Claims
- 1. A piezoelectric transformer comprising:
a rectangular plate made of a piezoelectric material; and primary electrodes and secondary electrodes each formed on said rectangular plate; wherein said primary electrodes comprise a plurality of electrode pairs, two electrodes of one of said electrode pairs are formed opposed each other on two main surfaces of said rectangular plate perpendicular to a thickness direction of said rectangular plate to interpose said rectangular plate therebetween; and said secondary electrodes comprise a plurality of electrodes; whereby a voltage is output from said secondary electrodes when an alternating voltage is applied to said primary electrodes to excite mechanical vibrations of a {fraction (3/2)} wavelength to expand and contract said rectangular plate in a longitudinal direction thereof in said rectangular plate.
- 2. The piezoelectric transformer according to claim 1, wherein said primary electrodes include:
a first electrode pair formed in a central portion in the longitudinal direction of said rectangular plate; and a second electrode pair and a third electrode pair formed adjacent to said first electrode pair and on one side and on the other side of said first electrode pair in the longitudinal direction of said rectangular plate, respectively.
- 3. The piezoelectric transformer according to claim 2, wherein said rectangular plate is made of a piezoelectric ceramic or piezoelectric monocrystals connected in series along the longitudinal direction of said rectangular plate; and
when said rectangular plate is made of the piezoelectric ceramic, polarization directions of the piezoelectric ceramic are different between regions of said rectangular plate interposed between electrodes of said second electrode pair and between those of said third electrode pair and a region of said rectangular plate interposed between those of said first electrode pair; or when said rectangular plate is made of the piezoelectric monocrystals, c-axis directions of the piezoelectric monocrystals are different between two of the monocrystals interposed between electrodes of said second electrode pair and between those of said third electrode pair and one of the monocrystals interposed between those of said first electrode pair.
- 4. The piezoelectric transformer according to claim 2, wherein said rectangular plate is made of a piezoelectric ceramic or piezoelectric monocrystals connected in series in the longitudinal direction of the rectangular plate; and
when said rectangular plate is made of the piezoelectric ceramic, polarization directions of the piezoelectric ceramic are the same among regions of said rectangular plate interposed between electrodes of said first electrode pair, between those of said second electrode pair, and between those of said third electrode pair; or when said rectangular plate is made of the piezoelectric monocrystals, c-axis directions of the piezoelectric monocrystals are the same among the monocrystals interposed between electrodes of said first electrode pair, between those of said second electrode pair, and between those of said third electrode pair.
- 5. The piezoelectric transformer according to claim 1, wherein said secondary electrodes are formed near two ends in the longitudinal direction of said rectangular plate.
- 6. The piezoelectric transformer according to claim 1, wherein each electrode of said primary electrodes formed on a main surface of said rectangular plate perpendicular to the thickness direction of said rectangular plate extends from said main surface to one end face of said rectangular plate in the width direction of said rectangular plate.
- 7. The piezoelectric transformer according to claim 2, wherein said secondary electrodes are formed near two ends in the longitudinal direction of said rectangular plate; and
a length of each electrode of said first electrode pair is not more than a third of a length of said rectangular plate in the longitudinal direction of said rectangular plate.
- 8. The piezoelectric transformer according to claim 2, wherein said first, second and third electrode pairs are formed symmetrically with respect to a center line perpendicular to the longitudinal direction of said rectangular plate and dividing said rectangular plate in half in the longitudinal direction of said rectangular plate.
- 9. The piezoelectric transformer according to claim 8, wherein an area of each electrode of said second and third electrode pairs is smaller than an area of each electrode of said first electrode pair.
- 10. The piezoelectric transformer according to claim 9, wherein a length of each electrode of said second and third electrode pairs is equal to that of each electrode of said first electrode pair in the width direction of said rectangular plate; and
a length of each electrode of said second and third electrode pairs is not less than 10% and shorter than 100% of the length of each electrode of said first electrode pair in the longitudinal direction of said rectangular plate.
- 11. The piezoelectric transformer according to claim 1, wherein said secondary electrodes are formed near two ends in the longitudinal direction of said rectangular plate;
said rectangular plate is made of a piezoelectric ceramic or piezoelectric monocrystals connected in series along the longitudinal direction of said rectangular plate; and when said rectangular plate is made of the piezoelectric ceramic, polarization directions of the piezoelectric ceramic are the same as the longitudinal direction of said rectangular plate near said secondary electrodes; or when said rectangular plate is made of the piezoelectric monocrystals, c-axis directions of the piezoelectric monocrystals are the same as the longitudinal direction of said rectangular plate near said secondary electrodes.
- 12. The piezoelectric transformer according to claim 1, wherein said secondary electrodes are formed on a plane on which said primary electrodes are formed.
- 13. The piezoelectric transformer according to claim 1, further comprising a supporter to fix said piezoelectric transformer at mechanical vibration nodes of said piezoelectric transformer and to be made of an electrically conductive material contacting with the electrodes; wherein said secondary electrodes are formed near two ends in the longitudinal direction of said rectangular plate.
- 14. A step-up circuit comprising:
a piezoelectric transformer; and an input circuit supplying an alternating voltage to said piezoelectric transformer; wherein said piezoelectric transformer comprises: a rectangular plate made of a piezoelectric material; and primary electrodes to which said alternating voltage is applied and secondary electrodes each formed on said rectangular plate; wherein said primary electrodes comprise a plurality of electrode pairs, two electrodes of one of said electrode pairs are formed opposed each other on two main surfaces of said rectangular plate perpendicular to a thickness direction of said rectangular plate to interpose said rectangular plate therebetween; and said secondary electrodes comprise a plurality of electrodes.
- 15. A light emitting apparatus including a cold cathode fluorescent lamp comprising:
a piezoelectric transformer; an input circuit supplying an alternating voltage to said piezoelectric transformer; and a cold cathode fluorescent lamp driven by an output voltage of said piezoelectric transformer; wherein said piezoelectric transformer comprises: a rectangular plate made of a piezoelectric material; and primary electrodes to which said alternating voltage is applied and secondary electrodes each formed on said rectangular plate; wherein said primary electrodes comprise a plurality of electrode pairs, two electrodes of one of said electrode pairs are formed opposed each other on two main surfaces of said rectangular plate perpendicular to a thickness direction of said rectangular plate to interpose said rectangular plate therebetween; and said secondary electrodes comprise a plurality of electrodes; whereby said output voltage is output from said secondary electrodes when said alternating voltage is applied to said primary electrodes to excite mechanical vibrations of a {fraction (3/2)} wavelength to expand and contract said rectangular plate in a longitudinal direction thereof in said rectangular plate.
- 16. The step-up circuit according to claim 14, wherein phases of alternating voltages applied to said plurality of primary electrode pairs differ among said primary electrode pairs.
- 17. The light emitting apparatus including the cold cathode fluorescent lamp according to claim 15, wherein phases of alternating voltages applied to said plurality of primary electrode pairs differ among said primary electrode pairs.
- 18. The step-up circuit according to claim 16, wherein said primary electrode pairs include:
a first electrode pair formed in a central portion in the longitudinal direction of said rectangular plate; and a second electrode pair and a third electrode pair formed adjacent to said first electrode pair and on one side and on the other side of said first electrode pair in the longitudinal direction of said rectangular plate, respectively, wherein the phase of the alternating voltage applied to said first electrode pair differs by 180 degrees from those of the alternating voltages applied to said second and third electrode pairs.
- 19. The light emitting apparatus including a cold cathode fluorescent lamp according to claim 17, wherein said primary electrode pairs include:
a first electrode pair formed in a central portion in the longitudinal direction of said rectangular plate; and a second electrode pair and a third electrode pair formed adjacent to said first electrode pair and on one side and on the other side of said first electrode pair in the longitudinal direction of said rectangular plate, respectively, wherein the phase of the alternating voltage applied to said first electrode pair differs by 180 degrees from those of the alternating voltages applied to said second and third electrode pairs.
- 20. A liquid crystal display panel incorporating therein a light emitting apparatus including a cold cathode fluorescent lamp, which cold cathode fluorescent lamp includes:
a piezoelectric transformer; an input circuit supplying an alternating voltage to said piezoelectric transformer; and a cold cathode fluorescent lamp driven by an output voltage of said piezoelectric transformer; wherein said piezoelectric transformer comprises: a rectangular plate made of a piezoelectric material; and primary electrodes to which said alternating voltage is applied and secondary electrodes each formed on said rectangular plate; wherein said primary electrodes comprise a plurality of electrode pairs, two electrodes of one of said electrode pairs are formed opposed each other on two main surfaces of said rectangular plate perpendicular to a thickness direction of said rectangular plate to interpose said rectangular plate therebetween; and said secondary electrodes comprise a plurality of electrodes; whereby said output voltage is output from said secondary electrodes when said alternating voltage is applied to said primary electrodes to excite mechanical vibrations of a {fraction (3/2)} wavelength to expand and contract said rectangular plate in a longitudinal direction thereof in said rectangular plate.
- 21. An equipment incorporating therein a liquid crystal display panel which incorporates therein a light emitting apparatus including a cold cathode fluorescent lamp, which cold cathode fluorescent lamp includes:
a piezoelectric transformer; an input circuit supplying an alternating voltage to said piezoelectric transformer; and a cold cathode fluorescent lamp driven by an output voltage of said piezoelectric transformer; wherein said piezoelectric transformer comprises: a rectangular plate made of a piezoelectric material; and primary electrodes to which said alternating voltage is applied and secondary electrodes each formed on said rectangular plate; wherein said primary electrodes comprise a plurality of electrode pairs, two electrodes of one of said electrode pairs are formed opposed each other on two main surfaces of said rectangular plate perpendicular to a thickness direction of said rectangular plate to interpose said rectangular plate therebetween; and said secondary electrodes comprise a plurality of electrodes; whereby said output voltage is output from said secondary electrodes when said alternating voltage is applied to said primary electrodes to excite mechanical vibrations of a {fraction (3/2)} wavelength to expand and contract said rectangular plate in a longitudinal direction thereof in said rectangular plate.
Priority Claims (1)
Number |
Date |
Country |
Kind |
P2001-301093 |
Sep 2001 |
JP |
|
Parent Case Info
[0001] This application is a divisional application of application Ser. No. 10/253,757, filed Sep. 23, 2002.
Divisions (1)
|
Number |
Date |
Country |
Parent |
10253757 |
Sep 2002 |
US |
Child |
10894757 |
Jul 2004 |
US |