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  opa3690 sbos237a C march 2002 www.ti.com copyright ? 2002, texas instruments incorporated please be aware that an important notice concerning availability, standard warranty, and use in critical applications of texas instruments semiconductor products and disclaimers thereto appears at the end of this data sheet. triple, wideband, voltage-feedback operational amplifier with disable features  flexible supply range: +5v to +12v single supply 2.5v to 6v dual supply  wideband +5v operation: 220mhz (g = +2)  high output current: 190ma  output voltage swing: 4.0v  high slew rate: 1800v/ s  low supply current: 5.5ma/ch  low disabled current: 100 a/ch applications  video line driving  high-speed imaging channels  adc buffers  portable instruments  transimpedance amplifiers  active filters description the opa3690 represents a major step forward in unity-gain stable, voltage-feedback op amps. a new internal architec- ture provides slew rate and full power bandwidth previously found only in wideband current-feedback op amps. a new output stage architecture delivers high currents with a mini- mal headroom requirement. these give exceptional single- supply operation. using a single +5v supply, the opa3690 can deliver a 1v to 4v output swing with over 100ma drive current and 150mhz bandwidth. this combination of fea- tures makes the opa3690 an ideal rgb line driver or single- supply analog-to-digital converter (adc) input driver. the opa3690s low 5.5ma/ch supply current is precisely trimmed at 25 c. this trim, along with low temperature drift, ensures lower maximum supply current than competing products. system power may be reduced further using the optional disable control pin. leaving this disable pin open, or holding it high, will operate the opa3690 normal. if pulled low, the opa3690 supply current drops to less than 100 a/ch while the output goes into a high impedance state. this feature may be used for power savings. opa3690 related products singles duals triples voltage feedback opa690 opa2690 opa3680 current feedback opa691 opa2691 opa3691 fixed gain opa692 opa2682 opa3692 o p a 3 6 9 0 opa3690 1/3 opa3690 1/3 opa3690 v in v out 49.9 ? 49.9 ? r 75.0 ? 49.9 ? 49.9 ? r 75.0 ? 249 ? 249 ? 249 ? 1pf c 330pf c 330pf 1/3 opa3690 249 ? 1pf buffered analog delay line production data information is current as of publication date. products conform to specifications per the terms of texas instruments standard warranty. production processing does not necessarily include testing of all parameters.
opa3690 2 sbos237a www.ti.com absolute maximum ratings (1) power supply .............................................................................. 6.5vdc internal power dissipation ................................ see thermal information differential input voltage .................................................................. 1.2v input voltage range ............................................................................ v s storage temperature range: d, dbq ........................... C 40 c to +125 c lead temperature (soldering, 10s) .............................................. +300 c junction temperature (t j ) ........................................................... +175 c esd resistance: hbm ........................................................................ 2kv mm ........................................................................ 200v note: (1) stresses above these ratings may cause permanent damage. exposure to absolute maximum conditions for extended periods may degrade device reliability. these are stress ratings only, and functional operation of the device at these or any other conditions beyond those specified is not implied. electrostatic discharge sensitivity this integrated circuit can be damaged by esd. texas instru- ments recommends that all integrated circuits be handled with appropriate precautions. failure to observe proper handling and installation procedures can cause damage. esd damage can range from subtle performance degrada- tion to complete device failure. precision integrated circuits may be more susceptible to damage because very small parametric changes could cause the device not to meet its published specifications. specified package temperature package ordering transport product package-lead designator (1) range marking number media opa3690idbq ssop-16 surface-mount dbq C 40 c to +85 c opa3690 opa3690idbqt tape and reel, 250 "" """ OPA3690IDBQR tape and reel, 2.5k opa3690id so-16 surface-mount d C 40 c to +85 c opa3690 opa3690id rails, 48 "" """ opa3690idr tape and reel, 2.5k note: (1) for the most current specifications and package information, refer to our web site at www.ti.com. package/ordering information pin configuration top view ssop, so 1 2 3 4 5 6 7 8 16 15 14 13 12 11 10 9 C in a +in a dis b C in b +in b dis c C in c +in c dis a +v s out a C v s out b +v s out c C v s opa3690
opa3690 3 sbos237a www.ti.com electrical characteristics: v s = 5v boldface limits are tested at 25 c. r f = 402 ? , r l = 100 ?, g = +2, (see figure 1 for ac performance only), and r f = 25 ? for g = +1, unless otherwise noted. opa3690id, idbq typ min/max over temperature 0 c to C 40 c to min/ test parameter conditions +25 c +25 c (1) 70 c (2) +85 c (2) units max level (3) ac performance (see figure 1) small-signal bandwidth g = +1, v o = 0.5vp-p, r f = 25 ? 400 mhz typ c g = +2, v o = 0.5vp-p 220 mhz min c g = +10, v o = 0.5vp-p 30 mhz min c gain bandwidth product g 10 300 mhz min c bandwidth for 0.1db gain flatness g = +2, v o < 0.5vp-p 30 mhz typ c peaking at a gain of +1 v o < 0.5vp-p 4 db typ c large-signal bandwidth g = +2, v o = 5vp-p 175 mhz typ c slew rate g = +2, 4v step 1800 v/ sminc rise-and-fall time g = +2, v o = 0.5v step 1.4 ns max c g = +2, v o = 4v step 2.8 ns max c settling time to 0.02% g = +2, v o = 2v step 12 ns typ c 0.1% g = +2, v o = 2v step 8 ns typ c harmonic distortion g = +2, f = 5mhz, v o = 2vp-p 2nd harmonic r l = 100 ? C 72 dbc typ c r l 500 ? C 83 dbc typ c 3rd harmonic r l = 100 ? C 74 dbc typ c r l 500 ? C 85 dbc typ c crosstalk input referred, f = 5mhz, all hostile C 58 dbc typ c input voltage noise f > 1mhz 4.5 nv/ hz max c input current noise f > 1mhz 2.3 pa/ hz max c differential gain g = +2, ntsc, v o = 1.4vp, r l = 150 0.06 % typ c differential phase g = +2, ntsc, v o = 1.4vp, r l = 150 0.01 deg typ c dc performance (4) open-loop voltage gain (a ol )v ol = 0v, r l = 100 ? 65 58 56 54 db min a input offset voltage v cm = 0v 1.0 4.5 5 5.2 mv max a average offset voltage drift v cm = 0v 12 12 v/ cmax b input bias current v cm = 0v +5 10 11 12 amaxa average bias current drift (magnitude) v cm = 0v 20 40 na/ cmax b input offset current v cm = 0v 0.1 1.0 1.4 1.6 amaxa average offset current drift v cm = 0v 7 9na cmaxb input common-mode input range (cmir) (5) 3.5 3.4 3.3 3.2 v min a common-mode rejection ratio (cmrr) v cm = 1.0v 65 60 57 56 db min a input impedance differential mode 190 || 0.6 k ? || pf typ c common mode 3.2 || 0.9 m ? || pf typ c output voltage output swing no load 4.0 3.8 3.7 3.6 v min a 100 ? load 3.9 3.7 3.6 3.3 v min a current output, sourcing v o = 0 +190 +160 +140 +100 ma min a sinking v o = 0 C 190 C 160 C 140 C 100 ma min a short-circuit current v o = 0 250 ma typ c closed-loop output impedance g = +2, f = 100khz 0.03 typ c
opa3690 4 sbos237a www.ti.com electrical characteristics: v s = 5v (cont.) boldface limits are tested at 25 c. r f = 402 ? , r l = 100 ?, g = +2, (see figure 1 for ac performance only), and r f = 25 ? for g = +1, unless otherwise noted. opa3690id, idbq typ min/max over temperature (1) 0 c to C 40 c to min/ test parameter conditions +25 c +25 c70 c +85 c units max level (2 ) disable disable low power-down supply current (+v s )v dis = 0v, all channels C 300 C 600 C 720 C 780 amaxa disable time 200 ns typ c enable time 25 ns typ c off isolation g = +2, 5mhz 70 db typ c output capacitance in disable 4 pf typ c turn on glitch g = +2, r l = 150 ? , v in = 0 50 mv typ c turn off glitch g = +2, r l = 150 ? , v in = 0 20 mv typ c enable voltage 3.3 3.5 3.6 3.7 v min a disable voltage 1.8 1.7 1.6 1.5 v max a control pin input bias current v dis = 0v, each channel 75 130 150 160 amaxa power supply specified operating voltage 5 v typ c maximum operating voltage range 6 6 6vmaxa max quiescent current (3 channels) v s = 5v 16.5 17.4 18 18.6 ma max a min quiescent current (3 channels) v s = 5v 16.5 15.9 15.3 14.1 ma min a power-supply rejection ratio (+psrr) input referred 75 68 66 64 db min a thermal characteristics specified operating range d, dbq package C 40 to +85 c typ c thermal resistance, ja d so-16 100 c/w typ c dbq ssop-16 100 c/w typ c notes: (1) junction temperature = ambient for 25 c specifications. (2) junction temperature = ambient at low temperature limit: junction temperature = ambient +20 c at high temperature limit for over temperature specifications. (3) test levels: (a) 100% tested at 25 c. over temperature limits by characterization and simulation. (b) limits set by characterization and simulation. (c) typical value only for information. (4) current is considere d positive out-of-node. v cm is the input common-mode voltage. (5) tested < 3db below minimum cmrr specification at cmir limits.
opa3690 5 sbos237a www.ti.com electrical characteristics: v s = +5v boldface limits are tested at 25 c. r f = 402 ? , r l = 100 ? to v s /2 , g = +2, (see figure 2 for ac performance only), and r f = 25 ? for g = +1, unless otherwise noted. opa3690id, idbq typ min/max over temperature 0 c to C 40 c to min/ test parameter conditions +25 c +25 c (1) 70 c (2) +85 c (2) units max level (3) ac performance (see figure 2) small-signal bandwidth g = +1, v o < 0.5vp-p 330 mhz typ c g = +2, v o < 0.5vp-p 220 mhz min c g = +10, v o < 0.5vp-p 25 mhz min c gain bandwidth product g 10 250 mhz min c bandwidth for 0.1db gain flatness g = +2, v o < 0.5vp-p 20 mhz typ c peaking at a gain of +1 v o < 0.5vp-p 5 db typ c large-signal bandwidth g = +2, v o = 2vp-p 175 mhz typ c slew rate g = +2, 2v step 1000 v/ sminc rise time g = +2, v o = 0.5v step 1.6 ns typ c fall time g = +2, v o = 2v step 2.0 ns typ c settling time to 0.02% g = +2, v o = 2v step 12 ns typ c 0.1% g = +2, v o = 2v step 8 ns typ c harmonic distortion g = +2, f = 5mhz, v o = 2vp-p 2nd harmonic r l = 100 ? C 71 dbc typ c r l 500 ? C 79 dbc typ c 3rd harmonic r l = 100 ? C 72 dbc typ c r l 500 ? C 77 dbc typ c input voltage noise f > 1mhz 4.7 nv/ hz max c input current noise f > 1mhz 2.5 pa/ hz max c differential gain g = +2, ntsc, v o = 1.4vp, r l = 150 to v s /2 0.06 % typ c differential phase g = +2, ntsc, v o = 1.4vp, r l = 150 to v s /2 0.02 deg typ c dc performance (4) open-loop voltage gain (a ol )v o = 0v, r l = 100 ? 63 56 54 52 db min a input offset voltage v cm = 2.5v 1.0 4.5 4.8 5.2 mv max a average offset voltage drift v cm = 2.5v 10 10 v/ cmax b input bias current v cm = 2.5v +5 10 11 12 amaxa average bias current drift (magnitude) v cm = 2.5v 20 40 na/ cmax b input offset current v cm = 2.5v 0.3 1 1.4 1.6 amaxa average offset current drift v cm = 2.5v 7 9na/ cmax b input least positive input voltage (5) 1.5 1.6 1.7 1.8 v min a most positive input voltage (5) 3.5 3.4 3.3 3.2 v max a common-mode rejection ratio (cmrr) v cm = 2.5v 63 58 56 54 db min a input impedance differential mode 92 || 1.4 k ? || pf typ c common mode 2.2 || 1.5 m ? || pf typ c output most positive output voltage no load 4 3.8 3.6 3.5 v min a r l = 100 ? , 2.5v 3.9 3.7 3.5 3.4 v min a least positive output voltage no load 1 1.2 1.4 1.5 v min a r l = 100 ? , 2.5v 1.1 1.3 1.5 1.7 v min a current output, sourcing +160 +120 +100 +80 ma min a sinking C 160 C 120 C 100 C 80 ma min a short-circuit current v o = v s /2 250 ma typ c closed-loop output impedance g = +2, f = 100khz 0.03 typ c
opa3690 6 sbos237a www.ti.com electrical characteristics: v s = +5v (cont.) boldface limits are tested at 25 c. r f = 250 ? , r l = 100 ? to v s /2 , g = +2, (see figure 2 for ac performance only), and r f = 25 ? for g = +1, unless otherwise noted. opa3690id, idbq typ min/max over temperature (1) 0 c to C 40 c to min/ test parameter conditions +25 c +25 c70 c +85 c units max level (2 ) notes: (1) junction temperature = ambient for 25 c specifications. (2) junction temperature = ambient at low temperature limit: junction temperature = ambient +20 c at high temperature limit for over temperature specifications. (3) test levels: (a) 100% tested at 25 c. over temperature limits by characterization and simulation. (b) limits set by characterization and simulation. (c) typical value only for information. (4) current is considere d positive out-of-node. v cm is the input common-mode voltage. (5) tested < 3db below minimum cmrr specification at cmir limits. disable disable low power-down supply current (+v s )v dis = 0v, all channels C 300 C 600 C 720 C 780 amaxa disable time 200 ns typ c enable time 25 ns typ c off isolation g = +2, 5mhz 65 db typ c output capacitance in disable 4 pf typ c turn on glitch g = +2, r l = 150 ? , v in = v s /2 50 mv typ c turn off glitch g = +2, r lp = 150 ? , v in = v s /2 20 mv typ c enable voltage 3.3 3.5 3.6 3.7 v min a disable voltage 1.8 1.7 1.6 1.5 v max a control pin input bias current v dis = 0v, each channel 75 130 150 160 a typ c power supply specified single-supply operating voltage 5 v typ c maximum single-supply operating voltage 12 12 12 v max a max quiescent current (3 channels) v s = +5v 14.7 15.6 16.2 16.8 ma max a min quiescent current (3 channels) v s = +5v 14.7 14.1 13.2 12.0 ma min a power-supply rejection ratio (+psrr) input referred 72 db typ c temperature range specification: d, dbq C 40 to +85 c typ c thermal resistance, ja d so-16 100 c/w typ c dbq ssop-16 100 c/w typ c
opa3690 7 sbos237a www.ti.com package drawings msoi004d C january 1995 C revised october 2000 dbq (r-pdso-g**) plastic small-outline gage plane 0.008 (0,20) nom 0.010 (0,25) 0.016 (0,40) 0.035 (0,89) 24 20 seating plane (8,74) (8,56) 0.337 0.337 (8,56) (8,74) 0.344 0.344 4073301/e 10/00 13 0.150 (3,81) 0.157 (3,99) 0.012 (0,30) 0.008 (0,20) 12 a 24 pins shown 1 24 16 dim pins ** a min a max 0.004 (0,10) 0.010 (0,25) 0.069 (1,75) max 0.244 (6,20) 0.228 (5,80) 0.197 (5,00) (4,78) 0.188 0.004 (0,10) m 0.005 (0,13) 0.025 (0,64) 0 C 8 28 (10,01) (9,80) 0.386 0.394 notes: a. all linear dimensions are in inches (millimeters). b. this drawing is subject to change without notice. c. body dimensions do not include mold flash or protrusion not to exceed 0.006 (0,15). d. falls within jedec mo-137
opa3690 8 sbos237a www.ti.com package drawings (cont.) msoi002b C january 1995 C revised september 2001 d (r-pdso-g**) plastic small-outline package 8 pins shown 8 0.197 (5,00) a max a min (4,80) 0.189 0.337 (8,55) (8,75) 0.344 14 0.386 (9,80) (10,00) 0.394 16 dim pins ** 4040047/e 09/01 0.069 (1,75) max seating plane 0.004 (0,10) 0.010 (0,25) 0.010 (0,25) 0.016 (0,40) 0.044 (1,12) 0.244 (6,20) 0.228 (5,80) 0.020 (0,51) 0.014 (0,35) 1 4 8 5 0.150 (3,81) 0.157 (4,00) 0.008 (0,20) nom 0 C 8 gage plane a 0.004 (0,10) 0.010 (0,25) 0.050 (1,27) notes: a. all linear dimensions are in inches (millimeters). b. this drawing is subject to change without notice. c. body dimensions do not include mold flash or protrusion, not to exceed 0.006 (0,15). d. falls within jedec ms-012
important notice texas instruments incorporated and its subsidiaries (ti) reserve the right to make corrections, modifications, enhancements, improvements, and other changes to its products and services at any time and to discontinue any product or service without notice. customers should obtain the latest relevant information before placing orders and should verify that such information is current and complete. all products are sold subject to ti?s terms and conditions of sale supplied at the time of order acknowledgment. ti warrants performance of its hardware products to the specifications applicable at the time of sale in accordance with ti?s standard warranty. testing and other quality control techniques are used to the extent ti deems necessary to support this warranty. except where mandated by government requirements, testing of all parameters of each product is not necessarily performed. ti assumes no liability for applications assistance or customer product design. customers are responsible for their products and applications using ti components. to minimize the risks associated with customer products and applications, customers should provide adequate design and operating safeguards. ti does not warrant or represent that any license, either express or implied, is granted under any ti patent right, copyright, mask work right, or other ti intellectual property right relating to any combination, machine, or process in which ti products or services are used. information published by ti regarding third?party products or services does not constitute a license from ti to use such products or services or a warranty or endorsement thereof. use of such information may require a license from a third party under the patents or other intellectual property of the third party, or a license from ti under the patents or other intellectual property of ti. reproduction of information in ti data books or data sheets is permissible only if reproduction is without alteration and is accompanied by all associated warranties, conditions, limitations, and notices. reproduction of this information with alteration is an unfair and deceptive business practice. ti is not responsible or liable for such altered documentation. resale of ti products or services with statements different from or beyond the parameters stated by ti for that product or service voids all express and any implied warranties for the associated ti product or service and is an unfair and deceptive business practice. ti is not responsible or liable for any such statements. mailing address: texas instruments post office box 655303 dallas, texas 75265 copyright ? 2002, texas instruments incorporated


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