TCD1705ADG Toshiba, TCD1705ADG Datasheet

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TCD1705ADG

Manufacturer Part Number
TCD1705ADG
Description
Manufacturer
Toshiba
Datasheet

Specifications of TCD1705ADG

Lead Free Status / RoHS Status
Supplier Unconfirmed
The TCD1705D is a high sensitive and low dark current 7450 elements
CCD image sensor.
The sensor is designed for facsimile, imagescanner and OCR.
The device contains a row of 7450 elements photodiodes which provide a
24 lines / mm (600DPI) across a A3 size paper. The device is operated by
5 V (pulse), and 12 V power supply.
FEATURES
l Number of Image Sensing Elements : 7450 elements
l Image Sensing Element Size
l Photo Sensing Region
l Clock
l Package
MAXIMUM RATINGS
Clock Pulse Voltage
Shift Pulse Voltage
Reset Pulse Voltage
Clamp Pulse Voltage
Power Supply Voltage
Operating Temperature
Storage Temperature
Note 1: All voltage are with respect to SS terminals (Ground).
CHARACTERISTIC
TOSHIBA CCD LINEAR IMAGE SENSOR CCD (Charge Coupled Device)
(Note 1)
: 4.7 µm by 4.7 µm on 4.7 µm centers
: High sensitive and low voltage dark
: 2 phase (5 V)
: 22 pin Cerdip
signal pn photodiode
SYMBOL
TCD1705D
V
V
V
V
T
T
V
OD
opr
SH
RS
CP
stg
φ
RATING
−0.3~15
−25~85
−0.3~8
0~60
1
UNIT
°C
°C
V
Weight : 5.2g (Typ.)
PIN CONNECTION
(TOP VIEW)
TCD1705D
2001-10-15

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TCD1705ADG Summary of contents

Page 1

... TOSHIBA CCD LINEAR IMAGE SENSOR CCD (Charge Coupled Device) The TCD1705D is a high sensitive and low dark current 7450 elements CCD image sensor. The sensor is designed for facsimile, imagescanner and OCR. The device contains a row of 7450 elements photodiodes which provide a 24 lines / mm (600DPI) across a A3 size paper. The device is operated (pulse), and 12 V power supply ...

Page 2

CIRCUIT DIAGRAM PIN NAMES 1E, O Clock (Phase 1) φ 2E, O Clock (Phase 2) φ 2B Final Stage Clock (Phase 2) φ SH Shift Gate RS Reset Gate CP Clamp Gate OS1 Signal Output 1 OS2 Signal Output 2 ...

Page 3

OPTICAL / ELECTRICAL CHARACTERISTICS (Ta = 25° φ t (INTEGRATION TIME ms, LIGHT SOURCE = DAYLIGHT FLUORESCENT LAMP, INT LOAD RESISTANCE = 100 kΩ) CHARACTERISTIC Sensitivity Photo Response Non Uniformity ...

Page 4

Note defined as average dark signal voltage of all effective pixels. DRK DSNU is defined as different voltage between VDRK and VMDK when VMDK is maximum dark signal voltage. V SAT Note 6: Definition ...

Page 5

Note 9: Random noise is defined as the standard deviation (sigma) of the output level difference between two adjacent effective pixels under no illumination (i.e. dark condition) calculated by the following procedure. 1) Two adjacent pixels (pixel n and n ...

Page 6

OPERATING CONDITION CHARACTERISTIC Clock Pulse Voltage Final Stage Clock Voltage Shift Pulse Voltage Reset Pulse Voltage Clamp Pulse Voltage Power Supply Voltage CLOCK CHARACTERISTICS CHARACTERISTIC Clock Pulse Frequency Reset Pulse Frequency Clock Capacitance Final Stage Clock Capacitance Shift Gate Capacitance ...

Page 7

TCD1705D 2001-10-15 ...

Page 8

TIMING REQUIREMENTS Note 11: Each RS and CP pins put to Low level during this period. 8 TCD1705D 2001-10-15 ...

Page 9

CHARACTERISTIC Pulse Timing of SH and 1E, 1O φ φ SH Pulse Rise Time, Fall Time SH Pulse Width 2B Pulse Rise Time, Fall Time φ RS Pulse Rise Time, Fall Time RS Pulse Width Video Data Delay Time CP ...

Page 10

CAUTION 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 ...

Page 11

PACKAGE DIMENSIONS Note 1: No.1 SENSOR ELEMENT (S1) TO EDGE OF PACKAGE. Note 2: TOP OF CHIP TO BOTTOM OF PACKAGE. Note 3: GLASS THICKNESS (n=1.5) Weight : 5.2g (Typ.) 11 TCD1705D Unit : mm 2001-10-15 ...

Page 12

... TOSHIBA is continually working to improve the quality and reliability of its products. Nevertheless, semiconductor devices in general can malfunction or fail due to their inherent electrical sensitivity and vulnerability to physical stress the responsibility of the buyer, when utilizing TOSHIBA products, to comply with the standards of safety in making a safe design for the entire system, and to avoid situations in which a malfunction or failure of such TOSHIBA products could cause loss of human life, bodily injury or damage to property ...

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