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  for video equipment sdb00055cem 1 MN3112SA vertical driver for video-camera ccd area-image-sensor overview the MN3112SA is a vertical driver lsi incorporating four vertical driver channels and one sub driver channel for a 2-dimensional interline ccd image sensor. the MN3112SA enables low current dissipation and the part reductions. features 3v power supply for input section applications video cameras pin assignment ssop020-p-0225 (top view) osub v l ov2 v m13 ov1 v dc iv1 ch1 iv2 isub v hh v m24 ov4 ov3 v h gnd iv3 ch2 iv4 n.c. 1 2 3 4 5 6 7 8 9 10 20 19 18 17 16 15 14 13 12 11
MN3112SA for video equipment 2 block diagram v dc , v l , gnd : common power supply v m13 , v m24 : binary and tristate independent power supplies for vertical driver section v hh , v h : independent power supplies for sub driver section and vertical driver section osub 1 v l 2 ov2 3 v m13 4 ov1 v dc 5 6 iv1 7 ch1 8 iv2 9 isub 10 20 v hh 19 v m24 18 ov4 17 ov3 16 v h gnd 15 14 iv3 13 ch2 12 iv4 11 n.c. tristate driver tristate driver level conversion level conversion level conversion level conversion level conversion level conversion level conversion
for video equipment MN3112SA 3 pin descriptions pin no. symbol pin name i/o function description 6v dc input section high-level i 5v high-level input power supply 15 gnd input section low-level i5 v low-level input power supply 16 v h vertical driver section ih igh-level input at high-voltage section high-level power supply 20 v hh sub driver section ih igh-level input at high-voltage section high-level power supply 4v m13 middle-level power supply i middle-level input at high-voltage section 19 v m24 input externally to both v m13 and v m24 . 2v l low-level power supply i low-level input at high-voltage section 9i v2 transfer pulse input i charge transfer pulse input pin 12 iv4 transfer pulse input i charge transfer pulse input pin 7i v1 transfer pulse input i charge transfer pulse input pin 14 iv3 transfer pulse input i charge transfer pulse input pin 8 ch1 charge pulse input i charge read pulse input pin 13 ch1 charge pulse input i charge read pulse input pin 10 isub sub pulse input i unwanted charge sourcing pulse input pin 18 ov4 binary transfer pulse o binary transfer pulse output pin output (v m24 , v l ) 3 ov2 binary transfer pulse o binary transfer pulse output pin output (v m24 , v l ) 17 ov3 tristate transfer pulse o tristate transfer pulse output pin output (v h , v m13 , v l ) 5 ov1 tristate transfer pulse o tristate transfer pulse output pin output (v h , v m13 , v l ) 1 osub sub pulse output o unwanted charge sourcing pulse output pin (v hh , v l ) 11 n.c. no connection
MN3112SA for video equipment 4 functions binary transfer pulse (vertical driver section) iv2 ov2 iv4 ov4 hl lm tristate transfer pulse (vertical driver section) ch1 iv1 ov1 ch2 iv3 ov3 h hl lm l hl lh * 1 iv1, iv2, iv3, iv4, ch1, ch2 h: v dc l: gnd ov1, ov2, ov3, ov4 h: v h m: v m13 or v m24 l: v l unwanted charge sourcing pulse (sub driver section) isub osub hl lh * 1 isub h: v dc l: gnd osub h: v hh l: v l
for video equipment MN3112SA 5 electrical characteristics (1) dc characteristics v hh =18.0v , v h =13.0v , v m13 =v m24 =1.0v , v l = ?.0v, v dc =5.00v , gnd=0.0v , ta= ?0?c to +70?c parameter symbol test conditions min typ max unit quiescent supply current i ddst v i =gnd , v dc =3.0v 2.5 ma v i =gnd , v dc =5.0v 4 operating supply current i dddyn v i =gnd , v dc 7ma input pins iv1 , iv2 , iv3 , iv4 , ch1 , ch2 , isub voltage "h" level v ih 0.7 v dc v dc v voltage "l" level v il gnd 0.3 v dc v input leakage current i li v i =0 to 5v 1 a output pins 1 (binary output) ov2 , ov4 output voltage middle level v om1 i om1 = ?ma 0.9 v m24 v output voltage "l" level v ol1 i ol1 =1ma v l ? output on-resistance middle level r onm1 i om1 =?0ma 40 ? output on-resistance "l" level r onl1 i ol1 =50ma 40 ? output pins 2 (tristate output) ov1 , ov3 output voltage "h" level v oh2 i oh2 =?ma 12.9 v h v output voltage middle level v om2 i om2 =?ma 0.9 v m13 v output voltage "l" level v ol2 i ol2 =1ma v l ? output on-resistance "h" level r onh2 i oh2 =?0ma 50 ? output on-resistance middle level r onm2 i om2 = 50ma 40 ? output on-resistance "l" level r onl2 i ol2 =50ma 40 ? output pin 3 (sub output) osub output voltage "h" level v ohh3 i ohh3 =?ma 17.9 v hh v output voltage "l" level v ol3 i ol3 =1ma v l ? output on-resistance middle level r onhh3 i onhh3 =?0ma 50 ? output on-resistance "l" level r onl3 i onl3 =50ma 40 ?
MN3112SA for video equipment 6 (2) ac characteristics v hh =18.0v , v h =13.0v , v m13 =v m24 =1.0v , v l =?.0v, v dc =3.0v , gnd=0.0v , ta=?0?c to +70?c parameter symbol test conditions min typ max unit output pins 1 (binary output) ov2 , ov4 transmission delay time t plm no load 100 200 ns t pml "l" level ?middle level rise time t tlm 200 300 ns fall time t tml output pins 2 (tristate output) ov1 , ov3 transmission delay time t plm no load 100 200 ns t pml "l" level ?middle level transmission delay time t tmh no load 200 400 ns t thm middle level ?"h" level rise time t tlm 200 300 ns fall time t tml rise time t tmh 200 300 ns fall time t thm output pin 3 (sub output) osub transmission delay time t plhh no load 100 200 ns t phhl "l" level ?"h" level rise time t tlhh 200 300 ns fall time t thhl
for video equipment MN3112SA 7 application circuit example note *1: connect a bypass capacitor as close as possible to each of the MN3112SA? power supply pins (v hh , v h , v m13 , v m24 , v l , v dc ). 1 osub 2 v l 3 ov2 4 v m13 5 ov1 6 v dc 7 iv1 8 ch1 9 iv2 10 isub 12 ?1 13 ?2 14 ?3 15 ?4 10 sub v hh 20 v m24 19 ov4 18 ov3 17 v h 16 gnd 15 iv3 14 ch2 13 iv4 12 n.c. 11 v1 19 v2 18 v3 15 v4 14 ch1 13 ch2 12 sub 11 ccd drive logic mn5151 v l v m13 v dc gnd v hh v m24 v h 3.3?/50v + + 1m ? 2200pf 200k ? 47k ? 3.3?/50v +16v 510h ccd image sensor mn3716 MN3112SA
MN3112SA for video equipment 8 usage notes (1) when the sub driver is not used 1. connect v hh (pin 20) to v h (pin 16). 2. connect isub (pin 10) to v dc (pin 6) or gnd (pin 15). 3. make no connection for osub (pin 1). (2) connect a bypass capacitor as close as possible to MN3112SA power supply pins v hh (pin 20), v h (pin 16), v m13 (pin 4), v m24 (pin 19), v l (pin 2), and v dc (pin 6). (3) guarantee period after unsealing the guarantee period after opening the dry-sealed packaging is three weeks under the environment conditions of 30?c/70% (temperature/humidity). (4) the recommended reflow temperature is 230?c. package dimensions (unit: mm) ssop020-p-0225 110 20 6.5 0.2 1.0 0.2 0.3 min. (0.33) 0.25 0.10 4.3 0.2 1.5 0.2 1.9 max. 0.1 0.1 6.3 0.3 11 seating plane 0.65 0.15 + 0 .1 0 - 0.05 note) the package of this product will be changed to lead-free type (ssop020-p-0225c). see the new package dimensions section later of this datasheet.
for video equipment MN3112SA 9 new package dimensions (unit: mm) ? ssop020-p-0225c (lead-free package) 4.30 0.20 6.30 0.30 1.50 0.10 0.10 0.10 6.50 0.20 0.25 0.10 1.00 0.20 0.65 0.15 +0.10 - 0.05 0 to 8 11 10 20 1 0.30 min. m 0.13 1.80 max. seating plane seating plane (0.325) 0.10
request for your special attention and precautions in using the technical information and semiconductors described in this material (1) an export permit needs to be obtained from the competent authorities of the japanese government if any of the products or technologies described in this material and controlled under the "foreign exchange and foreign trade law" is to be exported or taken out of japan. (2) the technical information described in this material is limited to showing representative characteris- tics and applied circuits examples of the products. it neither warrants non-infringement of intellec- tual property right or any other rights owned by our company or a third party, nor grants any license. (3) we are not liable for the infringement of rights owned by a third party arising out of the use of the product or technologies as described in this material. (4) the products described in this material are intended to be used for standard applications or general electronic equipment (such as office equipment, communications equipment, measuring instru- ments and household appliances). consult our sales staff in advance for information on the following applications: ? special applications (such as for airplanes, aerospace, automobiles, traffic control equipment, combustion equipment, life support systems and safety devices) in which exceptional quality and reliability are required, or if the failure or malfunction of the products may directly jeopardize life or harm the human body. ? any applications other than the standard applications intended. (5) the products and product specifications described in this material are subject to change without notice for modification and/or improvement. at the final stage of your design, purchasing, or use of the products, therefore, ask for the most up-to-date product standards in advance to make sure that the latest specifications satisfy your requirements. (6) when designing your equipment, comply with the guaranteed values, in particular those of maxi- mum rating, the range of operating power supply voltage, and heat radiation characteristics. other- wise, we will not be liable for any defect which may arise later in your equipment. even when the products are used within the guaranteed values, take into the consideration of incidence of break down and failure mode, possible to occur to semiconductor products. measures on the systems such as redundant design, arresting the spread of fire or preventing glitch are recommended in order to prevent physical injury, fire, social damages, for example, by using the products. (7) when using products for which damp-proof packing is required, observe the conditions (including shelf life and amount of time let standing of unsealed items) agreed upon when specification sheets are individually exchanged. (8) this material may be not reprinted or reproduced whether wholly or partially, without the prior written permission of matsushita electric industrial co., ltd. 2002 jul


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