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  sgm8051/2/3/4/5 250mhz, rail-to-rail output cmos operational amplifiers product description the sgm8051/3 (single), sgm8052/5 (dual) and sgm8054 (quad) are rail-to-rail output voltage feedback amplifiers offering ease of use and low cost. they have bandwidth and slew rate typically found in current feedback amplifiers. all have a wide input common mode voltage range and output voltage swing, making them easy to use on single supplies as low as 2.5v. despite being low cost, the sgm8051 series provide excellent overall performance. they offer wide bandwidth to 250mhz (g = +1) along with 0.1db flatness out to 37mhz (g = +2) and offer a typical low power of 2.3ma/amplifier. the sgm8051 series is low distortion and fast settling make it ideal for buffering high speed a/d or d/a converters. the sgm8053/5 has a power-down disable feature that reduces the supply current to 75 a. these features make the sgm8053/5 ideal for portable and battery-powered applications where size and power are critical. all are specified over the extended -40 to +125 temperature range. applications imaging photodiode preamp professional video and cameras hand sets dvd/cd base stations filters a-to-d driver features ? low cost ? rail-to-rail output 2mv typical v os ? high speed 250mhz, -3db bandwidth (g = +1) 130v/ s, slew rate 58ns settling time to 0.1% with 2v step ? supply voltage range: 2.5v to 5.5v ? input voltage range: -0.2v to +3.8v with v s = 5v ? excellent video specs (r l = 150 ? , g = +2) gain flatness 0.1db to 37mhz diff gain: 0.03%, diff phase: 0.08 degree ? low supply current 2.3ma/amplifier (typ) 75 a shutdown current for sgm8053/5 ? small packaging sgm8051 available in sot-23-5 and soic-8 sgm8052 available in msop-8 and soic-8 sgm8053 available in sot-23-6 and soic-8 sgm8054 available in tssop-14 and soic-14 sgm8055 available in msop-10 small signal frequency response -15 -12 -9 -6 -3 0 3 1 10 100 1000 frequency (mhz) normalized gain (db) v o = 0.1v p-p g = +1 r l = 1k ? r f = 24 ? g = +2 r l = 150 ? r f = 887 ? rev. e sg micro corp www.sg-micro.com
250mhz, rail-to-rail output cmos operational amplifiers 2 sg micro corp www.sg-micro.com sgm8051/2/3/4 / 5 package/ordering information model channel package description order number marking information package option sot-23-5 sgm8051xn5/tr 8051 tape and reel, 3000 sgm8051 single soic-8 sgm8051xs/tr sgm8051xs tape and reel, 2500 msop-8 sgm8052xms/tr sgm8052xms tape and reel, 3000 sgm8052 dual soic-8 sgm8052xs/tr sgm8052xs tape and reel, 2500 sot-23-6 sgm8053xn6/tr sofxx tape and reel, 3000 sgm8053 single with shutdown soic-8 sgm8053xs/tr sgm8053xs tape and reel, 2500 soic-14 sgm8054xs14/tr sgm8054xs14 tape and reel, 2500 sgm8054 quad tssop-14 sgm8054xts14/tr sgm8054xts14 tape and reel, 3000 sgm8055 dual with shutdown msop-10 sgm8055xms/tr sgm8055xms tape and reel, 3000 note: xx = date code. marking information for example: sofaa (2010, january) sof x x date code - year ("a" = 2010, "b" = 2011 ) date code - month ("a" = jan. "b" = feb. "l" = dec.) chip i.d. absolute maximum ratings supply voltage, +v s to -v s ..................................................7.5v input common mode voltage?..?. (-v s ) - 0.5v to (+v s ) + 0.5v storage temperature range .............................-65 to +150 junction temperature .......................................................160 operating temperature range .........................-55 to +150 package thermal resistance @ t a = +25 sot-23-5, ja ............................................................... 190 /w sot-23-6, ja ............................................................... 190 /w soic-8, ja .................. ............... .................... ...............125 /w msop-8, ja ................................................................. 216 /w msop-10, ja ............................................................... 216 /w lead temperature (soldering 10sec)?.????.??.... 260 esd susceptibility hbm.................... .................... ..................... ................ .....1000v mm......................... ................... ................ ................ ..........400v note: stresses beyond those listed under ?absolute maximum ratings? may cause permanent damage to the device. these are stress ratings only, and function al 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. caution this integrated circuit can be damaged by esd if you don?t pay attention to esd protection. sgmicro recommends that all integrated circuits be handled with appropriate precautions. failu re to observe proper handling and installation procedures can cause damage. esd damage can range from subtle performance degradation to complete device failure. precision integrated circuits may be more susceptible to damage because very small parametr ic changes could cause the device not to meet its published specifications. sgmicro reserves the right to make any chang e in circuit design, specification or other related things if necessary without not ice at any time. please contact sgmicro sales office to get the latest datasheet.
250mhz, rail-to-rail output cmos operational amplifiers 3 sg micro corp www.sg-micro.com sgm8051/2/3/4 / 5 pin configurations (top view) outa outb +inb +v s 5 6 7 8 1 2 3 4 -ina +ina -v s -inb sgm8052 soic-8/msop-8 (sgm8053 only) -in +in -v s nc 5 6 7 8 1 2 3 4 +v s sgm8051/8053 soic-8 nc out disable nc = no connect +v s -in 3 4 5 1 2 out -v s +in sgm8051 sot-23-5 out 3 4 5 6 1 2 -v s +in +v s disable -in sot-23-6 sgm8053 10 11 12 13 14 1 2 3 4 5 outa -ina +ina -v s +v s -ind +ind sgm8054 tssop-14/soic-14 6 7 9 8 -inb +inb -inc outb outc +inc outd nc = no connect 6 5 outa outb +inb +v s 7 8 9 10 1 2 3 4 -ina +ina -v s -inb sgm8055 msop-10 disable disable
250mhz, rail-to-rail output cmos operational amplifiers 4 sg micro corp www.sg-micro.com sgm8051/2/3/4 / 5 electrical characteristics: v s = +5v (g = +2, r f = 887 ? , r l = 150 ? , unless otherwise noted.) sgm8051/2/3/4/5 typ min/max over temperature parameter conditions +25 +25 0 to70 -40 to 85 -40 to125 units min/ max dynamic performance -3db small signal bandwidth gain-bandwidth product bandwidth for 0.1db flatness slew rate rise-and-fall time settling time to 0.1% overload recovery time g = +1, vo = 0.1vp-p, r f = 24 ? , r l = 150 ? g = +1, vo = 0.1vp-p, r f = 24 ? , r l = 1k ? g = +2, vo = 0.1vp-p, r l = 50 ? g = +2, vo = 0.1vp-p, r l = 150 ? g = +2, vo = 0.1vp-p, r l = 1k ? g = +2, vo = 0.1vp-p, r l = 10k ? g = +10, r l = 150 ? g = +10, r l = 1k ? g = +2, vo = 0.1v p-p, r l = 150 ? , r f =887 ? g = +1, 2v output step g = +2, 2v output step g = +2, 4v output step g = +2, vo = 0.2vp-p, 10% to 90% g = +2, vo = 2vp-p, 10% to 90% g = +2, 2v output step v in g = +v s 180 250 40 80 130 160 90 120 37 93/-118 116/-103 130/-130 4 14 58 18 mhz mhz mhz mhz mhz mhz mhz mhz mhz v/ s v/ s v/ s ns ns ns ns typ typ typ typ typ typ typ typ typ typ typ typ typ typ typ typ noise/distortion performance input voltage noise differential gain error (ntsc) differential phase error (ntsc) f = 1mhz g = +2, r l = 150 ? g = +2, r l = 150 ? 8.1 0.03 0.08 nv/ hz % degree typ typ typ dc performance input offset voltage (v os ) input offset voltage drift input bias current (i b ) input offset current (i os ) open-loop gain (a ol ) v o = 0.3v to 4.7v, r l = 150 ? v o = 0.2v to 4.8v, r l = 1k ? 2 4.4 6 2 80 104 8 75 92 8.9 74 91 9.5 74 91 9.8 73 80 mv v/ pa pa db db max typ typ typ min min input characteristics input common mode voltage range (v cm ) common mode rejection ratio (cmrr) v cm = -0.1v to +3.5v -0.2 to +3.8 80 66 65 65 62 v db typ min output characteristics output voltage swing from rail output current closed-loop output impedance r l = 150 ? r l = 1k ? f 100khz 0.12 0.03 130 0.08 100 95 90 84 v v ma ? typ typ min typ power-down disable ( sgm8053/5 only) turn-on time turn-off time disable voltage-off disable voltage-on 236 52 0.8 2 ns ns v v typ typ max min power supply operating voltage range quiescent current (per amplifier) supply current when disabled per amplifier (sgm8053/5 only) power supply rejection ratio (psrr) v s = +2.7v to +5.5v, v cm = (-v s ) + 0.5 2.3 75 80 2.5 5.5 3.2 120 67 2.7 5.5 3.4 127 67 2.7 5.5 3.8 130 65 2.7 5.5 4 137 62 v v ma a db min max max max min
250mhz, rail-to-rail output cmos operational amplifiers 5 sg micro corp www.sg-micro.com sgm8051/2/3/4 / 5 typical performance characteristics at t a = +25 , v s = +5v, g = +2, r f = 887 ? , r g = 887 ? , and r l = 150 ? connected to v s /2, unless otherwise noted. non-inverting small signal frequency response -15 -12 -9 -6 -3 0 3 1 10 100 1000 frequency (mhz) normalized gain (db) g = +5 v o = 0.1v p-p g = +10 g = +2 g = +1 r f = 24 ? inverting small signal frequency response -15 -12 -9 -6 -3 0 3 0.1 1 10 100 1000 frequency (mhz) normalized gain (db) g = -1 v o = 0.1v p-p g=-10 g=-5 g=-2 frequency response for various r l -15 -12 -9 -6 -3 0 3 1 10 100 1000 frequency (mhz) normalized gain (db) c l = 0pf v o = 0.1v p-p r l = 10k ? r l = 1k ? r l = 150 ? r l = 50 ? 0.1db gain flatness for various r f -0.5 -0.4 -0.3 -0.2 -0.1 0 0.1 0.2 0.3 0.4 0.5 1 10 100 frequency (mhz) normalized gain (db) v o = 0.1v p-p r f = 1k ? r f = 900 ? r f = 887 ? c l = 0pf frequency response for various c l -15 -12 -9 -6 -3 0 3 6 9 1 10 100 1000 frequency (mhz) normalized gain (db) r s = 0 ? v o = 0.1v p-p c l = 100pf c l = 47pf c l = 6pf frequency response vs. capacitive load -15 -12 -9 -6 -3 0 3 1 10 100 1000 frequency (mhz) normalized gain (db) v o = 0.1v p-p c l = 6pf r s = 100 ? c l = 47pf r s = 66.5 ? c l = 100pf r s = 37.4 ?
250mhz, rail-to-rail output cmos operational amplifiers 6 sg micro corp www.sg-micro.com sgm8051/2/3/4 / 5 typical performance characteristics at t a = +25 , v s = +5v, g = +2, r f = 887 ? , r g = 887 ? , and r l = 150 ? connected to v s /2, unless otherwise noted. large-signal disable/enable response -1 0 1 2 3 4 5 6 time (500ns/div) enabled disabled v s = 5v g = +2 f in = 2mhz output voltage (1v/div) v out = 2v disable voltage (v) maximum output voltage vs. frequency 0 1 2 3 4 5 6 1 10 100 frequency (mhz) output voltage (v p-p ) v s = 5.5v maximum output voltage without slew-rate induced distortion v s = 2.7v non-inverting small signal step response non-inverting large signal step response time (50ns/div) time (50ns/div) disabled output isolation frequency response -90 -80 -70 -60 -50 -40 -30 -20 -10 0 1 10 100 1000 frequency (mhz) disabled isolation (db) v o = 0.2v p-p v disable = 0v r l = 1k ? output voltage (50mv/div) output voltage (500mv/div) rail-to-rail g = +2, r f = 887 ? , r l = 1k ? 4.88 v 0v time ( 200ns/div )
250mhz, rail-to-rail output cmos operational amplifiers 7 sg micro corp www.sg-micro.com sgm8051/2/3/4 / 5 typical performance characteristics at t a = +25 , v s = +5v, g = +2, r f = 887 ? , r g = 887 ? , and r l = 150 ? connected to v s /2, unless otherwise noted. closed-loop output impedance vs. frequency 0.01 0.1 1 10 100 1000 0.01 0.1 1 10 100 frequency (mhz) output impedance ( ? ) sgm8051 + - zo v+ v- output settling time to 0.1% time (ns) output error (%) v o = 2v p-p 0.5 0.4 0.3 0.2 0.1 0 -0.1 -0.2 -0.3 -0.4 -0.5 020 40 60 80 100 120 input voltage noise spectral density vs. frequency 1 10 100 1000 0.01 0.1 1 10 100 1000 10000 frequency (khz) voltage noise (nv/ hz) power supply rejection ratio vs. frequency -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 0 0.01 0.1 1 10 100 1000 frequency (mhz) psrr (db) -psrr +psrr common mode rejection ratio vs. frequency -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 0 0.01 0.1 1 10 100 1000 frequency (mhz) cmrr (db) overload recovery time time(25ns/div) vs = 2.5v v in = 1.18v g = +2 2.5v 0v 1.18v
250mhz, rail-to-rail output cmos operational amplifiers 8 sg micro corp www.sg-micro.com sgm8051/2/3/4 / 5 typical performance characteristics at t a = +25 , v s = +5v, g = +2, r f = 887 ? , r g = 887 ? , and r l = 150 ? connected to v s /2, unless otherwise noted. open-loop gain vs. temperature 70 80 90 100 110 120 -50-30-101030507090110130 temperature ( ) open?loop gain (db) r l =150 ? r l =1k ? cmrr and psrr vs. temperature 60 70 80 90 100 110 120 -50 -30 -10 10 30 50 70 90 110 130 temperature ( ) cmrr,psrr (db) cmrr r l =150 ? psrr shudown current vs. temperature 40 45 50 55 60 65 70 75 80 -50 -30 -10 10 30 50 70 90 110 130 temperature ( ) shutdown current ( a) v s = 5v v s = 2.7v v s = 3v supply current vs. temperature 1 1.2 1.4 1.6 1.8 2 2.2 2.4 2.6 2.8 3 -50 -30 -10 10 30 50 70 90 110 130 temperature ( ) supply current (ma) v s = 5v v s = 3v v s = 2.7v output voltage swing vs. output current 0 1 2 3 4 5 0 25 50 75 100 125 150 output current (ma) output voltage (v) 25 2 5 135 - 50 2 5 1 35 - 50 v s = 3v sourcing current sinking current
250mhz, rail-to-rail output cmos operational amplifiers 9 sg micro corp www.sg-micro.com sgm8051/2/3/4 / 5 typical performance characteristics at t a = +25 , v s = +5v, g = +2, r f = 887 ? , r g = 887 ? , and r l = 150 ? connected to v s /2, unless otherwise noted. channel separation vs. frequency -120 -110 -100 -90 -80 -70 -60 -50 -40 -30 -20 0.1 1 10 100 1000 frequency (mhz) channel separation (db) offset voltage production distribution 0 3 6 9 12 15 18 21 24 -8 -7 -6 -5 -4 -3 -2 -1 0 1 2 3 4 5 6 7 8 offset voltage (mv) percentage of amplifiers (%) typical production distribution of packaged units.
250mhz, rail-to-rail output cmos operational amplifiers 10 sg micro corp www.sg-micro.com sgm8051/2/3/4 / 5 application notes driving capacitive loads the sgm805x family is optimized for bandwidth and speed, not for driving capacitive loads. output capacitance will create a pole in the amplifier?s feedback path, leading to excessive peaking and potential oscillation. if dealing with load capacitance is a requirement of the application, the two strategies to consider are (1) using a small resistor in series with the amplifier?s output and the load capacitance and (2) reducing the bandwidth of the amplifier?s feedback loop by increasing the overall noise gain. figure 1 shows a unity gain follow er using the series resistor strategy. the resistor isolates the output from the capacitance and, more importantly, creates a zero in the feedback path that compensates for the pole created by the output capacitance. v in v out sgm8051 c load r iso figure 1. series resistor isolating capacitive load power-supply bypassing and layout the sgm805x family operates from either a single +2.7v to +5.5v supply or dual 1.35v to 2.75v supplies. for single-supply operation, bypass the power supply +v s with a 0.1f ceramic capacitor which should be placed close to the +v s pin. for dual-supply operation, both the +v s and the -v s supplies should be bypassed to ground with separate 0.1f ceramic capacitors. 2.2f tantalum capacitor can be added for better performance. good pc board layout techniques optimize performance by decreasing the amount of stray capacitance at the op amp?s inputs and output. to decrease stray capacitance, minimize trace lengths and widths by placing external components as close to the device as possible. use surface-mount components whenever possible. for the high speed operational amplifier, soldering the part to the board directly is strongly recommended. try to keep the high frequency big current loop ar ea small to minimize the emi (electromagnetic interfacing). sgm8051 +v s vn vp -v s v out 10f 0.1f 10f 0.1f sgm8051 vn vp +v s -v s (gnd) v out 10f 0.1f figure 2. amplifier with bypass capacitors grounding a ground plane layer is important for high speed circuit design. the length of the current path speed currents in an inductive ground return will create an unwanted voltage noise. broad ground plane areas will reduce the parasitic inductance. input-to-output coupling to minimize capacitive coupling, the input and output signal traces should not be parallel. this helps reduce unwanted positive feedback.
250mhz, rail-to-rail output cmos operational amplifiers 11 sg micro corp www.sg-micro.com sgm8051/2/3/4 / 5 typical application circuits differential amplifier the circuit shown in figure 3 performs the difference function. if the resistors ratios are equal (r 4 /r 3 = r 2 /r 1 ), then v out = (vp - vn) r 2 /r 1 + v ref . vn vp v out sgm8051 v ref r 1 r 2 r 3 r 4 figure 3. differential amplifier low pass active filter the low pass filter shown in figure 4 has a dc gain of (-r 2 /r 1 ) and the -3db corner frequency is 1/2 ? r 2 c. make sure the filter bandwidth is within the bandwidth of the amplifier. the large values of feedback resistors can couple with parasitic capacitance and cause undesired effects such as ringing or oscillation in high-speed amplifiers . keep resistor values as low as possible and consistent with output loading consideration. v in v out sgm8051 r 1 r 2 r 3 = r 1 //r 2 c figure 4. low pass active filter driving video the sgm805x can be used in video applications like in figure 5 . v in sgm8051 r g r f 75 75 cable v out 75 g = 1 + r f / r g figure 5. typical video driving
250mhz, rail-to-rail output cmos operational amplifiers 12 sg micro corp www.sg-micro.com sgm8051/2/3/4 / 5 package outline dimensions sot-23-5 e e1 e e1 b d a1 a2 a c l 0.2 recommended land pattern (unit: mm) 1.90 2.59 0.99 0.69 0.95 dimensions in millimeters dimensions in inches symbol min max min max a 1.050 1.250 0.041 0.049 a1 0.000 0.100 0.000 0.004 a2 1.050 1.150 0.041 0.045 b 0.300 0.500 0.012 0.020 c 0.100 0.200 0.004 0.008 d 2.820 3.020 0.111 0.119 e 1.500 1.700 0.059 0.067 e1 2.650 2.950 0.104 0.116 e 0.950 bsc 0.037 bsc e1 1.900 bsc 0.075 bsc l 0.300 0.600 0.012 0.024 0 8 0 8
250mhz, rail-to-rail output cmos operational amplifiers 13 sg micro corp www.sg-micro.com sgm8051/2/3/4 / 5 package outline dimensions sot-23-6 e e1 e e1 b d a1 a2 a c l 0.2 2.59 0.99 0.95 0.69 recommended land pattern (unit: mm) dimensions in millimeters dimensions in inches symbol min max min max a 1.050 1.250 0.041 0.049 a1 0.000 0.100 0.000 0.004 a2 1.050 1.150 0.041 0.045 b 0.300 0.500 0.012 0.020 c 0.100 0.200 0.004 0.008 d 2.820 3.020 0.111 0.119 e 1.500 1.700 0.059 0.067 e1 2.650 2.950 0.104 0.116 e 0.950 bsc 0.037 bsc e1 1.900 bsc 0.075 bsc l 0.300 0.600 0.012 0.024 0 8 0 8
250mhz, rail-to-rail output cmos operational amplifiers 14 sg micro corp www.sg-micro.com sgm8051/2/3/4 / 5 package outline dimensions soic-8 d e e1 e b a a2 a1 c l 1.27 0.6 2.2 5.2 recommended land pattern (unit: mm) dimensions in millimeters dimensions in inches symbol min max min max a 1.350 1.750 0.053 0.069 a1 0.100 0.250 0.004 0.010 a2 1.350 1.550 0.053 0.061 b 0.330 0.510 0.013 0.020 c 0.170 0.250 0.006 0.010 d 4.700 5.100 0.185 0.200 e 3.800 4.000 0.150 0.157 e1 5.800 6.200 0.228 0.244 e 1.27 bsc 0.050 bsc l 0.400 1.270 0.016 0.050 0 8 0 8
250mhz, rail-to-rail output cmos operational amplifiers 15 sg micro corp www.sg-micro.com sgm8051/2/3/4 / 5 package outline dimensions msop-8 e1 e e d a1 l c a a2 b recommended land pattern (unit: mm) 1.02 0.41 0.65 4.8 dimensions in millimeters dimensions in inches symbol min max min max a 0.820 1.100 0.032 0.043 a1 0.020 0.150 0.001 0.006 a2 0.750 0.950 0.030 0.037 b 0.250 0.380 0.010 0.015 c 0.090 0.230 0.004 0.009 d 2.900 3.100 0.114 0.122 e 2.900 3.100 0.114 0.122 e1 4.750 5.050 0.187 0.199 e 0.650 bsc 0.026 bsc l 0.400 0.800 0.016 0.031 0 6 0 6
250mhz, rail-to-rail output cmos operational amplifiers 16 sg micro corp www.sg-micro.com sgm8051/2/3/4 / 5 package outline dimensions msop-10 b e1 e e d a1 l c a a2 4.8 0.5 0.3 1.02 recommended land pattern (unit: mm) dimensions in millimeters dimensions in inches symbol min max min max a 0.820 1.100 0.032 0.043 a1 0.020 0.150 0.001 0.006 a2 0.750 0.950 0.030 0.037 b 0.180 0.280 0.007 0.011 c 0.090 0.230 0.004 0.009 d 2.900 3.100 0.114 0.122 e 2.900 3.100 0.114 0.122 e1 4.750 5.050 0.187 0.199 e 0.500 bsc 0.020 bsc l 0.400 0.800 0.016 0.031 0 6 0 6
250mhz, rail-to-rail output cmos operational amplifiers 17 sg micro corp www.sg-micro.com sgm8051/2/3/4 / 5 package outline dimensions soic-14 dimensions in millimeters dimensions in inches symbol min mod max min mod max a 1.35 1.75 0.053 0.069 a1 0.10 0.25 0.004 0.010 a2 1.25 1.65 0.049 0.065 a3 0.55 0.75 0.022 0.030 b 0.36 0.49 0.014 0.019 d 8.53 8.73 0.336 0.344 e 5.80 6.20 0.228 0.244 e1 3.80 4.00 0.150 0.157 e 1.27 bsc 0.050 bsc l 0.45 0.80 0.018 0.032 l1 1.04 ref 0.040 ref l2 0.25 bsc 0.01 bsc r 0.07 0.003 r1 0.07 0.003 h 0.30 0.50 0.012 0.020 0 8 0 8 recommended land pattern (unit: mm) d e1 e l1 l2 a 3 a a 2 5.2 1.27 0.6 2.2 e b a 1 index 0.80.1 dep 0.20.1 2.00.1 btm e-mark dep 0.10.05 l h h r r1
250mhz, rail-to-rail output cmos operational amplifiers 18 sg micro corp www.sg-micro.com sgm8051/2/3/4 / 5 package outline dimensions tssop-14 e e1 d b a a1 a2 l c h e recommended land pattern (unit: mm) 5.94 0.42 1.78 0.65 dimensions in millimeters dimensions in inches symbol min max min max a 1.100 0.043 a1 0.050 0.150 0.002 0.006 a2 0.800 1.000 0.031 0.039 b 0.190 0.300 0.007 0.012 c 0.090 0.200 0.004 0.008 d 4.900 5.100 0.193 0.201 e 4.300 4.500 0.169 0.177 e1 6.250 6.550 0.246 0.258 e 0.650 bsc 0.026 bsc l 0.500 0.700 0.02 0.028 h 0.25 typ 0.01 typ 1 7 1 7
250mhz, rail-to-rail output cmos operational amplifiers 19 sg micro corp www.sg-micro.com sgm8051/2/3/4 / 5 tape and reel information note: the picture is only for reference. please make the object as the standard. key parameter list of tape and reel package type reel diameter reel width w1 (mm) a0 (mm) b0 (mm) k0 (mm) p0 (mm) p1 (mm) p2 (mm) w (mm) pin1 quadrant sot-23-5 7 9.5 3.2 3.2 1.4 4.0 4.0 2.0 8.0 q3 sot-23-6 7 9.5 3.17 3.23 1.37 4.0 4.0 2.0 8.0 q3 soic-8 13 12.4 6.4 5.4 2.1 4.0 8.0 2.0 12.0 q1 msop-8 13 12.4 5.2 3.3 1.5 4.0 8.0 2.0 12.0 q1 msop-10 13 12.4 5.2 3.3 1.2 4.0 8.0 2.0 12.0 q1 soic-14 13 16.4 6.6 9.3 2.1 4.0 8.0 2.0 16.0 q1 tssop-14 13 12.4 6.95 5.6 1.2 4.0 8.0 2.0 12.0 q1 reel width (w1) reel diameter reel dimensions tape dimensions direction of feed p2 p0 w p1 a0 k0 b0 q1 q2 q4 q3 q3 q4 q2 q1 q3 q4 q2 q1
250mhz, rail-to-rail output cmos operational amplifiers 20 sg micro corp www.sg-micro.com sgm8051/2/3/4 / 5 carton box dimensions note: the picture is only for reference. please make the object as the standard. key parameter list of carton box reel type length (mm) width (mm) height (mm) pizza/carton 7 (option) 368 227 224 8 7 442 410 224 18 13 386 280 370 5


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