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  recommended for high-side switching applications that benefit from separate logic and load grounds, these devices encompass load supply voltages to 80 v and output currents to -500 ma. these 8-channel source drivers are useful for interfacing between low-level logic and high-current loads. typical loads include relays, solenoids, lamps, stepper and/or servo motors, print hammers, and leds. all devices may be used with 5 v logic systems ?ttl, schottky ttl, dtl, and 5 v cmos. the udn2981a, udn2982a, udn2982lw, and a2982slw are electrically interchangeable, will withstand a maximum output off voltage of 50 v, and operate to a minimum of 5 v; the udn2983a, udn2984a, udn2984lw, and a2984slw drivers are electrically inter- changeable, will withstand an output voltage of 80 v, and operate to a minimum of 35 v. all devices in this series integrate input current limiting resistors and output transient suppression diodes, and are activated by an active high input. the suffix ??(all devices) indicates an 18-lead plastic dual in-line package with copper lead frame for optimum power dissipation. under normal operating conditions, these devices will sustain 120 ma continuously for each of the eight outputs at an ambient temperature of +50 c and a supply of 15 v. the suffix ?w?(udn2982lw and udn2984lw only) indicates an 18- lead surface-mountable wide-body soic package; the a2982slw and a2984slw are provided in a 20-lead wide-body soic package with im- proved thermal characteristics. the udn2982a, udn2982lw, a2982slw, udn2984a, udn2984lw, and a2984slw drivers are also available for operation over an extended temperature range to -40 c. to order, change the prefix ?dn to ?dq?or the suffix ?lw?to ?lw? features  ttl, dtl, pmos, or cmos compatible inputs  500 ma output source current capability  transient-protected outputs  output breakdown voltage to 80 v  dip or soic packaging 8-channel source drivers always order by complete part number, e.g., udn2981a . note that all devices are not available in all package styles. absolute maximum ratings at 25 c free-air temperature output voltage range, v ce (udn2981a, udn2982a, udn2982lw, and a2982slw) . . 5 v to 50 v (udn2983a, udn2984a, udn2984lw, and a2984slw) . 35 v to 80 v input voltage, v in (udn2981a and udn2983a) . . . . . . . . . 15 v (udn2982a, udn2984a, udn2982lw, udn2984lw, a2982slw, and a2984slw) . . . . . . . . . 20 v output current, i out . . . . . . . . . . . . . . -500 ma package power dissipation, p d . . . . . . . . . . . . . . . . . . . . . . . see graph operating temperature range, t a . . . . . . . . . . . . . . . . . . . . -20 c to +85 c storage temperature range, t s . . . . . . . . . . . . . . . . . . . -55 c to +150 c data sheet 29310d* 1 2 3 4 5 6 7 8 v s gnd 11 12 13 14 15 16 17 18 udn2981a thru udn2984a dwg. no. a-10, 243 2981 thru 2984 note that the udn2980a series (dual in-line package) and udn2980lw series (small-outline ic package) are electrically identical and share a common terminal number assignment.
2981 thru 2984 8-channel source drivers 115 northeast cutoff, box 15036 worcester, massachusetts 01615-0036 (508) 853-5000 2 a2982slw and a2984slw 13 14 15 16 17 19 12 18 20 11 no connection 1 2 3 8 9 4 5 6 7 10 no connection nc nc dwg. pp-064-2 ground +v s 50 75 100 125 150 2.5 0.5 0 allowable package power dissipation in watts ambient temperature in c 2.0 1.5 1.0 25 dwg. gp-022-4 18-lead soic, r ja = 80 c/w 20-lead soic, r ja = 70 c/w 18-pin dip, r ja = 60 c/w one of eight drivers output 7.2 k 3 k 20 k v 5 1.5 k 2983/84 only input ground 9 dwg. no. a-10,242b w copyright ?1977, 2000 allegro microsystems, inc.
2981 thru 2984 8-channel source drivers www.allegromicro.com 3 applicable test limits characteristic symbol devices test conditions fig. min. typ. max. units output leakage current i cex 2981/82? v in = 0.4 v*, v s = 50 v, t a = +70 c 1 200 a 2983/84? v in = 0.4 v*, v s = 80 v, t a = +70 c 1 200 a output sustaining v ce(sus) 2981/82? i out = -45 ma 35 v voltage 2983/84? i out = -70 ma 45 v collector-emitter v in = 2.4 v, i out = -100 ma 2 1.6 1.8 v saturation voltage v ce(sat) all v in = 2.4 v, i out = -225 ma 2 1.7 1.9 v v in = 2.4 v, i out = -350 ma 2 1.8 2.0 v input current 2981/83a v in = 2.4 v 3 140 200 a i in(on) v in = 3.85 v 3 310 450 a 2982/84? v in = 2.4 v 3 140 200 a v in = 12 v 3 1.25 1.93 ma output source current l out 2981/83a v in = 2.4 v, v ce = 2.0 v 2 -350 ma (outputs open) 2982/84? v in = 2.4 v, v ce = 2.0 v 2 -350 ma supply current i s 2981/82? v in = 2.4 v*, v s = 50 v 4 10 ma leakage current 2983/84? v in = 2.4 v*, v s = 80 v 4 10 ma clamp diode i r 2981/82? v r = 50 v, v in = 0.4 v* 5 50 a forward voltage 2983/84? v r = 80 v, v in = 0.4 v* 5 50 a clamp diode v f all i f = 350 ma 6 1.5 2.0 v turn-on delay t on all 0.5 e in to 0.5 e out , r l = 100 ? , 1.0 2.0 s v s = 35 v turn-off delay t off all 0.5 e in to 0.5 e out , r l = 100 ? , 5.0 10 s v s = 35 v, see note electrical characteristics at t a = +25 c (unless otherwise specified). notes: turn-off delay is influenced by load conditions. systems applications well below the specified output loading may requir e timing considerations for some designs, i.e., multiplexed displays or when used in combination with sink drivers in a totem pole configuration. negative current is defined as coming out of (sourcing) the specified device terminal. * all inputs simultaneously. ? complete part number includes a prefix (a or udn) and a suffix (a or slw) as follows: udn2981a, udn2982a, udn2982lw, or a2982slw, udn2983a, udn2984a, udn2984lw, or a2984slw.
2981 thru 2984 8-channel source drivers 115 northeast cutoff, box 15036 worcester, massachusetts 01615-0036 (508) 853-5000 4 test figures figure 1 figure 2 figure 3 dwg. no. a-11,083 dwg. no. a-11,084 dwg. no. a-11,085 v v in cex i s a v v v i out in ce s v ma open v v in in i s ma dwg. no. a-11,086 dwg. no. a-11,087 dwg. no. a-11,088 figure 5 figure 6 figure 4 open open v i f f v v s i r v in a v in i s s v open ma
2981 thru 2984 8-channel source drivers www.allegromicro.com 5 allowable peak collector current as a function of duty cycle series udn2980a 100 v = 35 v 8 7 6 4 5 number of outputs conducting simultaneously 90 80 70 60 50 40 30 20 10 0 0 50 100 150 200 250 300 350 400 450 500 recommended maximum output current allowable peak collector current in ma at 50 c per cent duty cycle s 3 100 v = 35 v 8 7 6 4 5 number of outputs conducting simultaneously 90 80 70 60 50 40 30 20 10 0 0 50 100 150 200 250 300 350 400 450 500 recommended maximum output current allowable peak collector current in ma at 70 c per cent duty cycle s 3 dwg. no. a-11,111b dwg. no. a-11,106b udn2981a and udn2982a 100 v = 15 v 8 7 6 4 5 number of outputs conducting simultaneously 90 80 70 60 50 40 30 20 10 0 0 50 100 150 200 250 300 350 400 450 500 recommended maximum output current allowable peak collector current in ma at 50 c per cent duty cycle s 3 100 v = 15 v 8 7 6 4 5 number of outputs conducting simultaneously 90 80 70 60 50 40 30 20 10 0 0 50 100 150 200 250 300 350 400 450 500 recommended maximum output current allowable peak collector current in ma at 70 c per cent duty cycle s 3 dwg. no. a-11,107b dwg. no. a-11,108b
2981 thru 2984 8-channel source drivers 115 northeast cutoff, box 15036 worcester, massachusetts 01615-0036 (508) 853-5000 6 100 8 7 6 4 5 number of outputs conducting simultaneously 90 80 70 60 50 40 30 20 10 0 0 50 100 150 200 250 300 350 400 450 500 recommended maximum output current per cent duty cycle 3 v = 60 v s allowable peak collector current in ma at 70 c allowable peak collector current as a function of duty cycle udn2983a and udn2984a dwg. no. a-11,109b dwg. no. a-11,110b 100 8 7 6 4 5 number of outputs conducting simultaneously 90 80 70 60 50 40 30 20 10 0 0 50 100 150 200 250 300 350 400 450 500 recommended maximum output current per cent duty cycle 3 v = 60 v s allowable peak collector current in ma at 50 c input current as a function of input voltage typical electrosensitive printer application typical 2.5 input current, i (ma) in 2.0 1.5 1.0 0.5 2 4 6 8 10 12 input voltage (volts) maximum dwg. no. a-11,115b 1 2 3 4 5 6 7 8 9 11 12 13 14 15 16 17 18 10 electrodes in 1 in 2 in 3 in 4 in 5 in 6 in 7 in 8 v s r l r l r l r l r l r l r l r l dwg. no. a-11,113a
2981 thru 2984 8-channel source drivers www.allegromicro.com 7 udn2981a, udn2982a, udn2983a, and udn2984a dimensions in inches (controlling dimensions) dimensions in millimeters (for reference only) 0.014 0.008 0.300 bsc dwg. ma-001-18a in 0.430 max 18 1 9 0.280 0.240 0.210 max 0.070 0.045 0.015 min 0.022 0.014 0.100 bsc 0.005 min 0.150 0.115 10 0.920 0.880 notes: 1. exact body and lead configuration at vendor s option within limits shown. 2. lead spacing tolerance is non-cumulative. 3. lead thickness is measured at seating plane or below. 4. supplied in standard sticks/tubes of 21 devices. 0.355 0.204 7.62 bsc dwg. ma-001-18a mm 10.92 max 18 1 9 7.11 6.10 5.33 max 1.77 1.15 0.39 min 0.558 0.356 2.54 bsc 0.13 min 3.81 2.93 10 23.37 22.35
2981 thru 2984 8-channel source drivers 115 northeast cutoff, box 15036 worcester, massachusetts 01615-0036 (508) 853-5000 8 udn2982lw and udn2984lw (add tr to part number for tape and reel) dimensions in inches (for reference only) dimensions in millimeters (controlling dimensions) 0 to 8 1 2 3 0.020 0.013 0.0040 min. 0.0125 0.0091 0.050 0.016 d wg. ma-008-18a in 0.050 bsc 18 10 0.419 0.394 0.2992 0.2914 0.4625 0.4469 0.0926 0.1043 notes: 1. exact body and lead configuration at vendor s option within limits shown. 2. lead spacing tolerance is non-cumetive. 3. supplied in standard sticks/tubes of 41 devices or add tr to part number for tape and reel. 0 to 8 1 18 2 3 0.51 0.33 0.10 min. 0.32 0.23 1.27 0.40 dwg. ma-008-18a mm 1.27 bsc 10 7.60 7.40 10.65 10.00 11.75 11.35 2.65 2.35
2981 thru 2984 8-channel source drivers www.allegromicro.com 9 a2982slw and a2984slw (add tr to part number for tape and reel) dimensions in inches (for reference only) dimensions in millimeters (controlling dimensions) 0 to 8 1 2 3 0.020 0.013 0.0040 min. 0.0125 0.0091 0.050 0.016 dwg. ma-008-20 in 0.050 bsc 20 11 0.2992 0.2914 0.419 0.394 0.5118 0.4961 0.0926 0.1043 notes: 1. exact body and lead configuration at vendor s option within limits shown. 2. lead spacing tolerance is non-cumulative. 3. supplied in standard sticks/tubes of 37 devices or add tr to part number for tape and reel. 0 to 8 1 20 2 3 0.51 0.33 0.10 min. dwg. ma-008-20 mm 1.27 bsc 11 0.32 0.23 1.27 0.40 7.60 7.40 10.65 10.00 13.00 12.60 2.65 2.35
2981 thru 2984 8-channel source drivers 115 northeast cutoff, box 15036 worcester, massachusetts 01615-0036 (508) 853-5000 10 power source drivers in order of 1) output current, 2) output voltage, 3) number of drivers output ratings * features serial latched diode saturated internal ma v # input drivers clamp outputs protection part number ? -25 60 8 C x C C C 5815 60 10 x x active pull-down C C 5810-f and 6809/10 60 12 x x active pull-down C C 5811 and 6811 60 20 x x active pull-down C C 5812-f and 6812 60 32 x x active pull-down C C 5818-f and 6818 85 8 C C C C C 6118 -120 -25 8 C C x x C 2585 30 8 C C x x C 2985 50 8 x x x x C 5895 -350 35 8 C C x C x 2987 50 8 C C x C C 2981 and 2982 50 8 x x x C C 5891 -50 8 C C x C C 2580 80 8 C C x C C 2983 and 2984 80 8 x x x C C 5890 -80 8 C C x C C 2588 -500 6 1 C C C mosfet x 2525 and 2535 6 2 C C C mosfet x 2526 and 2536 -4000 60 4 C C x C C 2944 * current is maximum specified test condition, voltage is maximum rating. see specification for sustaining voltage limits or over-current protection voltage limits. ? complete part number includes additional characters to indicate operating temperature range and package style. the products described here are manufactured under one or more u.s. patents or u.s. patents pending. allegro microsystems, inc. reserves the right to make, from time to time, such departures from the detail specifications as may be required to permit improvements in the performance, reliability, or manufacturability of its products. before placing an order, the user is cautioned to verify that the information being relied upon is current. allegro products are not authorized for use as critical components in life-support devices or systems without express written approval. the information included herein is believed to be accurate and reliable. however, allegro microsystems, inc. assumes no responsibility for its use; nor for any infringement of patents or other rights of third parties which may result from its use.


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