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  AZ10LVEL11 az100lvel11 ecl/pecl 1:2 differential fanout buffer 1630 s. stapley dr., suite 127 ? mesa, arizona 85204 ? usa ? (480) 962-5881 ? fax (480) 890-2541 www.azmicrotek.com arizona microtek, inc. features ? 265ps propagation delay ? 5ps skew between outputs ? high bandwidth output transitions ? internal input pulldown resistors ? operating range of 3.0v to 5.5v ? direct replacement for on semi mc100lvel11, mc10el11 & mc100el11 ? transistor count = 51 description the az10/100lvel11 is a differential 1:2 fanout gate. the device is functionally similar to the e111 device but with higher performance capabilities. having within-d evice skews and output transition times significantly improved over the e111, the az10/100lvel11 is ideally suited for those applications that require the ultimate in ac performance. the differential inputs of the az10/ 100lvel11 employ clamping circuitry to maintain stability under open input conditions. if the inputs are left open, the q outputs will go low. note: specifications in the ecl/pecl tables are valid when thermal equilibrium is established. logic diagram and pinout assignment package availability package part number marking notes soic 8 AZ10LVEL11d azm10 lvel11 1,2 soic 8 az100lvel11d azm100 lvel11 1,2 soic 8 rohs compliant / lead (pb) free AZ10LVEL11d+ azm10+ lvel11 1,2 soic 8 rohs compliant / lead (pb) free az100lvel11d+ azm100+ lvel11 1,2 tssop 8 AZ10LVEL11t azt lv11 1,2 tssop 8 az100lvel11t azh lv11 1,2 tssop 8 rohs compliant / lead (pb) free az100lvel11t+ azh+ lv11 1,2 1 add r1 at end of part number for 7 inch (1k parts), r2 for 13 inch (2.5k parts) tape & reel. 2 date code ?yww? or ? yyww? on underside of part. pin description pin function d, d data inputs q0, q0 , q1, q1 data outputs v cc positive supply v ee negative supply 8 5 6 7 4 3 2 1 d q0 q0 q1 q1 d v ee v cc
AZ10LVEL11 az100lvel11 june 2007 * rev - 3 www.azmicrotek.com 2 absolute maximum ratings are those values beyond which device life may be impaired. symbol characteristic rating unit v cc pecl power supply (v ee = 0v) 0 to +8.0 vdc v i pecl input voltage (v ee = 0v) 0 to +6.0 vdc v ee ecl power supply (v cc = 0v) -8.0 to 0 vdc v i ecl input voltage (v cc = 0v) -6.0 to 0 vdc i out output current --- continuous --- surge 50 100 ma t a operating temperature range -40 to +85 c t stg storage temperature range -65 to +150 c 10k ecl dc characteristics (v ee = -3.0v to -5.5v, v cc = gnd) -40 c 0 c 25 c 85 c symbol characteristic min typ max min typ max min typ max min typ max unit v oh output high voltage 1 -1080 -890 -1020 -840 -980 -810 -910 -720 mv v ol output low voltage 1 -1950 -1650 -1950 -1630 -1950 -1630 -1950 -1595 mv v ih input high voltage -1230 -890 -1170 -840 -1130 -810 -1060 -720 mv v il input low voltage -1950 -1500 -1950 -1480 -1950 -1480 -1950 -1445 mv i il input low current -150 -150 -150 -150 a i ih input high current 150 150 150 150 a i ee power supply current 23 31 24 31 25 31 26 31 ma 1. each output is terminated through a 50 resistor to v cc ? 2v. 10k lvpecl dc characteristics (v ee = gnd, v cc = +3.3v) -40 c 0 c 25 c 85 c symbol characteristic min t yp max min t yp max min t yp max min t yp max unit v oh output high voltage 1,2 2220 2410 2280 2460 2320 2490 2390 2580 mv v ol output low voltage 1,2 1350 1650 1350 1670 1350 1670 1350 1705 mv v ih input high voltage 1 2070 2410 2130 2460 2170 2490 2240 2580 mv v il input low voltage 1 1350 1800 1350 1820 1350 1820 1350 1855 mv i il input low current -150 -150 -150 -150 a i ih input high current 150 150 150 150 a i ee power supply current 23 31 24 31 25 31 26 31 ma 1. for supply voltages other that 3.3v, use the ec l table values and add supply voltage value. 2. each output is terminated through a 50 resistor to v cc ? 2v. 10k pecl dc characteristics (v ee = gnd, v cc = +5.0v) -40 c 0 c 25 c 85 c symbol characteristic min t yp max min t yp max min t yp max min t yp max unit v oh output high voltage 1,2 3920 4110 3980 4160 4020 4190 4090 4280 mv v ol output low voltage 1,2 3050 3350 3050 3370 3050 3370 3050 3405 mv v ih input high voltage 1 3770 4110 3830 4160 3870 4190 3940 4280 mv v il input low voltage 1 3050 3500 3050 3520 3050 3520 3050 3555 mv i il input low current -150 -150 -150 -150 a i ih input high current 150 150 150 150 a i ee power supply current 23 31 24 31 25 31 26 31 ma 1. for supply voltages other that 5.0v, use the ec l table values and add supply voltage value. 2. each output is terminated through a 50 resistor to v cc ? 2v.
AZ10LVEL11 az100lvel11 june 2007 * rev - 3 www.azmicrotek.com 3 100k ecl dc characteristics (v ee = -3.0v to -5.5v, v cc = gnd) -40 c 0 c 25 c 85 c symbol characteristic min typ max min typ max min typ max min typ max unit v oh output high voltage 1 -1085 -1005 -880 -1025 -955 -880 -1025 -955 -880 -1025 -955 -880 mv v ol output low voltage 1 -1830 -1695 -1555 -1810 -1705 -1620 -1810 -1705 -1620 -1810 -1705 -1620 mv v ih input high voltage -1165 -880 -1165 -880 -1165 -880 -1165 -880 mv v il input low voltage -1810 -1475 -1810 -1475 -1810 -1475 -1810 -1475 mv i il input low current -150 -150 -150 -150 a i ih input high current 150 150 150 150 a i ee power supply current 22 31 23 31 24 31 28 34 ma 1. each output is terminated through a 50 resistor to v cc ? 2v. 100k lvpecl dc characteristics (v ee = gnd, v cc = +3.3v) -40 c 0 c 25 c 85 c symbol characteristic min t yp max min t yp max min t yp max min t yp max unit v oh output high voltage 1,2 2215 2295 2420 2275 2345 2420 2275 2345 2420 2275 2345 2420 mv v ol output low voltage 1,2 1470 1605 1745 1490 1595 1680 1490 1595 1680 1490 1595 1680 mv v ih input high voltage 1 2135 2420 2135 2420 2135 2420 2135 2420 mv v il input low voltage 1 1490 1825 1490 1825 1490 1825 1490 1825 mv i il input low current -150 -150 -150 -150 a i ih input high current 150 150 150 150 a i ee power supply current 22 31 23 31 24 31 28 34 ma 1. for supply voltages other that 3.3v, use the ec l table values and add supply voltage value. 2. each output is terminated through a 50 resistor to v cc ? 2v. 100k pecl dc characteristics (v ee = gnd, v cc = +5.0v) -40 c 0 c 25 c 85 c symbol characteristic min t yp max min t yp max min t yp max min t yp max unit v oh output high voltage 1,2 3915 3995 4120 3975 4045 4120 3975 4045 4120 3975 4045 4120 mv v ol output low voltage 1,2 3170 3305 3445 3190 3295 3380 3190 3295 3380 3190 3295 3380 mv v ih input high voltage 1 3835 4120 3835 4120 3835 4120 3835 4120 mv v il input low voltage 1 3190 3525 3190 3525 3190 3525 3190 3525 mv i il input low current -150 -150 -150 -150 a i ih input high current 150 150 150 150 a i ee power supply current 22 31 23 31 24 31 28 34 ma 1. for supply voltages other that 5.0v, use the ec l table values and add supply voltage value. 2. each output is terminated through a 50 resistor to v cc ? 2v. ac characteristics (v ee = -3.0v to -5.5v, v cc = gnd or v ee = gnd, v cc = +3.0v to +5.5v) -40 c 0 c 25 c 85 c symbol characteristic min typ max min typ max min typ max min typ max unit t plh / t phl propagation delay to output 135 260 335 185 260 335 190 265 340 215 310 365 ps t skew within-device skew 1 duty cycle skew 2 5 5 5 5 20 20 5 5 20 20 5 5 20 20 ps v pp (ac) minimum input swing 3 150 150 150 150 mv v cmr common mode range 4 v ee + 1.2 v cc - 0.2 v ee + 1.2 v cc - 0.2 v ee + 1.2 v cc - 0.2 v ee + 1.2 v cc - 0.2 v t r / t f rise/fall time 20 ? 80% 100 260 100 260 100 260 100 260 ps 1. within-device skew defined as identical tr ansitions on similar paths through a device. 2. duty cycle skew is the difference between a t plh and t phl propagation delay through a device. 3. v pp is the minimum peak-to-peak differential input swing for wh ich ac parameters guaranteed. the device has a dc gain of 40. 4. the v cmr range is referenced to the most positive side of the differential input signal. norm al operation is obtained if the high level falls within the specified range and the peak -to-peak voltage lies between v pp (min) and 1v.
AZ10LVEL11 az100lvel11 june 2007 * rev - 3 www.azmicrotek.com 4 fig. 1 typical output swing versus frequency for az100lvel11 0 100 200 300 400 500 600 700 800 0 200 400 600 800 1000 1200 1400 1600 1800 2000 frequency (mhz) vout pp (mv)
AZ10LVEL11 az100lvel11 june 2007 * rev - 3 www.azmicrotek.com 5 millimeters inches dim min max min max a 1.75 0.069 a 1 0.10 0.25 0.004 0.010 a 2 1.25 1.45 0.049 0.057 a 3 0.25 0.01 b p 0.36 0.49 0.014 0.019 c 0.19 0.25 0.0075 0.0100 d 4.8 5.0 0.19 0.20 e 3.8 4.0 0.15 0.16 e 1.27 0.050 h e 5.80 6.20 0.228 0.244 l 1.05 0.041 l p 0.40 1.00 0.016 0.039 q 0.60 0.70 0.024 0.028 v 0.25 0.01 w 0.25 0.01 y 0.10 0.004 z 0.30 0.70 0.012 0.028 0 o 8 o 0 o 8 o notes: 1. dimensions d and e do not include mold protrusion. 2. maximum mold protrusion for d is 0.15mm. 3. maximum mold protrusion for e is 0.25mm. package diagram soic 8
AZ10LVEL11 az100lvel11 june 2007 * rev - 3 www.azmicrotek.com 6 package diagram tssop 8 millimeters dim min max a 1.10 a 1 0.05 0.15 a 2 0.80 0.95 a 3 0.25 b p 0.25 0.45 c 0.15 0.28 d 2.90 3.10 e 2.90 3.10 e 0.65 h e 4.70 5.10 l 0.94 l p 0.40 0.70 v 0.10 w 0.10 y 0.10 z 0.35 0.70 0 o 6 o notes: 1. dimensions d and e do not include mold protrusion. 2. maximum mold protrusion for d is 0.15mm. 3. maximum mold protrusion for e is 0.25mm.
AZ10LVEL11 az100lvel11 june 2007 * rev - 3 www.azmicrotek.com 7 arizona microtek, inc. reserves the right to change circuitry a nd specifications at any time without prior notice. arizona mic rotek, inc. makes no warranty, representation or guarant ee regarding the suitability of its products for any particular purpose, nor does a rizona microtek, inc. assume any liability arising out of the applica tion or use of any product or ci rcuit and specifically disclaims any and all liability, including without limitation special, consequential or inci dental damages. arizona microtek, inc. does not convey a ny license rights nor the rights of others. arizona microtek, inc. products are not designed, intended or authorized for use as component s in systems intended to support or sustain life, or for any other application in which the fa ilure of the arizona microtek, inc. product could create a situation where personal injury or death may occur. should buye r purchase or use arizona microtek, inc. products for any such unintended or unauthorized application, buyer shall indemnify a nd hold arizona microtek, inc. a nd its officers, employees, subs idiaries, affiliates, and distribut ors harmless against all claims, costs, damages, and expenses, and reas onable attorney fees arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthori zed use, even if such claim al leges that arizona microtek, inc. was negligent regarding the design or manufacture of the part.


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