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ILX518K Dataheets PDF



Part Number ILX518K
Manufacturers Sony Corporation
Logo Sony Corporation
Description 5363-pixel X 3 line CCD Linear Sensor
Datasheet ILX518K DatasheetILX518K Datasheet (PDF)

ILX518K 5363-pixel × 3 line CCD Linear Sensor (Color) Description The ILX518K is a reduction type CCD linear sensor developed for color image scanner. This sensor reads legal-size documents at a density of 600 DPI, and A3-size documents at a density of 400 DPI. Features • Number of effective pixels: 16089 pixels (5363 pixels × 3) • Pixel size: 8µm × 8µm (8µm pitch) • Distance between line: 64µm (8 Lines) • Single-sided readout • Ultra low lag / High sensitivity • Single 12V power supply • Input .

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ILX518K 5363-pixel × 3 line CCD Linear Sensor (Color) Description The ILX518K is a reduction type CCD linear sensor developed for color image scanner. This sensor reads legal-size documents at a density of 600 DPI, and A3-size documents at a density of 400 DPI. Features • Number of effective pixels: 16089 pixels (5363 pixels × 3) • Pixel size: 8µm × 8µm (8µm pitch) • Distance between line: 64µm (8 Lines) • Single-sided readout • Ultra low lag / High sensitivity • Single 12V power supply • Input clock pulse: CMOS 5V drive • Number of output 3 (R, G, B) • Package: 22 pin Plastic-DIP (400 mil) Absolute Maximum Ratings • Supply voltage VDD 15 • Operating temperature –10 to +55 • Storage temperature –30 to +80 Pin Configuration (Top View) VOUT-R GND φRS φLH GND φ1 NC φ1 NC 1 22 VOUT-G 22 pin DIP (Plastic) Block Diagram φROG-G 13 12 10 φROG-R φROG-B Driver Driver V °C °C φ2 15 Driver VDD 16 S5363 CCD Register Read Out Gate S5363 CCD Register Read Out Gate 3 4 5 6 20 VDD φ2 17 18 NC φLH 4 17 φ2 R G B Driver 20 7 8 9 16 VDD 15 φ2 VDD VOUT-B 21 VOUT-G 22 14 NC 13 φROG-B φROG-R 10 5363 5363 5363 GND 11 12 φROG-G Sony reserves the right to change products and specifications without prior notice. This information does not convey any license by any implication or otherwise under any patents or other right. Application circuits shown, if any, are typical examples illustrating the operation of the devices. Sony cannot assume responsibility for any problems arising out of the use of these circuits. –1– VOUT-R 1 E95814B9X-PS GND 2 φRS 3 φ1 6 19 NC D14 D15 D63 S1 D14 D15 D63 S1 D14 D63 S1 2 21 VOUT-B S5363 CCD Register Read Out Gate Green Blue 1 1 Red 1 φ1 8 D64 D75 D64 D75 D15 D64 D75 GND 11 ILX518K Pin Description Pin No. 1 2 3 4 5 6 7 8 9 10 11 Symbol VOUT-R GND φRS φLH GND φ1 NC φ1 NC φROG-R GND Description Signal out (red) GND Clock pulse input Clock pulse input GND Clock pulse input NC Clock pulse input NC Clock pulse input GND Pin No. 12 13 14 15 16 17 18 19 20 21 22 Symbol φROG-G φROG-B NC φ2 VDD φ2 NC NC VDD VOUT-B VOUT-G Description Clock pulse input Clock pulse input NC Clock pulse input 12V power supply Clock pulse input NC NC 12V power supply Signal out (blue) Signal out (green) Recommended Supply Voltage Item VDD Min. 11.4 Typ. 12.0 Max. 12.6 Unit V Clock Characteristics Item Input capacity of φ1, φ2 Input capacity of φLH Input capacity of φRS Input capacity of φROG∗ Symbol Cφ1, Cφ2 CφLH CφRS CφROG Min. — — — — Typ. 850 10 10 10 Max. — — — — Unit pF pF pF pF ∗ It indicates that φROG-R, φROG-G, φROG-B as φROG. Clock Frequency Item φ1, φ2, φLH, φRS Symbol fφ1, fφ2, fφLH, fφRS Min. — Typ. 1 Max. 5 Unit MHz Input Clock Pulse Voltage Condition Item φ1, φ2, φLH, φRS, φROG pulse voltage High level Low level Min. 4.75 — Typ. 5.0 0 Max. 5.25 0.1 Unit V V –2– ILX518K Electrooptical Characteristics (Note 1) Ta = 25°C, VDD = 12V, fφRS = 1MHz, Input clock = 5Vp-p, Light source = 3200K, IR cut filter CM-500S (t = 1.0mm) Item Red Sensitivity Green Blue Sensitivity nonuniformity Saturation output voltage Red Saturation exposure Green Blue Dark voltage average Dark signal nonuniformity Image lag Supply current Total transfer efficiency Output impedance Offset level Dynamic range Symbol RR RG RB PRNU VSAT SER SEG SEB VDRK DSNU IL IVDD TTE ZO VOS DR Min. 1.3 2.1 1.6 — 2 0.74 0.46 0.58 — — — — 92 — — 1000 Typ. 2.0 3.2 2.5 4 3.2 1.6 1 1.28 0.3 1.5 0.02 26 98 250 6.5 10670 Max. 2.7 4.3 3.4 20 — — — — 2 5 — 50 — — — — mV mV % mA % Ω V — Note 6 Note 6 Note 7 — — — Note 8 Note 9 lx · s Note 5 % V Note 3 Note 4 V/(lx · s) Note 2 Unit Remarks Note 1) In accordance with the given electrooptical characteristics, the black level is defined as the average value of D2, D3 to D12. 2) For the sensitivity test light is applied with a uniform intensity of illumination. 3) PRNU is defined as indicated below. Ray incidence conditions are the same as for Note 2. VOUT-G = 500mV (Typ.) PRNU = (VMAX – VMIN) /2 VAVE × 100 [%] Where the 5363 pixels are divided into blocks of 114 (Last block is 119 pixel). The maximum output of each block is set to VMAX, the minimum output to VMIN and the average output to VAVE. 4) Use below the minimum value of the saturation output voltage. 5) Saturation exposure is defined as follows. SE = VSAT R Where R indicates RR, RG, RB, and SE indicates SER, SEG, SEB. 6) Optical signal accumulated time τint stands at 10ms. 7) VOUT-G = 500mV (Typ.) VOUT 8) Vos is defined as indicated bellow. VOUT indicates VOUT-R, VOUT-G, and VOUT-B. 9) Dynamic range is defined as follows. DR = VSAT VDRK GND VOS When the optical signal accumulated time is shorter, the dynamic range gets wider because the optical signal accumulated time is in proportion to the dark voltage. –3– Clock Timing Chart 1 φROG 3 4 5438 D63 S1 S2 D13 D14 D62 D70 D61 S5363 D15 S5361 S5362 5 0 φ1 φLH 5 0 φ2 5 0 D1 D2 D3 VOUT Optical black (49 pixels) Dummy signal (63 pixels) 1-li.


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