Claims
- 1. A suspension member adapted to couple to a diaphragm and vibrate along a longitudinal direction a magnetic gap, the suspension member comprising:a pocket adapted to vibrate within the magnetic gap, the pocket having an outer wall and an inner wall, where the inner wall extends to form an inner flange outside of the magnetic gap that is adapted to couple to a top side of the diaphragm, and the outer wall extends to form a half-roll that further extends to form an outer flange that is adapted to couple to a mounting plate of a compression driver.
- 2. The suspension member according to claim 1, where the pocket has a deep U shape.
- 3. The suspension member according to claim 1, where the outer wall, half-roll, pocket, and inner wall are unitary formed from a plastic material.
- 4. The suspension member according to claim 1, where the plastic material is KAPTON polyimide.
- 5. The suspension member according to claim 1, further including a voice coil in the pocket between the inner and outer walls.
- 6. The suspension member according to claim 1, where the diaphragm is coupled to the inner wall at a predetermined distance away from the inner wall, where the inner flange along the predetermined distance functions as a spring to vibrate at a predetermined high frequency resonance.
- 7. The suspension member according to claim 1, where the inner wall and the outer wall are separate from each other.
- 8. A system for adding acoustic energy to a compression driver having a magnetic gap, the system comprising:a suspension having a pocket adapted to vibrate within the magnetic gap, the pocket having an inner wall and outer wall, an inner flange extending from the inner wall a outside of the magnetic gap, where the inner flange is adapted to couple to a diaphragm at a predetermined distance from the inner wall so that the inner flange vibrates substantially at a predetermined frequency resonance, where the diaphragm is coupled to a topside of the inner flange outside of the magnetic gap, and where the outer wall extends outside of the magnetic gap to form an outer flange that is adapted to couple to a mounting plate.
- 9. The system according to claim 8, where the inner wall is disposed into the magnetic gap in the compression driver.
- 10. The system according to claim 8, where the diaphragm is coupled to the inner flange closer to the inner wall to tune the inner flange to vibrate at a higher frequency resonance.
- 11. The system according to claim 8, where the inner wall extends to form an outer wall to form the pocket, where the inner wall and the outer wall are formed from a unitary plastic material.
- 12. The system according to claim 11, including a voice coil into the pocket, where the voice coil oscillates within the magnetic gap based on signal current flowing through the voice coil.
- 13. A system for vibrating a diaphragm along a longitudinal direction of a magnetic gap, the system comprising:a diaphragm having a top side; and a suspension member having a unitary pocket adapted to vibrate within he magnetic gap, the pocket having an inner wall and outer wall, where the inner wall extends outside of the magnetic gap to form an inner flange that is couple to the top side of the diaphragm, and where the outer wall extends outside of the magnetic gap to form an outer flange that is adapted to couple to a mounting plate of a compression driver.
- 14. The system according to claim 13, where the inner flange is coupled to the diaphragm at a predetermined distance to vibrate the diaphragm at a predetermined frequency resonance.
- 15. The system according to claim 13, where the pocket is formed from KAPTON polyimide.
- 16. A system for vibrating a diaphragm along a longitudinal direction of a magnetic gap, the system comprising:a diaphragm having a top side; and a suspension member having a pocket adapted to vibrate within the magnetic gap, the pocket having an inner wall and outer wall, where the inner wall extends outside of the magnetic gap to form an inner flange that is coupled to the top side of the diaphragm at a predetermined distance to vibrate the diaphragm a a predetermined frequency resonant, and where the outer wall extends outside of the magnetic gap to form an outer flange that is adapted to couple to a mounting plate.
- 17. The system according to claim 16, where the pocket is a unitary piece.
- 18. The system according to claim 16, where the pocket is formed from KAPTON polyimide.
- 19. A system for adding acoustic energy to a compression driver having a magnetic gap, the system comprising:a suspension having a pocket adapted to vibrate within the magnetic gap, the pocket having an inner wall and an outer wall, an inner flange extending from the inner wall and outside of the magnetic gap, where the inner flange is adapted to couple to a diaphragm a predetermined distance from the inner wall so that the inner flange vibrates substantially a predetermined frequency resonance, where the diaphragm is coupled to a bottom side of the inner flange so that the diaphragm is closer to a phasing plugs and where the outer wall extends of the magnetic gap to form an outer flange that is adapted to couple to a mounting plate.
CROSS-REFERENCES TO RELATED APPLICATION
This application is a non-provisional application claiming priority to U.S. provisional application, Ser. No. 60/221,693 filed Jul. 31, 2000.
US Referenced Citations (8)
Foreign Referenced Citations (1)
Number |
Date |
Country |
1 531 791 |
Nov 1978 |
EP |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/221693 |
Jul 2000 |
US |