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  max9650/max9651 high-current vcom drive op amps for tft lcds for pricing, delivery, and ordering information, please contact maxim direct at 1-888-629-4642, or visit maxim integrated? website at www.maximintegrated.com. general description the max9650/max9651 are single- and dual-channelvcom amplifiers with rail-to-rail inputs and outputs. the max9650/max9651 can drive up to 1300ma of peak current per channel and operate up to 20v. the max9650/max9651 are designed to source and sink a high current quickly to hold the vcom voltage stable in large tft-lcd panels. the max9650/max9651 feature 40v/? slew rate and 35mhz bandwidth to quickly settle outputs for 120hz frame rate and full hd television. the max9650/max9651 feature output short-circuit protection and thermal shutdown. these devices are available in exposed pad packages for excellent heat dissipation. applications tft-lcd panelsinstrument control voltage sources features ? 1300ma peak output current ? rail-to-rail inputs and outputs ? operates up to 20v ? 40v/ s slew rate ? 35mhz bandwidth ? 5ma quiescent current per channel ? excellent heat dissipation (exposed pad) 19-4187; rev 5; 11/12 in_+ in_- gnd out_ v dd tft lcd tft-lcd capacitance 16v v ref *r s may be needed for some applications. *r s max9650 typical operating circuit ordering information part amps per package pin- package top mark max9650 azk+ 1 5 sot23 adsi max9650azk/v+ 1 5 sot23 adsk max9650aua+ 1 8 ?ax-ep* aabi max9650ata+ 1 8 tdfn-ep* bkx max9651 aua+ 2 8 ?ax-ep* aabh max9651ata+ 2 8 tdfn-ep* bky note: all devices are specified over the -40? to +125? oper- ating range. + denotes a lead(pb)-free/rohs-compliant package. /v denotes an automotive qualified part. * ep = exposed pad. downloaded from: http:///
high-current vcom drive op amps for tft lcds 2 maxim integrated max9650/max9651 absolute maximum ratingselectrical characteristics (v dd = 19v, v gnd = 0v, v cm = v out = v dd /2, t a = t min to t max , unless otherwise noted. typical values are at t a = +25?.) (note 1) stresses beyond those listed under ?bsolute maximum ratings?may cause permanent damage to the device. these are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. exposure to absolute maximum rating conditions for extended periods may affect device reliability. supply voltage (v dd to gnd) ................................-0.3v to +22v any other pin to gnd ................................-0.3v to (v dd + 0.3v) in_+/in_- (current)............................................................?0ma out_ (current) ......................................................................1.3a continuous power dissipation (t a = +70?) sot23 (derate 3.7mw/? above +70?) .................297.4mw ?ax-ep (derate 12.9mw/? above +70?).......................................................1030.9mw tdfn-ep (derate 23.8mw/? above +70?).......................................................1951.2mw operating temperature range .........................-40? to +125? junction temperature ......................................................+150? storage temperature range .............................-65? to +150? lead temperature (soldering, 10s) .................................+300? soldering temperature (reflow) .......................................+260? parameter symbol conditions min typ max units supply voltage range v dd guaranteed by psrr 6 20 v quiescent current i dd per channel 3.7 8 ma high output voltage v oh i h = +5ma, v in = v dd v dd - 0.30 v dd - 0.05 v low output voltage v ol i l = -5ma, v in = 0v 0.05 0.30 v t a = +25? -14 3.5 +14 input offset voltage v os t a = -40? to +125? -17 +17 mv i out = 0ma to -80ma +0.2 load regulation lr i out = 0ma to +80ma -0.2 mv/ma input bias current i fb at v in = 9.5v 0.01 1 a voltage gain a v r l = 10k , c l = 50pf 0.99 1.01 v/v power-supply rejection ratio psrr v dd = 6v to 20v, v cm = v out = 3v 70 95 db common-mode input voltagerange cmvr inferred from cmrr test 0.5 v dd - 0.5 v common-mode rejection ratio cmrr 0.5v v cm v dd - 0.5v 60 80 db max9650azk+ 20 v out = 9.5v (note 2) max9650aua+ 80 continuous output current i o v dd = 15v, v out = 7.5v max9650ata+ ?50 ma transient peak output current i pk (note 3) ?.3 a bandwidth bw -3db 35 mhz slew rate sr 4v step, c l = 50pf, r l = 10k , a v = +1v/v 40 v/? settling time t s settling to 0.1% of v out , i l = 0 to 1000ma, r s = 2.2 , c s = 0.1? (figure 1) 2.0 ? downloaded from: http:///
high-current vcom drive op amps for tft lcds maxim integrated 3 max9650/max9651 electrical characteristics (continued)(v dd = 19v, v gnd = 0v, v cm = v out = v dd /2, t a = t min to t max , unless otherwise noted. typical values are at t a = +25?.) (note 1) note 1: all devices are 100% production tested at t a = +25?. all temperature limits are guaranteed by design. note 2: continuous output current is tested with one output at a time. note 3: see the thermal shutdown with temperature hysteresis section. note 4: a series resistor can extend load capacitance range. the settling time can be optimized by a small series resistance. seethe applications information section for more information. note 5: inputs are protected by back-to-back diodes. parameter symbol conditions min typ max units maximum load capacitance c load (note 4) 150 nf noninverting input resistance r in+ (note 5) 100 m inverting input resistance r in- (note 5) 100 m input capacitance c in 3p f thermal shutdown +170 ? thermal shutdown hysteresis 15 ? typical operating characteristics (v dd = 19v, gnd = 0, v cm = v out = v dd /2, t a = +25?, unless otherwise specified.) -4 -2-3 -1 2 31 0 4 6 9 12 15 18 21 input offset voltage deviation vs. supply voltage max9650 toc01 supply voltage (v) input offset voltage (mv) t a = +125 c t a = +25 c t a = -40 c 0 21 43 76 5 8 -50 0 -25 25 50 75 100 125 input offset voltage deviation vs. temperature max9650 toc02 temperature ( c) input offset voltage (mv) i out (500ma/div) v out (125mv/div) load transient sourcing max9650 toc05 time (1 s/div) 0.1a response 1a response 0.5a response downloaded from: http:///
typical operating characteristics (continued) (v dd = 19v, gnd = 0, v cm = v out = v dd /2, t a = +25?, unless otherwise specified.) 0 21 43 76 5 8 -50 0 -25 25 50 75 100 125 supply current vs. temperature max9650 toc04 temperature ( c) supply current (ma) i out (500ma/div) v out (125mv/div) load transient sourcing max9650 toc05 time (1 s/div) 0.1a response 1a response 0.5a response i out (500ma/div) v out (125mv/div) load transient sinking max9650 toc06 time (1 s/div) 0.1a response 1a response 0.5a response 100ms/div startup waveform i dd 10ma/divv dd 10v/divv in 5v/divv out 5v/div max9650 toc07 2 s/div max9650 step response with various c l v out 5v/divv out 5v/divv out 5v/divv out 5v/div max9650 toc08 c l = 10pf c l = 2200pf c l = 0.01 f c l = 0.022 f open-loop gain and phase vs. frequency max9650 toc09 frequency (hz) gain (db) 10e+6 1e+6 10e+3 100e+3 1e+3 100e+0 -60 -40 -20 0 20 40 60 80 100 120 -80 10e+0 100e+6 gain phase c l = 100pf -180 -120 -60 0 60 120 180 240 300 360-240 phase (deg) closed-loop small-signal frequency response for various c l max9650 toc10 frequency (mhz) voltage gain (db) 10 1 0.1 -10 -5 0 5 10 15 20 -15 0.01 100 c l = 0.1 f c l = 0.01 f c l = 100pf c l = 56pf c l = 10pf c l = 560pf c l = 0.001 f c l = 0.0022 f high-current vcom drive op amps for tft lcds 4 maxim integrated max9650/max9651 small-signal gain vs. frequency max9650 toc11 frequency (hz) gain (db) 10e+6 1e+6 -6 -5 -4 -3 -2 -1 0 1 2 3 -7 100e+3 100e+6 v out = 100mv p-p r l = 10k to v dd /2 small-signal gain vs. frequency with various c l max9650 toc12 frequency (hz) gain (db) 10e+6 1e+6 -20 -15 -10 -5 0 5 10 15 20 -25 100e+3 100e+6 10,000pf 1000pf 100pf 10pf v out = 100mv p-p r l = 10k to v dd /2 downloaded from: http:///
detailed description the max9650/max9651 operational rail-to-railinput/output amplifiers hold the vcom voltage stable while providing the ability to source and sink a high cur- rent quickly (1.3a) into a capacitive load such as the backplane of a tft-lcd panel. thermal shutdown with temperature hysteresis the max9650/max9651 are capable of high outputcurrents and feature thermal-shutdown protection with temperature hysteresis. when the die temperature reaches +170?, the device shuts down. when the die cools down by 15?, the device turns on again. in a tft-lcd application, the duty cycle is very low. even with high values of voltage and current, the power dissi- pation is low and the chip does not shut down. high-current vcom drive op amps for tft lcds maxim integrated 5 max9650/max9651 pin description pin max9650 sot23 ?ax-ep, tdfn-ep max9651 (?ax-ep, tdfn-ep) name function 16 1 outa vcom output a 24 4 gnd ground 33 3 ina+ positive input a 42 2 ina- negative input a 57 8v dd positive-supply input. bypass v dd to gnd with a 0.1? capacitor as close as possible to the device. 5 inb+ positive input b 6 inb- negative input b 7 outb vcom output b 1, 5, 8 n.c. no connection. not internally connected. ? p exposed pad ( max and tdfn only). ep is internally connected to gnd. connect ep to gnd. in_+ in_- gnd out_ v dd lcd vcom load 19v supply v ref *10 f and 0.1 f capacitors as close as possible to the pin. **(r s = r gen ) x c lcd x 6 < 2 s, where r gen = generator source impedance. max9650 *c2 = 0.1 f *c1 = 10 f 19v supply v out_ c lcd = 0.1 f r s = 2.2 **0v to 2.2v at 50khz figure 1. settling time test circuit downloaded from: http:///
high-current vcom drive op amps for tft lcds 6 maxim integrated max9650/max9651 applications information output load the max9650/max9651 are designed to drive capaci-tive loads. a small value of series resistance improves the performance of the device to ensure stability and fast settling with very large or very small capacitive loads. in many cases, this resistance is already present due to connection resistance in the wiring and no addi- tional physical resistor is necessary. for minimum series resistance required for stability with capacitive loading, see figure 2. power supplies and bypass capacitors the max9650/max9651 operate from a 6v to 20v sin-gle supply or from ?.5v to ?0v dual supplies. proper supply bypassing ensures stability while driving high transient loads. the max9650/max9651 require a mini- mum 10? (c1) and 0.1? (c2) power-supply bypass capacitors placed as close as possible to the power- supply pin (v dd ). see figure 3. for dual-supply opera- tion, use 10? and 0.1? bypass capacitors on both supplies (v dd and gnd) with each capacitor placed as close as possible to v dd and gnd. layout and grounding the exposed pad on the ?ax and tdfn packages provide a low thermal resistance for heat dissipation.solder the exposed pad to a ground plane for best thermal performance. do not route traces under these packages. for dual-supply operation, the exposed pad (ep) can be electrically connected to the negative sup- ply or it can be left unconnected. in_+ in_- gnd out_ v dd tft lcd tft-lcd capacitance 16v supply v ref *10 f and 0.1 f capacitors as close as possible to the pin. **r s may be needed for some applications. **r s max9650 *c2 = 0.1 f *c1 = 10 f 19v supply figure 3. typical tft-lcd backplane drive circuit capacitance (f) unstable stable resistance ( ) 10 -5 10 -6 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0 0 10 -7 10 -4 figure 2. minimum combined esr/series/trace resistance required for stability of the max9650 in response to capacitive loads chip information process: bicmos ?ax is a registered trademark of maxim integrated products, inc. downloaded from: http:///
high-current vcom drive op amps for tft lcds maxim integrated 7 max9650/max9651 gnd ina- ina+ 1 5v dd outa max9650 thin sot23 234 outa n.c. gnd 12 8 7 n.c. v dd ina- ina+ n.c. max-ep (tdfn-ep) max-ep (tdfn-ep) 3 4 6 5 max9650 inb- inb+ gnd 12 8 7 v dd outb ina- ina+ outa 3 4 6 5 max9651 + + + pin configurations downloaded from: http:///
high-current vcom drive op amps for tft lcds 8 maxim integrated max9650/max9651 package information for the latest package outline information and land patterns (footprints), go to www.maximintegrated.com/packages . note that a ?? ?? or ??in the package code indicates rohs status only. package drawings may show a different suffix character, but the drawing pertains to the package regardless of rohs status. package type package code outline no. land pattern no. 5 sot23 z5+2 21-0113 90-0241 8 ?ax u8e+2 21-0107 90-0145 8 tdfn-ep t833+2 21-0137 90-0059 downloaded from: http:///
high-current vcom drive op amps for tft lcds maxim integrated 9 max9650/max9651 package information (continued) for the latest package outline information and land patterns (footprints), go to www.maximintegrated.com/packages . note that a ?? ?? or ??in the package code indicates rohs status only. package drawings may show a different suffix character, but the drawing pertains to the package regardless of rohs status. downloaded from: http:///
high-current vcom drive op amps for tft lcds 10 maxim integrated max9650/max9651 package information (continued) for the latest package outline information and land patterns (footprints), go to www.maximintegrated.com/packages . note that a ?? ?? or ??in the package code indicates rohs status only. package drawings may show a different suffix character, but the drawing pertains to the package regardless of rohs status. downloaded from: http:///
high-current vcom drive op amps for tft lcds maxim integrated 11 max9650/max9651 package information (continued) for the latest package outline information and land patterns (footprints), go to www.maximintegrated.com/packages . note that a ?? ?? or ??in the package code indicates rohs status only. package drawings may show a different suffix character, but the drawing pertains to the package regardless of rohs status. downloaded from: http:///
high-current vcom drive op amps for tft lcds 12 maxim integrated max9650/max9651 common dimensions symbol min. max. a 0.70 0.80 d 2.90 3.10 e 2.90 3.10 a1 0.00 0.05 l 0.20 0.40 pkg. code n d2 e2 e jedec spec b [(n/2)-1] x e package variations 0.25 min. k a2 0.20 ref. 2.00 ref 0.250.05 0.50 bsc 2.300.10 10 t1033-1 2.40 ref 0.200.05 - - - - 0.40 bsc 1.700.10 2.300.10 14 t1433-1 1.500.10 mo229 / weed-3 0.40 bsc - - - - 0.200.05 2.40 ref t1433-2 14 2.300.10 1.700.10 t633-2 6 1.500.10 2.300.10 0.95 bsc mo229 / weea 0.400.05 1.90 ref t833-2 8 1.500.10 2.300.10 0.65 bsc mo229 / weec 0.300.05 1.95 ref t833-3 8 1.500.10 2.300.10 0.65 bsc mo229 / weec 0.300.05 1.95 ref 2.300.10 mo229 / weed-3 2.00 ref 0.250.05 0.50 bsc 1.500.10 10 t1033-2 0.250.05 2.00 ref 10 0.50 bsc mo229 / weed-3 2.300.10 1.500.10 t1033mk-1 0.40 bsc - - - - 0.200.05 2.40 ref t1433-3f 14 2.300.10 1.700.10 package information (continued) for the latest package outline information and land patterns (footprints), go to www.maximintegrated.com/packages . note that a ?? ?? or ??in the package code indicates rohs status only. package drawings may show a different suffix character, but the drawing pertains to the package regardless of rohs status. downloaded from: http:///
3.3v spread-spectrum econoscillator ds1086l maxim integrated cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a maxim integrated product. no circuit patent licenses are implied. maxim integrated reserves the right to change the circuitry and specifications without notice at any time. the parametric values (min and max limits) shown in the electrical characteristics table are guaranteed. other parametric values quoted in this data sheet are provided for guidance. maxim integrated 160 rio robles, san jose, ca 95134 usa 1-408-601-1000 13 2012 maxim integrated products, inc. maxim integrated and the maxim integrated logo are trademarks of maxim integrated products, inc. revision history revision number revision date description pages changed 0 7/08 initial release 1 10/08 updated slew rate and added tdfn-ep package 1, 2, 6, 10, 11 2 5/09 updated continuous output current specification 2 3 2/10 added automotive part to ordering informaion , corrected units for input offset voltage, and added figure for minimum series resistance 1, 2, 5, 6 4 7/10 removed extraneous information in the electrical characteristics table and corrected typo in toc 5 2, 4 5 11/12 corrected lead pattern number 8 downloaded from: http:///


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