DAC800 NSC | Alldatasheet

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© | cal settling times of 100 ns. When used as a multiplying 8A, DAC-08C, DAC-08E and DAC-08H, respectively. er logic familiés. The performance and characteristics of the ™ Low power consumption 33 mW at +5V . FIGURE 1. +20 Vp.p Output Digital-to-Analog Converter (Note 4) i “Devices may be ordered by using either order number.

BA ; “To #1 | Absolute Maximum Ratings (note 1) ; rq © if Military/Aerospace specified devices are required, Lead Temp. (Soldering, 10 seconds) gs § please contact the National Semiconductor Sales Dual-In-Line Package (plastic) 260°C Ss ES Office/Distributors for availability and specifications. Oual-In-Line Package (ceramic) 30°c oS é Supply Voltage (V+ ~ V-) + 18V or 36V Surface Mount Package <4 é Power Dissipation (Note 2) 500 mw Vapor Phase (60 seconds) 215°C g F Reference Input Differential Voltage Infrared (15 seconds) 220°C 8 i (V14 to V15) V~ tov+ ‘ : = : Reference Input Common-Mode Range Operating Conditions (note 1) S i (V14, V15) Vo tov+ Min Max Units > ' Reference Input Current 5SmA Temperature (Ta) 9 Logic Inputs V- to V~ plus 36V DACOBO2L —55 +125 Cc @e Analog Current Outputs (Vg~ = —15V) 4.25 mA DACOS00L -55 +125 *c 8 ESD Susceptibility (Note 3) TBOV DACOB00LC 0 +70 c a Storage Temperature —65°C to + 150°C DACO801LC ° +70 *c DACO802LC i) +70 °c Electrical Characteristics the toliowing specifications apply for Vg = £15V, Inger = 2mA and Twin < Ta < Tmax unless otherwise specified. Output characteristics refer to both [gut and [our. . DACoBO2L/ DACOBO0L/ [ win] typ [wax | win] typ | Max | Min] Typ [ Max | Resolution 5 6 a ) B |S 8 5 Bis Monotonicity 8 8 8 | Bits Nontinearity £01 £0.19) £0.39] %FS te Settling Time To + LSB, All Bits Switched ns ON" or “OFE", Ta =.25°C DACOBooL 100 ns DACOBO0LC 100 ns tPLH, | Propagation Delay Ta= 25°C ‘ {PHL | Each Bit 60 35 | 60 60 | ns All Bits Switched 60 35 | 60 60 _| ns Tips [Fut'Scete Tempco fT eto [50 | 0 | x50) | 210 | 200 [ppmro Voc {Output Voltage Compliance! Full Scale Current Change Vv |< LSB, Royr> 20 M0 Typ lesa Full Scale Current Ver = 10.000V, R14 = 5.000 kni| 1.984 1.99 mA R15 = 5.000 kf, Ta= 25°C less [Full Scale Symmetry [irge-tese | eos feaol [aa | xeo] | ze | ete] pa ls [eroScatecuront | Ton Po [02 | 20] | 02] 40] pa 'fsa [Output Current Range V- = -5V 24 24 mA V = = ~8V to - 18V 4.2 42 mA Logic input Levels Vit Logic “o" Vic =0V v . Vy) Logic 1" j v Logic input Current Vic=0V he Logic “0” —10V< Vins +0.8V ~2.0 -20 -2.0 BA | Logic "1" ___ lavsvvs + 18V . 0.002 0.002 0.002 A V Logic input swing <= v-==sev_ tof te [eto [18 [= tof te |v Vue [Logie Threshold Range” [vg stsv — [=o Tas [=o] Pass [=10f [ras | _v lis__ [Reference BiasCuront_[ = 40 |=3.0[ [= 10-30] [-10]-30] pa duat__ |Reterence Input Slew Rate|(Figuo tz) [40 a0 | 4ol-eo | [aol-a0 | |mAdus PSSigg+|Power Supply Sensitivity [4.5V<V+ <16V | [o.doorf oor] [o.ooci]-o.01 | Joro0or| oor | 67% PSSigg_ 1 [-4.5VsV- s18V 0.0001 }0.0001 10.0001 b/% Inge = IMA . Power Supply Current Vg=+5V.Ipep=1mA + ue 3.8 38 3.8 | mA Vg = SV, -15V, Ince = 2mA + 24 | 38 38 3.8 | mA Vg = £ 15V, IRer=2mA t+ 3.8 38 3.8 | mA | 37