Claims
- 1. An inspection method for a capacitive load driving unit which comprises a plurality of capacitive loads, a drive circuit for charging and discharging said capacitive loads, a pair of power lines for supplying a drive voltage from an external power source to said drive circuit, and a current reserve circuit for reserving a current required by said drive circuit for charging said capacitive loads, wherein said current reserve circuit includes a capacitor that is charged by the drive voltage from said power lines, and a coupler section for coupling the capacitor between the power lines except for a defect inspection, said method comprising the steps of:
controlling said drive circuit to sequentially drive said plurality of capacitive loads in a state where said capacitor is disconnected from said power lines; and detecting an electric change that occurs on said power line upon driving each of said capacitive loads to determine whether or not a defect is present.
- 2. An inspection method for a capacitive load driving unit which comprises a plurality of capacitive loads, a drive circuit for charging and discharging said capacitive loads, and a pair of power lines for supplying a drive voltage from an external power source to said drive circuit, said method comprising the steps of:
controlling said drive circuit to sequentially drive said plurality of capacitive loads; and detecting an electric change that occurs on said power line upon driving each of said capacitive loads to determine whether or not a defect is present; wherein said detecting step includes a step of superimposing and recording waveforms the electric change in synchronism with a driving timing of each of said capacitive loads to recognize, as the presence of a defect, a state in which the recorded waveform falls outside a predetermined allowable range.
- 3. An inspection method for a capacitive load driving unit which comprises a plurality of capacitive loads, a drive circuit for charging and discharging said capacitive loads, and a pair of power lines for supplying a drive voltage from an external power source to said drive circuit, said method comprising the steps of:
controlling said drive circuit to sequentially drive said plurality of capacitive loads; and detecting an electric change that occurs on said power line upon driving each of said capacitive loads to determine whether or not a defect is present; wherein said detecting step includes a step of superimposing and recording waveforms the electric change as displayed after-images on an oscilloscope in synchronism with a driving timing of each of said capacitive loads to recognize, as the presence of a defect, a state in which the recorded waveform falls outside a predetermined allowable range.
- 4. An inspection apparatus for a capacitive load driving unit which comprises a plurality of capacitive loads, a drive circuit for charging and discharging said capacitive loads, a pair of power lines for supplying a drive voltage from an external power source to said drive circuit, and a current reserve circuit for reserving a current required by said drive circuit for charging said capacitive loads, wherein said current reserve circuit includes a capacitor that is charged by the drive voltage from said power lines, and a coupler section for coupling the capacitor between the power lines except for a defect inspection, said apparatus comprising:
a control circuit for controlling said drive circuit to sequentially drive said plurality of capacitive loads in a state where said capacitor is disconnected from said power lines; and a detecting circuit for detecting an electric change that occurs on said power line upon driving each of said capacitive loads to determine whether or not a defect is present.
- 5. An inspection apparatus for a capacitive load driving unit which comprises a plurality of capacitive loads, a drive circuit for charging and discharging said capacitive loads, and a pair of power lines for supplying a drive voltage from an external power source to said drive circuit, said apparatus comprising:
a control circuit for controlling said drive circuit to sequentially drive said plurality of capacitive loads; and a detecting circuit for detecting an electric change that occurs on said power line upon driving each of said capacitive loads to determine whether or not a defect is present; wherein said detecting circuit includes a recording section for superimposing and recording waveforms the electric change in synchronism with a driving timing of each of said capacitive loads to recognize, as the presence of a defect, a state in which the recorded waveform falls outside a predetermined allowable range.
- 6. An inspection apparatus for a capacitive load driving unit which comprises a plurality of capacitive loads, a drive circuit for charging and discharging said capacitive loads, and a pair of power lines for supplying a drive voltage from an external power source to said drive circuit, said apparatus comprising:
a control circuit for controlling said drive circuit to sequentially drive said plurality of capacitive loads; and a detecting circuit for detecting an electric change that occurs on said power line upon driving each of said capacitive loads to determine whether or not a defect is present; wherein said control circuit includes a signal generating section for sequentially generating trigger signals which respectively enable said capacitive loads to be driven, and said detecting circuit includes an oscilloscope for superimposing and recording waveforms of the electric change in response to each of the trigger signals to recognize, as the presence of a defect, a state in which the recorded waveform falls outside a predetermined allowable range.
- 7. An inspection apparatus according to claim 4, wherein said oscilloscope is of a digital storage type, and said control circuit includes notifying means for notifying the end of the defect inspection after the trigger signals have been generated for all the capacitive loads.
- 8. An inspection apparatus according to claim 6, wherein said oscilloscope is of a digital storage type, and said detecting circuit includes a determination circuit for determining a state in which the a waveform of the electric change falls outside a predetermined allowable range, as the presence of a defect.
Priority Claims (1)
Number |
Date |
Country |
Kind |
10-228947 |
Aug 1998 |
JP |
|
Parent Case Info
[0001] This is a Division of application Ser. No. 09/372,820 filed Aug. 11, 1999.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09372820 |
Aug 1999 |
US |
Child |
10217090 |
Aug 2002 |
US |