EP0579838B1

Solid-state imaging device and solid-state imaging element used therefor

Abstract

This record has no abstract on file.

EP0579838B1, drawing sheet 1
Sheet 1 of 24

Term

Term ended

Expired 7 January 2013, 13.7 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

19 claims: 19 independent, 0 dependent

  1. 1
    A solid-state image pick-up apparatus comprising:a solid-state image pick-up device (21) for receiving an image of an object to be picked up and generating an image signal representing said image of the object in synchronism with a driving pulse;a driving means (23;101) for generating said driving pulse to be supplied to said solid-state image pick-up device (21);a sampling means (24) for generating a sampled image signal by sampling said image signal read out of the solid-state image pick-up device (21) by means of a sampling pulse synchronized with said driving pulse;a means (23, 41, 42;101) for generating said sampling pulse to be supplied to said sampling means (24), an analog-to-digital converting means (27) for converting said sampled image signal to a digital image signal by means of a sampling pulse for analog-to-digital conversion;a means (23, 41, 42;101, 105, 107) for generating said sampling pulse for analog-to-digital conversion to be supplied to said analog-to-digital converting means (27);a test signal generating means (21, 27) for generating a test signal which is synchronized with said driving pulse and alternately changes in level between consecutive pixels;and a phase-control means (28, 29, 30, 34, 35, 36, 37, 38;47;104, 106, 105, 107) for controlling a phase of said image sampling pulse and a phase of said sampling pulse for analog-to-digital conversion relative to each other by processing said test signal.
  2. 2
    A solid-state image pick-up apparatus as defined in claim 1, wherein said test signal generating means (21, 27) generates said test signal in a horizontal blanking period of an output signal of said solid-state image pick-up device (21) and said sampling means (24) samples the test signal in the same manner as said image signal read out of the solid-state image pick-up device.
  3. 3
    A solid-state image pick-up apparatus as defined in claim 1, wherein said test signal generating means (27) generates the test signal in a vertical blanking period of an output signal of said solid-state image pick-up device (21) and said sampling means (24) samples the test signal in the same manner as the image signal read out of the solid-state image pick-up device.
  4. 4
    A solid-state image pick-up apparatus as defined in claim 3, wherein a digital test signal obtained by converting said test signal by means of said analog-to-digital converting means (27) is supplied to said phase-control means and the phase-control means is equipped with an automatic phase-adjusting means (36, 38) for automatically adjusting a phase of said sampling pulse for analog-to-digital conversion by processing the digital test signal.
  5. 5
    A solid-state image pick-up apparatus as defined in claim 4, wherein the automatic phase-adjusting means is constructed such that absolute values of difference between the consecutive digital test signals are derived, these absolute values are summed during a test-signal-inserted period to derive an integrated value, and a phase of the sampling pulse is automatically controlled on the basis of differences between the integrated values respectively corresponding to consecutive test-signal-inserted periods.
  6. 6
    A solid-state image pick-up apparatus as defined in claim 5, wherein the automatic phase-adjusting means is constructed such that a phase of the sampling pulse for analog-to-digital conversion is automatically controlled so that the integrated value becomes maximum.
  7. 7
    A solid-state image pick-up apparatus as defined in claim 4, wherein said digital test signal obtained by converting the test signal by means of the analog-to-digital converting means is supplied to said phase-control means and the phase-control means comprises a computer for computing and processing the digital test signal.
  8. 8
    A solid-state image pick-up apparatus as defined in claim 4, wherein said digital test signal obtained by converting the test signal by means of the analog-to-digital converting means is supplied to said phase-control means and the phase-control means comprises a logic analyzer (46) for displaying a waveform of the digital test signal and a phase adjuster (45) for manually adjusting a phase of said sampling pulse for analog-to-digital conversion by observing the waveform of the digital test signal displayed on said logic analyzer.
  9. 9
    A solid-state image pick-up apparatus as defined in claim 4, wherein said digital test signal obtained by converting the test signal by means of the analog-to-digital converting means (27) is supplied to the phase-control means and the phase-control means comprises a digital-to-analog converter (47) for converting said digital test signal to an analog test signal, an oscilloscope (48) for displaying a waveform of said analog test signal converted by the digital-to-analog converter, and a phase adjuster (45) for manually adjusting a phase of the sampling pulse for analog-to-digital conversion by observing the waveform of the test signal displayed on said oscilloscope.
  10. 10
    A solid-state image pick-up apparatus as defined in claim 4, wherein said phase-adjusting means is constructed such that a phase of the test signal to be entered into the analog-to-digital converting circuit for sampling the test signal and a phase of the sampling pulse are compared with each other to derive a comparison result and a phase of the sampling pulse is automatically controlled on the basis of said comparison result.
  11. 11
    A solid-state image pick-up apparatus as defined in claim 10, wherein the phase-control means comprises a frequency divider (106) for dividing a frequency of the sampling pulse for analog-to-digital conversion by two, a digital phase comparator (104) for comparing a phase of the sampling pulse for analog-to-digital conversion whose frequency has been divided by said frequency divider with a phase of the test signal to be supplied to the analog-to-digital converting means (27), and a variable delay circuit (105) for adjusting a phase of said sampling pulse in accordance with an output of said digital phase comparator to generate the sampling pulse for the analog-to-digital conversion.
  12. 12
    A solid-state image pick-up apparatus as defined in claim 10, wherein the phase-control means comprises a frequency multiplier (110) for doubling a frequency of the test signal to be supplied to the analog-to-digital converting means, a digital phase comparator (104) for comparing a phase of the test signal whose frequency has been multiplied by the frequency multiplier with a phase of the sampling pulse for analog-to-digital conversion, and a variable delay circuit (105) for adjusting a phase of said sampling pulse in accordance with an output signal of the digital phase comparator to generate the sampling pulse for the analog-to-digital conversion.
  13. 13
    A solid-state image pick-up apparatus as defined in claim 10, wherein the phase-control means comprises a digital phase comparator (104) for comparing a phase of the test signal to be supplied to the analog-to-digital converting means with a phase of the sampling pulse for analog-to-digital conversion, and a voltage controlled oscillator (115) for generating the sampling pulse for analog-to-digital conversion and being controlled by an output signal of said digital phase comparator.
  14. 14
    A solid-state image pick-up apparatus as defined in claim 10, wherein the phase-control means comprises a frequency divider (106) for dividing a frequency of the sampling pulse for analog-to-digital conversion by two, a multiplier (121) for multiplying a signal generated from the frequency divider (106) with the test signal to be supplied to the analog-to-digital converting means, and a voltage controlled oscillator (115) controlled by an output signal of the multiplier.
  15. 15
    A solid-state image pick-up apparatus as defined in claim 10, 11, 12 or 13, wherein the phase-control means comprises a fine-adjustment delay circuit (107) for compensating a delay time from a point of time when the sampling pulse for analog-to-digital conversion has been supplied to the analog-to-digital converting means (27) to a point of time when the analog-to-digital conversion is actually performed.
  16. 16
    A solid-state image pick-up apparatus as defined in claim 1, wherein said test signal generating means is incorporated in the solid-state image pick-up device (21) and the test signal is obtained by reading the solid-state image pick-up device.
  17. 17
    A solid-state image pick-up apparatus as defined in claim 1, wherein a circuit (53) for generating the test signal is provided separately from the solid-state image pick-up device, and the test signal is generated by driving the test signal generating circuit synchronously with a driving signal of the solid-state image pick-up device.
  18. 18
    A solid-state color image pick-up device comprising:a color separation optical system (90) for separating the image of the object into a plurality of color-separated images, a plurality of solid-state image pick-up apparatuses (91R, G, B;92R, G, B;94R, G, B;95R, G, B;93) as defined in claim 1, and wherein each of said plurality of solid-state pick-up apparatuses receives an image output by said color separation optical system (90), and wherein the driving pulse, the sampling pulse generating means (93) and the test signal generating means are common to said plurality of solid-state image pick-up apparatuses.
  19. 19
    A solid-state color image pick-up apparatus as defined in claim 18, wherein said phase-control means for controlling a phase of a sampling pulse for analog-to-digital conversion in relation to the phase of the image sampling pulse is provided commonly to plural signal processing channels corresponding to said plurality of solid-state image pick-up apparatuses.
Independent claims19