TCD1200D TOSHIBA | Alldatasheet

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(TENTATIVE) The TCD1200D is a high sensitive and low dark current 2160 elements image sensor, The sensor can be used for facsimile, imagescanner and OCR. Z The device contains a row of 2160 photodiodes, EZ NS which provide a 8 lines/mm (200 DPI) resolution L7k« across a B4 size paper. The device is operated RK Bas f by 5V (pulse), and 12V power supply, and mounted SN Ze fi in 22 pin Cerdip package with hermetic sealed it : optical glass window, . Number of Tmage Sensing Elements: 2160 + Tmage Sensing Element Size : 14um by 14um on 14um centers « Photo Sensing Region : High sensitive, Low dark current + Clock : 2 phase (SV) « Package : 22 pin Cerdip PIN CONNECTIONS os] [1 | Bjss bos su MAXIMUM RATINGS (Note 1) oof] Eye Shift Pulse Voltage -0.3-8 v aoe fiz} Nc Reset Pulse Voltage nef [is] sc Power Supply Voltage Vop ne fe] [Ts] nc Operating Temperature | Topr ne fe] [it] nc Storage Temperature Tstg ne [y] fis) vc ve ran (tote 1) All voltage are with respect to SS terminals (Ground). (TOP VIEW) 332

ks ox ~ 2 G) 19 ons STGNAL ah — | CCD ANALOG SHIFT RESISTER 2 | os (1 output = J}2]J-a..eore Teele 7 AB ale] prove “Jalslals 5 COMPENSATION 2h vos (2) owreer BUPFER CCD ANALOG SHIFT RESISTER 1 PIN NAMES él Clock (Phase 1)

62 Clock (Phase 2)

| os | stgnal output Dos | Compensation Output op Power $8 Ground Nc Non Connection 333

— eee ccc ce 1CD12000 ———— ee OPTICAL/ELECTRICAL CHARACTERISTICS Ta=25°C, Vop=12V, VgeVsu=VRs=5V (PULSE), f4=0.5MHz, fps=IMHz, LOAD RESISTANCE=100K° ) (cet (INTEGRATION TIME)=10ms, LIGHT SOURCE=DAYLGIHT FLUORESCENT LAMP Responsicity R 45 fx-sec | (Note 2) Photo Response Non Uniformity PRNU (1)| - 10 x (Note 3) Photo Response Non Uniformity PRNU (3)| [ - | 8 | mv | (Note 10) Register Imbalance RI - % (Note 4) Saturation Output Voltage VsaT 1.7 [| - | v__ [ovote 5) Saturation Exposure SE 0.037 kx.sec | (Note 6) Dark Signal Voltage VpRK 1 mV (Note 7) Dark Signal Non Uniformity DSNU 2 3 DC Power Dissipation Pp so | 120 | wm | | Total Transfer Efficiency TTE - [| - [2% |] Dynamic Range DR 1700 | - | - | (Note 8) DC Signal Output Voltage _ Vos (Note 9) DC Compensation Output Voltage Vpos 3.5 | 4.5 (Note 9) DC Mismach Voltage vos-voos | - | 20 | oo | iw || (Note 2) Responsivity for 2854K W-Lamp is 135V/fx.sec (Typ.) Responsivity for LED (567nm) is 29V/x-sec (Typ.) (Note 3) Measured at 50% of SE (Typ.) Definition of PRNU: pans 48 x 100 (%) Where ¥ is average of total signal outputs and dy is the maximum deviation from 7 under uniform illumination, (Note 4) Measured at 50% of SE (Typ.) RI is defined as follows: 2159 ney [znezatl| RI= “I59 eZ * 100 (4) Where xn and gn+l are signal outputs of each pixel, 7 is average of total signal outputs. 334

(Note 5) Vgar is defined as minimum Saturation Output Voltage of all effective pixels. Vs (Note 6) Definition of SE : se= SAT (Note 7) Vprx is defined as average dark signal voltage of all effective pixels. DSNU is defined as different voltage between Vppx and Vypx, when VypK is maximum dark voltage. os York Vuk bsnu (ote 8) Definition of pR : pre SAT ° VprK Vprk is proportional to tynr(Integration time). So the shorter tiNT is, the wider DR is. (Note 9) DC Signal Output Voltage and DC Compensation Output Voltage are defined as follows: os +, pos Yos Yos ss ss (Note 10) PRNU (3) is defined as maximam Voltage with next pixel. where measured 5% of SF (Typ.) 335

Clock Pulse Voltage % ae v L-Level 0 0.2 0.5 shite Pelee vol | itetevet te 4.5 5 5.5, y Shift Pulse Voltage ‘SH — L-Level ° 0.2 | 0.5 | H-Level 4.5 5 Reset Pulse Voltage ~ Vrs v L-Level 0 0.2 0.5 Power Supply Voltage Voo 14 12 13 v CLOCK CHARACTERISTICS (Ta=25°C) Reset Pulse Frequency ERs 1.0 2.0 [| Miz | Clock Capacitance C6 350 400 | oF | Reset Gate Capacitance Crs 10 336

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t2, 130 4 SH gl { ) 15 {7 a \\ ty ‘ 61 xs i 15V, OW, W, 7 33 os 3 7 (MIN) (MIN) . Wf Ys Ed GND =e CHARACTERISTIC syMBoL | MIN TYP. UNIT + _|aiote 10) Pulse Timing of SH and 41 t1,t5 [| 0 | 100 [ - | SH Pulse Rise Time, Fall Time t2, th 50 SH Pulse Width t3 1000 [ns | 1, 42 Pulse Rise Time, Fall Time [ te, e7 | 0 | 60 | 100 | ns | RS Pulse Rise Time, Fall Time _ te, clo{ o [| 20 | - [ ns | RS Pulse Width _. t9 | 40 250 | - ns Pulse Timing of 41, 62 and RS tl 100 125 - ns Video Data Delay Time (ote 11) [t12, t13 | - go [| - | ns | (Note 10) TYP. is the case of fpg=1MHz (Note 11) Load Resistance is 100k2 338

TYPICAL PERFORMANCE CURVES SPECTRAL RESPONSE Pea ow EEN 5

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1, Window Glass The dust and stain on the glass window of the package degrade optical performance of CCD sensor. Keep the glass window clean by saturating a cotton swab in alcohol and lightly wiping the surface, and allow the glass to dry, by blowing with filtered dry N2. Care should be taken to avoid mechanical or thermal shock because the glass window is easily to damage. 2, Electrosatic Breakdown Store in shorting clip or in conductive foam to avoid electrostatic breakdown. 3. Incident Light CCD sensor is sensitive to infrared light. Note that infrared light component degrades resolution and PRNU of CCD sensor. 4, Lead Frame Forming Since this package is not stout against mechanical stress, you should not reform the lead frame, We recommend to use a IC-inserter when you assemble to PCB. 341

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