounted on the face portion of the housing.
- 25. The preamplifier housing of claim 23 wherein the cover is pivotally and slidably mounted on the face portion of the housing.
- 26. The preamplifier housing of claim 25 wherein the cover includes at least one cover locking surface and the face portion of the housing includes at least one cover retaining element, the cover retaining element being configured to engage the cover locking surface when the cover encloses the battery within the battery holder.
- 27. The preamplifier housing of claim 26 wherein the cover has at least one pivot formed thereon, and wherein the face portion of the housing includes a bezel, the bezel having at least one slot formed therein, the slot being configured to receive the pivot.
- 28. The preamplifier housing of claim 27 wherein the cover is configured to rotate about the pivot to enclose the battery within the battery holder and to open the battery holder to allow the user to access the battery therein, the slot being configured to allow the cover locking surfaces to slidingly engage the cover retaining elements.
- 29. The preamplifier housing of claim 28 wherein the battery holder has a plurality of battery terminals disposed therein, the cover having at least one rib formed on a surface thereof, the rib being configured to push the battery toward the battery terminals when the cover encloses the battery in the battery holder.
- 30. The preamplifier housing of claim 29 wherein the terminals are configured to urge the battery against the at least one rib formed on the cover, thereby causing the cover locking surface on the cover to securely engage the cover retaining element on the face portion of the housing.
- 31. The preamplifier housing of claim 23 further including a mounting flange configured to connect the housing to the surface of the musical instrument.
- 32. The preamplifier housing of claim 31 wherein the surface of the musical instrument is a planar or contoured surface, and wherein the mounting flange is configured for flexibly and conformably connecting the housing to the planar or contoured surface of the instrument.
- 33. A method of assembling a preamplifier for a musical instrument, the preamplifier assembly including a housing having a face portion, the housing being configured to connect to a surface of the musical instrument while allowing unobstructed user access to the face portion of the housing, comprising the steps of:
operatively connecting an input device to preamplifier circuitry, the preamplifier circuitry being disposed on at least one printed circuit board of a printed circuit board subassembly; operatively connecting an output connector to the preamplifier circuitry; mechanically attaching the output connector to the circuit board subassembly; disposing the circuit board subassembly having the input device and the output connector connected thereto within the housing, the output connector being in registration with an opening formed through the face portion of the housing; and mechanically attaching the output connector to the face portion of the housing at the opening formed therethrough, thereby securing the circuit board assembly within the housing and allowing the user to access the output connector via the opening in the face portion.
- 34. The method of claim 33 wherein the first connecting step includes operatively connecting the input device to the preamplifier circuitry, the input device being selected from the group consisting of a pre-wired pickup, a pre-wired microphone, a vibration sensitive transducer, a force sensor, an accelerometer, and a pressure sensor.
- 35. The method of claim 33 wherein the second attaching step includes mechanically attaching the output connector to the face portion of the housing at the opening formed therethrough, the output connector comprising an output jack, the output jack being mechanically attached to the face portion of the housing by at least one fastener.
- 36. The method of claim 33 wherein the circuit board subassembly comprises first and second printed circuit boards and a printed circuit board spacer, and further including the step of disposing the first and second circuit boards on the circuit board spacer to mechanically interconnect the circuit boards in a predetermined fixed orientation, thereby allowing the user to access the output connector via the opening in the face portion when the circuit board subassembly is disposed in the housing.
- 37. The method of claim 36 wherein the circuit board spacer has a guide rail formed on a length thereof, wherein the housing has mounting rail formed on a surface thereof, and wherein the step of disposing the circuit board subassembly within the housing includes slidingly engaging the guide rail to the mounting rail.
- 38. The method of claim 33 wherein the housing includes an electronics enclosure for housing the circuit board assembly and a battery holder for holding a battery to power the preamplifier circuitry, the battery being accessible by the user via an opening in the face portion of the housing, and further including the step of attaching a captive cover for the battery holder to the face portion of the housing.
- 39. The method of claim 38 wherein the battery holder has a plurality of battery terminals disposed therein, and further including the step of operatively connecting the battery terminals to the preamplifier circuitry.
- 40. A method of installing a preamplifier assembly in a musical instrument, the preamplifier assembly having a housing with a mounting flange for connecting the housing to a surface of the musical instrument, comprising the steps of:
forming a first opening in the musical instrument, the first opening having a size sufficient to receive the housing of the preamplifier assembly; optionally forming a second opening in the musical instrument, the second opening having a size sufficient to receive a pickup operatively connected to the preamplifier assembly, installing the pickup on the musical instrument by optionally inserting the pickup through the second opening formed in the musical instrument; disposing the housing within the first opening formed in the musical instrument to allow the mounting flange to overlap a portion of the surface of the musical instrument; and fastening the mounting flange to the surface of the musical instrument to secure the preamplifier assembly to the instrument, wherein the preamplifier assembly includes an output connector connected to a face portion of the housing, the mounting flange being fastened to the musical instrument surface to allow unobstructed user access to the face portion of the housing and the output connector connected thereto.
- 41. The method of claim 40 wherein the musical instrument comprises an acoustic stringed instrument including a body, a bridge, and a saddle slot, wherein the second forming step includes forming the second opening through the bridge, and wherein the installing step includes inserting the pickup from inside the instrument body through the opening in the bridge for subsequent insertion in the saddle slot.
- 42. The method of claim 40 wherein the musical instrument comprises a stringed instrument, and wherein the first forming step includes forming the first opening in a side of a lower bout of the instrument.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority of U.S. Provisional Patent Application No. 60/407,537 filed Aug. 30, 2002 entitled PACKAGED PREAMP.
Provisional Applications (1)
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Number |
Date |
Country |
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60407537 |
Aug 2002 |
US |