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BT137 EA09474 AD7225LP E003586 61089A 96547 1N3701B DPA05
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  dual operational amplifiers lm358 features internally frequency compensated for unity gain lar g e dc volta g e g ain : 100db wide power supply range : 3v~32v(or1.5v~16v) input common-mode voltage range includes ground large output voltage swing : 0v dc to v cc -1.5v dc power drain suitable for battery operation moisture sensitivity level 3 lm358g is halogen free product ordering information dual operational amplifiers lm358 is consists of four independent, high gain, internally fr equency compensated operational amplifiers which were designed specifically to operate from a single power supply over a wide range of voltage. o p eration from s p lit p ower su pp lies is also p ossible and the low p ower su pp l y current drain is inde p enden t of the magnitude of the power supply voltage. application areas include transducer amplifier, dc gain blocks and all the conventional op amp circuits which now can be easily implemented in single power supply syst ems. equivalent circuit 2008 - ver. 1.1 htc device package lm358gd LM358D 8 sop lm358n 8 dip - 1 - v+ 6? inputs q2 - c c q3 q9 + q4 q8 q1 100? 6? q10 q11 q12 q5 q6 output q7 50? r sc q13 sop8/ dip8 pin configulation 1 2 3 4 8 7 6 5 in1(-) in1 (+) gnd in2 (+) vcc out out2 in2 (-) a + - b - + sop-8 pkg dip-8 pkg
dual operational amplifiers lm358 absolute maximum ratings characteristic supply voltage differential input voltage input voltage output short circuit to gnd v cc v t a =25 (one amp) operating temperature range storage temperature range electrical characterisitics at specified free-air temperature, v cc =5v(unless otherwise noted) v io v cc =5v to max, input offset voltage v ic =v icr min, v o =1.4v v io average temperature coefficient of input offset voltage i io input offset current llo average temperature coefficient of input offset current i ib input bias current v icr common-mode input voltage range r l 2? v oh v cc =max, r l =2? high-level output voltage v cc =max, r l 10? v ol low-level output voltage a vd v cc =15v, large-signal differential v o =1v to 11v, voltage amplification r l 2? thd f=1khz, av=20db, rl=2k ? total harmonic distortion vo=2vpp, cl=100pf, vo=2vpp cmrr v cc =5v to max, common-mode rejection ratio v ic =v icr min k svr supply voltage rejection ratio(v cc /v io ) v 01 /v 02 crosstalk attenuation v cc =15v, v id =1v, v o =0 i o v cc =15v, output current v id =-1v, v o =15v v id =-1v, v o =200? i os v cc at 5v, short-circuit output current gnd at -5v, v o =0 i cc v o -2.5v, no load supply current (two amplifiers) v cc =max, v o =0.5v cc , no load * all characteristics are measured under open-loop conditions w ith zero common-mode input voltage unless otherwise specified <> v cc for testing purpose is 30v. full range is 0 to 70. htc 25 0.02 % 12 v cc =5v to max 25 40 full range 5 ? full range 0.7 1.2 ? full range 25 -20 full range 25 10 20 -10 60 25 12 30 ? -30 ? 120 v cc =5v to max f=1 khz to 20khz 25 ? 25 65 100 ? 25 65 80 v/? full range 15 25 25 100 ? 25 9 ?/ 250 ? 150 7 t opr t stg -65 to +150 unit typ max 37 ? v v i -0.3 to +32 continuous 0~+70 unit v v value 16 or 32 32 v cc v i(diff) symbol r l 10? full range v cc -1.5 25 full range 28 5 full range v 26 25 full range 27 20 ? v 25 0tov cc -1.5 full range 0tov cc -2 ?/ -20 -250 ? -500 10 v o =1.4v full range v o =1.4v 25 full range parameter - 2 - test conditions* full range full range min lm358
dual operational amplifiers lm358 typical performance characteristics htc - 3 - output current(? dc ) temperature() -55 -15 45 125 30 50 90 current limiting supply current drain( ? dc ) supply voltage (v dc ) 0 10 20 40 1 4 supply current a vol -voltage gain( ? supply voltage(v dc ) 0 0 20 30 40 160 voltage gain 0 10 20 40 60 70 80 -35 5 25 65 85 105 80 120 10 40 3 2 30 t a =0to+125 t a =-55 r l =20? r l =2? frequency(?) voltage gain ( ? frequency(?) 0 110 1m 40 140 open-loop frequency response input voltage ( v ) outvoltage ( v ) time(?) 0 02030 1 4 voltage-follower pulse response 0 1 10 40 120 100 100 v+=10 to 15v dc and -55t a +125 r l =2kv + =15v dc 80 60 20 1k 10k 100k 10m v+=30v dc and -55t a +125 v 0 - + v+ 10m v in 0 .1 ? v +/2 0 5 20 large-signal frequency response 15 10 v 0 -output swing(v p-p ) 2 3 2 3 1k 10k 100k 1m v 0 - + 15 v dc 100k v in 1 k +7 v vd 2 k v - output voltage referenced to v + (v dc ) i o + -out put source current (? dc ) 0.001 0.01 100 2 3 7 output characterisitics current sourcing e o -output voltage( ? t-time(?) 01 2 4 250 400 voltage-follower pulse response (small-signal) 1 4 5 6 0.1 1 10 350 300 3 v + =30v dc t a =+25 450 500 e o 50? ein input output 8 + v +/2 + - v + v 2 i o t a =+25 independent of v + v 0 -output voltage (v dc ) i o + - out put sink current (? dc ) 0.001 0.01 100 0.1 output characterisitics current sinking 0.01 1 0.1 1 10 10 v +/2 - + v + v 0 i o t a =+25 v + =+5v dc v + =+15v dc v + =+30v dc 0 8 7 6 5
dual operational amplifiers lm358 typical performance characteristics (continuied) typical applications htc - 4 - - v 0 + v in r in v+ 2 v+ 2 4 8 v+ single supply inverting amplifier + v 0 - v in 4 8 v+ v+ rf 10k 10k input biasing voltage pollower + v 0 - v in 4 8 v+ v+ 10k 10k non-inverting amplifier ri r blocks dc gain i b -input current(? dc ) t a -temperature() -55 -15 45 125 30 50 90 input current + v in -input voltage(v dc ) v + or v - -power supply voltage (v dc ) 0 5 10 15 5 10 15 input voltage range cmrr-common-mode rejection rati o f-frequency(?) 0 10 10k 100k 40 80 120 common-mode rejection ratio negative positive 0 10 20 40 60 70 80 -35 5 25 65 85 105 v + =+30v dc v + =+15v dc v + =+5v dc v cm =0v dc 20 60 100 1k 1m - + v in 7.5v dc + v 0 + 7.5v dc 100k 100 100 100k rl


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