Ai329CA 1/3 inch CCD Image Sensor for PAL Camera

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1 A PROs er.0 AiCA / inch CCD Image Sensor for PAL Camera GENERAL DESCRIPTION The AiCA is a 0K pixels CCD area sensor for PAL / inch video cameras. Buried photodiodes and micro lenses are adopted for low noise, low smear and high sensitivity. A chrominance signal is achieved by the adoption of Yellow, Magenta, Cyan and Green complementary color mosaic filters. This product also has the features of strong antiblooming and electronic shutter with variable charge-storage time. Pin Plastic - DIP ( Top iew ) GG SS OUT 0 H H RG P SUB DD FEATURES Micro lens arrays for high sensitivity Ye, Mg, Cy and G complementary color mosaic filters Excellent blooming suppression TTL level() operation on HCCD & RG electrodes pin plastic DIP type package ariable electronic shutter of /0 to /00,000 sec High sensitivity and low smear Low image lag STRUCTURE Architecture : IT - CCD Optical size : / inch format Chip size :.0(H) x.() Number of effective pixels : 00 (H) x () about 0K pixels Number of total pixels : (H) x () about 0K pixels Pixel size :. (H) x. () Optical black area Horizontal direction : Front pixels Rear 0 pixels ertical direction : Front pixels Rear pixels Number of dummy bits Horizontal : ertical : ( Even field only ) Optical black position( Top iew ) : Pixels Pin 00 0 Pin

2 AiCA BLOCK DIAGRAM OUT PD CCD HCCD DD 0 SUB P RG H H PIN DESCRIPTION Pin Description Pin Description ertical register transfer clock DD Output amplifier drain bias ertical register transfer clock 0 Ground ertical register transfer clock SUB Substrate (Overflow drain) bias ertical register transfer clock P Protection bias Ground RG Reset gate clock No connection No connection No connection H Horizontal register transfer clock OUT CCD output signal H Horizontal register transfer clock ABSOLUTE MAXIMUM RATINGS alue Substrate voltage SUB 0. to + Supply voltage DD, OUT DD, OUT SUB 0. to + to +0 ertical clock input voltage,,,,,, P,,, SUB 0 to to + to +0 Horizontal clock input voltage H, H 0 to + Between vertical clock input pins X Y 0 to + Between horizontal clock and vertical clock input pins H, H to + Output pin voltage RG RG SUB 0 to + to +0 Protective circuit voltage P SUB to 0. Storage temperature T STG 0 to 0 C Operation temperature T OPR 0 to 0 C * Protective circuit voltage( P ) is induced to the image sensor before DD supplied power voltage.

3 AiCA BIAS CONDITION Remark Output amplifier drain voltage DD..0. Substrate voltage adjustment range SUB Fluctuation range after substrate voltage adjustment SUB Reset gate clock voltage adjustment range RG 0 * Fluctuation range after reset gate voltage adjustment RG Protection bias P Set to low level of vertical transfer clock * No adjustment of reset gate clock voltage is necessary when reset gate clock is driven as indicated below. Remarks Reset gate clock voltage RGL RG DC CHARACTERISTICS Output amplifier drain current I DD DRIING CONDITION ertical clock high voltage H, H..0. ertical clock middle voltage M,,, ertical clock low voltage L,,,.0..0 Horizontal clock high voltage H H,..0. Horizontal clock low voltage H L, RG clock voltage difference RG HL..0. Substrate clock voltage SUB

4 AiCA ELECTRO-OPTICAL PERFORMAE ( Ta = C ) Item Measurement Method Remark Sensitivity SENS 0 m/lux Saturation signal SAT 00 m Temp=0 C Smear S MR 0.0 Blooming BL ideo signal shading OSNU Uniformity between video signal channels Sr Sb 0 0 Dark signal level DARK m Temp=0 C Dark signal shading DSNU m Temp=0 C Flicker Y F Y Flicker B-Y, R-Y F Cr, F Cb 0 Line crawl R, G, B, W L Cr, L Cb, L Cg, L Cw 0 Image lagging Lag 0.

5 AiCA MESUREMENT METHOD. Sensitivity Set to SILC ( Standard Illumination Conditions* ) Measure the average value of signal output ( OUT ) Calculate the efficiency of OUT to light intensity. SAT Adjust light intensity to 00 times of SILC Measure the average value of signal output. Smear Adjust light intensity to 00 times of SILC & readout clock Measure the signal output at horizontal optical black ( HOPB ) Measure the signal output at vertical blanking dummy ( BD ) Smear = { ( BD - HOPB ) / SAT } 00 ( ). Blooming Adjust light intensity to 00 times of SILC & readout clock Measure the signal output at horizontal optical black ( HOPB ) Measure the signal output at blooming dummy area ( BD ) Blooming = { ( BD - HOPB ) / SAT } 00 ( ). OSNU Set to SILC Measure the average value of signal output ( OUT ) Measure the maximum value and the minimum value of signal output OSNU = ( MAX - MIN ) / OUT 00 (). Sr, Sb Set to SILC Measure the average value of signal output ( OUT ) Measure the maximum value and minimum value of chroma output Sr = ( Cr MAX -Cr MIN ) / OUT 00 () Sb= ( Cb MAX -Cb MIN ) / OUT 00 (). DARK Measure the average value of signal output at dark condition. DSNU Measure the voltage difference between minimum and maximum of dark signal

6 AiCA. F Y Set to SILC Measure the average value of signal output ( OUT ) Measure the difference of signal output between even field and odd field FLK = ( OUT / OUT ) 00 () 0. F Cr, F Cb Set to SILC using the R,B optical filter respectively Measure the average value of chroma signal output Measure the difference of chroma signal output between even field and odd field F Ci = ( CiOUT / CiOUT ) 00 () ( i = r,b ). L Cr, L Cb, L Cg, L Cw Set to SILC using the W,R,B,G optical filter respectively Measure the average value of signal output Measure the difference of signal output between signal lines of the same field ( lw, lr, lg, lb) Lci = ( li OUT / i OUT ) 00 () ( i = w,r,g,b ). Lag Light a strobe lamp as follow TG odd even odd even Str Lag = { (out)+(out)+(out) } / (out) * Standard Illumination Conditions Measure the average value of output of linear region At this time, measure the light intensity of illumination at CCD face plate Define SILC with above Light source: Tungsten lamp(00k) Use a standard test lens at F

7 AiCA APPLICATION CIRCUIT - M RG H H + 0 OUT RG P SUB DD AiCA CCD output H H SUB -DRIER Ai00() 00.K KDS R 0K.K 0. C 00

8 AiCA PACKAGE DIMENSION ( PIN PLASTIC-DIP) B. UNIT = mm.the center of the effective image area relative to B and B is (H, ) = (.,.) 0.mm.. R0. DEPTH=0.. The rotation angle of the effective image area relative to H and is.. R 0. H B : GLASS LID R X=

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