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  njm5534 - 1 - ver.2011-02-22 high performance low-noise operational amplifier general description package outline the njm5534 is a high performance low noise operational amplifier. this amplifier features popular pin- out, superior noise performance, and high output drive capability. and also, features guaranteed noise performance with substantially higher gain-bandwidth product, power bandwidth, and slew rate which far exceeds that of the njm741 type amplifiers. the specially designed low noise input transistors allow the njm5534 to be used in very low noise signal processing applications such as audio pre-amplifiers and servo error amplifiers. the njm5534 is internally compensated for a gain of three or higher. externally compensation for optimiz ing specific performance can be obtained by use of an external compensation capacitor between compensation(5pin) and balance/compensation(8pin). if very low noise characteristic is of prime importance, it is recommended d-rank type products(NJM5534DD/md). these have specified maximum limits for equivalent input noise voltage. features operating voltage 3v~22v single circuit with balance terminal low input noise voltage 3.3nv/ hz typ.@1khz power bandwidth 200khz typ. slew rate 13v/s typ. package outline dip8, dmp8 bipolar technology pin configuration equivalent circuit pin function 1.balance 2.?input 3.+input 4.v - 5.compensation 6.output 7.v + 8.balance/compensation njm5534d (dip8) njm5534m (dmp8) 1 2 3 4 8 7 6 5 (top view) dip8, dmp8 package
njm5534 - 2 - ver.2011-02-22 absolute maximum ratings (ta=25 ? c) parameter symbol rating unit supply voltage v + /v - 22 v differential input voltage v id 0.5 v common mode input voltage v ic v + /v - v power dissipation p d dip8: 500 dmp8: 300 mw operating temperature range t opr -20~+75 c storage temperature range t stg -40~+125 c recommended operating voltage (ta=25 ? c) parameter symbol rating unit supply voltage v + /v - 3~22 v electrical characteristics (ta=25 ? c,v + /v - =15v, unless otherwise noted.) parameter symbol test condition min. typ. max. unit input offset voltage v io r s 10k ? - 0.5 4 mv input offset current i io - 20 300 na input bias current i b - 500 1500 na input resistance r in 30 100 - k ? large signal voltage gain a v r l 2k ? , v o =10v 88 100 - db maximum output voltage v om r l 600 ? 12 13 - v common mode input voltage range v icm 12 13 - v common mode rejection ratio cmr r s 10k ? 70 100 - db supply voltage rejection ratio svr r s 10k ? 80 100 - db supply current i cc r l = - 4 8 ma trainsient response rise time t r v in =50mv, r l =600 ? , c l =100pf, cc=22pf - 35 - ns overshoot v in =50mv, r l =600 ? , c l =100pf, cc=22pf - 17 - % slew rate sr cc=0 - 13 - v/s gain bandwidth product gb cc=22pf, c l =100pf - 10 - mhz power bandwidth w pg vo=20v pp , cc=0 - 200 - khz equivalent input noise voltage v ni f=20hz~20khz - 1 - vrms equivalent input noise current i ni f=20hz~20khz - 25 - parms f o =30hz - 5.5 - nv/ hz equivalent input noise voltage e n f o =1khz - 3.3 - nv/ hz f o =30hz - 1.5 - pa/ hz equivalent input noise current i n f o =1khz - 0.4 - pa/ hz broadband noise figure nf f=10hz~20khz, r s =5k ? - 0.9 - db electrical characteristics (d-rank type(note1), v + /v - =15v, ta=25c, unless otherwise noted.) parameter symbol test condition min. typ. max. unit equivalent input noise voltage v ni riaa, r s =2.2k ? - - 1.4 vrms (note1)d-rank type is a equivalent input noise voltage selected product.
njm5534 - 3 - ver.2011-02-22 typical characteristics voltage noise vs. source resistance v + /v - =15v, ta=25oc 0.1 1 10 100 10 100 1k 10k source resistance [ ? ] equivalent input noise voltage [vrms] flat 100khz lpf jis a maximum output voltage vs. load resistance ta=25oc -25 -20 -15 -10 -5 0 5 10 15 20 25 10 100 1k 10k load resistance [ ? ] maximum output voltage [v] v + /v - =15v v + /v - =22v v + /v - =22v v + /v - =15v -vom +vom weighting rs 100 10k thd vs. output voltage v + /v - =15v, r l =10k ? , gv=20db, ta=25oc 0.0001 0.001 0.01 110 output voltage [vrms] total harmonic distortion [%] f=1khz f=20hz f=20khz gain/phase vs. frequency ta=25oc -20 -10 0 10 20 30 40 50 10k 100k 1m 10m 100m frequency [hz] voltage gain [db] -200 -160 -120 -80 -40 0 phase [deg] phase gain maximum output voltage swing vs. frequency v + /v - =15v, ta=25oc 0 5 10 15 20 25 30 35 10k 100k 1m 10m frequency [hz] maximum output voltage swing [vpp] maximum output voltage swing vs. frequency v + /v - =15v, ta=25oc 0 5 10 15 20 25 30 35 10k 100k 1m frequency [hz] maximum output voltage swing [vpp] cc=0pf cc=20pf cc=50pf
njm5534 - 4 - ver.2011-02-22 typical characteristics supply current vs. temperature v + /v - =15v 0 1 2 3 4 5 6 7 8 9 -50 -25 0 25 50 75 100 125 ambient temperature [oc] supply current [mv] input offset voltage vs. temperature v + /v - =15v -1.5 -1 -0.5 0 0.5 1 1.5 2 2.5 -50 -25 0 25 50 75 100 125 ambient temperature [oc] input offset voltage [mv] input bias current vs. temperature v + /v - =15v 0 100 200 300 400 500 600 700 800 900 -50 -25 0 25 50 75 100 125 ambient temperature [oc] input bias current [na] maximum output voltage vs. temperature v + /v - =15v, r l =600 ? -15 -10 -5 0 5 10 15 -50 -25 0 25 50 75 100 125 ambient temperature [oc] maximum output voltage [v] -vom +vom slew rate vs. compensation capacitance ta=25oc 0 2 4 6 8 10 12 14 16 0 102030405060708090100 compensation capacitance cc [pf] slew rate [v/s]
njm5534 - 5 - ver.2011-02-22 test circuit adjustment method fig.1-1, fig.1-2 shows the input offset voltage adjustment circuit, and frequenc y compensation circuit. without these features, the adjustment pins are open. notice when used in voltage follower circuit, put a current limit re sistor into non-inverting input terminal in order to avoid insid e input diode destruction when the power supply is turned on. ( ref.fig.2 ) [caution] the specifications on this databook are only given for information , without any guarantee as regards either mistakes or omissions. the application circuits in this databook are described only to show representative usages of the product and not intended for the guarantee or permission of any right including the industrial rights. cc 3 6 8 5 2 fig.1-1 input offset voltage adjustment fig.1-2 frequency compensation fig.2 v + 100k 22k 1 8 6 3 2 30k 330k 0.0024 0.0082 47 610 56k rs 2.2k 3.3 100 100 -15v +15v 0.47 2.2 220k 40db amp 30khz lpf vout noise voltage (riaa) measurement circui t inpu t output 1k
mouser electronics authorized distributor click to view pricing, inventory, delivery & lifecycle information: njr: ? NJM5534DD? njm5534d? njm5534m? njm5534m-te2? njm5534m-te1? njm5534md-t1


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