TCD132D TOSHIBA | Alldatasheet
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TOSHIBA CCD LINEAR IMAGE SENSOR CCD(Charge Coupled Device) The TCD132D is a 1024-elements linear image sensor which includes CCD drive circuit and signal processing circuit. The CCD drive circuit consists of the pulse generator and the CCD driver; therefore it is posible to oN get easy drive by applying simple pulses (gu, ¢ccD and ae EEE The signal processing circuit which consists of the clamp ANF T if l l circuit and $/H circuit and pre-amplifier. ft l
FEATURES
@ Number of Image Sensing Elements : 1024 WDIP20-G-400-2.54 @ Image Sensing Element Size : 14m by 144m on 144m Weight : 3.1g (Typ.) centers @ Photo Sensing Region : Low dark current pn photodiode @ Clock : 3 Input pulses 5V @ Internal Circuit : Clamp circuit (for optical black level reference) Sample & hold circuit Pre-amplifier @ Package : 22 pin cerdip MAXIMUM RATINGS (Note 1) PIN CONNECTIONS CHARACTERISTIC SYMBOL RATING UNIT we Sout Master Clock Voltage om Veet CCD Clock Voltage VéccD = SH Va Shift Pulse Voltage Reference Voltage VREF 03-15 gcoo [a | ss Power Supply Voltage Vv “ Vv ss[s] Yoo (Analog) AD vss [e] Ne Power Supply Voltage Vpp v ne [ra] ne (Digital) NC Operating Temperature =75~60 a Storage Temperature -40~100 ne [3] Ne NC [ii] nc (Note 1) All voltage are with respect to SS and Vss terminals (Ground). (TOP VIEW) 2610016802 malfunction or fail due to their inherent electrical sensitivity and vulnerability to physical stress. It is the responsibility of the buyer, when utilizing TOSHIBA products, to observe standards of safety, and to avoid situations in which a malfunction or failure of a TOSHIBA product could cause loss of human life, bodily injury or damage to property. In developing your designs, please ensure that TOSHIBA products are used within specified operating ranges as set forth in the most recent products specifications. Also, please keep in mind the precautions and conditions set forth in the TOSHIBA Semiconductor Reliability Handbook. 1997-06-30 1/12
CCD ANALOG SHIFT REGISTER 2 SHIFT GATE 2 rors i po ef rece RR CCD ANALOG SHIFT REGISTER 1 — S|" om SH geco 8s Vss 38 PIN NAMES Master Clock ¢ccD CCD Clock [sh [shift Pulse VREF Reference Voltage Input SouT Signal Output Power (Analog) Power (Digital) Ground (Analog) Ground (Digital) Test Input Non Connection 961001EBA2" @ The products described in this document are subject to foreign exchange and foreign trade control laws. © ‘The information contained herein is presented only as a guide, for the applications, of our products. No_ responsibilty is assumed by, TOSHIBA CORPORATION for any infringements of intellectual property or other rights of the third parties which may result from its use. No license is granted by implication or otherwise under any intellectual property or other rights of TOSHIBA CORPORATION or others @ The information contained herein is subject to change without notice 1997-06-30 2/12
OPTICAL / ELECTRICAL CHARACTERISTICS (Ta =25°C, Vap =Vpp = 12V, Vém=V¢ccp =VsH =5V (PULSE), VREF=5-0V, fgccp =0.5MHz, tint (INTEGRATION TIME) = 10ms, LIGHT SOURCE = DAYLGIHT FLUORESCENT LAMP, LOAD RESISTANCE = 100kQ) CHARACTERISTIC SYMBOL | win. | ve. | max. | UNIT NOTE [sensitivity RT Tt 15 [Ves | (Note 2) Photo Response Non Uniformity PRNU | — | — | wo | % | (Note 3) Saturation Output Voltage [Veer [2 | 3 | — | v_| ote 4) [Saturation Exposure ——S~sCSES* CT | OS | — | es | Note 8) Dark Signal Non Uniformity [wo — [ — | [mv | tote 6)_| [Analog Current Dissipation | tap | — | | 2 [ma |_| Digital Current Dissipation | oo | — | 4] 0 | mf | Input Current of VRE ier [| — | 01 [1 [ma |_| Total Transfer Efficiency i Output Impedance [% [| — ) 7) 2pm [| Clamp Error Voltage VERR [| — | 100 | 20 | v | (Note 7) (Note 2) Sensitivity for 2856K W-lamp is 25V/Ix-s (Typ.) (Note 3) Measured at 50% of SE (Typ.) Definition of PRNU : PRNU= Sad x 100 (%) Where X is average of total signal outputs and Az is the maximum deviation from ¥ under uniform illumination. (Note 4) Vsat is defined as minimum saturation output voltage of all effective pixels. (Note 5) Definition of SE : SE= —AL (les) (Note 6) Definition of DSNU : DSNU=MAX-MIN (mV) MIN 1997-06-30 3/12
(Note 7) Definition of VerR: VERR=|VREF-Vsicl Where Vsig is defined below. Sout Wy Vsig SS 1997-06-30 4/12
TOSHIBA ||| CT CD132D OPERATING CONDITION CHARACTERISTIC SYMBOL | min, | orve. | max. | UNIT [as [50 [55 Mester Clock Voltage Ptrtever|_ Ye [ols [ea] [45 [50 [ss co Grosk Volts® “ecco [7 o [os [os | [as [8055] Shit ule Voltage a a Reference Voltage [Vacs [as [50 [ss [Vv] Power Supply Vortage (Analog) [Van fo fe Power Supply Voltage (Driver frest input Voltage Trp Pfs CLOCK CHARACTERISTICS (Ta = 25°C) CHARACTERISTIC SYMBOL | min | rye. | Max. | UNIT Master Cock Frequengy 7 Data Rate [toate [02 [1 [2 CCD Clock Frequency fseco | 01 [| 05 | 1.0 | Mbz | Master Clock Capacitance Te [eco clock capactanee esc f= 0 Shift Pulse Capacitance Pesy too TT 99706-3805
coo | as L | 2 = s & 5 3 TT TTTTTTTTTFTFTFTFTeTeTeeeeeeeefhfhfhsST OT
- ) “e | sf \\ gm gccD / \\ / gm _ ; Y LZ an iY Vsig (Note 8) +6 | | HOLD Perion {7 HOLD PERIOD (Note 8) Refer to Note 7 [—csacrnne =i aoe [wm oe woe | or | [Pulse Timing of Hand gccp SCS «| | | | | ISH Pule Width —SSSCSC~S «(Ys [Pulse Timing of dw and deep Sid || | [Aperture Delay SSSCSC~CiG CSS iY Cts [cep Peed SSCS CT 2 ts 1997-06-30 7/12
TYPICAL PERFORMANCE CURVES SPECTRAL RESPONSE " ARNEL = | of ZIT T INI Pitt tt , ALPEN EEE EET | go REE gs LitTiPT iri ixt tt tt et ef TET? TIN | Ett tt eg Li TTT TTT te At tty et “ft TET Pete Are eee eee Nee otiti titi itt ix WAVE LENGTH 4 (nm) MODULATION TRANSFER FUNCTION MODULATION TRANSFER FUNCTION OF X-DIRECTION OF Y-DIRECTION SPATIAL FREQUENCY (Cycles/mm) SPATIAL FREQUENCY (Cycles/mm) 2 7A 143 214 286 357 2 7 143 214 286 35.7 fT TTT eT TT yy [iT tT tT ttt Pete et yy yy Pitt ttt ty 10 = 10 = PT PNET ttt PPS wt LE ENE TT ow LENE TTT BLL TT | cso NT | Nee ~ fi tT Ett tt RA >. TTT TAA Litt tty tt ty Pi ttt tT its atti Ett Tt ty ott tt tt tt Litt tty tt ty Pit tT ey ery wali tt ttt It | w ttt tT ttt tf 0 02 oa 06 08 10 0 02 04 06 08 10 NORMALIZED SPATIAL FREQUENCY NORMALIZED SPATIAL FREQUENCY ET TE
TYPICAL PERFORMANCE CURVES (Cont'd) CURRENT DISSIPATION (ANALOG) - CURRENT DISSIPATION (DIGITAL) - OPERATING FREQUENCY OPERATING FREQUENCY CTT T= CTT Ts
5 Vap=Vop=12V 151 Vap=Vop=12V
Vp =VREF=5V Vé=VREr=5V 7 | Zane a ee ee z afi TT TTT) sy Tt Zz 10) Zz 10 ce 3 PEE PTET TT) EEE ETT petite ti tT) ogy) tt | ee a , Bs —| eT it ttt) oe LE pry | Ld a | | 0 05 1.0 15 0 05 1.0 15 CCD CLOCK FREQUENCY (MHz) CCD CLOCK FREQUENCY (MHz) 1997-06-30 9/12
Q¥o * ¢., nanan BIGIEIGIEI Geel Q 3 2 Ks a 8 g:ezgg:zg:e?: en: re vr eT [| Eg Ra + [| S J aan : [i io Pehitic “pre ig || ott yy bi g I o le atl |: : ee en le ig ' | Le | Tit i - a Too: a 5 =| 12 oe a z ih Lye I. eT GF od ° io oe ' g lL o 8 oo i g A - i & = S ' 3 s 5 x 8.4 ak ' % H 7200 cere i S yA £ UIs ‘oe iO Fs |. . A § AN = | SS 1997-06-30 10/12
- 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. Electrostatic 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. 1997-06-30 11/12
WDIP20-G-400 (B) Unit : mm 20 "1 4 be | g 2 e 8 |g 58 #1 a PP a » * 1 10 a 7 26.0+0.5 d VY wy “ Oy z Sc oo : AT 40.4 <I 1.57TYP 0.471015 ET TEC 1,3140.1 (Note 1) No.1 SENSOR ELEMENT (S1) TO EDGE OF PACKAGE. (Note 2) TOP OF CHIP TO BOTTOM OF PACKAGE. (Note 3) GLASS THICKNES (n=1.5) Weight : 3.1g (Typ.) 1997-06-30 12/12